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Product short description:
  • Thermocouple, RTD, milliVolt, and Resistance Input
  • 0 to 20mA DC, 0 to 10V DC output
  • Limit Alarm
  • 10-36V DC power
  • Software configured
  • Performs linearization, square root extraction, and optional limit alarm functions

These transmitters isolate and convert sensor inputs to noise-free, proportional DC current or voltage output signals. An optional relay output adds a local limit alarm function.

 

 

 

 

 

801T Universal Input Intelligent Temperature Transmitter Description

These transmitters isolate and convert sensor inputs to noise-free, proportional DC current or voltage output signals. An optional relay output adds a local limit alarm function.

Each unit offers a selection of input and output ranges, as well as several signal conditioning options. This flexibility enables a single IntelliPack to handle a broad range of applications. As your needs change, you can easily reconfigure the unit for different ranges or functions.

Setup is very easy. IntelliPack modules are quickly configured with the user-friendly Windows software program. Field adjustments are simple with the module’s front-panel push-buttons and status LEDs. Once configured, IntelliPacks operate independent of any host computer.

Performance

Input Ranges
TC types: J, K, T, R, S, E, B, N.
Millivolt: ±15.625mV to ±1.0V DC.
RTD: 100 ohm Pt, 120 ohm Ni, 10 ohm Cu.
Resistance: 0 to 500 ohms.

Output Ranges
0 to 1mA, 0 to 20mA, 4 to 20mA DC.
0 to 5V, 0 to 10V DC.

Limit Alarm
SPDT electro-mechanical relay (-1500 unit only).

Power Requirement
10 to 36V DC.

Approvals
UL, cUL listed.

General Input

Analog to Digital (A/D) Converter: 16-bit Σ-Δ A/D converter.

Resolution: ±0.005% of span or 0.1°C.

Ambient Temperature Effect: Better than ±0.005% of input span per °C or ±1μV, whichever is greater.

Noise Rejection
Normal Mode: Better than 40dB @ 60Hz.
Common Mode: Better than 130dB @ 60Hz.

Input Response Time (for input step change): Less than 200mS typical to 98% of final output value.

Input Over-voltage Protection: Bipolar Transient Voltage Suppressors (TVS).

Thermocouple Input

Thermocouple Input Ranges
Thermocouple type user configured. Signal linearization, cold-junction compensation, and open circuit or lead break detection are included.

TC             °C Range (°F Range)                     Accuracy
J        -210 to  760°C (-346 to 1400°F)              ±0.5°C
K       -200 to 1372°C (-328 to 2502°F)             ±0.5°C
T       -260 to  400°C (-436 to 752°F)                 ±0.5°C
R         -50 to 1768°C (-58 to 3214°F)                ±1.0°C
S         -50 to 1768°C (-58 to 3214°F)                ±1.0°C
E       -200 to 1000°C (-328 to 1832°F)             ±0.5°C
B        260 to 1820°C (500 to 3308°F)               ±1.0°C
N      -230 to 1300°C (-382 to 2372°F)             ±1.0°C

Thermocouple Break Detection: TC sensor failure can be configured for either upscale or downscale.

RTD Input

RTD Input Ranges:100 ohm Platinum, 120 ohm Nickel, or 10 ohm Copper; user-configured

RTD                °C Range (°F Range)                       Accuracy
Pt1            -200 to 850°C (-328 to 1562°F)              ±0.25°C
Pt2            -200 to 850°C (-328 to 1562°F)              ±0.25°C
Ni                 -80 to 320°C (-112 to 608°F)                 ±0.25°C
Cu             -200 to 260°C (-328 to 500°F)                 ±1.00°C
Alpha: Pt1 (a = 1.3850), Pt2 (a = 1.3911), Ni (a = 1.6720), Cu (a = 1.4272).
2, 3, or 4-wire configurations supported. Module provides sensor excitation, linearization, lead-wire compensation, and sensor break detection.

RTD Excitation Current:
1mA DC typical, all types.

RTD Lead-Wire Compensation: 25 ohms per lead.

RTD Break Detection: RTD sensor failure can be configured for either upscale or downscale.

milliVolt Input

DC milliVolt/Voltage Input Ranges
±1.0V           ±125mV          ±31.25mV
±500mV     ±62.5mV        ±15.625mV
±250mV

milliVolt Accuracy: better than ±0.05% of input span.

Resistance Input

Resistance Input Range: 0 to 500 ohms.

Resistance Accuracy: ±0.05 ohms.

Output (DC V/mA)

D/A Converter: 16-bit Σ-Δ.

Current Output
0-1mA, 0-20mA, 4-20mA.
Compliance: 10V minimum (500 ohm load).
Accuracy: 0.025% of span.

Voltage Output
Ranges: 0-5V, 0-10V.
Compliance: 10mA maximum with short circuit protection. 1 ohm output impedance.
Accuracy: 0.025% of span.

Accuracy (overall input to output): 0.075% of span.

Output (Relay)

Relay: One SPDT electro-mechanical relay.

Relay Ratings (CSA ratings)
25V DC @ 5A; 120/240V AC @ 5A.

Relay Time Delay: Adjustable alarm delay of up to 25 seconds.

Contact Material: Silver-cadmium oxide (AgCdO).

Expected Mechanical Life: 20 million operations.

Environmental

Ambient Temperature
Operating: -25 to 70°C (-13 to 158°F).
Storage: -40 to 85°C (-40 to 185°F).

Relative Humidity: 5 to 95%.

Power Requirements: 10 to 36V DC. 75mA @ 24V. 120mA @ 15V.

Isolation (optical)
4-way (input/output/relay/power).
1500V AC for 60 seconds or 250V AC continuous.

Radiated Field Immunity (RFI): EN61000-4-3, EN50082-1.

Electromagnetic Field Immunity (EMI): Less than ±0.25% of output span effect under the influence of electromagnetic fields from switching solenoids, commutator motors, and drill motors.

Electrical Fast Transient (EFT): EN61000-4-4, EN50082-1.

Surge Withstanding Capability (SWC): EN61000-4-5, EN50082-1.

Electrostatic Discharge (ESD): EN61000-4-2, EN50082-1.

Radiated Emissions: EN50081-1 for Class B equipment.

Approvals: UL, cUL listed (USA, Canada); UL3121 – general product safety.

Configuration

Software Configuration: Units are fully programmable via the Windows 7 or newer IntelliPack Configuration Program. Configuration downloads from PC through EIA232 serial port using Acromag 800C-SIP kit.

Field Configuration: Output, zero/full-scale, relay setpoint and deadband are configurable via push-buttons and a standard calibrator.

LED Indicators: LEDs indicate power, status, calibration, and alarm.

Physical

Enclosure: Case: Self-extinguishing NYLON type 6.6 polyamide thermoplastic UL94 V-2, color beige; general purpose NEMA Type 1 enclosure.

Connectors (Removable terminal blocks): Wire Range: AWG #14-22 (AWG #12 stranded only).

Printed Circuit Boards: Military grade FR-4 epoxy glass circuit board.

Dimensions
1.05W x 4.68H x 4.35D inches.
26.7W x 118.9H x 110.5D millimeters.

Shipping Weight: 1 pound (0.45 Kg) packed.

 

 

  • High-resolution Sigma-Delta A/D converter delivers high accuracy with low noise.
  • Advanced micro-controller provides intelligent signal processing power for linearization, averaging, and square root computations.
  • Windows 7 or newer software configuration speeds setup and replacement.
  • Multi-purpose inputs and outputs reduce spare stock requirements.
  • Relay output option provides local limit alarm capability.

 

 

 

 

 

How to use Thermocouple Transmitters to Monitor Temperatures in Paint Systems | App Note
This document illustrates using Acromag’s TT330 Series to monitor high temperatures in an automotive paint curing oven and transmit to the existing PLC 4-20mA input card/software setup. Defining the Problem The area around an auto manufacturer’s paint curing ovens is at elevated temperatures affecting the performance of locally installed instrumentation. Placing Signal Conditioners rated for...
How to Use Temperature Transmitters to Optimize Solar Panel Performance | App Note
Monitoring Weather Conditions Helps Optimize Performance of Utility-Scale Solar Panel Arrays Swinerton Renewable Energy has selected weather stations from Columbia Weather Systems to provide meteorological data to their proprietary SCADA system at solar project sites. The construction company offers turn-key solar power solutions for utility-scale and distributed generation projects. Joe Brotherton, manager of the technical...
How to use Thermocouples for Temperature Measurement | Whitepaper (Log in to view the file)
The Basics of Temperature Measurement Using Thermocouples Choosing a temperature sensor for an application is not as simple as picking a thermocouple type with a compatible temperature range. You must give consideration to the sensor material type, the application temperature range, the relative sensitivity of the sensor, the limitations of its insulation material, and its...
How to use RTDs for Temperature Measurement | Whitepaper (Log in to view the file)
The Basics of Temperature Measurement Using RTDs Temperature reigns as the most often measured process parameter in industry. Most industrial applications require that a temperature be measured remotely, and that this signal be transmitted some distance. An industrial transmitter is commonly used to amplify, isolate, and convert the low-level sensor signal to a high level...

Manuals

801T User Manual (Log in to download the file)

IntelliPack Transmitter Configuration Software User Manual Model 5030-881 (Log in to download the file)

How to Use SIIG USB-to-Serial Cable With Windows Tech Note (Log in to download the file)

IntelliPack Configuration Software 5030-881 (Log in to download the file)
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Additional information

Weight 11 oz
Dimensions 5 × 1.25 × 4.5 in
Part Number

801T-0500: Transmitter, 801T-0500-C: factory configuration, 801T-1500: limit alarm with relay, 801T-1500-C: limit alarm with relay and factory configuration

Configuration

Windows Software Configuration

Product Series

IntelliPack 800 Series

Power

DC Power

  • Description

    801T Universal Input Intelligent Temperature Transmitter Description

    These transmitters isolate and convert sensor inputs to noise-free, proportional DC current or voltage output signals. An optional relay output adds a local limit alarm function.

    Each unit offers a selection of input and output ranges, as well as several signal conditioning options. This flexibility enables a single IntelliPack to handle a broad range of applications. As your needs change, you can easily reconfigure the unit for different ranges or functions.

    Setup is very easy. IntelliPack modules are quickly configured with the user-friendly Windows software program. Field adjustments are simple with the module’s front-panel push-buttons and status LEDs. Once configured, IntelliPacks operate independent of any host computer.

    Performance

    Input Ranges
    TC types: J, K, T, R, S, E, B, N.
    Millivolt: ±15.625mV to ±1.0V DC.
    RTD: 100 ohm Pt, 120 ohm Ni, 10 ohm Cu.
    Resistance: 0 to 500 ohms.

    Output Ranges
    0 to 1mA, 0 to 20mA, 4 to 20mA DC.
    0 to 5V, 0 to 10V DC.

    Limit Alarm
    SPDT electro-mechanical relay (-1500 unit only).

    Power Requirement
    10 to 36V DC.

    Approvals
    UL, cUL listed.

    General Input

    Analog to Digital (A/D) Converter: 16-bit Σ-Δ A/D converter.

    Resolution: ±0.005% of span or 0.1°C.

    Ambient Temperature Effect: Better than ±0.005% of input span per °C or ±1μV, whichever is greater.

    Noise Rejection
    Normal Mode: Better than 40dB @ 60Hz.
    Common Mode: Better than 130dB @ 60Hz.

    Input Response Time (for input step change): Less than 200mS typical to 98% of final output value.

    Input Over-voltage Protection: Bipolar Transient Voltage Suppressors (TVS).

    Thermocouple Input

    Thermocouple Input Ranges
    Thermocouple type user configured. Signal linearization, cold-junction compensation, and open circuit or lead break detection are included.

    TC             °C Range (°F Range)                     Accuracy
    J        -210 to  760°C (-346 to 1400°F)              ±0.5°C
    K       -200 to 1372°C (-328 to 2502°F)             ±0.5°C
    T       -260 to  400°C (-436 to 752°F)                 ±0.5°C
    R         -50 to 1768°C (-58 to 3214°F)                ±1.0°C
    S         -50 to 1768°C (-58 to 3214°F)                ±1.0°C
    E       -200 to 1000°C (-328 to 1832°F)             ±0.5°C
    B        260 to 1820°C (500 to 3308°F)               ±1.0°C
    N      -230 to 1300°C (-382 to 2372°F)             ±1.0°C

    Thermocouple Break Detection: TC sensor failure can be configured for either upscale or downscale.

    RTD Input

    RTD Input Ranges:100 ohm Platinum, 120 ohm Nickel, or 10 ohm Copper; user-configured

    RTD                °C Range (°F Range)                       Accuracy
    Pt1            -200 to 850°C (-328 to 1562°F)              ±0.25°C
    Pt2            -200 to 850°C (-328 to 1562°F)              ±0.25°C
    Ni                 -80 to 320°C (-112 to 608°F)                 ±0.25°C
    Cu             -200 to 260°C (-328 to 500°F)                 ±1.00°C
    Alpha: Pt1 (a = 1.3850), Pt2 (a = 1.3911), Ni (a = 1.6720), Cu (a = 1.4272).
    2, 3, or 4-wire configurations supported. Module provides sensor excitation, linearization, lead-wire compensation, and sensor break detection.

    RTD Excitation Current:
    1mA DC typical, all types.

    RTD Lead-Wire Compensation: 25 ohms per lead.

    RTD Break Detection: RTD sensor failure can be configured for either upscale or downscale.

    milliVolt Input

    DC milliVolt/Voltage Input Ranges
    ±1.0V           ±125mV          ±31.25mV
    ±500mV     ±62.5mV        ±15.625mV
    ±250mV

    milliVolt Accuracy: better than ±0.05% of input span.

    Resistance Input

    Resistance Input Range: 0 to 500 ohms.

    Resistance Accuracy: ±0.05 ohms.

    Output (DC V/mA)

    D/A Converter: 16-bit Σ-Δ.

    Current Output
    0-1mA, 0-20mA, 4-20mA.
    Compliance: 10V minimum (500 ohm load).
    Accuracy: 0.025% of span.

    Voltage Output
    Ranges: 0-5V, 0-10V.
    Compliance: 10mA maximum with short circuit protection. 1 ohm output impedance.
    Accuracy: 0.025% of span.

    Accuracy (overall input to output): 0.075% of span.

    Output (Relay)

    Relay: One SPDT electro-mechanical relay.

    Relay Ratings (CSA ratings)
    25V DC @ 5A; 120/240V AC @ 5A.

    Relay Time Delay: Adjustable alarm delay of up to 25 seconds.

    Contact Material: Silver-cadmium oxide (AgCdO).

    Expected Mechanical Life: 20 million operations.

    Environmental

    Ambient Temperature
    Operating: -25 to 70°C (-13 to 158°F).
    Storage: -40 to 85°C (-40 to 185°F).

    Relative Humidity: 5 to 95%.

    Power Requirements: 10 to 36V DC. 75mA @ 24V. 120mA @ 15V.

    Isolation (optical)
    4-way (input/output/relay/power).
    1500V AC for 60 seconds or 250V AC continuous.

    Radiated Field Immunity (RFI): EN61000-4-3, EN50082-1.

    Electromagnetic Field Immunity (EMI): Less than ±0.25% of output span effect under the influence of electromagnetic fields from switching solenoids, commutator motors, and drill motors.

    Electrical Fast Transient (EFT): EN61000-4-4, EN50082-1.

    Surge Withstanding Capability (SWC): EN61000-4-5, EN50082-1.

    Electrostatic Discharge (ESD): EN61000-4-2, EN50082-1.

    Radiated Emissions: EN50081-1 for Class B equipment.

    Approvals: UL, cUL listed (USA, Canada); UL3121 – general product safety.

    Configuration

    Software Configuration: Units are fully programmable via the Windows 7 or newer IntelliPack Configuration Program. Configuration downloads from PC through EIA232 serial port using Acromag 800C-SIP kit.

    Field Configuration: Output, zero/full-scale, relay setpoint and deadband are configurable via push-buttons and a standard calibrator.

    LED Indicators: LEDs indicate power, status, calibration, and alarm.

    Physical

    Enclosure: Case: Self-extinguishing NYLON type 6.6 polyamide thermoplastic UL94 V-2, color beige; general purpose NEMA Type 1 enclosure.

    Connectors (Removable terminal blocks): Wire Range: AWG #14-22 (AWG #12 stranded only).

    Printed Circuit Boards: Military grade FR-4 epoxy glass circuit board.

    Dimensions
    1.05W x 4.68H x 4.35D inches.
    26.7W x 118.9H x 110.5D millimeters.

    Shipping Weight: 1 pound (0.45 Kg) packed.

     

     

  • Features & Benefits

    • High-resolution Sigma-Delta A/D converter delivers high accuracy with low noise.
    • Advanced micro-controller provides intelligent signal processing power for linearization, averaging, and square root computations.
    • Windows 7 or newer software configuration speeds setup and replacement.
    • Multi-purpose inputs and outputs reduce spare stock requirements.
    • Relay output option provides local limit alarm capability.

     

     

     

     

     

  • Tech Papers

    How to use Thermocouple Transmitters to Monitor Temperatures in Paint Systems | App Note
    This document illustrates using Acromag’s TT330 Series to monitor high temperatures in an automotive paint curing oven and transmit to the existing PLC 4-20mA input card/software setup. Defining the Problem The area around an auto manufacturer’s paint curing ovens is at elevated temperatures affecting the performance of locally installed instrumentation. Placing Signal Conditioners rated for...
    How to Use Temperature Transmitters to Optimize Solar Panel Performance | App Note
    Monitoring Weather Conditions Helps Optimize Performance of Utility-Scale Solar Panel Arrays Swinerton Renewable Energy has selected weather stations from Columbia Weather Systems to provide meteorological data to their proprietary SCADA system at solar project sites. The construction company offers turn-key solar power solutions for utility-scale and distributed generation projects. Joe Brotherton, manager of the technical...
    How to use Thermocouples for Temperature Measurement | Whitepaper (Log in to view the file)
    The Basics of Temperature Measurement Using Thermocouples Choosing a temperature sensor for an application is not as simple as picking a thermocouple type with a compatible temperature range. You must give consideration to the sensor material type, the application temperature range, the relative sensitivity of the sensor, the limitations of its insulation material, and its...
    How to use RTDs for Temperature Measurement | Whitepaper (Log in to view the file)
    The Basics of Temperature Measurement Using RTDs Temperature reigns as the most often measured process parameter in industry. Most industrial applications require that a temperature be measured remotely, and that this signal be transmitted some distance. An industrial transmitter is commonly used to amplify, isolate, and convert the low-level sensor signal to a high level...
  • Specs & Data Sheets

    Manuals

    801T User Manual (Log in to download the file)

    IntelliPack Transmitter Configuration Software User Manual Model 5030-881 (Log in to download the file)

    How to Use SIIG USB-to-Serial Cable With Windows Tech Note (Log in to download the file)

  • Software

    IntelliPack Configuration Software 5030-881 (Log in to download the file)
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      • Provide safe and secure wiring connections
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  • Additional information

    Additional information

    Weight 11 oz
    Dimensions 5 × 1.25 × 4.5 in
    Part Number

    801T-0500: Transmitter, 801T-0500-C: factory configuration, 801T-1500: limit alarm with relay, 801T-1500-C: limit alarm with relay and factory configuration

    Configuration

    Windows Software Configuration

    Product Series

    IntelliPack 800 Series

    Power

    DC Power