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DRP-8500-Srs-Sig-Cond

DIN Strain Gauge to Frequency Converter for Micro PLCs

  • DRP-8500 Series Connect to Micro PLCs High Speed Counter Inputs
  • DRP-8600 Series Connect to Micro PLCs 24 VDC Logic Inputs
  • Voltage, Current, RTD, Thermocouple and Strain Gage Inputs
  • DIN Rail Mountable
DRP-8500-Srs-Sig-Cond
From $ 153.00
DIN Strain Gauge to Frequency Converter for Micro PLCs DRP-8500-Srs-Sig-Cond DRP-8500-Srs-Sig-Cond
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Product Overview
  • Electrical Connection Screw Terminal
  • Height 42 mm
  • Length 96 mm
  • Materials Plastic
  • Mounting DIN Rail Mount
  • Output Value Process
  • Supply Power Type DC
  • Weight 85 g
  • Width 27 mm
  • Wire Gauge 22 to 16 AWG
The DRP-8500 Series modules offer a low cost analog I/O solution for micro PLCs. The series is ideal for discrete automation applications requiring one or two analog I/O channels. All models in the series interface with the PLC high speed counter inputs or pulse outputs. Digital signal pulse-width is fixed at 50 µsec. They will accept a variety of analog inputs, such as thermocouple, RTD, strain gage, voltage, and current. Some DRP-8500 models can be connected to pulse outputs from a PLC, and will then provide an analog output. The DRP-8500 series modules have an isolated floating optocoupler transistor which provides DC isolation from the input, output and DC power. The output transistor is fully floating allowing either source or sink connection to the PLC. The DRP-8500 resolution is 12 bits. The DRP-8600 Series modules are designed to interface with the low-speed 24 Vdc logic inputs of a PLC for applications requiring additional analog inputs. The DRP-8600 modules output a square wave up 500 Hz with a 50-50 duty cycle, allowing the PLC to count the frequency producing better than 8- bit resolution, 1 part in 500. The DRP-8600 module has an isolated floating optocoupler transistor which provides DC isolation from the input, output and DC power. The output transistor is fully floating allowing either source or sink connection to the PLC. All modules are housed in a plastic case with a built-in U-foot for mounting on standard DIN rails. Connections are made to screw clamp terminals that accept wire sizes 22 AWG to 16 AWG.

Common Specifications (contact engineering for detailed specifications)

Connections: Screw terminals, 22 to 16 AWG
Power: 24 volts nominal
Size: 42 mmH x 27 mmW x 96 mmL (1.65 x 1.06 x 3.78")
Weight: 85g (3 oz)

Model NumberInputOutput
Analog to Frequency (High Speed Counter Input)
DRP-8505 4 mA to 20 mA 1,000 to 5,000 Hz from floating
optocoupler
DRP-8506 0 to 5Vdc 0 to 5,000 Hz from floating optocoupler
DRP-8507 0 to 10Vdc 0 to 5,000 Hz from floating optocoupler
Frequency to Analog (High Speed Counter Input)
DRP-8508 1000 to 5000 Hz optocoupler diode
(7 mA into 3.3 KΩ, 20µs pulse width min)
4 to 20 mA
DRP-8509 0 to 5000 Hz optocoupler diode
(7 mA into 3.3 KΩ, 20µs pulse width min)
0.1 to 5 Vdc
DRP-8510 0 to 2000 Hz optocoupler diode
(7 mA into 3.3 KΩ, 20µs pulse width min)
0.05 to 5 Vdc
DRP-8513 400 to 2000 Hz optocoupler diode
(7 mA into 3.3 KΩ, 20µs pulse width min)
20 mA
DRP-8514 0 to 2000 Hz optocoupler diode
(7 mA into 3.3 KΩ, 20µs pulse width min)
10 Vdc
Thermocouple to Frequency (High Speed Counter Input)
DRP-8511 Type J T/C 0 to 500°C 100 to 5100 Hz from floating optocoupler
DRP-8512 Type K T/C 0 to 500° C 100 to 5100 Hz from floating optocoupler
RTD to Frequency (High Speed Counter Input)
DRP-8540 Platinum RTD -100 to +400°C
100 ohm α = 0.00385
2 or 3 Wire Connection
100 to 5100 Hz from floating optocoupler
Strain Gage to Frequency (High Speed Counter Input)
DRP-8555 0 to 50 mV Differential Signal
from full bridge Strain Gage,
10 V excitation provided
0 to 5 KHz from floating optocoupler
Analog to Frequency (Low Speed Pulse Input)
DRP-8605 4-20 mA 100-500 Hz from floating optocoupler
DRP-8606 0-5 Vdc
DRP-8607 0-10 Vdc 0-500 Hz from floating optocoupler
Type J T/C to Frequency Converters(Low Speed Pulse Input)
DRP-8611 Type J T/C 0 to 1000°C 10-1100 Hz from floating optocoupler
DRP-8612 Type K T/C 0 to 1250°C 5 Hz to 630 Hz from floating optocoupler
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