SPP-01 Super Parameter Programmer User Manual
Available at http://shop.ultisolar.com Paypal, Amazing Shipping freight to 100 countries and more. -Ultisolar New Energy Co., Ltd SWH Controllers||SWH Pump Stations||MPPT/PWM Solar Controllers||Flow Meter||Hall Flow Sensors||Heat Exchangers
On first power up of the drive with a graphic display terminal, the user must select the language from the [5. LANGUAGE] menu. After selecting the language, the drive is ready to use with factory default settings configured for common pump and fan applications. The user can then customize settings as needed through the graphic display terminal menus.
This document provides information about power lock and keyless entry systems for certain vehicle models. It describes the main components, including door modules containing lock switches, power lock motors in each door, and a receiver and transmitters for the keyless entry system. It also provides diagnostic and service procedures for programming replacement parts and replacing components if needed.
MT50 for LS1024B/ LS2024B/ LS3024B PWM solar controller
Available at http://shop.ultisolar.com
About Ultisolar: Ultisolar is focus on MPPT Controller, PWM Controller, SWH Controller, SWH Station, Hall Flow Sensor
Prodigy Control System Operation ManualSTACY DAVIS
The document provides an overview of the Prodigy control system used on Lennox rooftop units. It describes the key components of the Prodigy system, including the controller, SmartWire system, and optional modules. It then outlines various functions of the Prodigy controller such as navigation, display features, alarms, service reports, profiles, self-test, replacing components, viewing runtimes, sensors, and changing setpoints.
The document provides instructions for completing a basic startup of a PowerFlex 753 drive using the assisted startup routine on the drive's Human Interface Module (HIM). The startup involves resetting the drive to factory defaults, selecting flux vector control mode with a speed reference, and entering simulated motor nameplate data to configure the drive for speed control.
Drv13 power flex 755 programming with devicelogixconfidencial
This document provides instructions for a lab demonstrating programming of the PowerFlex 755 drive using DeviceLogix. The lab includes two application examples - a diverter conveyor system and a wet well pump control system. Students will download predefined parameter files, then program function blocks in DeviceLogix to implement the control logic for each application. The goal is to familiarize students with the DeviceLogix programming capabilities of the PowerFlex 755 drive.
This document provides an overview of a lab exploring the new PowerFlex 750 Series drives. The lab covers basic exploration of the drive interface, resetting defaults, connecting via Ethernet, installing optional cards, and interaction of parameters between the main control board and optional cards. Sections are included on fault and alarm configuration, real-time clock, predictive maintenance, and auto/manual control.
On first power up of the drive with a graphic display terminal, the user must select the language from the [5. LANGUAGE] menu. After selecting the language, the drive is ready to use with factory default settings configured for common pump and fan applications. The user can then customize settings as needed through the graphic display terminal menus.
This document provides information about power lock and keyless entry systems for certain vehicle models. It describes the main components, including door modules containing lock switches, power lock motors in each door, and a receiver and transmitters for the keyless entry system. It also provides diagnostic and service procedures for programming replacement parts and replacing components if needed.
MT50 for LS1024B/ LS2024B/ LS3024B PWM solar controller
Available at http://shop.ultisolar.com
About Ultisolar: Ultisolar is focus on MPPT Controller, PWM Controller, SWH Controller, SWH Station, Hall Flow Sensor
Prodigy Control System Operation ManualSTACY DAVIS
The document provides an overview of the Prodigy control system used on Lennox rooftop units. It describes the key components of the Prodigy system, including the controller, SmartWire system, and optional modules. It then outlines various functions of the Prodigy controller such as navigation, display features, alarms, service reports, profiles, self-test, replacing components, viewing runtimes, sensors, and changing setpoints.
The document provides instructions for completing a basic startup of a PowerFlex 753 drive using the assisted startup routine on the drive's Human Interface Module (HIM). The startup involves resetting the drive to factory defaults, selecting flux vector control mode with a speed reference, and entering simulated motor nameplate data to configure the drive for speed control.
Drv13 power flex 755 programming with devicelogixconfidencial
This document provides instructions for a lab demonstrating programming of the PowerFlex 755 drive using DeviceLogix. The lab includes two application examples - a diverter conveyor system and a wet well pump control system. Students will download predefined parameter files, then program function blocks in DeviceLogix to implement the control logic for each application. The goal is to familiarize students with the DeviceLogix programming capabilities of the PowerFlex 755 drive.
This document provides an overview of a lab exploring the new PowerFlex 750 Series drives. The lab covers basic exploration of the drive interface, resetting defaults, connecting via Ethernet, installing optional cards, and interaction of parameters between the main control board and optional cards. Sections are included on fault and alarm configuration, real-time clock, predictive maintenance, and auto/manual control.
The document provides installation and usage instructions for the MATRIX 2.0 software. It outlines the minimum hardware requirements to run the software, including the need for a serial cable and free serial port. It describes downloading and extracting necessary files, and installing MASK files if needed. The software allows monitoring and controlling a frequency inverter locally, editing parameters, recording actual values, and documenting settings and fault memories. It provides functions to save parameter settings to the inverter and explains how to uninstall the software.
This document provides instructions for setting up a PowerFlex 755 drive for basic speed control using assisted startup. It describes connecting the drive, resetting defaults, navigating the human interface module, selecting motor and feedback parameters such as control mode and encoder settings, configuring speed and direction limits, performing direction and autotune tests, and selecting analog input for speed reference. The goal is to program the drive to start and stop the motor using pushbuttons and control speed using a potentiometer.
This document provides instructions for setting up and using a Direct/Residual Shear Apparatus machine. The summary includes:
1) The machine arrives ready for use with calibrated instrumentation already installed and assigned to inputs. Users should verify the calibration and ensure instruments are plugged into the correct channels.
2) The initial setup involves configuring date/time, display brightness, and preference settings like units of measurement and automatically updating the system.
3) Detailed instructions are provided for sample preparation, consolidation, performing tests, and calibrating the instrumentation if needed.
Gesture based vehicle movements control and alerting system docuVignan Munna
This document provides an overview and details of a gesture-based vehicle control and alert system project. It includes a block diagram showing the main hardware components (microcontroller, LCD display, power supply, MEMS sensor, voice IC, motor driver) and their connections. It also describes the software components used, including the Keil development environment and embedded C code. Circuit descriptions and explanations of each hardware component are provided.
User Manual_KM5S-R LCD Display King-Meter Technology Co.,LtdCory KingMeter
KM5S-R LCD Display King-Meter Technology Co.,Ltd
Model: KM5S-R LCD Display
Size: 88.75mm*50.3mm*47.9mm
Communication: UART Default/CAN
Holder: 22.2mm;25.4mm;31.8mm
Voltage: 24V/36V/31.8V
Certificate: CE/ROHS/IP65
Function:
RFID radiofrequencies
Battery Indicator
Motor Power Ratio
Speed Display (including running speed, max speed and average speed)
Trip distance and total distance
Trip time display of single
Cruise control
Headlight On/Off
Error Code Indicator
Various Parameters Setting (like wheel size, speed -limited, battery level bar, PAS level, controller limited current, max speed, password enable, and so on.)
Recover Default Setting
Visit us by:
Website: https://www.king-meter.com
LinkedIn: https://www.linkedin.com/company/kingmeter
Facebook: https://www.facebook.com/KingMeterTech
In This PPT we are discussed about complete details of that product (Use,Operation, Technical details, Dimensions, Wiring, and etc..)
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This document provides an overview of the contents and instructions covered in the "Statement List (STL) for S7-300 and S7-400 Programming Reference Manual". The manual describes the STL programming language for Siemens S7-300 and S7-400 programmable logic controllers. It covers bit logic, comparison, conversion, counter, data block, logic control, integer math, floating-point math, load/transfer, program control, shift/rotate, timer and word logic instructions. The document also includes programming examples and information on parameter transfer.
Basics and applications of programmable logic controller (plc)Ali Altahir
PLC is a multipurpose clock-driven memory-based electronic device which is also known as a specialized industrial computer which deals with different level of complexity and control system.
Beeteco.com là trang mua sắm trực tuyến thiết bị điện - Tự động hóa uy tín tại Việt Nam.
Chuyên cung cấp các thiết bị: Đèn báo nút nhấn, Relay, Timer, Contactor, MCCB ELCB, Biến tần, Van, Thiết bị cảm biến, phụ kiện tủ điện, .... Từ các thương hiệu hàng đầu trên thế giới.
www.beeteco.com @ Công ty TNHH TM KT ASTER
Số 7 Đại Lộ Độc Lập, KCN Sóng Thần 1, P. Dĩ An, Tx. Dĩ An, Bình Dương
www.facebook.com/beeteco
Tel: 0650 3617 012
Hotline: 0909.41.61.43
A distributed control system (DCS) connects individual controllers to a central computer via digital data highways. It features a coordinated database that is seamless between devices. A failure of a single component will not cause system failure due to features like redundancy and graceful degradation. The DCS contains components like I/O cards, workstations, operator stations, and a historian to archive data. It provides reliable control, alarm management, reporting, and integration with business systems.
This document provides instructions for the control circuit of KEB COMBIVERT F5 frequency inverters. It describes the assignment of terminals on the control terminal strip X2A and how to connect the control circuit. It also outlines the operation of the optional operator interface used for parameter input and drive control.
The document discusses programmable logic controllers (PLCs). It begins by explaining the basic principles of a control system, including inputs, a processor, and outputs. It then provides a history of PLC development from the 1960s to present. The main components of a PLC system are described, including the power supply, input/output modules, processor, and programming device. PLCs were created to offer programmable control like relay logic systems and are now widely used in industry.
This document provides an overview of the engine control system for Volvo trucks, including a description of the key electronic control modules and sensors that monitor and control engine functions. It describes the five main electronic control modules - the Engine Management System (EMS) module, Instrument Cluster Module (ICM), Vehicle Electronic Control Unit (VECU), Transmission Electronic Control Unit (TECU) and Gear Selector Electronic Control Unit (GSECU) - and their roles in controlling the engine, vehicle functions, and communication between modules. It also provides details on the various sensors that input data to the EMS module to monitor engine systems.
This document summarizes a student project to create disco lights using an 8051 microcontroller. It includes an introduction describing the project, a list of components used including an 8051 microcontroller, LEDs, capacitors, crystal oscillator, button switch, and power supply. It provides the circuit architecture and programming code to display a light pattern on the LEDs when the button is pressed using delays. The students observed how to glow the disco lights using a microcontroller interfaced with LEDs. In conclusion, the project was successfully designed, developed, and tested using advanced microcontroller technology.
The AT89S52 is a low-power, high-performance CMOS 8-bit microcontroller with 8K
bytes of in-system programmable Flash memory. The device is manufactured using
Atmel’s high-density nonvolatile memory technology and is compatible with the industry-
standard 80C51 instruction set and pinout. The on-chip Flash allows the program
memory to be reprogrammed in-system or by a conventional nonvolatile memory programmer.
By combining a versatile 8-bit CPU with in-system programmable Flash on
a monolithic chip, the Atmel AT89S52 is a powerful microcontroller which provides a
highly-flexible and cost-effective solution to many embedded control applications.
The AT89S52 provides the following standard features: 8K bytes of Flash, 256 bytes
of RAM, 32 I/O lines, Watchdog timer, two data pointers, three 16-bit timer/counters, a
six-vector two-level interrupt architecture, a full duplex serial port, on-chip oscillator,
and clock circuitry. In addition, the AT89S52 is designed with static logic for operation
down to zero frequency and supports two software selectable power saving modes.
The Idle Mode stops the CPU while allowing the RAM, timer/counters, serial port, and
interrupt system to continue functioning. The Power-down mode saves the RAM contents
but freezes the oscillator, disabling all other chip functions until the next interrupt
or hardware reset
The document provides instructions for mounting, wiring, and configuring the components of a Siemens Sinamics G120 frequency converter, including the power module, control unit, and operator panels. It describes connecting the power module to the motor and power supply, attaching the control unit, and wiring control terminals and inputs/outputs. It also provides guidelines for mounting the basic operator panel 2 or intelligent operator panel to complete the assembly and setup of the converter.
This document provides instructions for installing and wiring the components of a Siemens Sinamics G120 frequency converter, including:
- The Power Module supplies voltage to the motor. It comes in various frame sizes and power ranges.
- The Control Unit controls and monitors the Power Module. Different Control Unit versions are available with varying terminal assignments and fieldbus interfaces.
- The Basic Operator Panel 2 (BOP-2) and Intelligent Operator Panel (IOP) are used for operation and monitoring. The IOP adds graphical displays and application wizards.
- Proper mounting, wiring and safety procedures are outlined for installing the Power Module, Control Unit and Operator Panels. Component matching and motor
This document provides instructions for a lab demonstrating the energy savings from using a variable frequency drive (VFD) to control pump speed compared to throttling valve control. It includes an equipment list, instructions for configuring a PowerFlex 700 drive and connecting it to the pump demo, and steps for collecting power and current data at various flow rates using DriveObserver software to calculate the energy savings. Running the pump at lower speeds with the VFD reduces power consumption and wear compared to throttling the pump.
시크 SICK Lector63x 2D DPM스캐너 고정식바코드스캐너 산업용바코드리더 이미지스캐너 매뉴얼HION IT
The document provides instructions for setting up and operating the Lector632 Flex image-based code reader. It describes mounting the reader, connecting it, and configuring it using the SOPAS Engineering Tool software. The configuration involves setting image acquisition parameters, code reading settings, and output formatting. Dimensional drawings, connection diagrams, and technical specifications are also included.
The document provides installation and usage instructions for the MATRIX 2.0 software. It outlines the minimum hardware requirements to run the software, including the need for a serial cable and free serial port. It describes downloading and extracting necessary files, and installing MASK files if needed. The software allows monitoring and controlling a frequency inverter locally, editing parameters, recording actual values, and documenting settings and fault memories. It provides functions to save parameter settings to the inverter and explains how to uninstall the software.
This document provides instructions for setting up a PowerFlex 755 drive for basic speed control using assisted startup. It describes connecting the drive, resetting defaults, navigating the human interface module, selecting motor and feedback parameters such as control mode and encoder settings, configuring speed and direction limits, performing direction and autotune tests, and selecting analog input for speed reference. The goal is to program the drive to start and stop the motor using pushbuttons and control speed using a potentiometer.
This document provides instructions for setting up and using a Direct/Residual Shear Apparatus machine. The summary includes:
1) The machine arrives ready for use with calibrated instrumentation already installed and assigned to inputs. Users should verify the calibration and ensure instruments are plugged into the correct channels.
2) The initial setup involves configuring date/time, display brightness, and preference settings like units of measurement and automatically updating the system.
3) Detailed instructions are provided for sample preparation, consolidation, performing tests, and calibrating the instrumentation if needed.
Gesture based vehicle movements control and alerting system docuVignan Munna
This document provides an overview and details of a gesture-based vehicle control and alert system project. It includes a block diagram showing the main hardware components (microcontroller, LCD display, power supply, MEMS sensor, voice IC, motor driver) and their connections. It also describes the software components used, including the Keil development environment and embedded C code. Circuit descriptions and explanations of each hardware component are provided.
User Manual_KM5S-R LCD Display King-Meter Technology Co.,LtdCory KingMeter
KM5S-R LCD Display King-Meter Technology Co.,Ltd
Model: KM5S-R LCD Display
Size: 88.75mm*50.3mm*47.9mm
Communication: UART Default/CAN
Holder: 22.2mm;25.4mm;31.8mm
Voltage: 24V/36V/31.8V
Certificate: CE/ROHS/IP65
Function:
RFID radiofrequencies
Battery Indicator
Motor Power Ratio
Speed Display (including running speed, max speed and average speed)
Trip distance and total distance
Trip time display of single
Cruise control
Headlight On/Off
Error Code Indicator
Various Parameters Setting (like wheel size, speed -limited, battery level bar, PAS level, controller limited current, max speed, password enable, and so on.)
Recover Default Setting
Visit us by:
Website: https://www.king-meter.com
LinkedIn: https://www.linkedin.com/company/kingmeter
Facebook: https://www.facebook.com/KingMeterTech
In This PPT we are discussed about complete details of that product (Use,Operation, Technical details, Dimensions, Wiring, and etc..)
Please Support us and Follow our other Sites
https://www.instagram.com/controlsandsystems.offical
https://twitter.com/ControlsSystems
https://automationtechplc2.blogspot.com
https://humidificationcontrol.blogspot.com
https://controlsandsystems.business.site
www.controls.systemsdm@gmail.com
If you enjoyed this article, share it with your friends and colleagues
This document provides an overview of the contents and instructions covered in the "Statement List (STL) for S7-300 and S7-400 Programming Reference Manual". The manual describes the STL programming language for Siemens S7-300 and S7-400 programmable logic controllers. It covers bit logic, comparison, conversion, counter, data block, logic control, integer math, floating-point math, load/transfer, program control, shift/rotate, timer and word logic instructions. The document also includes programming examples and information on parameter transfer.
Basics and applications of programmable logic controller (plc)Ali Altahir
PLC is a multipurpose clock-driven memory-based electronic device which is also known as a specialized industrial computer which deals with different level of complexity and control system.
Beeteco.com là trang mua sắm trực tuyến thiết bị điện - Tự động hóa uy tín tại Việt Nam.
Chuyên cung cấp các thiết bị: Đèn báo nút nhấn, Relay, Timer, Contactor, MCCB ELCB, Biến tần, Van, Thiết bị cảm biến, phụ kiện tủ điện, .... Từ các thương hiệu hàng đầu trên thế giới.
www.beeteco.com @ Công ty TNHH TM KT ASTER
Số 7 Đại Lộ Độc Lập, KCN Sóng Thần 1, P. Dĩ An, Tx. Dĩ An, Bình Dương
www.facebook.com/beeteco
Tel: 0650 3617 012
Hotline: 0909.41.61.43
A distributed control system (DCS) connects individual controllers to a central computer via digital data highways. It features a coordinated database that is seamless between devices. A failure of a single component will not cause system failure due to features like redundancy and graceful degradation. The DCS contains components like I/O cards, workstations, operator stations, and a historian to archive data. It provides reliable control, alarm management, reporting, and integration with business systems.
This document provides instructions for the control circuit of KEB COMBIVERT F5 frequency inverters. It describes the assignment of terminals on the control terminal strip X2A and how to connect the control circuit. It also outlines the operation of the optional operator interface used for parameter input and drive control.
The document discusses programmable logic controllers (PLCs). It begins by explaining the basic principles of a control system, including inputs, a processor, and outputs. It then provides a history of PLC development from the 1960s to present. The main components of a PLC system are described, including the power supply, input/output modules, processor, and programming device. PLCs were created to offer programmable control like relay logic systems and are now widely used in industry.
This document provides an overview of the engine control system for Volvo trucks, including a description of the key electronic control modules and sensors that monitor and control engine functions. It describes the five main electronic control modules - the Engine Management System (EMS) module, Instrument Cluster Module (ICM), Vehicle Electronic Control Unit (VECU), Transmission Electronic Control Unit (TECU) and Gear Selector Electronic Control Unit (GSECU) - and their roles in controlling the engine, vehicle functions, and communication between modules. It also provides details on the various sensors that input data to the EMS module to monitor engine systems.
This document summarizes a student project to create disco lights using an 8051 microcontroller. It includes an introduction describing the project, a list of components used including an 8051 microcontroller, LEDs, capacitors, crystal oscillator, button switch, and power supply. It provides the circuit architecture and programming code to display a light pattern on the LEDs when the button is pressed using delays. The students observed how to glow the disco lights using a microcontroller interfaced with LEDs. In conclusion, the project was successfully designed, developed, and tested using advanced microcontroller technology.
The AT89S52 is a low-power, high-performance CMOS 8-bit microcontroller with 8K
bytes of in-system programmable Flash memory. The device is manufactured using
Atmel’s high-density nonvolatile memory technology and is compatible with the industry-
standard 80C51 instruction set and pinout. The on-chip Flash allows the program
memory to be reprogrammed in-system or by a conventional nonvolatile memory programmer.
By combining a versatile 8-bit CPU with in-system programmable Flash on
a monolithic chip, the Atmel AT89S52 is a powerful microcontroller which provides a
highly-flexible and cost-effective solution to many embedded control applications.
The AT89S52 provides the following standard features: 8K bytes of Flash, 256 bytes
of RAM, 32 I/O lines, Watchdog timer, two data pointers, three 16-bit timer/counters, a
six-vector two-level interrupt architecture, a full duplex serial port, on-chip oscillator,
and clock circuitry. In addition, the AT89S52 is designed with static logic for operation
down to zero frequency and supports two software selectable power saving modes.
The Idle Mode stops the CPU while allowing the RAM, timer/counters, serial port, and
interrupt system to continue functioning. The Power-down mode saves the RAM contents
but freezes the oscillator, disabling all other chip functions until the next interrupt
or hardware reset
The document provides instructions for mounting, wiring, and configuring the components of a Siemens Sinamics G120 frequency converter, including the power module, control unit, and operator panels. It describes connecting the power module to the motor and power supply, attaching the control unit, and wiring control terminals and inputs/outputs. It also provides guidelines for mounting the basic operator panel 2 or intelligent operator panel to complete the assembly and setup of the converter.
This document provides instructions for installing and wiring the components of a Siemens Sinamics G120 frequency converter, including:
- The Power Module supplies voltage to the motor. It comes in various frame sizes and power ranges.
- The Control Unit controls and monitors the Power Module. Different Control Unit versions are available with varying terminal assignments and fieldbus interfaces.
- The Basic Operator Panel 2 (BOP-2) and Intelligent Operator Panel (IOP) are used for operation and monitoring. The IOP adds graphical displays and application wizards.
- Proper mounting, wiring and safety procedures are outlined for installing the Power Module, Control Unit and Operator Panels. Component matching and motor
This document provides instructions for a lab demonstrating the energy savings from using a variable frequency drive (VFD) to control pump speed compared to throttling valve control. It includes an equipment list, instructions for configuring a PowerFlex 700 drive and connecting it to the pump demo, and steps for collecting power and current data at various flow rates using DriveObserver software to calculate the energy savings. Running the pump at lower speeds with the VFD reduces power consumption and wear compared to throttling the pump.
시크 SICK Lector63x 2D DPM스캐너 고정식바코드스캐너 산업용바코드리더 이미지스캐너 매뉴얼HION IT
The document provides instructions for setting up and operating the Lector632 Flex image-based code reader. It describes mounting the reader, connecting it, and configuring it using the SOPAS Engineering Tool software. The configuration involves setting image acquisition parameters, code reading settings, and output formatting. Dimensional drawings, connection diagrams, and technical specifications are also included.
This document provides a user's guide for the Electrical Control workshop of the Automation Studio simulation software. It includes instructions for building basic electrical control circuits, defines the properties of electrical components, and provides examples of circuits and their simulations. Components can be added from the Electrical Control library and linked together. Circuits can be simulated step-by-step or continuously, and components can be manually activated during simulation. Color changes show the status of components during operation.
Pcu230 pi pump_controlwithpf400drives_rev_aconfidencial
This document provides instructions for using a PowerFlex 400 drive to control pump flow using a PID loop. The lab objectives are to configure process PID for pump flow control, view PID variables, and tune the PID regulator. Setup instructions describe connecting the drive, pump, and computer software. Programming instructions explain configuring reference and feedback signals and tuning the PID regulator by adjusting gain parameters to minimize overshoot and undershoot in response to changes in flow demand.
This document provides instructions for operating and configuring the GU320B generator controller. It includes:
1. An overview of the controller's display, control keys, and connection ports.
2. Instructions for setting the controller's operation mode (auto, manual, test) and controlling generator start up and shut down.
3. Details on measuring parameters, alarms, communication functions, and technical specifications.
Ultisolar iT3415 iT4415 iT6415 iTracer User Manual
Available at http://shop.ultisolar.com
-Ultisolar New Energy Co., Ltd
SWH Controllers||SWH Pump Stations||MPPT/PWM Solar Controllers||Flow Meter||Hall Flow Sensors||Heat Exchangers
The document provides instructions for using an ECU&TCU programmer. It describes connecting the device to a computer, activating it, reading and writing ECU data, and processing functions like immobilizer shutoff and data cloning between ECUs. Key steps include downloading software, connecting the device, selecting the ECU type, reading/writing EEPROM and flash data, and using functions in the data processing menu.
This document provides an installation and operation manual for the TX7201 Addressable Zone Monitor Unit. It includes specifications for the unit, instructions for installation and wiring, and procedures for configuration using a handheld programmer. The unit integrates conventional detectors into an addressable fire alarm system and can send alarm and fault messages to the fire alarm controller. General maintenance guidelines and a troubleshooting guide are also provided.
1) This document provides instructions for setting up and using the Aeotec Radiator Thermostat Z-Wave device. It should be included in a Z-Wave network and uses 2 AA batteries.
2) The thermostat can be mounted on a radiator and used to control heating and adjust temperature setpoints. It features a boost mode, child lock, and window open detection.
3) The thermostat's parameters can be configured, including LCD settings, battery reporting, temperature reporting thresholds, and window open detection sensitivity. Proper inclusion and exclusion from a Z-Wave network is described.
This document provides operating instructions for the TECNOLOGIC spa - TLK 43 digital electronic controller. It describes the controller's front panel, programming functions, installation and use instructions, main functions including control modes, auto-tuning, alarms, outputs and communications. The document is intended to ensure proper installation, maintenance and use of the controller and provides technical specifications for electrical, mechanical and functional characteristics.
This is the user manual of FasDiag JD101.
>> READ MORE: https://www.obdadvisor.com/best-obd2-scanner-review/
Here is a detailed review of the best OBD2 scanners based on my own experience, including:
- Compatibility
- Features and Functions
- Pros and Cons
Check it out to get the REVIEW and some NOTES about using the scanner.
This document provides operating instructions for the TLK 94, a microprocessor-based digital electronic controller. It describes the controller's functions including ON/OFF, PID, and motorized actuator control. It also covers installation, configuration, programming, alarms, maintenance and specifications. The controller can measure and control temperature, voltage, or current processes and communicate via RS485. It has 4 setpoint values that can be programmed along with parameters to configure inputs, outputs, control modes and alarms.
Pcu230 pi fan_controlwithpf400drives_rev_aconfidencial
The document provides instructions for using a PowerFlex 400 drive to control a fan motor's speed using a PID loop to maintain a constant air pressure. Key steps include:
1. Configuring the drive for PID control with the setpoint coming from the PID regulator and feedback from an analog input monitoring air pressure.
2. Setting up DriveObserver software to monitor the PID setpoint, fan speed output, and air pressure feedback for tuning the PID gains.
3. Adjusting the proportional, integral, and differential gains while observing the system response to changes in airflow demand until the PID loop maintains steady control without overshoot or undershoot.
Etracer6415BND Etracer4415bnd user manual by Ultisolar New Energy
6210984510002687504
Available at http://shop.ultisolar.com Paypal, Amazing Shipping freight to 100 countries and more. -Ultisolar New Energy Co., Ltd SWH Controllers||SWH Pump Stations||MPPT/PWM Solar Controllers||Flow Meter||Hall Flow Sensors||Heat Exchangers
This is the user manual of FasDiag OM123.
>> READ MORE: https://www.obdadvisor.com/best-obd2-scanner-review/
Here is a detailed review of the best OBD2 scanners based on my own experience, including:
- Compatibility
- Features and Functions
- Pros and Cons
Check it out to get the REVIEW and some NOTES about using the scanner.
The document provides instructions for setting up and using a VIVOTEK network camera test lab. It includes chapters on preparation, installation, using the Installation Wizard 2 software, camera configuration, and using the ST7501 client/server software. Some key points:
- Chapter 1 discusses necessary lab components and how to connect the camera.
- Chapter 2 covers installing the Installation Wizard 2 and ST7501 software, including selecting installation directories and options.
- Chapter 3 describes the Installation Wizard 2 user interface and how it analyzes the network environment.
- Chapter 4 provides steps for configuring camera cropping through the viewing window page to define the region of interest and output frame size.
The document describes an AD147 Z-Wave Dimmer Plug that can be included in a Z-Wave network to remotely control connected loads of 6W-250W. It supports inclusion, exclusion, and reset via a link key, and auto-inclusion for 4 minutes when no node ID is stored. The dimmer plug supports on/off and dimming control of lights, remembers the last settings, and supports 2 association groups for commands.
Similar to SPP-01 Super Parameter Programmer User Manual Ultisolar New Energy (20)
This document is a user manual for the US211M Flow Meter Quantitative Controller made by Shandong iSentrol Electronic Technology Co. It provides information on the technical specifications, functions and settings, K value calibration, and packing list of the US211M controller and its optional accessories for quantitative flow control using a hall flow sensor and solenoid valve.
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SPP-01 Super Parameter Programmer User Manual Ultisolar New Energy
1. Make a better use of solar
www.ul tisolar.com
Super Parameter Programmer SPP-01
Dear user: Thank you very much for selecting our product! This manual offers important information and suggestions about use and troubleshooting, etc. Please read this manual carefully before using the product. Warranty: The product is warranted to be free from defects for a period of two years from the date of shipment to the original end user.
2. Contents
1 Important Safety Information ............................................ 1
2 General Information ........................................................ 1
2.1 Product Characteristic ................................................... 1
2.2 Main Functions ............................................................ 2
2.3 Recommendation ......................................................... 2
3 Features ........................................................................ 3
3.1 Features...................................................................... 3
3.2 Power Supply and Startup .............................................. 5
4 Software Operation ......................................................... 7
4.1 Software Operating Environment..................................... 7
4.2 Software Installation and Uninstalling .............................. 7
4.3 Software Operating Instructions ...................................... 7
5 Specification ................................................................ 22
5.1 Hardware Configuration .............................................. 22
5.2 SPP-01 Parameter....................................................... 22
6 SPP-01 Overall Dimension ............................................. 23
3. 1
1 Important Safety Information
This manual contains important safety, setting and operating instructions for SPP-01. Save these instructions.
Please inspect the product thoroughly after it is delivered. If any damage is seen, please notify the shipping company or our company immediately.
Read of the instructions and cautions in the manual before using.
Keep the product away from rain, exposure, severe dust, vibrations, corrosive gas and intense electromagnetic interference.
Do not allow water to enter the controller.
Do not disassemble or attempt to repair it.
2 General Information
2.1 Product Characteristic
Super parameter programmer (SPP-01) is the simple, efficient and practical accessory for parameter configuration with the easy one button operation. Due to the new standard communication protocol, it applies to stand-alone or multi-parallel products. The features of the SPP-01 are listed below.
One button and one indication led are designed for simplicity and easy-to-operate.
RS232 (TTL), RS485 and USB communication are supported.
SPPPCTools PC software is used to configure and backup parameters
4. 2
visually, rapidly and conveniently.
Dual power supply design. SPP-01 can be powered by battery or Micro-USB cable applying for various environments.
2.2 Main Functions
Parameter configuration function
Load the parameter configuration to the SPP-01 via SPPPCTools PC software and then update the device’s parameters through SPP-01 with easy one button.
Data transparent transmission function.
SPP-01 can be used as the communication converter to connect the device and Solar Station Monitor, a PC software, to establish remote monitoring.
2.3 Recommendation
DCCPxxxxDP (R), LSxxxxB (PL), VSxxxxB, TracerxxxxB (PL) and iTracerxxB series products are supported to update the configuration by SPP-01. Please confirm whether to support before purchasing.
5. 3
3 Features
3.1 Features
Description
Operation
Remarks
K1(Toggle switch1)
COM
Communication converter mode
MEM
Parameter configuration mode
K2(Toggle switch 2)
Line
Wire communication mode
IrDA
Reserved
K3(Toggle switch 3)
On
Power on
Off
Power off
K4(Water proof key 4)
Press the button
Press the key to enter configuration mode (the indicator led is on), click it again to update the configuration.
Press and hold the button
Test “Turn on” or “Turn off” the load.
Indicator led and buzzer
Configuration mode
The indicator led is on without a beep.
Update
The indicator led flashes once
K1
K2
K3
LED
K4
6. 4
successfully.
with one short beep.
Communication error
The indicator led flashes twice with two short beeps.
The model is not matched or the irrational configuration
The indicator led flashes triple with three short beeps.
Test
The indicator light flashes for several times with one long beep.
Note:
1. Press and hold the button for three seconds to alternately turn on or turn off the load in the testing mode. After 3 minutes, the device will quit the test mode automatically.
2. In the testing mode, the SPP-01 can switch the load no matter whether it has loaded the configuration or not.
RJ11
RJ45
7. 5
Description
Operating
Remarks
RJ11 interface
Connect the controller with the CC-TTL-TTL-150U communication cable
Update device configure
RJ45 interface
Connect the controller with the CC-RS485- RS485-150U communication cable
Update device configure
USB interface
Connect to the PC with the CC-USB-USB-150U communication cable
Update SPP01 configure
RTC battery holder
Battery for real-time time clock
Type: CR1220
Battery compartment
3 batteries
Size AAA
3.2 Power Supply and Startup
The SPP-01 is powered by following three methods:
1. Get power via the USB data cable from USB interface.
RTC Battery
Battery compartment
USB interface
8. 6
2. Get power via exclusive data cable from the device.
3. Get power from 3 batteries (size AAA).
Starting SPP-01: The SPP-01 is powered on by toggling K3 switch to “ON”
Operating status
Phenomena
Normal startup
The green light flashes once with one beep.
No data available in SPP-01
The green light flashes for several times with several beeps.
9. 7
4 Software Operation
4.1 Software Operating Environment
Hardware Environment
A Pentium 4-compatible PC
At least 512Mbyte of RAM and 55Mbyte of free disk space
Software Operating Environment
The recommended operating system is as follows:
Windows XP (32bit), Win7 (32bit/64bit), Win8 (32bit/64bit)
Installing component: Windows Installer3_1, DotNetFX40.
4.2 Software Installation and Uninstalling
Installing the software
Open directory “SPPPCSoftwareV3.77”, and double click “setup.exe”, after the computer start carry on the software gearing.
Uninstalling the software
Click the Start >Control Panel >Add or delete programs> SPP> Delete.
4.3 Software Operating Instructions
Get serial port number for SPP-01
1. Connect the device: Connect SPP-01 to the PC with the Micro-USB cable and turn K3 switch to “ON” position. The SPP-01 starts normally with indicator led flashing once and a short beep.
10. 8
2. Install SPP-01 serial port driver: Open directory “SPP USB Driver” and run “Setup.bat” file to install the driver.
3. Right click “My computer > Property > Hardware > Device manager” to pop up a device manager window, seeing the figure below:
Note: The serial port number selected in the figure above is the serial port number of SPP-01 (COM8).
11. 9
Main interface
Parameter configure:
1. Double click software icon to pop up configuration interface of SPP-01.
2. The software will automatically open the port after selected serial port of SPP-01(the button caption will change from “open port” to “close port”)
3. The following dialog box will be popped up automatically by clicking “SELECT” tag:
12. 10
Double click to select device (the configuration content will be changed automatically).
4. Configure relevant parameters by clicking “Control Parameters”, “General Load”, “LED Load” in the frame of Parameter Configuration and “Time Sync” in the Management. After configuring parameters, click “OK” to quit and return to main interface (For the parameters without configuration, uncheck the box “ ”).
5. After configuration, click button to load configuration into SPP-01 device (a corresponding dialog box will be popped up to prompt whether loaded successfully or not).
Reading parameter data
If the configuration has been loaded to the SPP-0, click button to upload the configuration in SPP-01 to PC, and refresh the corresponding parameter configuration in “Parameter configuration” frame, such as Control Parameter, General Load or LED Load, Time Sync so as to view and modify the parameters.
Data clearing
If it is required to clear configuration in SPP-01, click button directly.
Importing and exporting parameter configuration
If it is required to backup parameter configuration, click
13. 11
button to save the configuration as a text file with extension of .TXT. If it is required to import configuration backed up previously, click button to load corresponding TXT file to upload the configuration.
Control Parameter
Battery type
Battery type
Notes
Sealed (default)
Fixed controlling voltage, unable to be modified
Gel
Fixed controlling voltage, unable to be modified
Flooded
Fixed controlling voltage, unable to be modified
User
Users can modify voltage controlling points.
14. 12
Charging Mode
Charging mode
Notes
Voltage compensation
Voltage control charging (default)
SOC
Set the charge and discharge SOC target values for battery charge and discharge control
Other Control Parameter
Parameters
Default
Range
Battery Ah
200Ah
1~9999Ah
Temperature compensation coefficient
-3mV/ºC/2V
-9~-0mV
Rated Voltage
Auto
Auto/12V/24V/36V/48V
Battery charging
100%
100%(SOC Mode)
Battery discharging
30%
10~80%(SOC Mode)
Note: Battery charging voltage ≥ Battery discharge+10% or battery discharge value ≤ Battery charge-10% value Battery Voltage Parameters (values are in 12V system at 25ºC, please double in 24V, triple in 36 V, and quadruple in 48 V system)
Battery type
Sealed
Gel
Flooded
User
High Volt Disconnect
16V
16V
16V
9~17V
Charging Limit Voltage
15V
15V
15V
9~17V
Over Voltage Reconnect
15V
15V
15V
9~17V
Equalize Charging
——
14.6V
14.8V
9~17V
15. 13
Boost Charging Voltage
14.2V
14.4V
14.6V
9~17V
Float Charging Voltage
13.8V
13.8V
13.8V
9~17V
Boost Return Voltage
13.2V
13.2V
13.2V
9~17V
Low Voltage Reconnect
12.6V
12.6V
12.6V
9~17V
Under Voltage Recover
12.2V
12.2V
12.2V
9~17V
Under Voltage Warning
12V
12V
12V
9~17V
Low Voltage Disconnect Voltage
11.1V
11.1V
11.1V
9~17V
Discharging Limit Voltage
10.6V
10.6V
10.6V
9~17V
Equalize Duration
——
120 Min.
120 Min.
0~180 Min.
Boost Duration
120 Min.
120 Min.
120 Min.
10~180 Min.
Note: The following rules must be observed when modify the parameters value in user battery type (factory default value is the same as sealed type):
High Volt Disconnect > Charging limit voltage ≥ Equalization voltage ≥ Boost voltage ≥ Float voltage > Boost return voltage
High Volt Disconnect > Over Voltage Reconnect
Low Voltage Reconnect > Low Voltage Disconnect ≥ Discharging Limit Voltage
Under Voltage Warning Reconnect > Under Voltage Warning ≥ Discharging Limit Voltage
Boost Reconnect Charging voltage > Low Voltage Disconnect
16. 14
Load Configuration
Load Mode
Manual (load can be switched by manual button or remote control command)
On by default
Controller switches on the load output once initialized and keep constant output on condition that the battery is enough electricity and no abnormal situation.
17. 15
Off by default
Controller keep the load output off before, during and after initialized. The load can be switched on only when doing “Manual On by default” operation and the battery is enough electricity and no abnormal situation.
Time Control
Time1(T1)
Control on/off time1 of load through real-time clock mode.
Time2(T2)
Control on/off time2 of load in dual time mode.
Light ON/OFF
Light ON Voltage
When input voltage of solar module goes below light ON voltage, the solar controller will recognize the starting voltage and turn on the load after pre-set time delay when the battery power is enough and the controller works well.
Light OFF Voltage
When input voltage of solar module goes above light OFF voltage, the solar controller will recognize the starting voltage and turn off the load after pre-set time delay.
Delay Time
The confirmation time for Light signal. During the period, if light signal voltage continues matching Light ON/OFF voltage, it will carry out corresponding actions(The time adjustment range:0~99mins.
18. 16
Light ON+ Timer
Working Time 1(T1)
Load working period after light control turns ON load
Working Time 2(T2)
Load working period before light control turns OFF load
Night Time
The controller calculated the total length of the night by self-learning. The time should be more than 3 hours
Light Control +Time Model Diagram
19. 17
LED Load Configuration
LED Load parameter
Parameter
Remark
LED Rated Current
Rated output current.
LED Rated Current Percentage
Set up the parameter of the rated current percentage of the corresponding operating period of the controller; the controller will control the LED load output current according to this value.
20. 18
Battery Under Voltage Control
When the battery is under this voltage, the output current will be half; when the voltage of the battery goes above it, the controller will resume the set current value automatically.
Manual Control(load can be switched by manual button or remote control command)
Manually On By default
Controller switches on the load output once initialized and keep constant output on condition that the battery is enough electricity and no abnormal situation.
Manually Off By default
Controller keep the load output off before, during and after initialized. The load can be switched on only when doing “Manual On by default” operation and the battery is enough electricity and no abnormal situation.
Time Control
Time1(T1)
Control on/off time1 of load through real-time clock mode.
Time2(T2)
Control on/off time2 of load in dual time mode.
Light ON/OFF
Light ON Voltage
When input voltage of solar module goes below light ON voltage, the solar controller will recognize the starting voltage and turn on the load after pre-set time delay when the battery power is enough and the controller works well.
21. 19
Light OFF Voltage
When input voltage of solar module goes above light OFF voltage, the solar controller will recognize the starting voltage and turn off the load after pre-set time delay.
Delay Time
The confirmation time for Light signal. During the period, if light signal voltage continues matching Light ON/OFF voltage, it will carry out corresponding actions(The time adjustment range:0~99mins.
Light Control +Time Model 1
Work Time1 (T1)
Load working period after light control turns ON load.
Work Time2 (T2)
The running hour of the load after the end of the work time1.
Work Time3 (T3)
The running hour of the load after the end of the work time2.
Light Control +Time1 Mode1 diagram
22. 20
Light Control +Time Model 2
Work Time1 (T1)
Load working period after light control turns ON load.
Work Time2 (T2)
The running hour of the load after the end of the work time 1.
Work Time3(T3)
Load working period before light control turns off load.
Night Time
The controller calculated the total length of the night by self-learning. The time should be more than 3 hours.
Light Control +Time2 Model diagram
23. 21
Time Synchronize
Parameters
Remarks
PC time
Display PC time by default; Edit the time by clicking “Manually”.
SPP time
Display real-time clock of SPP-01.
The current PC time data can be directly update to SPP-01 by clicking “Update” button; click “Manually” button to edit the values; click “Read” button to get the time from SPP-01 and display in “SPP Time” text box.
24. 22
5 Specification
5.1 Hardware Configuration
Items
Descriptions
Indicator light
1 green LED indicator
RTC clock
The real-time clock will not be lost when the backup battery is installed. Please replace the batteries when the time of SPP-01 is not correct.
Power supply
From three AAA (7#) batteries; From Micro-USB cable via PC USB power; From exclusive data cable via the controller.
Buzzer
One built-in buzzer to prompt that communication is right or wrong.
Communication port
RJ11(TTL), RJ45(RS485), Micro-USB(USB).
5.2 SPP-01 Parameter
Parameter
Rated
Power Supply Voltage
5.0V
Static Current
< 40 mA
Communication Baud
115200bps
Working temperature
-25ºC~+55ºC
Enclosure
IP30
Overall dimension
109 mm *60 mm *33mm
Net weight
80.1g