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TX86-Transmitter

Programmable Head Mount Temperature Transmitter for Thermocouples

Models In Stock
TX86-Transmitter
From $ 820.93
Models In Stock
Programmable Head Mount Temperature Transmitter for Thermocouples TX86-Transmitter TX86-Transmitter
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Product Overview
  • Accuracy ± 0.2 %
  • Accuracy Note ± 0.2% of full scale input
  • Cold Junction Compensation ±2°C
  • Diameter 62 mm
  • Electrical Connection Screw Terminal
  • Electrical Output 4 to 20 mA
  • Height 42 mm
  • Housing Material Plastic, Polycarbonate
  • Humidity Range 20 to 90% RH non-condensing
  • Input Resistance 0 to 2000 Ω
  • Mounting Head-mounted
  • Operating Temperature, Max 70 °C
  • Operating Temperature, Min -20 °C
  • Output Load 50 x (Vsupply – 12V) Ω
  • Probe Length 0 mm
  • Programmable Functions alarm, °C/°F, Cold Junction, control action, Dampening, Deadband, offset, Range, Sensor Burnout Indication
  • Resolution 2 μA
  • Response Time 1 sec with dampening off
  • Sensor Type Transmitter
  • Setup Controls 3 pushbuttons on front
  • Sheath Material N/A
  • Span, Min 50°C
  • Stability ± 0.15%/ year (Long Term Stability)
  • Storage Temperature, Max 70 °C
  • Storage Temperature, Min -20 °C
  • Supply Current 30/150 µA ± 2%
  • Supply Power Note 12 to 30 Vdc, LED indicator reverse polarity protected 60 Vdc
  • Supply Power Type DC
  • Supply Voltage 12 to 30 Vdc
  • Temperature Input Range 0 to 260 °C
  • Weight 80 g
The TX86 is a 2-wire Loop-Powered, Galvanic-Isolated, Programmable Universal Input Temperature Transmitter that is designed to be head-mounted, but can be standalone as well. It uses 16 bits A/D and D/A converters offering high accuracy with Linearized 4 to 20 mA or 20 to 4 mA outputs. Being a user-friendly rugged instrument, it displays the measured variable and has a SSR output. The TX86 has 3 push buttons on its front keyboard & a 4-digit 7-segment bright LED display module that indicates the values of the measured parameters during the Measuring Mode while also providing prompting and programming instructions during the setup and calibration mode routines. The 1000V AC galvanic isolation removes all ground loop effects. Three different engineering units (°C, °F and %), can be displayed and the chosen unit is highlighted by an associated LED lamp when in the measuring mode.

SPECIFICATIONS
Input SensorsMeasured Range (°C)Minimum Span (°C)
K-100 to 137250
J-100 to 75050
T-100 to 40050
E-100 to 75050
R0 to 170050
N-100 to 130050
S0 to 170050
B400 to 180050
100PT-200 to 85050
200PT-200 to 50050
500PT-200 to 20025
1000PT-200 to 20025
Ni120-80 to 26050
Cu10-100 to 26050
Resistance0 to 2000Ω50Ω
Potentiometer0 to 2000Ω50Ω
mV (millivolts)-5 to +602 mV

General Performance: (@ 24 Vdc, 25°C ±2°C)
Loop Power: 12 to 30 Vdc, LED indicator reverse polarity protected 60 Vdc
Output: 4/20 mA calibrated; 3.8 to 20.5 mA linear
Resolution: 2uA
RTD Excitation Current: 30/150 uA ± 2%
Input Impedance: 1 MΩ, nominal
Maximum Load: 50 x (Vsupply – 12V) Ω
Accuracy: ± 0.2% of full scale input
Long-Term Stability: ± 0.15%/ year
Temp. Coefficient: ± 0.01%/°C (5 to 50°C)
Dampening Constant: Programmable
Configuration: Via 3 push-buttons on front
Solid State Relay Output: 30 mA maximum
Cold Junction Comp: ± 2°C max (5 to 50°C)
Power Supply Effect: Less than 0.01%/V
Input Protection: 40 Vdc maximum
Sensor Burnout: Upscale >21mA, downscale <3.8 mA
Isolation Rating: 1000V RMS continuous
Response Time: 1 second with dampening off
Power-on Response: Within 5 seconds
Ambient Temps: -20 to 70°C (-4 to 158°F) (storage and operation)
Relative Humidity: 20 to 90%, non-condensing
Dimensions: 62 Dia x 42 mm H (2.5 x 1.7")
Mounting: Head-mounted
Housing: Plastic, polycarbonate
Weight: 80 g (0.18 lb)
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What is 5-11?? User manual only goes to 5-10. I have different values on 5-11, 1.500 &amp; 3.000 is most common. I'm having calibration issues and wondering if I can force an offset . I'm using 44 units and outputs vary ~3-6F.

Asked by: Paul J512
Hi Paul, Please forward request to TEMP@OMEGA.COM for direct technical support. Best regards OMEGA
Answered by: NorwalkAE_RS
Date published: 2022-10-24
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