IC600BF831

GE Fanuc | Series Six | In Stock Ships Today GE Fanuc Series Six IC600

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IC600BF831

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  • Manufacturer: GE Fanuc
  • Description: 32 points 10-50Vdc Input Module with Lights
  • Weight: 3 lbs :: ≈ 2 kgs
  • Warranty: 2 Years
  • Product Revisions Available:
  • Other Available Revisions of the IC600BF831 : A, B, C, D, E, F, G, H, I, J, K, L, M, N, O, P, Q, R, S, T, U, V, W, X, Y, Z,

Product Manual Excerpt

The High-Density Input module can be utilized in an 1/O Rack, in any of the I/O slots in a Model 60 Central Processor Unit (CPU), or a Series Six Plus CPU to provide a compact, optically-isolated interface between the Series Six backplane I/O bus and Field Digital Circuitry (TTL mode) or input devices (10-50 V mode). The High- Density Input module features and benefits are summarized in Table 1. This module provides 32 inputs divided into four groups of eight inputs each. All 32 inputs (four groups) are normally updated in the course of one I/O scan. (active high). The placement of a second jumper allows the data being sent to the CPU to be inverted (complemented) or non-inverted. Two Light-Emitting Diode (LED) indicators identify the selected modes. A third jumper selects the voltage level of the user power supply: 5 volts or 10 to 50 volts. When operating in the TTL mode, the 5 V power supply must be used. Dual- In-line Package (DIP) switches on the circuit board allow the selection of 50 microsecond or 10 millisecond time delays on an individual basis for each input. Hysteresis of approximately 10% of supply voltage provides better noise immunity even with the filter switched off. There is a common ground (or return) point provided for all 32 input points. By placement of a jumper on the circuit board, the user can select the input data to be sink (active low) or source Refer to figure 1 for High-Density Input module specifications. TABLE 1. FEATURES AND BENEFITS FEATURES Three user-selectable input modes: TTL Levels l0-50 V dc (sink) l0-50 V dc (source) 32 input points per module BENEFITS Can be used with standard logic circuitry, or sense other DC levels. Low cost per input point. More efficient use of I/O-rack space. and off-delay times of: 50 microseconds IO milliseconds Fast response for time-critical applications. Greater filtering for higher noise environments. APPLICATIONS Interface to CPU from: Instruments with TTL outputs Current-sinking DC devices Current-sourcing DC devices Compact I/O system. Example: operator s devices where low cost inputs and high density is required. High-Density Input Module With Status Indicators GEK-83546 Dimensions: Circuit Board: 8.15 x 11.0 (inches) 208 x 280 (mm) Faceplate: 12.46 x 1.175 (inches) 317 x 30 (mm) Storage Temperature: -20C to +80C Operating Temperature: OC to + 60 C at outside of rack. Humidity: 5% to 95% (non-condensing) Altitude: Up to 10,000 feet above sea level (operating) Isolation: Series Six common to user common 2000 V dc for one second (maximum) 240 V ac 50/6OHz continuous (maximum) Rate of change (noise immunity) 500 V/microsecond (maximum) Power Requirements: Supplied by I/O rack or Series 60 rack: + 5 V dc, 200 mA maximum or 4 power units Ref. Chapter 2, section 2, I/O module load, Installation and Maintenance Manual, GEK-25361A. User supplied power: TTL Mode: + 5 f 0.25 V dc including ripple of 0.25 V Power used by module - 1.5 Watts with LEDs lo-50 V Mode: 10 V dc to 50 V dc including ripple. Ripple < f 2 volts at SO/60 Hz. Power used by module - 4.0 Watts with LEDs Input Requirements: Switching Thresholds: ON STATE TTL Mode: < 0.8 Volts l0-50V Sink Mode: < 40% V supplied l0-50V Source Mode: > 70% V supplied Input Impedance: 15,000 ohms Response Time: 50 microseconds (Filter out) 10 milliseconds (Filter in) OFF STATE HYSTERESIS > 2.0 Volts 0.9 Volts > 70% V supplied 10% V supplied < 40% V supplied 10% V supplied FIGURE 1. SPECIFICATIONS FIGURE 2A. USER ITEMS (Part 1 of 2) High Density Input Module With Status Indicator Lights Ref. 70.TMP.58 3 on Input position ront of GEK-83546 Selectable Filter-DIP Switches (continued) Switch CLOSED: 10 milliseconds delay on input. KEY GROUP INPUTS SWITCHES LEDs - Illuminated when current flowing at input terminal. INPUT NUMBER DIP SWITCH POSITION INPUT NUMBER DIP SWITCH POSITION h in OPEN Position (Depressed to the Left) . 1 and No. 2 should be in CLOSED Position URE 3. DIP SWITCH SETTINGS Ref. 70.150 High-Density Input Moduie With Status Indicators INSTALLATION GEK-83546 The High-Density Input module can be installed in an l/O Rack in a Model 60 CPU Rack or in a Series Six Plus CPU Rack. Before installing the module, the Dual-In-Line Package (DIP) switches immediately behind the card slot on the rack backplane should be set to reserve 32 consecutive input points in the Input Status Table of the CPU. For specific DIP switch settings, refer to figure 3. The circuit-board jumpers must also be set to configure t h e m o d u l e t o o p e r a t e in t h e d e s i r e d s y s t e m configuration. For example: sink or source, invert or noninvert, TTL or lo-50 volt inputs. Refer to figure 2, User Items and appropriate figure 5, 6 or 7. If input connections for 10 to 5OV modes shown in figures 6 and 7 are used, a closed switch turns the input ON; an open switch turns the input OFF. In the absence of user power, all inputs will appear to be in the OFF state. It is recommended that the extraction/insertion tool furnished with the CPU be used to remove or install the circuit boards. With the board in place in the rack, the edge connector on the faceplate should be slipped over the circuit board so that proper contact is made. The faceplate can then be secured to the rack using the thumbscrews at the top and bottom. Refer to figures 4 for a typical symbolic input circuit. NOTE Jumper JP3 must be set correctly for the voltage in use. See figures 5, 6, and 7. Failure to set JP3 to the correct position may prevent module from operating. Refer to figures 5, 6 and 7 for Typical User Input connections to this module. In the TTL mode of operation, the low (negative) side of each of the TTL inputs must be returned to the Module Common (COM) terminal Pin 34. The ON state of an input point, as defined in figure 1, results in a 1 being loaded into the Input Status Table with the module in the non-inverting mode; an input in the OFF state results in a 0 being loaded into the Input Status Table. NOTE Set Jumper JP3 correctly as follows: VOLTAGE TO PIN SET JP3 5V 33 & 34 l-2 1 o-5ov 34 ONLY 2-3 TO LCD STATUS INDICATION ILLUMINAT~O II- CURRENT FLOWING AT INPUT 4 rSHAREO6Y ALL INPUTSI WIRE SHARED BY ALL INPUTS FIGURE 4. TYPICAL SYMBOLIC INPUT CIRCUIT; 1 OF 32 Ref. 70.TMP.59 High-Density Input Module With Status Indicators GEK-83546 Do not apply more than +5 volts to the 5 volt terminal nor jumper the 5 volt (Pin 33) terminal to the SO volt terminal (Pin 34) when using this module in the 10-50V mode. Failure to observe this caution will damage the module due to excessive voltage on the logic circuitry. NOTE r --------------- I II 1 T-l-, TYPICAL INPUT REFERENCES COM USER CIRCUITRY USER CONNECTOR 1. PS1 is a 5 volt power supply supplied by user and wired as shown. 2. Jumper JP3 must be in the l-2 position when using this type power. 3. Jumper JP1 must be set to the l-2 (SINK) position for TTL current loads. 4. Module can be wired and setup for only 1 mode of operation at a time. 5. The low (negative) of each of the users TTL input circuits must be returned to the module common (COM) terminal, Pin 36. 6. See figures 2 and 3 for other switch and jumper settings. 7. Jumper Pins 33 and 34 together on user connector. FIGURE 5. RECOMMENDED USER INPUT CONNECTIONS FOR TTL MODE OPERATION Ref. 70.TMP.60 High-Density Input Module With Status Indicators GEK-83546 Do not apply more than +5 volts to the 5 volt terminal nor jumper the 5 volt (Pin 33) terminal to the 50 volt terminal (Pin 34) when using this module in the 10-50V mode. Failure to observe this caution will damage the module due to excessive voltage on the logic circuitry. TYPICAL INPUT REFERENCES PSI is a 10-50 volt power supply supplied by user and wired as shown. Jumper JP3 must be in the 2-3 position when using this type power. Jumper JPl must be set to the l-2 (SINK) position. Module can be wired and setup for only 1 mode of operation at a time. See figures 2 and 3 for other switch and jumper settings. Do not jumper Pin 33 to 34 on user connector. FlGURE 6. RECOMMENDED USER INPUT CONNECTIONS FOR 10-50 VOLT SINK MODE OPERATION Ref. 70.TMP.60 7 High-Density Input Module GEK-83546 With Status Indicators Do not apply more than +5 volts to the 5 volt terminal nor jumper the 5 volt (Pin 33) terminal to the 50 volt terminal (Pin 34) when using this module in the 10-50V mode. Failure to observe this caution will damage the module due to excessive voltage on the logic circuitry. NOTE TYPICAL INPUT REFERENCES 1. PS1 is a 10-50 volt power supply supplied by user and wired as shown. 2. Jumper JP3 must be in the 2-3 position when using this type power. 3. Jumper JP1 must be set to the 2-3 (SOURCE) position. 4. Module can be wired for only 1 mode of operation at a time. 5. See figures 2 and 3 for other switch and jumper settings. 6. Do not jumper Pin 33 to 34 on user USER CIRCUITRY USER CONNECTOR FIGURE 7. RECOMMENDED USER INPUT CONNECTIONS FOR 10-50 VOLT SOURCE MODE OPERATION 8 Ref. 70.TMP.60 High-Density Input Module With Status Indicators ORDERING INFORMATION Module 5 to 50 V dc Input With Indicators Circuit Board and Faceplate Circuit Board Only IC600BF83 1 IC600YB831 GEK-83546 Facealate Onlv IC600FP83 1 This symbol on the nameplate means the product is listed by Underwriters Laboratories Inc. (UL Standard No. 508, Industrial Control Equipment, subsection Electronic Power Conversion Equipment.) For further information, contact your local GE Fanuc sales office GE FANUC AUTOMATION NORTH AMERICA, INC., CHARLOTTESVILLE, VIRGINIA

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