SlideShare a Scribd company logo
1 of 12
Download to read offline
M/V™ Series Servo Drive AVB100C200 
Description 
Power Range 
AVB100C200 servo amplifiers are designed to drive brushless DC motors at a high switching frequency for vehicle applications. It is fully protected against over- voltage, over-current, over-heating, under-voltage and short-circuits. This model interfaces with digital controllers or can be used as a stand-alone drive and requires only a single unregulated DC power supply or battery. A single red/green LED and a single digital output indicate operating status. Loop gain, current limit, input gain, offset, command ramping, deadband can be adjusted using 14-turn potentiometers. The offset adjusting potentiometer can also be used as an on-board input signal for testing purposes. It will accept tachometer input, quadrature encoder inputs, or Hall sensor inputs for velocity control. 
Peak Current 100 A 
Continuous Current 100 A 
Supply Voltage 40 - 175 VDC 
Features 
 Four Quadrant Regenerative Operation 
 Ramped Command Input Adjustment 
 Adjustable Deadband Range 
 Drive Brushed or Brushless Motors 
 Compact Size, High Power Density 
 Selectable 120/60 Hall Commutation Phasing 
 Offset Adjustment Potentiometer 
 Ingress Protection Rating: IP65 
 Electromagnetic Holding Brake Output 
 Selectable Inhibit/Enable Logic 
 Adjustable Current Limits 
 Multiple Modes of Operation 
MODES OF OPERATION 
 Current 
 Voltage 
 Duty Cycle (Open Loop) 
 IR Compensation 
 Velocity 
 Hall Velocity 
COMMAND SOURCE 
 0 - 5V Analog 
o Wigwag 
o Inverted 
 0 – 5 kΩ 
o 2-wire Pots 
o 3-wire Pots 
o Wigwag 
o Inverted 
FEEDBACK SUPPORTED 
 Halls 
 Incremental Encoder 
 Tachometer (±60 DC) 
INPUTS/OUTPUTS 
 Inhibit/Enable Input 
 Forward and Reverse Inputs 
 Push Brake Release Inputs 
 Speed Limit Pot Input 
 Current Monitor Output 
 Velocity Monitor Output 
 Fault Output 
COMPLIANCES & AGENCY APPROVALS 
 UL 
 cUL 
 RoHS 
 CE Pending 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
BLOCK DIAGRAM 
POT1VARIABLERC-BLOCKLOOP INTEGRATORVELOCITYCURRENT LOOPPOT6POT3 SW2-3 POT5 SW2-1SW2-2 SW1-1POT4SW1-4SW1-5SW1-320k10k..310kCW- + 10K- +20.8kPWM ANDCONTROLLOGIC10nF SW1-2 SW1-7Peak/Cont. CURRENTLIMIT100kP1-5PGNDSW3-1..55nF..82nFCF1*SW3-6..10DC-TO-DCSW1-9COMMANDLIMITERRAMP+5VISW2-4DEADBANDCW10K10k- + CW5k20k+5VIP1-12INH/ENABLE5k100k+5V-5V10kHALL/ENCCONV. 10k10kOFFINPUT COMMAND SELECTIONOFFONWIG-WAG INPUT DIRECTION2-WIRE POTENTIOMETERSW2SINGLE INPUT DIRECTION1OFFONONOFFON4FULL SPEED REVERSESTANDARD INPUTHALF SPEED REVERSE23-WIRE POTENTIOMETERINVERTED INPUT310k P1-15P1-20P1-13P1-14P1-21 10K P1-19 10k SW1-8SW1-6 SENSECURRENTCURRENTMONITORINTERNALCONVERTERDC-TO-DC P1-17 OFFN/AONOFFOFFONN/AONONOFFOFFOFF P1-23P1-7P1-22P1-8 10k10kQ2222220k+5VI+5VI50k HVIN BRAKE RF2* LIMITCWU31OFF=60ON=120U34RF1*IR-COMPENSATIONPOT2MOTOR AMAINH SELH-BRIDGEH1,H2,H3MCMOTOR C3-PhaseMOTOR BMB DEG ENC A,B2.2uFCF2* CURRENT100k0.47uFPGNDB+ B- AVB100C200 FUNCTIONAL BLOCK DIAGRAMKEYSWITCHP1-6HVINSW1-10CONVERSIONP1-1THROTTLEINPUTP1-16P1-100 to +/-30% SPEED/COMMAND LIMITFORWARDREF INLOOP GAINVELOCITYOFFONU20U32BROKEN LINE REPRESENTS 1000VAC OPTICAL ISOLATIONOFFSETTESTCWMax: 1.8s/VMin: 0.1s/VENC A,B+5VHE H3ENCAENCBH2H1INH/ENABLEDC-BUS CURRENTFAULT VOLTAGE FEEDBACKDRIVES ARE SHIPPED IN CURRENT MODE WITH MAXIMUM CURRENT SETTINGSLED GREEN -NORMAL OPERATION, LED RED -FAULTFOR OTHER SWITCH FUNCTIONS SEE SWITCH DESCRIPTIONRECOMMENDED SETTINGS FOR CURRENT MODE -POT1 FULLY CCW, POT3 FULLY CW* OPTIONAL USER INSTALLED THROUGH HOLE COMPONENTSDUTY CYCLE FEEDBACK MONITOR H1,H2,H3VELOCITY MODE SELECTOR+5VHE CURRENT LOOP OFF=VM VelDirCurr/Vel ON=CMCURRENT FEEDBACKSW1-5SW1-4 VELOCITY MONITOR MODE SELECTIONSW1-3P1-3POT-LOW (3mA)P1-4OFFOFFN/AOFFN/A -NOT APPLICABLEIR COMPENSATION** X -DEPENDENT ON APPLICATIONOFFENCODER VELOCITYCURRENTVOLTAGEHALL VELOCITYDUTY CYCLE BRAKE OUT (3A) TACH-IN+5VHE (250mA) BRAKE RETURN24V/200Hz PWM XXX SW1-7N/AXONOFFOFFOFFSW1-6OFFOFFONOFFP1-2SGNDREVERSEP1-11POT-HIGH (3mA) FAULTFAULT-OUTP1-18SGNDP1-9DIRECTIONLOGICN/AN/ATACHOMETERONXOFF** IR COMPENSATION MODE REQUIRES USER INSTALLED RESISTOR RF1 ON THE PCB 
Information on Approvals and Compliances 
US and Canadian safety compliance with UL 508c, the industrial standard for power conversion electronics. UL registered under file number E140173. Note that machine components compliant with UL are considered UL registered as opposed to UL listed as would be the case for commercial products. 
RoHS (Reduction of Hazardous Substances) is intended to prevent hazardous substances such as lead from being manufactured in electrical and electronic equipment. 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
SPECIFICATIONS 
Power Specifications 
Description 
Units 
Value 
DC Supply Voltage Range 
VDC 
40 - 175 
DC Bus Over Voltage Limit 
VDC 
190 
DC Bus Under Voltage Limit 
VDC 
36 
Logic Supply Voltage (Keyswitch) 
VDC 
40 - 175 
Maximum Peak Output Current 
A 
100 
Maximum Continuous Output Current 
A 
100 
Max. Continuous Output Power 
W 
16625 
Max. Continuous Power Dissipation 
W 
875 
Internal Bus Capacitance 
μF 
3840 
Minimum Load Inductance (Line-To-Line) 1 
μH 
300 
Switching Frequency 
kHz 
14.5 
Maximum Output PWM Duty Cycle 
% 
100 
Control Specifications 
Description 
Units 
Value 
Command Sources 
- 
0 - 5 V Analog, 0 - 5 kΩ 
Feedback Supported 
- 
Halls, Incremental Encoder, Tachometer (±60 VDC) 
Commutation Methods 
- 
Trapezoidal 
Modes of Operation 
- 
Current, Voltage, IR Compensation, Duty Cycle, Hall Velocity, Velocity 
Motors Supported 
- 
Single Phase (Brushed, Voice Coil, Inductive Load), Three Phase (Brushless) 
Hardware Protection 
- 
Over Current, Over Temperature, Over Voltage, Short Circuit (Phase-Phase & Phase-Ground), Under Voltage 
Mechanical Specifications 
Description 
Units 
Value 
Agency Approvals 
- 
cUL, UL, RoHS, CE Pending 
Size (H x W x D) 
mm (in) 
203.2 x 139.7 x 59.7 (8.0 x 5.5 x 2.4) 
Size (H x W x D) with 23-pin mating connector installed 
mm (in) 
203.2 x 139.7 x 74.0 (8.0 x 5.5 x 2.9) 
Weight 
g (oz) 
1638.60 (57.80) 
Heatsink (Base) Temperature Range2 
°C (°F) 
0 - 75 (32 - 167) 
Storage Temperature Range 
°C (°F) 
-20 - 85 (-4 - 185) 
Cooling System2 
- 
Natural Convection 
Form Factor 
- 
Vehicle Mount 
IP Rating 
- 
65 
I/O Connector 
- 
23-pin, AMPSEAL connector 
MOTOR POWER Connector 
- 
3 Individual M6 threaded terminals 
POWER Connector 
- 
2 Individual M6 threaded terminals 
Notes 
1. Lower inductance is acceptable for bus voltages well below maximum. Use external inductance to meet requirements. 
2. Additional cooling and/or heatsink is required to achieve rated performance. Thermal grease recommended between baseplate and external heatsink. 
Mating Connector Kit 
Mating connector housing, socket contacts, and seal plugs can be ordered as a kit using ADVANCED Motion Controls’ part number KC-23AMPSEAL01. ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
PIN FUNCTIONS 
I/O - Signal Connector 
Pin 
Name 
Description / Notes 
I/O 
1 
THROTTLE IN 
0 – 5 V reference command input or 0 – 5 kΩ resistance command input. Do not perform peak-to-peak current commands. 
I 
2 
SIGNAL GROUND 
SGND 
3 
POT HIGH 
+5V @ 3 mA. For customer use. Reference to Signal Ground. Becomes disabled when 2- wire pot command is selected (SW2-2 = OFF) 
O 
4 
POT LOW 
Signal Ground. 
SGND 
5 
POWER GROUND 
Power Ground 
PGND 
6 
KEYSWITCH 
Master switch for the drive. Logic power input supply. Voltage range equal to DC Supply Voltage Range (see specifications table). This must be ON for the drive to function. Reference to Power Ground. 
I 
7 
BRAKE 
Brake Output. This output will energize when the Keyswitch is ON and the drive is enabled. Outputs up to 24V, 3A max. Reference to Brake Return. 
O 
8 
BRAKE RETURN 
Brake Return 
I 
9 
SIGNAL GROUND 
Signal Ground 
SGND 
10 
FORWARD 
When not in Wigwag mode, with only one input active at a time, Forward and Reverse inputs select the direction of motion. Pull low (Signal Ground) to activate. When the drive is disabled or faulted, activating both Pins at the same time will energize Brake Output (Pin7). Activating only one input when the drive is disabled or faulted will not energize Brake Output. 
I 
11 
REVERSE 
I 
12 
INHIBIT/ENABLE 
This TTL level input signal turns off all power devices of the “H” bridge when pulled to Signal Ground with SW1-9=ON. If SW1-9=OFF, pulling this pin to Signal Ground will enable the drive. 
I 
13 
HALL 1 
Hall sensor inputs. Logic levels: maximum low level input is 1.5 VDC, minimum high level input is 3.5 VDC. Reference to Power Ground. 
I 
14 
HALL 2 
I 
15 
HALL 3 
I 
16 
SPEED/COMMAND LIMIT 
Sets the maximum speed/command limit (command type dependent on the mode of operation). Voltage value at this pin will act as the upper limit available for the throttle input command 
I 
17 
VELOCITY MONITOR 
1V = 21.5 kHz Encoder Frequency; 1V = 100 Hz Hall Sensor Frequency. Reference to Signal Ground. 
O 
18 
FAULT OUT 
This output activates during short circuit, over-voltage, under voltage, inhibit, over- temperature and power-on reset. A red LED also indicates a fault condition. Reference to Signal Ground. Can be used with an external voltage supply and LED for visual fault indication. 
O 
19 
DC BUS CURRENT MONITOR 
Scaling factor = 14.4 A/V. This output represents the actual power supply DC Bus current. Reference to Power Ground. 
O 
20 
ENCODER A 
Encoder Channel A. Reference to Power Ground. 
I 
21 
ENCODER B 
Encoder Channel B. Reference to Power Ground. 
I 
22 
+5V OUT 
+5V @ 150mA. For customer use. Reference to Power Ground. 
O 
23 
TACH 
Tachometer Input, 60k ohm input resistance, ± 60 V max. Reference to Power Ground. 
I 
MOTOR POWER - Power Connector 
Terminal 
Name 
Description / Notes 
I/O 
MA 
MOTOR A 
Motor Phase A 
O 
MB 
MOTOR B 
Motor Phase B 
O 
MC 
MOTOR C 
Motor Phase C 
O 
POWER - Power Connector 
Terminal 
Name 
Description / Notes 
I/O 
B- 
BATT - / POWER GROUND 
Power Ground 
PGND 
B+ 
BATT + 
DC Power Input. Battery Power. 
I 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
HARDWARE SETTINGS 
Switch Functions 
SW1 
Switch 
Description 
Setting 
On 
Off 
1 
Test / Offset controls the sensitivity of the “offset” pot. This is used as an on-board reference signal in test mode. 
Test 
Offset 
2 
120/60 degree commutation phasing. 
120 degree phasing 
60 degree phasing 
3 
Mode Select. Refer to Mode Selection Table 
Duty-Cycle / Hall 
Voltage / Encoder 
4 
Mode Select. Refer to Mode Selection Table 
Hall / Encoder 
Duty-Cycle / Voltage 
5 
Mode Select. Refer to Mode Selection Table 
Tach Mode 
Other Modes 
6 
Mode Select. Refer to Mode Selection Table 
Current Mode 
Velocity Modes 
7 
Velocity Integrator Capacitor 
More Capacitance 
(ON for Hall Velocity Mode) 
Less Capacitance 
8 
Velocity Feedback Polarity (for Hall or Encoder Velocity Mode) 
One Direction 
Opposite Direction 
9 
Inhibit / Enable Logic Select 
Ground Inhibit pin to Inhibit 
Ground Inhibit enable motor outputs 
10 
Ramp Enable 
Enable Command Ramping 
No Command Ramping 
Mode Selection Table 
Operating modes can be selected by setting SW1 DIP switches according to the following table. 
Mode 
SW1-1 
SW1-2 
SW1-3 
SW1-4 
SW1-5 
SW1-6 
SW1-7 
SW1-8 
SW1-9 
SW1-10 
CURRENT 
X 
X 
X 
X 
OFF 
ON 
X 
X 
X 
X 
DUTY CYCLE 
X 
X 
ON 
OFF 
OFF 
OFF 
X 
X 
X 
X 
VOLTAGE 
X 
X 
OFF 
OFF 
OFF 
OFF 
X 
X 
X 
X 
IR COMPENSATION* 
X 
X 
OFF 
OFF 
OFF 
OFF 
X 
X 
X 
X 
HALL VELOCITY 
X 
X 
ON 
ON 
OFF 
OFF 
ON 
X 
X 
X 
ENCODER VELOCITY 
X 
X 
OFF 
ON 
OFF 
OFF 
X 
X 
X 
X 
TACHOMETER 
X 
X 
X 
X 
ON 
OFF 
X 
X 
X 
X 
X = does not affect mode 
* IR Comp Mode requires the addition of an IR Comp resistor RF1 on the PCB. 
Input Command Type Selection Table 
The input command type can be selected by setting SW2 DIP switches according to the following table. 
SW2 
Switch 
Description 
Setting 
On 
Off 
1 
Wigwag / Single-Ended Command Input 
Wigwag 
Single-ended 
2 
3-Wire / 2-Wire External Potentiometer Command Source 
3-Wire 
2-Wire** 
3 
Standard / Inverted Inputs 
Standard 
Inverted Inputs 
4 
Half Speed Reverse 
Half Speed 
Same Speed 
**When 2-Wire is selected, Pot High (pin 3) becomes disabled. As an additional protection in 2-Wire setting, whenever the command input exceeds the acceptable range (0-5V or 0-5kΩ) the output command will be disabled until the command input is reset to a zero output command. 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
Current Loop Tuning Values 
SW3 DIP switches add additional resistance and capacitance to the current loop tuning circuitry. SW3 switches 1-5 add additional parallel capacitance to the current loop integrator capacitor, and SW3 switches 6-10 add additional series resistance to the current loop gain resistor (see Block Diagram). Capacitance and resistance values are given in the tables below along with the appropriate DIP switch settings. 
SW3 
Switch 
Additional Current Loop Integrator Capacitance (μF) 
SHORT 
.082 
.077 
.072 
.067 
.062 
.057 
.052 
.047 
.035 
.030 
.025 
.020 
.015 
.010 
.005 
OPEN 
1 
ON 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
2 
ON 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
3 
ON 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
4 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
5 
ON 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
SW3 
Switch 
Additional Current Loop Gain Resistance (kΩ) 
0 
10 
20 
30 
40 
50 
60 
70 
80 
90 
100 
110 
120 
130 
140 
150 
6 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
7 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
8 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
9 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
10 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
Switch (continued) 
160 
170 
180 
190 
200 
210 
220 
230 
240 
250 
260 
270 
280 
290 
300 
310 
6 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
ON 
OFF 
7 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
ON 
ON 
OFF 
OFF 
8 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
9 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
ON 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
10 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
OFF 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
Potentiometer Functions 
Potentiometer 
Description 
Turning CW 
Pot 1 
Loop gain adjustment in duty cycle and velocity modes. Turn this pot fully CCW in current mode. 
Increases loop gain 
Pot 2 
Current limit. This potentiometer adjusts both the continuous and peak current limit while maintaining the continuous to peak ratio (~64%). 
Increases current limit 
Pot 3 
Reference in gain. This potentiometer adjusts the ratio between input signal and output variables (voltage, current, and velocity). 
Increases reference input gain 
Pot 4 
Test/Offset. Used to adjust any imbalance in the input signal or in the drive. When SW1-1 (DIP switch) is ON, the sensitivity of this pot is greatly increased allowing it to be used as an on-board signal source for testing purposes. 
Zero speed setting is at the midpoint of this 14-turn pot. 
Pot 5 
Ramp Time. Sets the ramp time for the command input signal. 
Decreases ramp time (faster response time) 
Pot 6 
Deadband. Adjusts the amount of Deadband up to 30% of the command range. 
Decreases deadband 
(quicker response to commands) 
Note: Potentiometers are approximately linear and have 12 active turns plus 1 inactive turn on each end. 
Ramping (Pot 5): 
The built-in ramp circuit allows the command input to be ramped linearly. This feature is activated by setting SW1-10 = ON. The ramp time can be set for up to 20 seconds in reaching the max command by adjusting Pot 5 fully counter-clockwise. Ramping rates are linear with respect to time and apply to both directions of motion. For example, if the single-ended command input is only 2.5 Volts, the time to ramp to this voltage would be half the time to ramp to 5 Volts. 
Deadband (Pot 6): 
Deadband is adjustable through the use of the Deadband Pot for up to 30% of the command range in each direction. Commands within the set Deadband range will have no effect on the output. Once the command is beyond the Deadband, the drive will begin to output power to the motor. The Deadband will have an offset effect on the rest of the command range. Therefore, to reach the maximum command would require increasing the Reference Input Gain (Pot3). 
Current Limit Adjustments: 
These amplifiers feature separate peak and continuous current limits. The current limit adjustment Pot 2 adjusts both peak and continuous current limit at the same time. Pot 2 has 12 active turns and one inactive turn on each end and is approximately linear. Thus, to adjust the current limit turn the potentiometer counter-clockwise to zero, then turn clockwise to the appropriate value. 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
Through-hole Components† 
Location 
Description 
CF2* 
Velocity Loop Integrator. Through-hole capacitor that can be added for more precise velocity loop tuning. See section below on Tuning with Through-hole components for more details. 
CF1* 
Current Loop Integrator. Through-hole capacitor that can be added for more precise current loop tuning. See section below on Tuning with Through-hole components for more details. 
RF2* 
Tachometer Gain Scaling. Through-hole resistor that can be added to change the gain of the tachometer input. See section below on Tachometer Gain for more details. 
RF1* 
IR Compensation Scaling. Through-hole resistor that can be added to configure the amplifier for IR Compensation mode. See section below on IR Compensation Notes for more details. 
Tuning With Through-hole Components 
In general, the drive will not need to be further tuned with through-hole components. However, for applications requiring more precise tuning than what is offered by the potentiometers and DIP switches, the drive can be manually modified with through- hole capacitors as denoted in the above table. By default, the through-hole locations are not populated when the drive is shipped. Before attempting to add through-hole components to the board, consult the section on loop tuning in the installation notes on the manufacturer’s website. A general rule of thumb to follow when adding through-hole components is: 
• A larger capacitor value will increase the integration time, and therefore create a slower response time. 
Proper tuning using the through-hole components will require careful observation of the loop response on a digital oscilloscope to find the optimal through-hole component values for the specific application. 
Tachometer Gain 
Some applications may require an increase in the gain of the tachometer input signal. This occurrence will be most common in designs where the tachometer input has a low voltage to RPM scaling ratio. The drive offers a through-hole location listed in the above table where a resistor can be added to increase the tachometer gain. Use the drive’s block diagram to determine an appropriate resistor value. 
IR Compensation 
For applications that will use IR Compensation mode, a resistor can be added to the location named in the table above. The combination of the added resistor and correct DIP switch settings will configure the amplifier for IR Compensation mode. While in IR Compensation mode, the amplifier will adjust the duty cycle to compensate for changes in the output current. Consult the amplifier’s functional block diagram and the manufacturer’s website for more information. 
†NOTE: DAMAGE DONE TO THE DRIVE WHILE PERFORMING THESE MODIFICATIONS WILL VOID THE WARRANTY. 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
MECHANICAL INFORMATION 
I/O - Signal Connector 
Connector Information 
23-pin, AMPSEAL connector 
Mating Connector 
Details 
TE Connectivity: Housing P/N 770680-1; Socket Contacts P/N 770854-3 (loose); Seal Plug P/N 770678-1; Crimp Tool P/N 58529-1 
Included with Drive 
No 
1THROTTLE IN15HALL 316SPEED/COMMAND LIMIT2SIGNAL GROUND3POT HIGH4POT LOW5POWER GROUND6KEYSWITCH7BRAKE8BRAKE RETURN14HALL 213HALL 112INHIBIT/ENABLE11REVERSE10FORWARD9SIGNAL GROUND17VELOCITY MONITOR18FAULT OUT19DC BUS CURRENT MONITOR20ENCODER A21ENCODER B22+5V OUT23TACH 
MOTOR POWER - Power Connector 
Connector Information 
Three individual M6 threaded terminal 
Mating Connector 
Details 
M6 screw or bolt with washer 
Included with Drive 
Yes 
POWER - Power Connector 
Connector Information 
Two individual M6 threaded terminal 
Mating Connector 
Details 
M6 screw or bolt with washer 
Included with Drive 
Yes 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
WIRING DIAGRAM 
MotorEncoderHall SensorsKeyswitch InputKeyswitchReverseForwardInhibitBrake ReturnMain ContactorPower FuseControl FuseBatt+ Batt- / Power GNDBrakeMotor AMotor BMotor CHall 1*+5V SupplyHall 3Hall 2Power GNDEncoder AEncoder B*+5V SupplyFault OutEM BrakePot LowSpeed/Command LimitPot HighBattery 1TachTach - Tach Return / Power GNDThrottle PotSpeed Limit PotThrottle InputNOTE: All Feedback cannot be supported at one time*+5V Supply is only one connection pinON board Status LEDCurrent Monitor or DC Bus CurrentVUdCurrentVelocity MonitorIsolation (on 200V drives) Battery 2 or DC-DC ConverterPower GNDKeyswitch RelayVUdSpeedChassis GNDPower GNDFuseSignal GroundLED+5VDC500 ohm 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
MOUNTING DIMENSIONS 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:
M/V™ Series Servo Drive AVB100C200 
PART NUMBERING INFORMATION 
C200100Peak CurrentBrushless MotorB: Motor TypeMaximum peak current rating in AmpsVStandard AnalogBlank: Drive TypeV:Vehicle (0-5V, 0-5K) ABPeak/Continuous RatioContinuous = ~0.6·PeakA: Continuous = PeakC: Maximum Voltage54V Over-Voltage060: 88V Over-Voltage100: 190V Over-Voltage200: Analog Servo Drive 
ADVANCED Motion Controls servo drives are available in many configurations. Note that not all possible part number combinations are offered as standard drives. All models listed in the selection tables of the website are readily available, standard product offerings. 
ADVANCED Motion Controls also has the capability to promptly develop and deliver specified products for OEMs with volume requests. Our Applications and Engineering Departments will work closely with your design team through all stages of development in order to provide the best servo drive solution for your system. Equipped with on-site manufacturing for quick- turn customs capabilities, ADVANCED Motion Controls utilizes our years of engineering and manufacturing expertise to decrease your costs and time-to-market while increasing system quality and reliability. 
Examples of Customized Products 
 Integration of Drive into Motor Housing 
 Integrate OEM Circuitry onto Drive PCB 
 Mount OEM PCB onto Drive Without Cables 
 Custom Control Loop Tuned to Motor Characteristics 
 Multi-axis Configuration for Compact System 
 Custom I/O Interface for System Compatibility 
 Custom PCB and Baseplate for Optimized Footprint 
 Preset Switches and Pots to Reduce User Setup 
 RTV/Epoxy Components for High Vibration 
 Optimized Switching Frequency 
 OEM Specified Connectors for Instant Compatibility 
 Ramped Velocity Command for Smooth Acceleration 
 OEM Specified Silkscreen for Custom Appearance 
 Remove Unused Features to Reduce OEM Cost 
 Increased Thermal Limits for High Temp. Operation 
 Application Specific Current and Voltage Limits 
Feel free to contact Applications Engineering for further information and details. 
All specifications in this document are subject to change without written notice. Actual product may differ from pictures provided in this document. 
ELECTROMATE 
Toll Free Phone (877) SERVO98 
Toll Free Fax (877) SERV099 
www.electromate.com 
sales@electromate.com 
Sold & Serviced By:

More Related Content

What's hot

Advanced motion controls b30a40
Advanced motion controls b30a40Advanced motion controls b30a40
Advanced motion controls b30a40Electromate
 
Advanced motion controls b100a40
Advanced motion controls b100a40Advanced motion controls b100a40
Advanced motion controls b100a40Electromate
 
Advanced motion controls b60a40ac
Advanced motion controls b60a40acAdvanced motion controls b60a40ac
Advanced motion controls b60a40acElectromate
 
Advanced motion controls ab100c200
Advanced motion controls ab100c200Advanced motion controls ab100c200
Advanced motion controls ab100c200Electromate
 
Advanced motion controls be25a20i
Advanced motion controls be25a20iAdvanced motion controls be25a20i
Advanced motion controls be25a20iElectromate
 
Advanced motion controls be25a20fac
Advanced motion controls be25a20facAdvanced motion controls be25a20fac
Advanced motion controls be25a20facElectromate
 
Advanced motion controls azxbe6c20
Advanced motion controls azxbe6c20Advanced motion controls azxbe6c20
Advanced motion controls azxbe6c20Electromate
 
Advanced motion controls azbh40a8
Advanced motion controls azbh40a8Advanced motion controls azbh40a8
Advanced motion controls azbh40a8Electromate
 
Advanced motion controls ab200a100
Advanced motion controls ab200a100Advanced motion controls ab200a100
Advanced motion controls ab200a100Electromate
 
Advanced motion controls azxbh6c20
Advanced motion controls azxbh6c20Advanced motion controls azxbh6c20
Advanced motion controls azxbh6c20Electromate
 
Advanced motion controls azbh25a20
Advanced motion controls azbh25a20Advanced motion controls azbh25a20
Advanced motion controls azbh25a20Electromate
 
Advanced motion controls b40a40
Advanced motion controls b40a40Advanced motion controls b40a40
Advanced motion controls b40a40Electromate
 
Advanced motion controls be40a20i
Advanced motion controls be40a20iAdvanced motion controls be40a20i
Advanced motion controls be40a20iElectromate
 
Advanced motion controls be30a8
Advanced motion controls be30a8Advanced motion controls be30a8
Advanced motion controls be30a8Electromate
 
Advanced motion controls azbh10a20
Advanced motion controls azbh10a20Advanced motion controls azbh10a20
Advanced motion controls azbh10a20Electromate
 
Advanced motion controls azb20a8
Advanced motion controls azb20a8Advanced motion controls azb20a8
Advanced motion controls azb20a8Electromate
 
Advanced motion controls b30a40ac
Advanced motion controls b30a40acAdvanced motion controls b30a40ac
Advanced motion controls b30a40acElectromate
 
Advanced motion controls be25a20ac
Advanced motion controls be25a20acAdvanced motion controls be25a20ac
Advanced motion controls be25a20acElectromate
 
Advanced motion controls b100a40ac
Advanced motion controls b100a40acAdvanced motion controls b100a40ac
Advanced motion controls b100a40acElectromate
 
Advanced motion controls azbh20a8
Advanced motion controls azbh20a8Advanced motion controls azbh20a8
Advanced motion controls azbh20a8Electromate
 

What's hot (20)

Advanced motion controls b30a40
Advanced motion controls b30a40Advanced motion controls b30a40
Advanced motion controls b30a40
 
Advanced motion controls b100a40
Advanced motion controls b100a40Advanced motion controls b100a40
Advanced motion controls b100a40
 
Advanced motion controls b60a40ac
Advanced motion controls b60a40acAdvanced motion controls b60a40ac
Advanced motion controls b60a40ac
 
Advanced motion controls ab100c200
Advanced motion controls ab100c200Advanced motion controls ab100c200
Advanced motion controls ab100c200
 
Advanced motion controls be25a20i
Advanced motion controls be25a20iAdvanced motion controls be25a20i
Advanced motion controls be25a20i
 
Advanced motion controls be25a20fac
Advanced motion controls be25a20facAdvanced motion controls be25a20fac
Advanced motion controls be25a20fac
 
Advanced motion controls azxbe6c20
Advanced motion controls azxbe6c20Advanced motion controls azxbe6c20
Advanced motion controls azxbe6c20
 
Advanced motion controls azbh40a8
Advanced motion controls azbh40a8Advanced motion controls azbh40a8
Advanced motion controls azbh40a8
 
Advanced motion controls ab200a100
Advanced motion controls ab200a100Advanced motion controls ab200a100
Advanced motion controls ab200a100
 
Advanced motion controls azxbh6c20
Advanced motion controls azxbh6c20Advanced motion controls azxbh6c20
Advanced motion controls azxbh6c20
 
Advanced motion controls azbh25a20
Advanced motion controls azbh25a20Advanced motion controls azbh25a20
Advanced motion controls azbh25a20
 
Advanced motion controls b40a40
Advanced motion controls b40a40Advanced motion controls b40a40
Advanced motion controls b40a40
 
Advanced motion controls be40a20i
Advanced motion controls be40a20iAdvanced motion controls be40a20i
Advanced motion controls be40a20i
 
Advanced motion controls be30a8
Advanced motion controls be30a8Advanced motion controls be30a8
Advanced motion controls be30a8
 
Advanced motion controls azbh10a20
Advanced motion controls azbh10a20Advanced motion controls azbh10a20
Advanced motion controls azbh10a20
 
Advanced motion controls azb20a8
Advanced motion controls azb20a8Advanced motion controls azb20a8
Advanced motion controls azb20a8
 
Advanced motion controls b30a40ac
Advanced motion controls b30a40acAdvanced motion controls b30a40ac
Advanced motion controls b30a40ac
 
Advanced motion controls be25a20ac
Advanced motion controls be25a20acAdvanced motion controls be25a20ac
Advanced motion controls be25a20ac
 
Advanced motion controls b100a40ac
Advanced motion controls b100a40acAdvanced motion controls b100a40ac
Advanced motion controls b100a40ac
 
Advanced motion controls azbh20a8
Advanced motion controls azbh20a8Advanced motion controls azbh20a8
Advanced motion controls azbh20a8
 

Viewers also liked

Macron dynamics msa_r15_specsheet
Macron dynamics msa_r15_specsheetMacron dynamics msa_r15_specsheet
Macron dynamics msa_r15_specsheetElectromate
 
Untitled Presentation
Untitled PresentationUntitled Presentation
Untitled PresentationFrankSibbel
 
Advanced motion controls b060a400ac
Advanced motion controls b060a400acAdvanced motion controls b060a400ac
Advanced motion controls b060a400acElectromate
 
Team Two Unit 04-Final V2
Team Two Unit 04-Final V2Team Two Unit 04-Final V2
Team Two Unit 04-Final V2Keith Mikas
 
CVI Distribution Center
CVI Distribution CenterCVI Distribution Center
CVI Distribution CenterMegan Burke
 
Advanced motion controls dprnlie 015a400
Advanced motion controls dprnlie 015a400Advanced motion controls dprnlie 015a400
Advanced motion controls dprnlie 015a400Electromate
 
anth490_trauma:recovery_finalpaper
anth490_trauma:recovery_finalpaperanth490_trauma:recovery_finalpaper
anth490_trauma:recovery_finalpaperDrew Carey
 
2014-15 TREKK Annual Report Highlights
2014-15 TREKK Annual Report Highlights2014-15 TREKK Annual Report Highlights
2014-15 TREKK Annual Report Highlightstrekkcanada
 
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...Serious Detecting
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9Danilo Centazzo
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11Danilo Centazzo
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12Danilo Centazzo
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13Danilo Centazzo
 

Viewers also liked (15)

Macron dynamics msa_r15_specsheet
Macron dynamics msa_r15_specsheetMacron dynamics msa_r15_specsheet
Macron dynamics msa_r15_specsheet
 
Untitled Presentation
Untitled PresentationUntitled Presentation
Untitled Presentation
 
118
118118
118
 
Advanced motion controls b060a400ac
Advanced motion controls b060a400acAdvanced motion controls b060a400ac
Advanced motion controls b060a400ac
 
Team Two Unit 04-Final V2
Team Two Unit 04-Final V2Team Two Unit 04-Final V2
Team Two Unit 04-Final V2
 
CVI Distribution Center
CVI Distribution CenterCVI Distribution Center
CVI Distribution Center
 
Advanced motion controls dprnlie 015a400
Advanced motion controls dprnlie 015a400Advanced motion controls dprnlie 015a400
Advanced motion controls dprnlie 015a400
 
anth490_trauma:recovery_finalpaper
anth490_trauma:recovery_finalpaperanth490_trauma:recovery_finalpaper
anth490_trauma:recovery_finalpaper
 
2014-15 TREKK Annual Report Highlights
2014-15 TREKK Annual Report Highlights2014-15 TREKK Annual Report Highlights
2014-15 TREKK Annual Report Highlights
 
Portfolio2
Portfolio2Portfolio2
Portfolio2
 
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...
Instruction Manual Minelab GPZ 7000 Metal Detector Portuguese Language 4901 0...
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 9
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 11
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 12
 
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13
Scienza delle Costruzioni - Esercizi by Danilo Centazzo - parte 13
 

Similar to M/VTM Series Servo Drive Specs and Features

Advanced motion controls 30a20ac
Advanced motion controls 30a20acAdvanced motion controls 30a20ac
Advanced motion controls 30a20acElectromate
 
Advanced motion controls azbh60a8
Advanced motion controls azbh60a8Advanced motion controls azbh60a8
Advanced motion controls azbh60a8Electromate
 
Advanced motion controls 100a25
Advanced motion controls 100a25Advanced motion controls 100a25
Advanced motion controls 100a25Electromate
 
Advanced motions control 16a20ac
Advanced motions control 16a20acAdvanced motions control 16a20ac
Advanced motions control 16a20acElectromate
 
Advanced motion controls b40a40ac
Advanced motion controls b40a40acAdvanced motion controls b40a40ac
Advanced motion controls b40a40acElectromate
 
Advanced motion controls 100a40
Advanced motion controls 100a40Advanced motion controls 100a40
Advanced motion controls 100a40Electromate
 
Advanced motion controls azb40a8
Advanced motion controls azb40a8Advanced motion controls azb40a8
Advanced motion controls azb40a8Electromate
 
Advanced motion controls azbe40a8
Advanced motion controls azbe40a8Advanced motion controls azbe40a8
Advanced motion controls azbe40a8Electromate
 
Advanced motion controls be40a8i
Advanced motion controls be40a8iAdvanced motion controls be40a8i
Advanced motion controls be40a8iElectromate
 
Advanced motion controls 30a8
Advanced motion controls 30a8Advanced motion controls 30a8
Advanced motion controls 30a8Electromate
 
Advanced motion controls sx30a8
Advanced motion controls sx30a8Advanced motion controls sx30a8
Advanced motion controls sx30a8Electromate
 
Advanced motion controls az60a8
Advanced motion controls az60a8Advanced motion controls az60a8
Advanced motion controls az60a8Electromate
 
Advanced motion controls be30a8i
Advanced motion controls be30a8iAdvanced motion controls be30a8i
Advanced motion controls be30a8iElectromate
 
Advanced motion controls b25a20ac
Advanced motion controls b25a20acAdvanced motion controls b25a20ac
Advanced motion controls b25a20acElectromate
 
Advanced motion controls b100a400ac
Advanced motion controls b100a400acAdvanced motion controls b100a400ac
Advanced motion controls b100a400acElectromate
 

Similar to M/VTM Series Servo Drive Specs and Features (15)

Advanced motion controls 30a20ac
Advanced motion controls 30a20acAdvanced motion controls 30a20ac
Advanced motion controls 30a20ac
 
Advanced motion controls azbh60a8
Advanced motion controls azbh60a8Advanced motion controls azbh60a8
Advanced motion controls azbh60a8
 
Advanced motion controls 100a25
Advanced motion controls 100a25Advanced motion controls 100a25
Advanced motion controls 100a25
 
Advanced motions control 16a20ac
Advanced motions control 16a20acAdvanced motions control 16a20ac
Advanced motions control 16a20ac
 
Advanced motion controls b40a40ac
Advanced motion controls b40a40acAdvanced motion controls b40a40ac
Advanced motion controls b40a40ac
 
Advanced motion controls 100a40
Advanced motion controls 100a40Advanced motion controls 100a40
Advanced motion controls 100a40
 
Advanced motion controls azb40a8
Advanced motion controls azb40a8Advanced motion controls azb40a8
Advanced motion controls azb40a8
 
Advanced motion controls azbe40a8
Advanced motion controls azbe40a8Advanced motion controls azbe40a8
Advanced motion controls azbe40a8
 
Advanced motion controls be40a8i
Advanced motion controls be40a8iAdvanced motion controls be40a8i
Advanced motion controls be40a8i
 
Advanced motion controls 30a8
Advanced motion controls 30a8Advanced motion controls 30a8
Advanced motion controls 30a8
 
Advanced motion controls sx30a8
Advanced motion controls sx30a8Advanced motion controls sx30a8
Advanced motion controls sx30a8
 
Advanced motion controls az60a8
Advanced motion controls az60a8Advanced motion controls az60a8
Advanced motion controls az60a8
 
Advanced motion controls be30a8i
Advanced motion controls be30a8iAdvanced motion controls be30a8i
Advanced motion controls be30a8i
 
Advanced motion controls b25a20ac
Advanced motion controls b25a20acAdvanced motion controls b25a20ac
Advanced motion controls b25a20ac
 
Advanced motion controls b100a400ac
Advanced motion controls b100a400acAdvanced motion controls b100a400ac
Advanced motion controls b100a400ac
 

More from Electromate

Automated screw thread quality checking using SMAC LAR55 actuator new produc...
Automated screw thread quality checking using SMAC LAR55 actuator  new produc...Automated screw thread quality checking using SMAC LAR55 actuator  new produc...
Automated screw thread quality checking using SMAC LAR55 actuator new produc...Electromate
 
An overview of the various kinematic models in both parallel and serial robot...
An overview of the various kinematic models in both parallel and serial robot...An overview of the various kinematic models in both parallel and serial robot...
An overview of the various kinematic models in both parallel and serial robot...Electromate
 
Galil motion control robotic symposium presentation-linear motion from non-li...
Galil motion control robotic symposium presentation-linear motion from non-li...Galil motion control robotic symposium presentation-linear motion from non-li...
Galil motion control robotic symposium presentation-linear motion from non-li...Electromate
 
Advanced motion controls robotics symposium presentation-open standard tools ...
Advanced motion controls robotics symposium presentation-open standard tools ...Advanced motion controls robotics symposium presentation-open standard tools ...
Advanced motion controls robotics symposium presentation-open standard tools ...Electromate
 
Maxon motor ag robotic symposium presentation-impedance control overview and ...
Maxon motor ag robotic symposium presentation-impedance control overview and ...Maxon motor ag robotic symposium presentation-impedance control overview and ...
Maxon motor ag robotic symposium presentation-impedance control overview and ...Electromate
 
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...Electromate
 
Harmonic drive llc robotics symposium presentation-designing from the inside ...
Harmonic drive llc robotics symposium presentation-designing from the inside ...Harmonic drive llc robotics symposium presentation-designing from the inside ...
Harmonic drive llc robotics symposium presentation-designing from the inside ...Electromate
 
Thomson Linear Dual Shaft Rail 2DA Modular Specs
Thomson Linear Dual Shaft Rail 2DA Modular SpecsThomson Linear Dual Shaft Rail 2DA Modular Specs
Thomson Linear Dual Shaft Rail 2DA Modular SpecsElectromate
 
Thomson Linear 2DA QuickSlide System with Brake
Thomson Linear 2DA QuickSlide System with BrakeThomson Linear 2DA QuickSlide System with Brake
Thomson Linear 2DA QuickSlide System with BrakeElectromate
 
Thomson Linear RoundRail 2CA Web Universal Carriage Specs
Thomson Linear RoundRail 2CA Web Universal Carriage SpecsThomson Linear RoundRail 2CA Web Universal Carriage Specs
Thomson Linear RoundRail 2CA Web Universal Carriage SpecsElectromate
 
Thomson Linear RoundRail 1VC Double End Supported Specs
Thomson Linear RoundRail 1VC Double End Supported SpecsThomson Linear RoundRail 1VC Double End Supported Specs
Thomson Linear RoundRail 1VC Double End Supported SpecsElectromate
 
Thomson Linear RoundRail 2CA Web Flanged Carriage Specs
Thomson Linear RoundRail 2CA Web Flanged Carriage SpecsThomson Linear RoundRail 2CA Web Flanged Carriage Specs
Thomson Linear RoundRail 2CA Web Flanged Carriage SpecsElectromate
 
Thomson Linear RoundRail Twin Shaft Web 2CA
Thomson Linear RoundRail Twin Shaft Web 2CAThomson Linear RoundRail Twin Shaft Web 2CA
Thomson Linear RoundRail Twin Shaft Web 2CAElectromate
 
Thomson Linear RoundRail 1VC Double Unsupported Specs
Thomson Linear RoundRail 1VC Double Unsupported SpecsThomson Linear RoundRail 1VC Double Unsupported Specs
Thomson Linear RoundRail 1VC Double Unsupported SpecsElectromate
 
Thomson Linear WhisperTrak Actuators
Thomson Linear WhisperTrak ActuatorsThomson Linear WhisperTrak Actuators
Thomson Linear WhisperTrak ActuatorsElectromate
 
Thomson T-Series Profile Rail
Thomson T-Series Profile RailThomson T-Series Profile Rail
Thomson T-Series Profile RailElectromate
 
Thomson Linear RoundRail Accessories Collapsable Bellows Specs
Thomson Linear RoundRail Accessories Collapsable Bellows SpecsThomson Linear RoundRail Accessories Collapsable Bellows Specs
Thomson Linear RoundRail Accessories Collapsable Bellows SpecsElectromate
 
Thomson Linear Roundrail Dual Shaft Rail 2DA Specs
Thomson Linear Roundrail Dual Shaft Rail 2DA SpecsThomson Linear Roundrail Dual Shaft Rail 2DA Specs
Thomson Linear Roundrail Dual Shaft Rail 2DA SpecsElectromate
 
Thomson Linear RoundRail Continuous Support 1PC Specs
Thomson Linear RoundRail Continuous Support 1PC SpecsThomson Linear RoundRail Continuous Support 1PC Specs
Thomson Linear RoundRail Continuous Support 1PC SpecsElectromate
 
Thomson Linear RoundRail Continuous Support 1PB Specs
Thomson Linear RoundRail Continuous Support 1PB SpecsThomson Linear RoundRail Continuous Support 1PB Specs
Thomson Linear RoundRail Continuous Support 1PB SpecsElectromate
 

More from Electromate (20)

Automated screw thread quality checking using SMAC LAR55 actuator new produc...
Automated screw thread quality checking using SMAC LAR55 actuator  new produc...Automated screw thread quality checking using SMAC LAR55 actuator  new produc...
Automated screw thread quality checking using SMAC LAR55 actuator new produc...
 
An overview of the various kinematic models in both parallel and serial robot...
An overview of the various kinematic models in both parallel and serial robot...An overview of the various kinematic models in both parallel and serial robot...
An overview of the various kinematic models in both parallel and serial robot...
 
Galil motion control robotic symposium presentation-linear motion from non-li...
Galil motion control robotic symposium presentation-linear motion from non-li...Galil motion control robotic symposium presentation-linear motion from non-li...
Galil motion control robotic symposium presentation-linear motion from non-li...
 
Advanced motion controls robotics symposium presentation-open standard tools ...
Advanced motion controls robotics symposium presentation-open standard tools ...Advanced motion controls robotics symposium presentation-open standard tools ...
Advanced motion controls robotics symposium presentation-open standard tools ...
 
Maxon motor ag robotic symposium presentation-impedance control overview and ...
Maxon motor ag robotic symposium presentation-impedance control overview and ...Maxon motor ag robotic symposium presentation-impedance control overview and ...
Maxon motor ag robotic symposium presentation-impedance control overview and ...
 
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...
Kollmorgen robotic symposium presentation-motor design impacts on the optimiz...
 
Harmonic drive llc robotics symposium presentation-designing from the inside ...
Harmonic drive llc robotics symposium presentation-designing from the inside ...Harmonic drive llc robotics symposium presentation-designing from the inside ...
Harmonic drive llc robotics symposium presentation-designing from the inside ...
 
Thomson Linear Dual Shaft Rail 2DA Modular Specs
Thomson Linear Dual Shaft Rail 2DA Modular SpecsThomson Linear Dual Shaft Rail 2DA Modular Specs
Thomson Linear Dual Shaft Rail 2DA Modular Specs
 
Thomson Linear 2DA QuickSlide System with Brake
Thomson Linear 2DA QuickSlide System with BrakeThomson Linear 2DA QuickSlide System with Brake
Thomson Linear 2DA QuickSlide System with Brake
 
Thomson Linear RoundRail 2CA Web Universal Carriage Specs
Thomson Linear RoundRail 2CA Web Universal Carriage SpecsThomson Linear RoundRail 2CA Web Universal Carriage Specs
Thomson Linear RoundRail 2CA Web Universal Carriage Specs
 
Thomson Linear RoundRail 1VC Double End Supported Specs
Thomson Linear RoundRail 1VC Double End Supported SpecsThomson Linear RoundRail 1VC Double End Supported Specs
Thomson Linear RoundRail 1VC Double End Supported Specs
 
Thomson Linear RoundRail 2CA Web Flanged Carriage Specs
Thomson Linear RoundRail 2CA Web Flanged Carriage SpecsThomson Linear RoundRail 2CA Web Flanged Carriage Specs
Thomson Linear RoundRail 2CA Web Flanged Carriage Specs
 
Thomson Linear RoundRail Twin Shaft Web 2CA
Thomson Linear RoundRail Twin Shaft Web 2CAThomson Linear RoundRail Twin Shaft Web 2CA
Thomson Linear RoundRail Twin Shaft Web 2CA
 
Thomson Linear RoundRail 1VC Double Unsupported Specs
Thomson Linear RoundRail 1VC Double Unsupported SpecsThomson Linear RoundRail 1VC Double Unsupported Specs
Thomson Linear RoundRail 1VC Double Unsupported Specs
 
Thomson Linear WhisperTrak Actuators
Thomson Linear WhisperTrak ActuatorsThomson Linear WhisperTrak Actuators
Thomson Linear WhisperTrak Actuators
 
Thomson T-Series Profile Rail
Thomson T-Series Profile RailThomson T-Series Profile Rail
Thomson T-Series Profile Rail
 
Thomson Linear RoundRail Accessories Collapsable Bellows Specs
Thomson Linear RoundRail Accessories Collapsable Bellows SpecsThomson Linear RoundRail Accessories Collapsable Bellows Specs
Thomson Linear RoundRail Accessories Collapsable Bellows Specs
 
Thomson Linear Roundrail Dual Shaft Rail 2DA Specs
Thomson Linear Roundrail Dual Shaft Rail 2DA SpecsThomson Linear Roundrail Dual Shaft Rail 2DA Specs
Thomson Linear Roundrail Dual Shaft Rail 2DA Specs
 
Thomson Linear RoundRail Continuous Support 1PC Specs
Thomson Linear RoundRail Continuous Support 1PC SpecsThomson Linear RoundRail Continuous Support 1PC Specs
Thomson Linear RoundRail Continuous Support 1PC Specs
 
Thomson Linear RoundRail Continuous Support 1PB Specs
Thomson Linear RoundRail Continuous Support 1PB SpecsThomson Linear RoundRail Continuous Support 1PB Specs
Thomson Linear RoundRail Continuous Support 1PB Specs
 

Recently uploaded

08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking MenDelhi Call girls
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationRadu Cotescu
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Miguel Araújo
 
Presentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreterPresentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreternaman860154
 
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...gurkirankumar98700
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024The Digital Insurer
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)Gabriella Davis
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationMichael W. Hawkins
 
IAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI SolutionsIAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI SolutionsEnterprise Knowledge
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...Martijn de Jong
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationSafe Software
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityPrincipled Technologies
 
CNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of ServiceCNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of Servicegiselly40
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Enterprise Knowledge
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Drew Madelung
 
Breaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountBreaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountPuma Security, LLC
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024Rafal Los
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024The Digital Insurer
 
Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024The Digital Insurer
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerThousandEyes
 

Recently uploaded (20)

08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men08448380779 Call Girls In Greater Kailash - I Women Seeking Men
08448380779 Call Girls In Greater Kailash - I Women Seeking Men
 
Scaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organizationScaling API-first – The story of a global engineering organization
Scaling API-first – The story of a global engineering organization
 
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
Mastering MySQL Database Architecture: Deep Dive into MySQL Shell and MySQL R...
 
Presentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreterPresentation on how to chat with PDF using ChatGPT code interpreter
Presentation on how to chat with PDF using ChatGPT code interpreter
 
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...
Kalyanpur ) Call Girls in Lucknow Finest Escorts Service 🍸 8923113531 🎰 Avail...
 
Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024Tata AIG General Insurance Company - Insurer Innovation Award 2024
Tata AIG General Insurance Company - Insurer Innovation Award 2024
 
A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)A Domino Admins Adventures (Engage 2024)
A Domino Admins Adventures (Engage 2024)
 
GenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day PresentationGenCyber Cyber Security Day Presentation
GenCyber Cyber Security Day Presentation
 
IAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI SolutionsIAC 2024 - IA Fast Track to Search Focused AI Solutions
IAC 2024 - IA Fast Track to Search Focused AI Solutions
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time AutomationFrom Event to Action: Accelerate Your Decision Making with Real-Time Automation
From Event to Action: Accelerate Your Decision Making with Real-Time Automation
 
Boost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivityBoost PC performance: How more available memory can improve productivity
Boost PC performance: How more available memory can improve productivity
 
CNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of ServiceCNv6 Instructor Chapter 6 Quality of Service
CNv6 Instructor Chapter 6 Quality of Service
 
Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...Driving Behavioral Change for Information Management through Data-Driven Gree...
Driving Behavioral Change for Information Management through Data-Driven Gree...
 
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
Strategies for Unlocking Knowledge Management in Microsoft 365 in the Copilot...
 
Breaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path MountBreaking the Kubernetes Kill Chain: Host Path Mount
Breaking the Kubernetes Kill Chain: Host Path Mount
 
The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024The 7 Things I Know About Cyber Security After 25 Years | April 2024
The 7 Things I Know About Cyber Security After 25 Years | April 2024
 
Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024Axa Assurance Maroc - Insurer Innovation Award 2024
Axa Assurance Maroc - Insurer Innovation Award 2024
 
Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024Partners Life - Insurer Innovation Award 2024
Partners Life - Insurer Innovation Award 2024
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 

M/VTM Series Servo Drive Specs and Features

  • 1. M/V™ Series Servo Drive AVB100C200 Description Power Range AVB100C200 servo amplifiers are designed to drive brushless DC motors at a high switching frequency for vehicle applications. It is fully protected against over- voltage, over-current, over-heating, under-voltage and short-circuits. This model interfaces with digital controllers or can be used as a stand-alone drive and requires only a single unregulated DC power supply or battery. A single red/green LED and a single digital output indicate operating status. Loop gain, current limit, input gain, offset, command ramping, deadband can be adjusted using 14-turn potentiometers. The offset adjusting potentiometer can also be used as an on-board input signal for testing purposes. It will accept tachometer input, quadrature encoder inputs, or Hall sensor inputs for velocity control. Peak Current 100 A Continuous Current 100 A Supply Voltage 40 - 175 VDC Features  Four Quadrant Regenerative Operation  Ramped Command Input Adjustment  Adjustable Deadband Range  Drive Brushed or Brushless Motors  Compact Size, High Power Density  Selectable 120/60 Hall Commutation Phasing  Offset Adjustment Potentiometer  Ingress Protection Rating: IP65  Electromagnetic Holding Brake Output  Selectable Inhibit/Enable Logic  Adjustable Current Limits  Multiple Modes of Operation MODES OF OPERATION  Current  Voltage  Duty Cycle (Open Loop)  IR Compensation  Velocity  Hall Velocity COMMAND SOURCE  0 - 5V Analog o Wigwag o Inverted  0 – 5 kΩ o 2-wire Pots o 3-wire Pots o Wigwag o Inverted FEEDBACK SUPPORTED  Halls  Incremental Encoder  Tachometer (±60 DC) INPUTS/OUTPUTS  Inhibit/Enable Input  Forward and Reverse Inputs  Push Brake Release Inputs  Speed Limit Pot Input  Current Monitor Output  Velocity Monitor Output  Fault Output COMPLIANCES & AGENCY APPROVALS  UL  cUL  RoHS  CE Pending ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 2. M/V™ Series Servo Drive AVB100C200 BLOCK DIAGRAM POT1VARIABLERC-BLOCKLOOP INTEGRATORVELOCITYCURRENT LOOPPOT6POT3 SW2-3 POT5 SW2-1SW2-2 SW1-1POT4SW1-4SW1-5SW1-320k10k..310kCW- + 10K- +20.8kPWM ANDCONTROLLOGIC10nF SW1-2 SW1-7Peak/Cont. CURRENTLIMIT100kP1-5PGNDSW3-1..55nF..82nFCF1*SW3-6..10DC-TO-DCSW1-9COMMANDLIMITERRAMP+5VISW2-4DEADBANDCW10K10k- + CW5k20k+5VIP1-12INH/ENABLE5k100k+5V-5V10kHALL/ENCCONV. 10k10kOFFINPUT COMMAND SELECTIONOFFONWIG-WAG INPUT DIRECTION2-WIRE POTENTIOMETERSW2SINGLE INPUT DIRECTION1OFFONONOFFON4FULL SPEED REVERSESTANDARD INPUTHALF SPEED REVERSE23-WIRE POTENTIOMETERINVERTED INPUT310k P1-15P1-20P1-13P1-14P1-21 10K P1-19 10k SW1-8SW1-6 SENSECURRENTCURRENTMONITORINTERNALCONVERTERDC-TO-DC P1-17 OFFN/AONOFFOFFONN/AONONOFFOFFOFF P1-23P1-7P1-22P1-8 10k10kQ2222220k+5VI+5VI50k HVIN BRAKE RF2* LIMITCWU31OFF=60ON=120U34RF1*IR-COMPENSATIONPOT2MOTOR AMAINH SELH-BRIDGEH1,H2,H3MCMOTOR C3-PhaseMOTOR BMB DEG ENC A,B2.2uFCF2* CURRENT100k0.47uFPGNDB+ B- AVB100C200 FUNCTIONAL BLOCK DIAGRAMKEYSWITCHP1-6HVINSW1-10CONVERSIONP1-1THROTTLEINPUTP1-16P1-100 to +/-30% SPEED/COMMAND LIMITFORWARDREF INLOOP GAINVELOCITYOFFONU20U32BROKEN LINE REPRESENTS 1000VAC OPTICAL ISOLATIONOFFSETTESTCWMax: 1.8s/VMin: 0.1s/VENC A,B+5VHE H3ENCAENCBH2H1INH/ENABLEDC-BUS CURRENTFAULT VOLTAGE FEEDBACKDRIVES ARE SHIPPED IN CURRENT MODE WITH MAXIMUM CURRENT SETTINGSLED GREEN -NORMAL OPERATION, LED RED -FAULTFOR OTHER SWITCH FUNCTIONS SEE SWITCH DESCRIPTIONRECOMMENDED SETTINGS FOR CURRENT MODE -POT1 FULLY CCW, POT3 FULLY CW* OPTIONAL USER INSTALLED THROUGH HOLE COMPONENTSDUTY CYCLE FEEDBACK MONITOR H1,H2,H3VELOCITY MODE SELECTOR+5VHE CURRENT LOOP OFF=VM VelDirCurr/Vel ON=CMCURRENT FEEDBACKSW1-5SW1-4 VELOCITY MONITOR MODE SELECTIONSW1-3P1-3POT-LOW (3mA)P1-4OFFOFFN/AOFFN/A -NOT APPLICABLEIR COMPENSATION** X -DEPENDENT ON APPLICATIONOFFENCODER VELOCITYCURRENTVOLTAGEHALL VELOCITYDUTY CYCLE BRAKE OUT (3A) TACH-IN+5VHE (250mA) BRAKE RETURN24V/200Hz PWM XXX SW1-7N/AXONOFFOFFOFFSW1-6OFFOFFONOFFP1-2SGNDREVERSEP1-11POT-HIGH (3mA) FAULTFAULT-OUTP1-18SGNDP1-9DIRECTIONLOGICN/AN/ATACHOMETERONXOFF** IR COMPENSATION MODE REQUIRES USER INSTALLED RESISTOR RF1 ON THE PCB Information on Approvals and Compliances US and Canadian safety compliance with UL 508c, the industrial standard for power conversion electronics. UL registered under file number E140173. Note that machine components compliant with UL are considered UL registered as opposed to UL listed as would be the case for commercial products. RoHS (Reduction of Hazardous Substances) is intended to prevent hazardous substances such as lead from being manufactured in electrical and electronic equipment. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 3. M/V™ Series Servo Drive AVB100C200 SPECIFICATIONS Power Specifications Description Units Value DC Supply Voltage Range VDC 40 - 175 DC Bus Over Voltage Limit VDC 190 DC Bus Under Voltage Limit VDC 36 Logic Supply Voltage (Keyswitch) VDC 40 - 175 Maximum Peak Output Current A 100 Maximum Continuous Output Current A 100 Max. Continuous Output Power W 16625 Max. Continuous Power Dissipation W 875 Internal Bus Capacitance μF 3840 Minimum Load Inductance (Line-To-Line) 1 μH 300 Switching Frequency kHz 14.5 Maximum Output PWM Duty Cycle % 100 Control Specifications Description Units Value Command Sources - 0 - 5 V Analog, 0 - 5 kΩ Feedback Supported - Halls, Incremental Encoder, Tachometer (±60 VDC) Commutation Methods - Trapezoidal Modes of Operation - Current, Voltage, IR Compensation, Duty Cycle, Hall Velocity, Velocity Motors Supported - Single Phase (Brushed, Voice Coil, Inductive Load), Three Phase (Brushless) Hardware Protection - Over Current, Over Temperature, Over Voltage, Short Circuit (Phase-Phase & Phase-Ground), Under Voltage Mechanical Specifications Description Units Value Agency Approvals - cUL, UL, RoHS, CE Pending Size (H x W x D) mm (in) 203.2 x 139.7 x 59.7 (8.0 x 5.5 x 2.4) Size (H x W x D) with 23-pin mating connector installed mm (in) 203.2 x 139.7 x 74.0 (8.0 x 5.5 x 2.9) Weight g (oz) 1638.60 (57.80) Heatsink (Base) Temperature Range2 °C (°F) 0 - 75 (32 - 167) Storage Temperature Range °C (°F) -20 - 85 (-4 - 185) Cooling System2 - Natural Convection Form Factor - Vehicle Mount IP Rating - 65 I/O Connector - 23-pin, AMPSEAL connector MOTOR POWER Connector - 3 Individual M6 threaded terminals POWER Connector - 2 Individual M6 threaded terminals Notes 1. Lower inductance is acceptable for bus voltages well below maximum. Use external inductance to meet requirements. 2. Additional cooling and/or heatsink is required to achieve rated performance. Thermal grease recommended between baseplate and external heatsink. Mating Connector Kit Mating connector housing, socket contacts, and seal plugs can be ordered as a kit using ADVANCED Motion Controls’ part number KC-23AMPSEAL01. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 4. M/V™ Series Servo Drive AVB100C200 PIN FUNCTIONS I/O - Signal Connector Pin Name Description / Notes I/O 1 THROTTLE IN 0 – 5 V reference command input or 0 – 5 kΩ resistance command input. Do not perform peak-to-peak current commands. I 2 SIGNAL GROUND SGND 3 POT HIGH +5V @ 3 mA. For customer use. Reference to Signal Ground. Becomes disabled when 2- wire pot command is selected (SW2-2 = OFF) O 4 POT LOW Signal Ground. SGND 5 POWER GROUND Power Ground PGND 6 KEYSWITCH Master switch for the drive. Logic power input supply. Voltage range equal to DC Supply Voltage Range (see specifications table). This must be ON for the drive to function. Reference to Power Ground. I 7 BRAKE Brake Output. This output will energize when the Keyswitch is ON and the drive is enabled. Outputs up to 24V, 3A max. Reference to Brake Return. O 8 BRAKE RETURN Brake Return I 9 SIGNAL GROUND Signal Ground SGND 10 FORWARD When not in Wigwag mode, with only one input active at a time, Forward and Reverse inputs select the direction of motion. Pull low (Signal Ground) to activate. When the drive is disabled or faulted, activating both Pins at the same time will energize Brake Output (Pin7). Activating only one input when the drive is disabled or faulted will not energize Brake Output. I 11 REVERSE I 12 INHIBIT/ENABLE This TTL level input signal turns off all power devices of the “H” bridge when pulled to Signal Ground with SW1-9=ON. If SW1-9=OFF, pulling this pin to Signal Ground will enable the drive. I 13 HALL 1 Hall sensor inputs. Logic levels: maximum low level input is 1.5 VDC, minimum high level input is 3.5 VDC. Reference to Power Ground. I 14 HALL 2 I 15 HALL 3 I 16 SPEED/COMMAND LIMIT Sets the maximum speed/command limit (command type dependent on the mode of operation). Voltage value at this pin will act as the upper limit available for the throttle input command I 17 VELOCITY MONITOR 1V = 21.5 kHz Encoder Frequency; 1V = 100 Hz Hall Sensor Frequency. Reference to Signal Ground. O 18 FAULT OUT This output activates during short circuit, over-voltage, under voltage, inhibit, over- temperature and power-on reset. A red LED also indicates a fault condition. Reference to Signal Ground. Can be used with an external voltage supply and LED for visual fault indication. O 19 DC BUS CURRENT MONITOR Scaling factor = 14.4 A/V. This output represents the actual power supply DC Bus current. Reference to Power Ground. O 20 ENCODER A Encoder Channel A. Reference to Power Ground. I 21 ENCODER B Encoder Channel B. Reference to Power Ground. I 22 +5V OUT +5V @ 150mA. For customer use. Reference to Power Ground. O 23 TACH Tachometer Input, 60k ohm input resistance, ± 60 V max. Reference to Power Ground. I MOTOR POWER - Power Connector Terminal Name Description / Notes I/O MA MOTOR A Motor Phase A O MB MOTOR B Motor Phase B O MC MOTOR C Motor Phase C O POWER - Power Connector Terminal Name Description / Notes I/O B- BATT - / POWER GROUND Power Ground PGND B+ BATT + DC Power Input. Battery Power. I ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 5. M/V™ Series Servo Drive AVB100C200 HARDWARE SETTINGS Switch Functions SW1 Switch Description Setting On Off 1 Test / Offset controls the sensitivity of the “offset” pot. This is used as an on-board reference signal in test mode. Test Offset 2 120/60 degree commutation phasing. 120 degree phasing 60 degree phasing 3 Mode Select. Refer to Mode Selection Table Duty-Cycle / Hall Voltage / Encoder 4 Mode Select. Refer to Mode Selection Table Hall / Encoder Duty-Cycle / Voltage 5 Mode Select. Refer to Mode Selection Table Tach Mode Other Modes 6 Mode Select. Refer to Mode Selection Table Current Mode Velocity Modes 7 Velocity Integrator Capacitor More Capacitance (ON for Hall Velocity Mode) Less Capacitance 8 Velocity Feedback Polarity (for Hall or Encoder Velocity Mode) One Direction Opposite Direction 9 Inhibit / Enable Logic Select Ground Inhibit pin to Inhibit Ground Inhibit enable motor outputs 10 Ramp Enable Enable Command Ramping No Command Ramping Mode Selection Table Operating modes can be selected by setting SW1 DIP switches according to the following table. Mode SW1-1 SW1-2 SW1-3 SW1-4 SW1-5 SW1-6 SW1-7 SW1-8 SW1-9 SW1-10 CURRENT X X X X OFF ON X X X X DUTY CYCLE X X ON OFF OFF OFF X X X X VOLTAGE X X OFF OFF OFF OFF X X X X IR COMPENSATION* X X OFF OFF OFF OFF X X X X HALL VELOCITY X X ON ON OFF OFF ON X X X ENCODER VELOCITY X X OFF ON OFF OFF X X X X TACHOMETER X X X X ON OFF X X X X X = does not affect mode * IR Comp Mode requires the addition of an IR Comp resistor RF1 on the PCB. Input Command Type Selection Table The input command type can be selected by setting SW2 DIP switches according to the following table. SW2 Switch Description Setting On Off 1 Wigwag / Single-Ended Command Input Wigwag Single-ended 2 3-Wire / 2-Wire External Potentiometer Command Source 3-Wire 2-Wire** 3 Standard / Inverted Inputs Standard Inverted Inputs 4 Half Speed Reverse Half Speed Same Speed **When 2-Wire is selected, Pot High (pin 3) becomes disabled. As an additional protection in 2-Wire setting, whenever the command input exceeds the acceptable range (0-5V or 0-5kΩ) the output command will be disabled until the command input is reset to a zero output command. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 6. M/V™ Series Servo Drive AVB100C200 Current Loop Tuning Values SW3 DIP switches add additional resistance and capacitance to the current loop tuning circuitry. SW3 switches 1-5 add additional parallel capacitance to the current loop integrator capacitor, and SW3 switches 6-10 add additional series resistance to the current loop gain resistor (see Block Diagram). Capacitance and resistance values are given in the tables below along with the appropriate DIP switch settings. SW3 Switch Additional Current Loop Integrator Capacitance (μF) SHORT .082 .077 .072 .067 .062 .057 .052 .047 .035 .030 .025 .020 .015 .010 .005 OPEN 1 ON ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF 2 ON ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF 3 ON ON ON ON ON OFF OFF OFF OFF ON ON ON ON OFF OFF OFF OFF 4 ON ON ON ON ON ON ON ON ON OFF OFF OFF OFF OFF OFF OFF OFF 5 ON OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF SW3 Switch Additional Current Loop Gain Resistance (kΩ) 0 10 20 30 40 50 60 70 80 90 100 110 120 130 140 150 6 ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF 7 ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF 8 ON ON ON ON OFF OFF OFF OFF ON ON ON ON OFF OFF OFF OFF 9 ON ON ON ON ON ON ON ON OFF OFF OFF OFF OFF OFF OFF OFF 10 ON ON ON ON ON ON ON ON ON ON ON ON ON ON ON ON Switch (continued) 160 170 180 190 200 210 220 230 240 250 260 270 280 290 300 310 6 ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF ON OFF 7 ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF ON ON OFF OFF 8 ON ON ON ON OFF OFF OFF OFF ON ON ON ON OFF OFF OFF OFF 9 ON ON ON ON ON ON ON ON OFF OFF OFF OFF OFF OFF OFF OFF 10 OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF OFF ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 7. M/V™ Series Servo Drive AVB100C200 Potentiometer Functions Potentiometer Description Turning CW Pot 1 Loop gain adjustment in duty cycle and velocity modes. Turn this pot fully CCW in current mode. Increases loop gain Pot 2 Current limit. This potentiometer adjusts both the continuous and peak current limit while maintaining the continuous to peak ratio (~64%). Increases current limit Pot 3 Reference in gain. This potentiometer adjusts the ratio between input signal and output variables (voltage, current, and velocity). Increases reference input gain Pot 4 Test/Offset. Used to adjust any imbalance in the input signal or in the drive. When SW1-1 (DIP switch) is ON, the sensitivity of this pot is greatly increased allowing it to be used as an on-board signal source for testing purposes. Zero speed setting is at the midpoint of this 14-turn pot. Pot 5 Ramp Time. Sets the ramp time for the command input signal. Decreases ramp time (faster response time) Pot 6 Deadband. Adjusts the amount of Deadband up to 30% of the command range. Decreases deadband (quicker response to commands) Note: Potentiometers are approximately linear and have 12 active turns plus 1 inactive turn on each end. Ramping (Pot 5): The built-in ramp circuit allows the command input to be ramped linearly. This feature is activated by setting SW1-10 = ON. The ramp time can be set for up to 20 seconds in reaching the max command by adjusting Pot 5 fully counter-clockwise. Ramping rates are linear with respect to time and apply to both directions of motion. For example, if the single-ended command input is only 2.5 Volts, the time to ramp to this voltage would be half the time to ramp to 5 Volts. Deadband (Pot 6): Deadband is adjustable through the use of the Deadband Pot for up to 30% of the command range in each direction. Commands within the set Deadband range will have no effect on the output. Once the command is beyond the Deadband, the drive will begin to output power to the motor. The Deadband will have an offset effect on the rest of the command range. Therefore, to reach the maximum command would require increasing the Reference Input Gain (Pot3). Current Limit Adjustments: These amplifiers feature separate peak and continuous current limits. The current limit adjustment Pot 2 adjusts both peak and continuous current limit at the same time. Pot 2 has 12 active turns and one inactive turn on each end and is approximately linear. Thus, to adjust the current limit turn the potentiometer counter-clockwise to zero, then turn clockwise to the appropriate value. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 8. M/V™ Series Servo Drive AVB100C200 Through-hole Components† Location Description CF2* Velocity Loop Integrator. Through-hole capacitor that can be added for more precise velocity loop tuning. See section below on Tuning with Through-hole components for more details. CF1* Current Loop Integrator. Through-hole capacitor that can be added for more precise current loop tuning. See section below on Tuning with Through-hole components for more details. RF2* Tachometer Gain Scaling. Through-hole resistor that can be added to change the gain of the tachometer input. See section below on Tachometer Gain for more details. RF1* IR Compensation Scaling. Through-hole resistor that can be added to configure the amplifier for IR Compensation mode. See section below on IR Compensation Notes for more details. Tuning With Through-hole Components In general, the drive will not need to be further tuned with through-hole components. However, for applications requiring more precise tuning than what is offered by the potentiometers and DIP switches, the drive can be manually modified with through- hole capacitors as denoted in the above table. By default, the through-hole locations are not populated when the drive is shipped. Before attempting to add through-hole components to the board, consult the section on loop tuning in the installation notes on the manufacturer’s website. A general rule of thumb to follow when adding through-hole components is: • A larger capacitor value will increase the integration time, and therefore create a slower response time. Proper tuning using the through-hole components will require careful observation of the loop response on a digital oscilloscope to find the optimal through-hole component values for the specific application. Tachometer Gain Some applications may require an increase in the gain of the tachometer input signal. This occurrence will be most common in designs where the tachometer input has a low voltage to RPM scaling ratio. The drive offers a through-hole location listed in the above table where a resistor can be added to increase the tachometer gain. Use the drive’s block diagram to determine an appropriate resistor value. IR Compensation For applications that will use IR Compensation mode, a resistor can be added to the location named in the table above. The combination of the added resistor and correct DIP switch settings will configure the amplifier for IR Compensation mode. While in IR Compensation mode, the amplifier will adjust the duty cycle to compensate for changes in the output current. Consult the amplifier’s functional block diagram and the manufacturer’s website for more information. †NOTE: DAMAGE DONE TO THE DRIVE WHILE PERFORMING THESE MODIFICATIONS WILL VOID THE WARRANTY. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 9. M/V™ Series Servo Drive AVB100C200 MECHANICAL INFORMATION I/O - Signal Connector Connector Information 23-pin, AMPSEAL connector Mating Connector Details TE Connectivity: Housing P/N 770680-1; Socket Contacts P/N 770854-3 (loose); Seal Plug P/N 770678-1; Crimp Tool P/N 58529-1 Included with Drive No 1THROTTLE IN15HALL 316SPEED/COMMAND LIMIT2SIGNAL GROUND3POT HIGH4POT LOW5POWER GROUND6KEYSWITCH7BRAKE8BRAKE RETURN14HALL 213HALL 112INHIBIT/ENABLE11REVERSE10FORWARD9SIGNAL GROUND17VELOCITY MONITOR18FAULT OUT19DC BUS CURRENT MONITOR20ENCODER A21ENCODER B22+5V OUT23TACH MOTOR POWER - Power Connector Connector Information Three individual M6 threaded terminal Mating Connector Details M6 screw or bolt with washer Included with Drive Yes POWER - Power Connector Connector Information Two individual M6 threaded terminal Mating Connector Details M6 screw or bolt with washer Included with Drive Yes ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 10. M/V™ Series Servo Drive AVB100C200 WIRING DIAGRAM MotorEncoderHall SensorsKeyswitch InputKeyswitchReverseForwardInhibitBrake ReturnMain ContactorPower FuseControl FuseBatt+ Batt- / Power GNDBrakeMotor AMotor BMotor CHall 1*+5V SupplyHall 3Hall 2Power GNDEncoder AEncoder B*+5V SupplyFault OutEM BrakePot LowSpeed/Command LimitPot HighBattery 1TachTach - Tach Return / Power GNDThrottle PotSpeed Limit PotThrottle InputNOTE: All Feedback cannot be supported at one time*+5V Supply is only one connection pinON board Status LEDCurrent Monitor or DC Bus CurrentVUdCurrentVelocity MonitorIsolation (on 200V drives) Battery 2 or DC-DC ConverterPower GNDKeyswitch RelayVUdSpeedChassis GNDPower GNDFuseSignal GroundLED+5VDC500 ohm ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 11. M/V™ Series Servo Drive AVB100C200 MOUNTING DIMENSIONS ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By:
  • 12. M/V™ Series Servo Drive AVB100C200 PART NUMBERING INFORMATION C200100Peak CurrentBrushless MotorB: Motor TypeMaximum peak current rating in AmpsVStandard AnalogBlank: Drive TypeV:Vehicle (0-5V, 0-5K) ABPeak/Continuous RatioContinuous = ~0.6·PeakA: Continuous = PeakC: Maximum Voltage54V Over-Voltage060: 88V Over-Voltage100: 190V Over-Voltage200: Analog Servo Drive ADVANCED Motion Controls servo drives are available in many configurations. Note that not all possible part number combinations are offered as standard drives. All models listed in the selection tables of the website are readily available, standard product offerings. ADVANCED Motion Controls also has the capability to promptly develop and deliver specified products for OEMs with volume requests. Our Applications and Engineering Departments will work closely with your design team through all stages of development in order to provide the best servo drive solution for your system. Equipped with on-site manufacturing for quick- turn customs capabilities, ADVANCED Motion Controls utilizes our years of engineering and manufacturing expertise to decrease your costs and time-to-market while increasing system quality and reliability. Examples of Customized Products  Integration of Drive into Motor Housing  Integrate OEM Circuitry onto Drive PCB  Mount OEM PCB onto Drive Without Cables  Custom Control Loop Tuned to Motor Characteristics  Multi-axis Configuration for Compact System  Custom I/O Interface for System Compatibility  Custom PCB and Baseplate for Optimized Footprint  Preset Switches and Pots to Reduce User Setup  RTV/Epoxy Components for High Vibration  Optimized Switching Frequency  OEM Specified Connectors for Instant Compatibility  Ramped Velocity Command for Smooth Acceleration  OEM Specified Silkscreen for Custom Appearance  Remove Unused Features to Reduce OEM Cost  Increased Thermal Limits for High Temp. Operation  Application Specific Current and Voltage Limits Feel free to contact Applications Engineering for further information and details. All specifications in this document are subject to change without written notice. Actual product may differ from pictures provided in this document. ELECTROMATE Toll Free Phone (877) SERVO98 Toll Free Fax (877) SERV099 www.electromate.com sales@electromate.com Sold & Serviced By: