GE / IP FANUC Series 90/30 In Stock
Other Available Revisions for the IC600YB911 IC600YB911AIC600YB911BIC600YB911CIC600YB911DIC600YB911EIC600YB911FIC600YB911GIC600YB911HIC600YB911IIC600YB911JIC600YB911KIC600YB911LIC600YB911MIC600YB911NIC600YB911OIC600YB911PIC600YB911QIC600YB911RIC600YB911-RRIC600YB911SIC600YB911TIC600YB911UIC600YB911VIC600YB911WIC600YB911XIC600YB911YIC600YB911Z
5VTTL Output Module YB911 Series Six Module Without Face Plate GE Fanuc IC600Y IC600YB
The GE Fanuc IC600YB911 high-density 5 Volts DC Transistor to Transistor Logic (TTL) output module is made to offer a GE Series 6 Programmable Logic Controller (PLC) the functionality to command other microprocessor-based electronic circuits that use 5 Volts of transistor logic to perform any type of operation in an industrial setting. In the TTL device, the control signals will alternate between the low (0 Volts DC) and the high (5 Volts DC) states, giving an electronic device the ability to receive and send pulse signals that are easy to transmit, encode, decode, and interpret. The GE Fanuc IC600YB911 high-density 5 Volts DC TTL output module can be installed directly in the PLC backplane or in any available slot in the Series 6 CPU. The output count is 32 TTL outputs per module, each of them with a corresponding status LED.
The end users are able to program the default condition of the outputs if a power interruption occurs with 1 of 2 options. The IC600YB911 module can hold the last state it was in before the power interruption occurred or it can reset itself to a predefined condition. This customization is made possible by inserting or removing a jumper wire in the GE Fanuc IC600YB911 high-density 5 Volts DC TTL output module. If the users want to invert the data received from the CPU, there is a second jumper beside the first one. Both of the jumpers have an LED to show that the control mode is in operation. Some applications for the GE Fanuc IC600YB911 high-density 5 Volts DC TTL output module are interfacing a CPU to an external device by using the TTL or CMOS logic circuitry, controlling 5 Volts DC rated loads and communicating 5 Volts DC pulse control signals to external field devices.
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