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DVSC-TT-14C-09 Multi-Sensor Temperature Transmitter

The DVSC-TT-14C-09 operates as the critical link between temperature sensors and your control architecture, performing two essential functions: signal conditioning and protocol translation. It takes low-level signals from thermocouples (types J, K, T, E, R, S, B) and RTDs (PT100, PT1000), amplifies them to minimize noise interference, and converts them into 4-20mA analog outputs or digital data via industrial protocols—ensuring that even minute temperature changes are captured and transmitted without distortion.

Model Number DVSC-TT-14C-09
Type Multi-Sensor Temperature Transmitter
Input Voltage 12-30V DC
Operating Temp Range -20°C to 85°C (-4°F to 185°F)
Mounting Style DIN rail (35mm) or panel mount
Dimensions 92mm x 56mm x 32mm (LxWxH)
Weight 185g
Interface/Bus RS-485, Ethernet/IP
Compliance ATEX, IECEx, UL 61010, RoHS
Supported Protocols Modbus RTU, Modbus TCP, Ethernet/IP
Typical Power Draw 1.8W

 

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Description

The DVSC-TT-14C-09 operates as the critical link between temperature sensors and your control architecture, performing two essential functions: signal conditioning and protocol translation. It takes low-level signals from thermocouples (types J, K, T, E, R, S, B) and RTDs (PT100, PT1000), amplifies them to minimize noise interference, and converts them into 4-20mA analog outputs or digital data via industrial protocols—ensuring that even minute temperature changes are captured and transmitted without distortion.

DVSC-TT-14C-09

DVSC-TT-14C-09

 

 

Positioned between field sensors and PLC/DCS systems, the DVSC-TT-14C-09  integrates seamlessly into existing automation stacks, supporting both legacy and modern control platforms. Its dual-output capability—simultaneous analog and digital transmission—gives engineers flexibility: analog for direct control loops, digital for data logging and advanced analytics. What truly distinguishes the DVSC-TT-14C-09  is its adaptive cold junction compensation, which automatically adjusts for ambient temperature shifts that would otherwise skew thermocouple readings. It also includes built-in self-calibration routines that run during system startup, flagging any drift outside acceptable ranges to maintenance teams before it impacts process control.

DVSC-TT-14C-09

DVSC-TT-14C-09

 

Technical specifications:
Model Number DVSC-TT-14C-09
Type Multi-Sensor Temperature Transmitter
Input Voltage 12-30V DC
Operating Temp Range -20°C to 85°C (-4°F to 185°F)
Mounting Style DIN rail (35mm) or panel mount
Dimensions 92mm x 56mm x 32mm (LxWxH)
Weight 185g
Interface/Bus RS-485, Ethernet/IP
Compliance ATEX, IECEx, UL 61010, RoHS
Supported Protocols Modbus RTU, Modbus TCP, Ethernet/IP
Typical Power Draw 1.8W

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DVSC-TT-14C-09

DVSC-TT-14C-09

Main features and advantages:

The DVSC-TT-14C-09 delivers tangible value by addressing the hidden costs of temperature monitoring in industrial settings. Its advanced signal processing reduces measurement drift to less than 0.1°C per year—far below the industry average of 0.5°C—meaning calibration cycles can be extended from quarterly to annual, cutting maintenance labor costs by 75%. This stability directly translates to better process control: in food and beverage pasteurization, for example, it ensures temperatures stay within the 0.2°C window required for microbial safety, reducing product waste from over-processing or non-compliance.
Beyond accuracy, the DVSC-TT-14C-09minimizes integration headaches. Its universal sensor compatibility eliminates the need for multiple transmitter types—one module handles all common thermocouple and RTD variants, simplifying inventory management and spare parts stocking. For system integrators, this translates to faster commissioning: auto-detection of sensor type reduces configuration errors, while the intuitive web interface allows parameter setting without specialized software.
DVSC-TT-14C-09

DVSC-TT-14C-09

 

Application areas:

The DVSC-TT-14C-09 excels in applications where temperature accuracy directly impacts safety, quality, or efficiency. In chemical processing, it’s deployed in batch reactor monitoring, where precise control of exothermic reactions prevents overheating and ensures product consistency—its ATEX certification makes it safe for use in hazardous areas with flammable vapors.
In power generation, the DVSC-TT-14C-09 monitors turbine bearing temperatures, providing real-time data to prevent catastrophic failures; its wide operating temperature range ensures reliability even in the heat-dense environment of power plant control rooms.
Food processing facilities rely on it for pasteurization and oven control, where regulatory compliance demands traceable temperature data—its digital logging capability simplifies audit preparation by storing 6 months of temperature history locally. Across all these use cases, the DVSC-TT-14C-09 delivers the combination of precision and ruggedness required for critical system uptime.
Related products:
DVSC-TT-14C-12 – Higher accuracy variant (±0.05°C) for laboratory-grade applications
DVSC-TT-14C-06 – Basic version with analog-only output for cost-sensitive systems
DVSC-TT-14C-09-W – Weatherproof enclosure model for outdoor temperature monitoring
DVSC-TA-14C-09 – Companion module for analog input expansion (up to 8 channels)
DVSC-TT-13C-09 – Previous generation model; upgrade path available with adapter bracket
DVSC-TT-14D-09 – Dual-sensor input version for differential temperature measurements
DVSC-COMM-01 – Protocol converter for integrating DVSC-TT-14C-09 with legacy HART systems
Installation and maintenance:
Before installing the DVSC-TT-14C-09, verify that sensor wiring is shielded and grounded at the transmitter end only—unbalanced grounding is a common source of noise in temperature signals. Check that the power supply can deliver at least 30V during peak startup (though normal operation uses 12-24V). If mounting in a panel, ensure there’s 50mm of clearance above and below for heat dissipation, especially when multiple modules are installed side by side.
For ongoing maintenance, the DVSC-TT-14C-09 simplifies routine checks: the front-panel LED alternates between green (normal operation) and a brief blue flash to indicate successful communication. Monthly, verify that sensor connections are tight—vibration in industrial environments can loosen terminals over time, causing signal degradation. Annually, perform a two-point calibration using a reference thermometer; the module’s calibration mode allows adjustment via the web interface without disconnecting sensors, minimizing downtime.
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