Transmitters: TT230 Series TT235 Isolated RTD/resistance input two-wire transmitter
■The TT235 model is a space-saving two-wire transmitter that isolates and converts an RTD sensor input to a proportional 4-20mA signal. Power is received from the output loop current or a DC supply when using a three-wire connection. The transmitter provides sensor excitation plus performs linearization, lead-wire compensation, and lead-break detection
■Setup and calibration are fast and easy with a convenient USB connection to your PC and Acromag’s Windows configuration software
■Advanced signal processing capabilities, variable range input, and convenient USB programming make this instrument a very versatile temperature measurement device. These transmitters can withstand harsh industrial environments and operate reliably across a wide temperature range with very low drift. They feature RFI, EMI, ESD, EFT, and surge protection plus low radiated emissions
●Key Features & Benefits
■Easy setup and digital calibration via USB with Windows configuration software
■Selectable RTD or linear resistance input type:Pt RTD (100Ω, 200Ω, 500Ω, or 1000Ω), Ni RTD (120Ω), Cu RTD (10Ω), or Resistance (0-450Ω)
■1500V isolation between input/output circuits
■Space-saving 12.5mm (0.5 inch) unit with pluggable terminals for convenient wiring
■High accuracy, linearity, stability, and reliability
■Supports normal or reverse-acting output
■Supports sink or source output wiring
■User-selectable filtering (none, low, med., high)
■Fast response (as low as 22ms)
■Selectable upscale or downscale operation for sensor errors and lead-break detection
■NAMUR-compliant output loop current
■Shock (25g) and vibration (4g) resistant
■Wide ambient operation (-40 to 80°C)
■CE compliant. UL/cUL Class I Div 2, ATEX / IECEx Zone 2 approvals
TT235 、 TT235 model 、 TT230 Series 、 TT230 、 TT235-0600 |
|
|
|
Datasheet |
|
|
|
Please see the document for details |
|
|
|
|
|
|
|
English Chinese Chinese and English Japanese |
|
2021/9/1 |
|
|
|
8400755J |
|
533 KB |
- +1 Like
- Add to Favorites
Recommend
All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.