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CS1D-IC102D OMRON Programmable Controllers CS1D-IC102D


Supply voltage: 100 to 120 or 200 to 240 VAC (automatic voltage setting), 50/60 Hz
Operating voltage range: 85 to 132 or 170 to 264 VAC
Power consumption: 150 VA max.
Output capacity: 8 A, 5 VDCUnit type: CS1 Basic I/O Units.
Product name: DC Input/Transistor Output Unit.
Specifications: 24 VDC, 6 mA 32 inputs CS1D-IC102D.
Mountable Racks: CPU Rack, CS1WW-BC,
@@3, Yes, @@2, Yes;
C200HX/HG/HE Expansion I/O Rack, No.
CS1 Expansion Rack, CS1W-BI,
@@3, Yes, @@2, Yes;
CS1 Long distance Expansion Rack, Yes;
SYSMAC BUS Slave Rack, No CS1D-IC102D.
Words required: 2 input words and 2 output words.
Current consumption: 5V system, 0.27A;
26 V system, --.
Standards: UC1, N, L, CE.
Multi-application Controllers:
From High-performance Machine C,
Highly Reliable Process Control CS1D-IC102D.
Name: I/O Control Unit.
Specifications: Applicable systems,
Duplex CPU, Dual I/O Expansion System only;
Duplexing, Supported;
Online Replacement, Supported;
Mounting Backplane, Expansion Backplane;
Connecting Cable, CS1W-CN@@3,
CS-series Connecting Cable OMRON CS1D-IC102D.
Current consumption: 5V system, 0.20A;
26V system, --.
Standards: UC1, CE.
Redundant CPU Units , Power Supply Units ,
Communications Units ,
and Expansion I/O Cables. Name: Position Control Module.
Model: C200HW-NC413 OMRON CS1D-IC102D.
Control method: Open-loop, automatic trapezoid acceleration/deceleration.
Control output sig-nals: Pulse-train outputs.
Controlled axes: 4.Model: C200H-TS002.
Temperature sensor: Thermocou-ples: K (CA)/L (Fe-CuNi)(DIN)(selectable)
Input points: 4 points/Unit max OMRON CS1D-IC102D. (1, 2, or 4 points can be selected)Unit type: 10 I/O points 6 inputs; 4 outputs, Connector.
Input: 6 points: 24 VDC.
Output: 4 points: transistor (sinking).
Clock: Yes.
Slaves with the Complex Functionality Needed,
for Distributed Blocks.
Programmable Slaves combine devices, such as sensors and actuators,
into one functional unit that is treated as a DeviceNet slave.
Programmable Slaves greatly facilitate device distribution,
and functional organization.
They help standardize programming between unitts and reduce the amount of,
programming required at the master CS1D-IC102D.
I/O and operational checks can be performed for each functional unit,
rather than waiting.
for final system assembly, as with conventional distributed I/O systems.

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