TTR200E1HBFM5: Also a specific model variant in the TTR200 series.
TTR200.E1.H.BF.M5
Can connect to a variety of temperature sensors, with rich input signal types.
With high-precision measurement capabilities, the accuracy can reach 0.1%.
With self-monitoring function, in line with relevant safety regulations, explosion-proof certification, suitable for hazardous locations.
TTR200.E1.H.BF.M5 is a rail-mounted HART temperature transmitter from ABB. The following is an introduction to its parameters:
Basic features
Dimensions: Thickness is 17.5mm, and it can be installed on the rail of the control cabinet bracket to save space.
Indicator light: It has two LED indicators. The green LED is on to indicate that the transmitter is powered normally, and the red LED is on to indicate that the unit or sensor is faulty.
Electrical features
Input signal: It supports thermal resistors (2, 3, 4 wires), thermocouples, resistors (0…5000Ω), and voltage (-125…+1100mV) signal inputs, and can adapt to a variety of temperature sensors.
Output signal: It uses a 2-wire system, and the output 4-20mA current signal is linearly related to the temperature, and the HART signal is superimposed to achieve digital communication.
Measurement accuracy: The accuracy is 0.1%, the measurement is accurate, and it can accurately reflect temperature changes.
Long-term stability: 0.05% per year, ensuring stable performance over long periods of operation.
Features
Communication protocol: Supports HART protocol, can be configured through FDT/DTM, EDD or FDI standard (FIM), convenient for integration with automation system, and remote parameter setting, monitoring and diagnosis.
Self-monitoring function: With sensor continuity monitoring function, in line with NE89 specification, it can monitor power supply voltage and circuit break, and timely detect and alarm abnormalities.
Explosion-proof certification: ATEX, IECEx Zone 0 and other explosion-proof certifications, suitable for hazardous places with explosion-proof requirements.
Other features
Warm-up time: 5 minutes, it takes a short time to reach a stable working state.
Rise time: t90 is 400-1000ms, which can respond quickly to temperature changes.
Measurement value update frequency: 10 times/second, which can provide temperature measurement data in time.