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SPRTX-STCTX-Srs-Sig-Cond

Universal Temperature Connector Transmitter for TC and RTDs

Models In Stock
  • High Accuracy, Repeatability and Stability
  • Connector Design Converts Input Signal to a Standard 2-Wire, 4 to 20 mA Output
  • Provides “Open Sensor Wire” Signal Indication
  • Easy Interface, Just plug into the Connector-Transmitter™
SPRTX-STCTX-Srs-Sig-Cond
From C$ 114.00
Models In Stock
Universal Temperature Connector Transmitter for TC and RTDs SPRTX-STCTX-Srs-Sig-Cond SPRTX-STCTX-Srs-Sig-Cond
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Product Overview
  • Accuracy ± 0.5 %
  • Approvals CE
  • Cable Length 3 m
  • Electrical Connection Cable
  • Electrical Output 4 to 20 mA, 1 to 5 Vdc
  • Load Resistance (Vsupply – 9V)/0.02 A
  • Loop Resistance, Max (Vs – 9V) / 0.020 A
  • Operating Temperature, Max 85 °C
  • Operating Temperature, Min -40 °C
  • Output Signal Current
  • Sensor Break Detection Leg 1: Open = 27 mA, Leg 2: Open = 2.2 mA, Leg 3: Open = 2.2 Ma
  • Supply Power 9 to 24 Vdc @ 30 mA max
  • Supply Power Type DC
The OMEGATM SPRTX and STCTX Series are high performance, low cost, industrial RTD (Resistive Temperature Device) and Thermocouple Connector-Transmitters. Both feature a encapsulated micro miniature signal conditioner built into a patented connector housing. The SPRTX signal conditioner converts the resistive change of a 100 Ω, 0.00385 RTD sensor or probe across a dedicated temperature range into an industry standard 2-wire, 4 to 20 mA analog output. The STCTX signal conditioner converts the non-linear millivolt output of a thermocouple sensor or ungrounded probe across a dedicated temperature range into an industry standard 2-wire, 4 to 20 mA analog output. This analog output can be sent hundreds of feet away from the location of your sensor (probe) to an indicating device, controller, PLC, computer, data logger or chart recorder.
SPECIFICATIONS
Supply Voltage: 9 to 24 Vdc @ 30 mA max
Output: Linearized 4 to 20 mA
Accuracy: ± 0.5% of FS @ 23°C (73°F) ambient
Repeatability: ± 0.25°C (± 0.5°F)
Temperature Effect: ± 0.0022 mA/ °C (± 0.0012 mA/°F)
Max Load: Rmax (Ω) = (Vsupply - 9 V)/0.02 A
Max Input Lead Resistance: 50 V
Transmitter Operating Temp: -40 to 85°C (-40 to 185°F)
Output Connection: 2-wire, shielded cable [3 m (10') included]
Approvals: CE marked
Weight: 110 g (0.25 lb) max with cable

SPRTX Series for RTDs
Range:
SPRTX-M1, SPRTX-S1: -99 to 208°C (-146 to 406°F)
SPRTX-M2, SPRTX-S2: 2 to 569°C (36 to 1056°F)
Input: 3-wire, Pt100 (α = 0.00385)
Open Sensor Wire Indication:
Leg 1: Open = 27 mA
Leg 2: Open = 2.2 mA
Leg 3: Open = 2.2 mA
Input Connection:
SPRTX-M1, SPRTX-M2: 3-prong miniature connector (MTP-U-F)
SPRTX-S1, SPRTX-S2: 3-prong standard-size connector (OTP-U-F)
Dimensions:
SPRTX-M1, SPRTX-M2: 24 H x 18 W x 79 mm L (0.96 x 0.70 x 3.12")
SPRTX-S1, SPRTX-S2: 36 H x 18 W x 83 mm L (1.43 x 0.70 x 3.25")

STCTX Series for Thermocouples
Range by Model:
STCTX-J1, -K1, -T1: -18 to 121°C (0 to 250°F)
STCTX-J2, -K2: -18 to 538°C (0 to 1000°F)
STCTX-K3: -18 to 1093°C (0 to 2000°F)
STCTX-T2: -18 to 399°C (0 to 750°F)
Input: Thermocouple signal (ungrounded sensors only); Type J, K or T by model
Open Sensor Indication: 22 to 27 mA
Input Connection: Universal thermocouple connector (UST Series)
Supply Voltage: 9 to 24 Vdc @ 30 mA
Output: 4 to 20 mA (2-wire)
Accuracy: ± 0.5% of full scale millivolt input @ 23°C (73°F) plus the non-linearity of the thermocouple type (Note: The STCTX does not compensate for thermocouple non-linearity)
Ambient Temp Effect: ± 0.015 mA/°C
Max Loop Load: V = (Vsupply - 9 V)/0.020 A
Transmitter Operating Temp: -40 to 85°C (-40 to 185°F)
Output Connection: 2-wire shielded cable [3 m (10') included]
Response Time: 120 ms (0 to 63% FS)
Rated 5 out of 5 by from Worked Great! The universal temp connector - transmitter worked exactly as advertised.
Date published: 2022-03-30
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Can this part be ordered with a longer cable, or is it possible to terminate a longer cable on the transmitter?

Asked by: JB93
Thank you for your inquiry. Unfortunately we do provide other cable length options.
Answered by: Application Engineer CB
Date published: 2022-05-24
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