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8. Case Dimensions
4
Front Side
71 mm
20mm
45mm
20mm
70 mm
85mm
30mm 20mm20mm
Figure 6: Case Dimensions
Setting Ranges
Undervoltage : 1% – 25%
Time delay for undervoltage : 0.1s – 30s
Overvoltage : 1% – 20%
Time delay for overvoltage : 0.1s – 30s
Unbalance : 5% – 20%
Time delay for unbalance : 0.1s – 30s
Phase loss : Fixed time <0.1s
Phase sequence : Fixed time <0.1s
Start time delay : 0s – 999s
Power Supply Input
Phase to phase voltage : 380V(-25%)- 415V(+20%) AC
Supply frequency : 45Hz to 65Hz
Maximum power consumption : 3VA
Contacts
Contact arrangement : Change-over
Contact rating : 5A, 250V AC (cos j=1)
Contact material : Silver alloy
Operating time : 15 ms max.
Expected electrical life : 100,000 operations at rated current
Expected mechanical life : 5 x 10
6
operations
Indicators
Auxiliary supply : Green LED indicator
Pickup indicator : Red LED indicator
Trip : 7-segment display and red LED indicators
Mechanical
Mounting : Din rail mounted
Approximate weight : 0.31kg
Accuracy
Protection thresholds : ± 3 %
Time delay : 0-0.5s, ± 15% with a minimum of 40ms
: 0.6s and above, ± 3%
Measurements : ± 3%
7. Technical Data
MU250 3-Phase Voltage Relay User's Guide
Brief Overview
a
b
c
d
e
f
g
h
1. General Description
MU250 is a voltage relay that combines overvoltage,
undervoltage, unbalance, phase loss, phase sequence
and delay start functions. It can be connected with or
without neutral wire.
MU250 incorporates a 4-digit LED display which
allows direct numerical readout of set values, actual
measured value and system indication.
MU250 has 2 relay outputs (R1 and R2). R1 is On
under normal operating condition. R2 can be
programmed to on during trip state or during pickup
and trip state.
2. Voltage and Frequency Display
During power up, when the relay is not under tripped
condition, the display will show voltage and frequency
reading. The Function LED indicates which line/phase
of voltage is being displayed or shows 'F' when
frequency is being displayed.
U12
U23
U31
U1N
U2N
U3N
Figure 2: Display for L-L setting. 415V and
50.0Hz shown as example
Figure 3: Display for L-N setting. 240V and
50.0Hz shown as example
Figure 1: Front panel overview
1
The Data LED showing value. Press “UP” or
“DOWN” to scroll through the parameters as
shown in Figure 2 and 3 (depends on L-L or L-N
setting).
Frequency
Frequency
a) Auto Scroll
Auto scroll let the display to scroll to the next
available parameter every 10 seconds. To toggle
auto scroll mode, press "UP" and "DOWN"
simultaneously.
3. Settings
a) Setting Display
When the relay is not under tripped condition,
pressing “RESET/MODE” will scroll through various
settings. Function LED showing number or alphabet to
indicate which setting is being view as shown in
Figure 4. Table 1 gives description of each setting.
Tip: To quickly jump back to voltage display during
setting display, press and hold “RESET/MODE” for
more than 1.5 seconds.
Setting Function Setting Range Description
1 U<< Undervoltage 1-25 % Undervoltage % from nominal voltage
2 t<< Undervoltage delay 0.1-30 s Time delay for undervoltage
3 U>> Overvoltage 1-20 % Overvoltage % from nominal voltage
4 t>> Overvoltage delay 0.1-30 s Time delay for overvoltage
5 Unbalance 3-20 % Unbalance %
6 t Unbalance delay 0.1-30 s Unbalance time delay
A tstart Starting delay 0-999 s On time delay of R1 during power up
b Phase L-L, L-N L-L: Display and uses Line to line voltage
L-N: Display and uses Line to Neutral
voltage
c Nominal voltage 380, 400, 415 V or
220, 230, 240 V
Nominal voltage. Value depends on L-L
or L-N setting
d Relay R2 0=Trip, 1=Pickup Trip: R2 on during trip
Pickup: R2 on during pickup and trip
E Auto/Manual resetting 0=auto, 1=manual auto: auto reset when trip condition clear
manual: press “RESET/MODE” to reset
b) Programming Setting
Step 1: Press “RESET/MODE” until the Function LED
shows the required setting.
Step 2: Press “UP” and “DOWN” simultaneously to
enter programming mode.
The Function LED blinks to indicates the relay is in
programming mode.
Step 3: Press “UP” or “DOWN” to select the desired
value.
Step 4: To save the selected value, press “UP” and
“DOWN” simultaneously again. It will exit the
programming mode with the Data LED displaying the
newly set value.
To exit programming mode without saving the selected
setting, press “RESET/MODE” once.
Table 1: Description of functions
2
4. Trip
a) Trip Display
During pickup, Trip/Pickup LED blinks, Relay R2 on if
it is set to 1-Pickup. During trip condition, Trip/Pickup
LED on. Function LED and Data LED blinks with trip
source as shown below:
5. Output Contacts
MU250 has 2 relay outputs (R1 and R2). R1 is On
under normal condition. R2 can be programmed to
on during trip state or during both pickup and trip
state.
L1
L2
L3
N
1 2 3 4 5 6
8 9 10 11 12 13
7
14
R1 R2
(OPTIONAL)
MU250
6. Typical Application Diagram
Neutral connection is optional when Phase
option is set to L-L. Neutral connection is
required when Phase option is set to L-N. (refer
to Setting b - Phase)
Function
LED Data LED Description
1 trip voltage Undervoltage trip
3 trip voltage Overvoltage trip
5 Ub Unbalance trip
5 PL Phase loss trip
5 PS Phase sequence trip
t EST Test
3
Table 2: Trip display
Figure 5
1 U<< Undervoltage %
Voltage/Frequency Display
3 U>> Overvoltage %
4 t>> Overvoltage time delay
5 Unbalance %
6 t Unbalance time delay
2 t << Undervoltage time delay
c Nominal voltage
A tstart Start time delay
b Phase
d Relay R2
E Auto/Manual reset
Trip History
b) Trip Reset
During trip condition, press “RESET/MODE” to reset
the relay, the relay will reset if condition permits. If
relay is set to Auto reset, the relay will reset
automatically if the condition is 5% below trip
condition.
c) Trip Test
Press “TEST” button to simulate a trip condition.
“tESt” will blink, R1 off and R2 on. Press
“RESET/MODE” to reset.
d) Trip History Display
During Voltage and frequency display, Press
“RESET/MODE” button to jump to Trip History
Display. Display shows the previous trip status with
a 'dot' blinking at Function LED. To clear trip history,
press "UP" and "DOWN" simultaneously.
e) Trip Bypass Mode
To disable tripping due to incorrect setting, press
“RESET/MODE” and “TEST” simultaneously during
power up. The Trip LED slow blink to indicate Trip
Bypass Mode. Go into programming mode to correct
the setting. Power off and on to reset the relay.
c) Undervoltage
Undervoltage pickup occurs when any line to line or
line to neutral voltage is less than [nominal voltage -
U<< %], relay trips when delay time is elapsed.
d) Overvoltage
Undervoltage pickup occurs when any line to line or
line to neutral voltage is more than [nominal voltage +
U>> %], relay trips when delay time is elapsed.
e) Unbalance
Unbalance is calculated as:
(Vmax-Vmin)/Vmin X 100%
Where Vmax is the maximum voltage among the 3
voltages. Vmin is the minimum voltage among the 3
voltages.
Unbalance pickup occurs when unbalance is more
than set %, relay trips when delay time is elapsed.
Phase Sequence trip occurs when the phase
sequence in any 2 or all of the lines are reversed. No
additional delay for phase sequence detection.
Phase Loss trip occurs when any voltage is less than
70% of nominal. No additional delay for phase loss
detection.
f) Starting Delay
Starting delay is the delay time for R1 to turn on during
power up under normal condition.

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Catalog mikro mikro mu250-user_manual

  • 1. 8. Case Dimensions 4 Front Side 71 mm 20mm 45mm 20mm 70 mm 85mm 30mm 20mm20mm Figure 6: Case Dimensions Setting Ranges Undervoltage : 1% – 25% Time delay for undervoltage : 0.1s – 30s Overvoltage : 1% – 20% Time delay for overvoltage : 0.1s – 30s Unbalance : 5% – 20% Time delay for unbalance : 0.1s – 30s Phase loss : Fixed time <0.1s Phase sequence : Fixed time <0.1s Start time delay : 0s – 999s Power Supply Input Phase to phase voltage : 380V(-25%)- 415V(+20%) AC Supply frequency : 45Hz to 65Hz Maximum power consumption : 3VA Contacts Contact arrangement : Change-over Contact rating : 5A, 250V AC (cos j=1) Contact material : Silver alloy Operating time : 15 ms max. Expected electrical life : 100,000 operations at rated current Expected mechanical life : 5 x 10 6 operations Indicators Auxiliary supply : Green LED indicator Pickup indicator : Red LED indicator Trip : 7-segment display and red LED indicators Mechanical Mounting : Din rail mounted Approximate weight : 0.31kg Accuracy Protection thresholds : ± 3 % Time delay : 0-0.5s, ± 15% with a minimum of 40ms : 0.6s and above, ± 3% Measurements : ± 3% 7. Technical Data MU250 3-Phase Voltage Relay User's Guide Brief Overview a b c d e f g h 1. General Description MU250 is a voltage relay that combines overvoltage, undervoltage, unbalance, phase loss, phase sequence and delay start functions. It can be connected with or without neutral wire. MU250 incorporates a 4-digit LED display which allows direct numerical readout of set values, actual measured value and system indication. MU250 has 2 relay outputs (R1 and R2). R1 is On under normal operating condition. R2 can be programmed to on during trip state or during pickup and trip state. 2. Voltage and Frequency Display During power up, when the relay is not under tripped condition, the display will show voltage and frequency reading. The Function LED indicates which line/phase of voltage is being displayed or shows 'F' when frequency is being displayed. U12 U23 U31 U1N U2N U3N Figure 2: Display for L-L setting. 415V and 50.0Hz shown as example Figure 3: Display for L-N setting. 240V and 50.0Hz shown as example Figure 1: Front panel overview 1 The Data LED showing value. Press “UP” or “DOWN” to scroll through the parameters as shown in Figure 2 and 3 (depends on L-L or L-N setting). Frequency Frequency a) Auto Scroll Auto scroll let the display to scroll to the next available parameter every 10 seconds. To toggle auto scroll mode, press "UP" and "DOWN" simultaneously.
  • 2. 3. Settings a) Setting Display When the relay is not under tripped condition, pressing “RESET/MODE” will scroll through various settings. Function LED showing number or alphabet to indicate which setting is being view as shown in Figure 4. Table 1 gives description of each setting. Tip: To quickly jump back to voltage display during setting display, press and hold “RESET/MODE” for more than 1.5 seconds. Setting Function Setting Range Description 1 U<< Undervoltage 1-25 % Undervoltage % from nominal voltage 2 t<< Undervoltage delay 0.1-30 s Time delay for undervoltage 3 U>> Overvoltage 1-20 % Overvoltage % from nominal voltage 4 t>> Overvoltage delay 0.1-30 s Time delay for overvoltage 5 Unbalance 3-20 % Unbalance % 6 t Unbalance delay 0.1-30 s Unbalance time delay A tstart Starting delay 0-999 s On time delay of R1 during power up b Phase L-L, L-N L-L: Display and uses Line to line voltage L-N: Display and uses Line to Neutral voltage c Nominal voltage 380, 400, 415 V or 220, 230, 240 V Nominal voltage. Value depends on L-L or L-N setting d Relay R2 0=Trip, 1=Pickup Trip: R2 on during trip Pickup: R2 on during pickup and trip E Auto/Manual resetting 0=auto, 1=manual auto: auto reset when trip condition clear manual: press “RESET/MODE” to reset b) Programming Setting Step 1: Press “RESET/MODE” until the Function LED shows the required setting. Step 2: Press “UP” and “DOWN” simultaneously to enter programming mode. The Function LED blinks to indicates the relay is in programming mode. Step 3: Press “UP” or “DOWN” to select the desired value. Step 4: To save the selected value, press “UP” and “DOWN” simultaneously again. It will exit the programming mode with the Data LED displaying the newly set value. To exit programming mode without saving the selected setting, press “RESET/MODE” once. Table 1: Description of functions 2 4. Trip a) Trip Display During pickup, Trip/Pickup LED blinks, Relay R2 on if it is set to 1-Pickup. During trip condition, Trip/Pickup LED on. Function LED and Data LED blinks with trip source as shown below: 5. Output Contacts MU250 has 2 relay outputs (R1 and R2). R1 is On under normal condition. R2 can be programmed to on during trip state or during both pickup and trip state. L1 L2 L3 N 1 2 3 4 5 6 8 9 10 11 12 13 7 14 R1 R2 (OPTIONAL) MU250 6. Typical Application Diagram Neutral connection is optional when Phase option is set to L-L. Neutral connection is required when Phase option is set to L-N. (refer to Setting b - Phase) Function LED Data LED Description 1 trip voltage Undervoltage trip 3 trip voltage Overvoltage trip 5 Ub Unbalance trip 5 PL Phase loss trip 5 PS Phase sequence trip t EST Test 3 Table 2: Trip display Figure 5 1 U<< Undervoltage % Voltage/Frequency Display 3 U>> Overvoltage % 4 t>> Overvoltage time delay 5 Unbalance % 6 t Unbalance time delay 2 t << Undervoltage time delay c Nominal voltage A tstart Start time delay b Phase d Relay R2 E Auto/Manual reset Trip History b) Trip Reset During trip condition, press “RESET/MODE” to reset the relay, the relay will reset if condition permits. If relay is set to Auto reset, the relay will reset automatically if the condition is 5% below trip condition. c) Trip Test Press “TEST” button to simulate a trip condition. “tESt” will blink, R1 off and R2 on. Press “RESET/MODE” to reset. d) Trip History Display During Voltage and frequency display, Press “RESET/MODE” button to jump to Trip History Display. Display shows the previous trip status with a 'dot' blinking at Function LED. To clear trip history, press "UP" and "DOWN" simultaneously. e) Trip Bypass Mode To disable tripping due to incorrect setting, press “RESET/MODE” and “TEST” simultaneously during power up. The Trip LED slow blink to indicate Trip Bypass Mode. Go into programming mode to correct the setting. Power off and on to reset the relay. c) Undervoltage Undervoltage pickup occurs when any line to line or line to neutral voltage is less than [nominal voltage - U<< %], relay trips when delay time is elapsed. d) Overvoltage Undervoltage pickup occurs when any line to line or line to neutral voltage is more than [nominal voltage + U>> %], relay trips when delay time is elapsed. e) Unbalance Unbalance is calculated as: (Vmax-Vmin)/Vmin X 100% Where Vmax is the maximum voltage among the 3 voltages. Vmin is the minimum voltage among the 3 voltages. Unbalance pickup occurs when unbalance is more than set %, relay trips when delay time is elapsed. Phase Sequence trip occurs when the phase sequence in any 2 or all of the lines are reversed. No additional delay for phase sequence detection. Phase Loss trip occurs when any voltage is less than 70% of nominal. No additional delay for phase loss detection. f) Starting Delay Starting delay is the delay time for R1 to turn on during power up under normal condition.