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Omron CJ1W-PA202 CJ-series Power Supply Unit CJ1W-PA202 100-240 VAC PLC Module In Stock

News March 31, 2025

Omron CJ1W-PA202 CJ-series Power Supply Unit CJ1W-PA202 100-240 VAC PLC Module In Stock


Omron CJ1W-PA202 CJ-series Power Supply Unit CJ1W-PA202 100-240 VAC PLC Module In Stock

Specifications

ItemSpecifications
ModelCJ1W-PA205RCJ1W-PA205CCJ1W-PA202
Supply voltage100 to 240 V AC (wide-range), 50/60 Hz
Operating voltage and
frequency ranges
85 to 264 V AC, 47 to 63 Hz
Power consumption100 VA max.50 VA max.
Inrush current *1At 100 to 120 V AC: 15 A/8 ms max. for cold start at room
temperature
At 200 to 240 V AC: 30 A/8 ms max. for cold start at room
temperature
At 100 to 120 V AC:
20 A/8 ms max. for cold start
at room temperature
At 200 to 240 V AC:
40 A/8 ms max. for cold start
at room temperature
Output capacity *75.0 A, 5 V DC (including supply to CPU Unit)2.8 A, 5 V DC
(including supply to CPU Unit)
0.8 A, 24 V DC0.4 A, 24 V DC
Total: 25 W max.Total: 14 W max.
Output terminal
(service supply)
Not provided.
RUN output *2Contact configuration:
SPST-NO
Switch capacity:
250 V AC, 2 A (resistive load)
120 V AC, 0.5 A (inductive
load),
24 V DC, 2A (resistive load)
24 V DC, 2 A (inductive load)
Not provided.
Replacement
notification function
Not provided.With Alarm output (open-
collector output)
30 V DC max., 50 mA max.
Not provided.
Insulation resistance20 MΩ min. (at 500 V DC)
between AC external and
GR terminals *3
20 MΩ min. (at 500 V DC)
between all external
terminals and GR terminal *3,
and between all alarm output
terminals.
20 MΩ 1 min. (at 250 V DC)
between all alarm output
terminals and GR terminal *3.
20 MΩ min. (at 500 V DC)
between AC external and
GR terminals *3
Dielectric strength *42,300 V AC 50/60 Hz for 1 min
between AC external and GR
terminals *3
Leakage current: 10 mA max.
2,300 VAC, 50/60 Hz for 1 min
between all external terminals
and GR terminal *3 and
between all alarm output
terminals with a leakage
current of 10 mA max.
1,000 V AC, 50/60 Hz for 1 min
between all alarm output
terminals and GR terminal *3
with a leakage current of 10
mA max.
2,300 V AC 50/60 Hz for 1 min
between AC external and GR
terminals *3
Leakage current: 10 mA max.
1,000 V AC, 50/60 Hz for 1 minute between DC external and GR terminals *3
Leakage current: 10 mA max.
Noise immunity2 kV on power supply line (conforming to IEC61000-4-4)
Vibration resistanceConforms to IEC60068-2-6
5 to 8.4 Hz with 3.5-mm amplitude, 8.4 to 150 Hz
Acceleration of 9.8 m/s2 for 100 min in X, Y, and Z directions (10 sweeps of 10 min each =
100 min)
Shock resistanceConforms to IEC60068-2-27
147 m/s2, 3 times in X, Y, and Z directions (100 m/s2 for Relay Output Units)
Ambient operating
temperature
0 to 55 °C
Ambient operating
humidity
10% to 90% (with no
condensation)
10% to 90% (with no
condensation) *5
10% to 90% (with no
condensation)
AtmosphereMust be free from corrosive gases.
Ambient storage
temperature
- 20 to 70 °C (excluding
battery)
- 20 to 75 °C *5- 20 to 75 °C (excluding
battery)
GroundingLess than 100 Ω
EnclosureMounted in a panel.
Weight350 g max.400 g max.200 g max.
CPU Rack
dimensions
90.7 to 466.7 × 90 × 65 mm (W × H × D) (not including cables)
Note:
W = a + b + 20 × n + 31 × m + 14.7
a: Power Supply Unit: PA205R and PA205C = 80; PA202 = 45; PD025 = 60; PD022=27
b: CPU Unit: CJ1-H or CJ1 = 62; CJ1M-CPU1[] = 31 *8; CJ1M-CPU2[] = 49 *8
The total width is given by the following: W = 156.7 + n × 20 + m × 31,
where n is the number of 32-point I/O Units or I/O Control Units and m is the number of other
Units.
Safety measuresConforms to cULus and EC Directives.












































































Condition 1: Current Requirements

There are two voltage groups for internal power consumption: 5 V and 24 V.
Current consumption at 5 V (internal logic power supply)
Current consumption at 24 V (relay driving power supply)

Condition 2: Power Requirements


For each Rack, the upper limits are determined for the current and power that can be provided to the mounted Units. Design the system so that the total current consumption for all the mounted Units does not exceed the maximum total power or the maximum current supplied for the voltage groups shown in the following tables.
The maximum current and total power supplied for CPU Racks and Expansion Racks according to the Power Supply Unit model are shown below.
Note: 1. For CPU Racks, include the CPU Unit current and power consumption in the calculations. When expanding, also
              include the current and power consumption of the I/O Control Unit in the calculations.
           2. For Expansion Racks, include the I/O Interface Unit current and power consumption in the calculations.



Power Supply UnitsMax. current suppliedMax. total power supplied
5 V24 V (relay driving current)
CJ1W-PA205R5.0 A0.8 A25 W
CJ1W-PA205C5.0 A0.8 A25 W
CJ1W-PA2022.8 A0.4 A14 W
CJ1W-PD0255.0 A0.8 A25 W
CJ1W-PD0222.0 A0.4 A19.6 W


Conditions 1 and 2 below must be satisfied.

Condition 1: Maximum Current

(1) Total Unit current consumption at 5 V ≤ (A) value
(2) Total Unit current consumption at 24 V ≤ (B) value

Condition 2: Maximum Power

(1) × 5 V + (2) × 24 V ≤ (C) value

Example: Calculating Total Current and Power Consumption

Example: When the Following Units are Mounted to a CJ-series CPU Rack Using a CJ1W-PA202 Power Supply Unit





Unit typeModelQuantityVoltage group
5 V24 V
CPU UnitCJ1M-CPU13 *110.580 A---
I/O Control UnitCJ1W-IC10110.020 A---
Basic I/O Units
(Input Units)
CJ1W-ID21120.080 A---
CJ1W-ID23120.090 A---
Basic I/O Units
(Output Units)
CJ1W-OC20120.090 A0.048 A
Special I/O UnitCJ1W-DA04110.120 A---
CPU Bus UnitCJ1W-CLK2310.350 A---
Current
consumption
Total0.580 + 0.020 + 0.080 × 2 + 0.090 ×
2 + 0.090 × 2 + 0.120 + 0.350
0.048 A × 2
Result1.59 A (≤ 2.8 A)0.096 A ( ≤ 0.4 A)
Power
consumption
Total1.59 × 5 V = 7.95 W0.096 A × 24 V = 2.304 W
Result7.95 + 2.304 = 10.254 W (≤ 14 W)





















More Models:


CJ1W-AD04UCJ1W-ID211CJ1W-OD212CJ1W-PA202CJ2M-CPU32CJ1W-DA041NX-ECC202NX102-9000NX-ID5442NX-OD5256NS5-SQ11B-V2CJ1W-PA205RCJ1W-SCU42S8VK-C12024CJ1W-OD213

P2RF-05-EPYFZ-14-E BY OMZ/CP2RF-08-E BY OMZMY4N AC220/240 (S)MY2N-GS, AC220/240G3R-ODX02SN-UTU 5-24VDCE5AC-CX4ASM-000G3H-203SN-VD DC5-24G2R-1-SND DC24E5AN-HPRR2BM-500R88D-1SN15H-ECTR88D-1SN55F-ECTG3NA-240B-UTU AC100-240G2R-1-SN DC24+P2RFZ-05-ECP1L-EM30DT1-DCP1W-CIF11CP1W-40EDT1E6B2-CWZ5B 1000P/R 0.5ME3Z-G82-M3J OMSE32-ZT11

CP1L-EM40DT-DCJ2M-CPU15CJ1W-SCU31-V1S8VK-G24024CJ1W-AD041-V1CP1L-M40DR-DG3NA-210B-UTU AC100-240 BY OMZD4DS-K3D4NS-1AFZ-15GW-B OMINX-SL3300R88D-1SN08H-ECTNX-SID800WLNJ-S2THG-NE3Z-R61 2M OMIE3FA-DP22 OMICJ1W-ID231CP2E-N40DT-DCP1L-EM40DR-DCP2E-N30DT1-DNB7W-TW00BR88D-KT15F-ZS8VK-C24024NX-PF0630NX-ECC203NX-AD2203NS8-TV00B-ECV2NS10-TV01B-V2NB10W-TW01BCJ2M-CPU14CJ1W-DRM21NX1P2-1040DT1H3DK-M2 AC/DC24-240G9SE-201 DC24G2R-1-SNDI 24DC(S)E5EC-QR2ASM-800E3Z-D87 OMIE3JK-RR12-C 2ME3FB-RP21 OMIE3FB-DP22 OMIE3FA-DP11 2M OMIE2B-S08KS02-MC-B1 OMIE2B-M12KN05-WP-B1 2M OMICJ1W-II101CJ1W-DA08VCS1W-BAT01TL-Q5MC1-Z 2MS8VK-T48024S8VK-G06024

MY4N-CR-GS AC220/240 BY OMZMY2IN-GS AC220/240 BY OMZG7T-1112S DC24 BY OMZG2R-2-SN 24DC(S)E2E-S05S12-WC-B1 2M OMSD4N-412GD4MC-5000CS1W-CN226CP1H-XA40DR-ACP1H-X40DR-ACJ1W-CTL41-EE3Z-D82 2MCJ2MCPU32CJ1W-ID261CJ2M-CPU33CP2E-N20DT1-DCP2E-N20DT-DE3NX-FA11 2MCJ1W-AD081-V1 NLE32-TC200 2ME39-R1G9SE-401 DC24CP1E-N40DR-AE3Z-D82 2M OMIXS2F-M12PVC4A5MH5CX-A-N OMINX-EC0222D4NS-2BFD4DS-K2XW2Z-200KNX-ID4442MY2N-GS AC220/240 BY OMZE3JK-TR11-CE2B-M12KS04-M1-B1CJ1W-OD262CJ1W-ID262CJ1W-ID232B7A-T6C1-CHNB7A-R6F31PTFZ-08-EH3CR-A AC100-240/DC100-125H3CR-A8 AC100-240/DC100-125G3NB-220B-1 DC5-24G3NB-210B-1 DC5-24G2R-2-SNDI 24DC(S)E5CC-RX2ASM-802

E3Z-LS81 2MCS1W-CIF31NX-AD4208CJ1W-ETN21HMC-EF183CJ2M-CPU35NX-PD1000NX-OD4256NX-DA3203NX-AD3203D4SL-NK1SD4SL-N4FFA-DD4SL-NSK10-LKH5CX-AD-N OMIE3T-ST14 2M

E39-R1SE2E-X4C112 2M OMSD4NA-412GD4N-1120CS1W-CN626CJ2H-CPU65CP1W-DAB21VE3Z-R81 2ME3Z-R86G3NA-D210B-UTU DC5-24Z-15GW55-BCJ2M-CPU11NX102-9020CJ1W-OC211PYFZ-14-ECP1W-40EDTMY2-GS DC24S8VK-G12024G2R-2-SNI 24DC(S)E3Z-T61 2ME3Z-D87NX1P2-1040DTNX1P2-1140DTG2R-1-SND C24(S) + P2RFZ-05-ECJ1W-PD025CJ1W-OD261EE-SX672CJ1W-TER01CP1W-CIF01CJ1W-SCU41-V1CJ1W-DA08CCJ1W-AD081-V1CJ1W-OD211CJ1W-IC101CJ1W-PD022E3ZG-R81-S 2ME3ZG-R61-S 2ME3FA-DN12 2MNJ-PD3001E3Z-LS61 2M OMSE3Z-LS81 2M OMS

E2B-M12KS04-M1-B1 OMIS8VK-S06024E3FA-DP12 2MNX1P2-9024DT1S8VK-C06024E3Z-T86CJ1W-ID211(SL)CJ1W-DA021CJ2M-CPU12E2B-M12KN05-WZ-B1 2MSE-K1ENCJ1W-OD201CJ1W-ID201CJ1W-SCU41CJ2M-CPU31NXAD3204GT1-DA04NA5-9W001B-V1S8VS-24024D4NL-4DFA-BNE1A-SCPU02-EIPG6D-4-SBP2CF-08H3CR-H8L AC/DC24 MS8VS-18024APYFZ-08-EPTF14A-EMY4N-GS DC24G6D-F4B DC24VS8VS-24024AS8VS-06024AG6D-F4B DC24G7SA-2A2B-DC24AX-FIM3050RE3G3MX2-A4110-ZV1P7SA-10F-ND DC24G7SA-3A1B DC24D4MC-2000G2R-1-SND DC24(S)+P2RFZ-05-E

E3S-CT11 5MP2RF-08-EG2R-2-SN DC24V (S)HL-5072(N)BY OMRS8VK G24024H3CR-ATL-W3MC1H5S-WFB2+Y92A-72C+Y92F-903G3RX-A4110SHL-Q2255H5L-AH3CR-A8 100 to 240 VACHL-5030

WLCA2-NZE-N-2GTZ-1GVCPM2C-MAD11G2R-1-SNDC24(S) with base 18Y7CXZFX-SC50




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