DGH D1300 Sensor to Computer Thermocouple Input Module

  • DGH

Product Features

  • 8-bit ADC, 8 conversions per second
  • User selectable °C or °F
  • Accuracy (overall, error from all sources, between 0-40°C ambient): ±1.0°C maximum (J, K, T, E) and ±2.5 °C maximum (R, S, B, C)(300°C TO FS)
  • Resolution: ±1°
  • Common mode rejection: 100dB at 50/60Hz
  • Input impedance: 100MΩ minimum
  • Lead resistance effect: <20μV per 350Ω
  • Open thermocouple and overrange indication
  • Automatic cold junction compensation and linearization
  • Temperature range of -25°C to +70°C

Applications

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The D1300 thermocouple input module is part of the DGH’s D1000 sensor to computer interface data acquisition module family. This input module converts the thermocouple temperature sensor input signal from the choice of 8 different thermocouple types (J, K, T, E, R, S, B and C) to digital data, linearises and scales it in °C or °F, and communicates the values using the ASCII protocol to give digital output. The D1300 thermocouple input module also contains two digital inputs which may be read by the host computer to sense the state of a remote digital signal, such as state of limit or safety switches, a 60Hz events counter (not applicable for D1300M) and three open-collector digital outputs (or HI/LO alarms) which may be controlled by the host computer and used to control, for example, solid-state relays. For extra security, it utilises a non-volatile EEPROM (Electrically Erasable Programmable Read Only Memory) to store all user-selectable settings, meaning the values are maintained in the event of power loss. The D1300 comes pre-set with default values of 300 baud, one start bit, eight data bits, one stop bit, no parity and any address recognized, but these values can be easily changed by the user. The modules are designed to be compatible with all popular computers utilising RS-232C or RS-485 ports and no software is necessary to start using them, although the utility software is provided. The D1300 can be mounted on a DIN-rail if required (MK-1 mounting kit required) and can be combined with other D1000/D2000 modules to provide complete customised data acquisition system for given application.

  • Analog-to-digital thermocouple input module
  • Choice of RS-232 or RS-485 output
  • Choice of 8 different thermocouple types: J, K, T, E, R, S, B, C (factory set)
  • Communicates using ASCII protocol
  • User-selectable features include °C or °F, baud rate, parity type and others
  • Accuracy (overall, error from all sources, between 0-40°C ambient): ±1.0°C maximum (J, K, T, E) and ±2.5 °C maximum (R, S, B, C)(300°C TO FS)
  • Resolution: ±1°
  • Common mode rejection: 100dB at 50/60Hz
  • Input impedance: 100MΩ minimum
  • Lead resistance effect: <20μV per 350Ω
  • Open thermocouple and overrange indication
  • Input burnout protection to 250Vac
  • Automatic cold junction compensation and linearisation
  • Digital input/Event counter, 2 digital inputs and 3 Digital outputs
  • Power requirements: Serial = 0.75W
  • Temperature range -25°C to +70°C

The applications for the D1300 data acquisition modules include:

  • Process monitoring and control
  • Remote data logging to any host computer
  • Product testing
  • Direct connection to modems

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Specifications

Weight 0.00000 kg
Dimensions 27.94 x 62.23 x 91.44mm
Input/Output

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Number of Channels

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Power Requirements

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Thermocouple Type

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DGH D1000 & D2000 Technical Library

We are pleased to provide you with a range of additional content including videos, product datasheets, case studies, white papers and application notes for your reference. Please see below for the latest content available:

 

 

DOCUMENTATION
DGH D1000 & D2000 Series Datasheet
DGH D1000 & D2000 Series User Manual
Command Set Protocol for D1000 Series
  • DGH

DGH D1300 Sensor to Computer Thermocouple Input Module

Please be advised that due to the ongoing supply issues with raw materials affecting the global electronics industry, as well as an increase in orders received by our manufacturing partners, a large number of products are facing increased lead times in recent months. For the latest lead time and stock availability, please contact one of our engineers who will be happy to discuss lead times further and the potential for alternative parts.