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Analog Models Omron PLC CP1E Transistor Output CPU Unit CP1E-NA20DT-D

Categories Omron PLC CP1E
Brand Name: Omron
Model Number: CP1E-NA20DT-D
Place of Origin: China/Japan
MOQ: 1/pc
Price: $50-500
Supply Ability: 10pc/per week
Packaging Details: Carton packaging
Payment Terms: T/T, western union
Itme: CP1E series
Main function: CPU Unit
Product name: DC drive
Output type: Transistor
Inputs: 12
Outputs: 8
Usage: Machine
Warranty: 1 Year
PAYMENT: TT.Western Union
Port: selectable
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Analog Models Omron PLC CP1E Transistor Output CPU Unit CP1E-NA20DT-D

Analog models Omron PLC controller module Transistor-Output CPU CP1E-NA20DT-D


Description

Omron PLC CPU Unit CP1E-NA20DT-D

  • Extended Product Type : CP1E
  • Product ID : CP1E-NA20DT-D
  • OMRON Type Designation : CP1E
  • Description : CONTROL LOGIC 12 IN 8 OUT 24V

Features

• New CP1E CPU Units now available. Lineup including CPU Units with built-in three ports: USB, RS-232C, RS-485. The depth of CPU Units with RS-232C connectors is reduced by 20 mm. (N30/40/60S(1))
• Easy connection with computers using commercially available USB cables.
• With E30/40/60(S), N30/40/60(S@) or NA20 CPU Units, Add I/O, Analog I/O or Temperature Inputs by Connecting
Expansion Units or Expansion I/O Units.
• Input interrupts
• Complete High-speed Counter Functionality.
• Versatile pulse control for Transistor Output for N14/20/30/40/60(S@) or NA20 CPU Units.
• PWM Outputs for Transistor Output for N14/20/30/40/60(S@) or NA20 CPU Units.
• Mounting Serial Option Boards, Ethernet Option Board and Analog Option Board to N30/40/60 or NA20 CPU Units.
• Built-in analog I/O, two inputs and one output, for NA-type CPU Units.

International Standards

• The standards are abbreviated as follows: U: UL, U1: UL (Class I Division 2 Products for Hazardous Locations), C: CSA, UC: cULus,
UC1: cULus (Class I Division 2 Products for Hazardous Locations), CU: cUL, N: NK, L: Lloyd, KC: KC Registration, and CE: EU Directives.
• Contact your OMRON representative for further details and applicable conditions for these standards.

Specification

  • Power Supply : 24 VDC
  • Inputs : 12
  • Outputs : 8
  • Program capacity : 8K steps
  • Data memory capacity : 8K words
  • Standards : UC1, N, L, CE, KC

General Specifications


TypeAC power supply modelsDC power supply models
ModelCP1E-[][][]S[]D[]-A
CP1E-[][][]D[]-A
CP1E-[][][]S[]D[]-D
CP1E-[][][]D[]-D
EnclosureMounted in a panel
Dimensions (H × D × W)E/N/NA[][]-type
CPU Unit with 10 I/O points (CP1E-E10D[]-[]): 90mm *1 × 85mm *2 × 66 mm
CPU Unit with 14 or 20 I/O points (CP1E-[]14D[]-[]/[]20D[]-[]): 90mm *1 × 85mm *2
× 86 mm
CPU Unit with 30 I/O points (CP1E-[]30D[]-[]): 90mm *1 × 85mm *2 × 130 mm
CPU Unit with 40 I/O points (CP1E-[]40D[]-[]): 90mm *1 × 85mm *2 × 150 mm
CPU Unit with 60 I/O points (CP1E-N60D[]-[]): 90mm *1 × 85mm *2 × 195 mm
CPU Unit with 20 I/O points and built-in analog (CP1E-NA20D[]-[]): 90mm *1 × 85mm
*2 × 130 mm
E/N/[][]S(1)-type
CPU Unit with 14 or 20 I/O points (CP1E-[]14SD[]-[]/[]20SD[]-[]): 90mm *1 × 79mm
*2 × 86 mm
CPU Unit with 30 I/O points (CP1E-[]30S(1)D[]-[]): 90mm *1 × 79mm *2 × 130 mm
CPU Unit with 40 I/O points (CP1E-[]40S(1)D[]-[]): 90mm *1 × 79mm *2 × 150 mm
CPU Unit with 60 I/O points (CP1E-[]60S(1)D[]-[]): 90mm *1 × 79mm *2 × 195 mm
WeightCPU Unit with 10 I/O points (CP1E-E10D[]-[]): 300g max.
CPU Unit with 14 I/O points (CP1E-[]14(S)D[]-[]): 360g max.
CPU Unit with 20 I/O points (CP1E-[]20(S)D[]-[]): 370g max.
CPU Unit with 30 I/O points (CP1E-[]30(S[])D[]-[]): 600g max.
CPU Unit with 40 I/O points (CP1E-[]40(S[])D[]-[]): 660g max.
CPU Unit with 60 I/O points (CP1E-[]60(S[])D[]-[]): 850g max.
CPU Unit with 20 I/O points and built-in analog (CP1E-NA20D[]-[]): 680g max.
Elec-
trical
spec-
ifica-
tions
Supply voltage100 to 240 VAC 50/60 Hz24 VDC
Operating voltage
range
85 to 264 VAC20.4 to 26.4 VDC
Power
consumption
15 VA/100 VAC max.
25 VA/240 VAC max.
(CP1E-E10D[]-A/[]14(S)D[]-A/
[]20(S)D[]-A)
9 W max. (CP1E-E10D[]-D)
13 W max. (CP1E-N14D[]-D/N20D[]-D)
50 VA/100 VAC max.
70 VA/240 VAC max.
(CP1E-NA20D[]-A/[]30(S[])D[]-A/
[]40(S[])D[]-A/N60(S[])D[]-A)
20 W max.
(CP1E-NA20D[]-D/N30(S[])D[]-D/
N40(S[])D[]-D/N60(S[])D[]-D) *4
Inrush current120 VAC, 20 A for 8 ms max. for cold start
at room temperature
240 VAC, 40 A for 8 ms max. for cold start
at room temperature
24 VDC, 30 A for 20 ms max. for cold start
at room temperature
External power
supply *3
Not provided.
(CP1E-E10D[]-A/[]14(S)D[]-A/
[]20(S)D[]-A)
24 VDC, 300 mA
(CP1E-NA20D[]-A/[]30D[]-A/
[]40D[]-A/[]60D[]-A/[]30SDR-A/
[]40SDR-A/[]60SDR-A)
Not provided
Insulation
resistance
20 MΩ min. (at 500 VDC) between the
external AC terminals and GR terminals
Except between DC primary current and DC
secondary current
Dielectric
strength
2,300 VAC 50/60Hz for 1 min between AC
external and GR terminals Leakage current:
5 mA max.
Except between DC primary current and DC
secondary current
Power OFF
detection time
10 ms min.2 ms min.
Appli-
cation
envi-
ron-
ment
Ambient operating
temperature
0 to 55 °C
Ambient humidity10% to 90%
AtmosphereNo corrosive gas.
Ambient storage
temperature
-20 to 75 °C (excluding battery)
Altitude2,000 m max.
Pollution degree2 or less: Meets IEC 61010-2-201.
Noise resistance2 kV on power supply line (Conforms to IEC61000-4-4.)
Overvoltage
category
Category II: Meets IEC 61010-2-201.
EMC Immunity
Level
Zone B
Vibration
resistance
Conforms to JIS 60068-2-6.
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 total)
Shock resistanceConforms to JIS 60068-2-27.
147 m/s2, 3 times in X, Y, and Z directions
Terminal blockFixed (not removable)
Terminal screw sizeM3
Applicable standardsConforms to EC Directive
Grounding methodGround to 100 Ω or less.


* 1 Total of 110 mm with mounting brackets.
* 2 Excluding cables.
* 3 Use the external power supply to power input devices. Do not use it to drive output devices.
* 4 This is the rated value for the maximum system configuration. Use the following formula to calculate power
consumption for CPU Units with DC power.
Formula: DC power consumption = (5 V current consumption ✕ 5 V/70% (internal power efficiency) + 24V current
consumption) ✕ 1.1 (current fluctuation factor)
The above calculation results show that a DC power supply with a greater capacity is required.


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