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DIN Rail Isolated Repeater/Splitter for Process Signals.

Isolated DIN Rail Signal Conditioner/Splitter for Process Signals

C$365.63

Item# DRSL-SP2

Volume discounts available
Volume Discount Schedule
Quantity Price each
1-4 C$365.63
5-9 C$347.35
10-24 C$340.04
25-49 C$325.41
50-99 C$318.10
100+ C$310.79

In stock

Lead Time (If not in stock): 18 weeks
Isolated DIN Rail Signal Conditioner/Splitter for Process Signals DRSL-SP2 DRSL-SP2
  • Isolation and Conversion of Process Voltage or Current Signals
  • Splitter Function: 1 Process Input–2 Process Outputs
  • Power Supply and Signal Isolator for 2-Wire Transmitter
  • Slimline Housing–Only 6 mm (0.24') Wide

DRSL-SP2 Model Options

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Input Type
Input Class
Input Ranges
Output Type
Output Class
Supply Voltage Type
Isolation
Programability
Additional Feature


The DRSL-SP2 isolated signal conditioner/splitter provides a competitive choice in terms of both price and technology for galvanic isolation of process voltage or current signals to SCADA systems or PLC equipment. Two process outputs are provided which mirror the single process input.

The DRSL-SP2 can be used for signal conversion of standard process voltage or current signals into two individual analog signals. The unit offers 4-port isolation, provides surge suppression and protects control systems from transients and noise. The DRSL-SP2 also eliminates ground loops and can be used for measuring floating signals. Low power consumption facilitates DIN rail mounting without the need for any air gap. Factory calibrated measurement ranges are easily configured via DIP switches. When the input is configured for 2-wire transmitter mode, the DRSL-SP2 provides the current loop supply voltage. The unit operates over a wide temperature range from -25 to 70°C (-13 to 158°F).

SPECIFICATIONS
INPUT
Current Input
Measurement Range: 0 to 20.5 mA
Functional Range: 0 to 23 mA
Programmable Measurement Ranges: 0 to 20 mA and 4 to 20 mA
Input Voltage Drop: <1.5V
2-Wire Transmitter Supply: >17V/20 mA
Voltage Input
Measurement Range: 0 to 10.25V
Functional Range: 0 to 11.5V/ 0 to 5.75V
Programmable Measurement Ranges: 0 to 5V, 1 to 5V, 0 to 10V, 2 to 10V
Input Resistance: ≥500 kΩ

OUTPUT
No. of Outputs: 2
Current Output
Signal Range: 0 to 20.5 mA (span)
Programmable Signal Ranges: 0 to 20 mA and 4 to 20 mA
Load: 23 mA/300 Ω max
Load Stability: ≤0.01% of span/100 Ω
Current Limit: ≤28 mA
Voltage Output
Signal Range: 0 to 10V
Programmable Signal Ranges: 0 to 10, 2 to 10, 0 to 5 and 1 to 5V
Load: >10 kΩ min

GENERAL
Supply Voltage (via Power Rail or Connectors): 16.8 to 31.2 Vdc
Power Consumption: 1.2 W max
Internal Consumption: 0.4 W typical/0.65 W max
Isolation: Input/output 1/output 2/ supply
Isolation Voltage (Test): 2.5 kVac
Isolation Voltage (Working): 300 Vac
Signal/Noise Ratio: >60 dB
Response Time (0 to 90%, 100 to 10%): <7 ms
Span: Corresponds to the presently selected DIP switch output range
Accuracy: <±0.05 % of span
Temperature Coefficient: <±0.01% of span/°C
EMC Immunity Influence: <±0.5% of span
Extended EMC Immunity
NAMUR NE 21, A Criterion, Burst: <±1% of span

ENVIRONMENTAL
Operating Temperature: -25 to 70°C (-13 to 158°F)
Storage Temperature: -40 to 85°C (-40 to 185°F)
Calibration Temperature: 20 to 28°C (68 to 82°F)
Relative Humidity: 0 to 95% RH non-condensing
Protection Degree: IP20
Installation Area: Pollution degree 2 and measurement/overvoltage category II

MECHANICAL
Dimensions: 113 H x 6.1 W x 115 mm D (4.4 x 0.24 x 4.5")
Weight: 70 g (0.15 lb) approx
DIN Rail Type: DIN EN 60715 - 35 mm
Wire Size: 0.13 x 2.5 mm2/AWG 26 to 12 stranded wire
Screw Terminal Torque: 0.5 Nm
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Rated 5 out of 5 by from Not Hard to Implement I was worried by the other review, but after reading the manual and wiring diagram it did not seem too complex to me. Implemented it in a retrofit, buying another one now. They work great and are not hard. Anyone with electrical literacy will be fine.
Date published: 2023-06-08
Rated 1 out of 5 by from Worst possible instructions I defy anyone to wire this without outside help. The manual is a translation where every key word was left out.
Date published: 2016-07-21
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