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Thermocouples
Thermocouples are junctions of two dissimilar metals that produce a very small voltage proportional to the temperature of the junction.
- Advanced Telemetrics International
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Band-On Telemetry System
Advanced Telemetrics International
The ATi Band-On Telemetry System transmits real-time sensor data from a rotating shaft while the system is running. The system consists of one or more rotating signal conditioner/ transmitter modules with battery pack and a stationary receiver. Rotating transmitters are available to interface with most any type of sensor including strain gages, thermocouples, thermistors, RTDs and accelerometers.
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Thermocouple System
Model TCIC
Industrial Measurement Systems Ltd.
High Speed 8 Channel Thermocouple Interface CardPDF VersionModel TCIC Thermocouple Interface Card with USB or RS232 / 485Main FeaturesLow cost high speed thermocouple measurement 400 channels / second
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Boiler Thermocouple Monitoring System
BTM
The Boiler Thermocouple Monitoring System is used to acquire and archive data from thermocouples mounted on boiler tubes. Since this system interfaces directly with Allen Bradley Control Logix PLCs via EthernetIP communication, significant cost savings can be achieved by using it as remote IO.
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Nickel & Thermocouple Alloy
Tempsens introduce our latest addition in our product-line i.e.“Nickel & Thermocouple Alloy”. We manufacturer a wide range of conductor in various types & sizes for high temperature application. We provide standard as well as custom made products according to the customer needs. Our lines are flexible and ready to meet the demand. Our manufacturing process conform to national & international standards for high quality Nickel & Thermocouple Alloy.
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Data Logging Kit
ThermoVault
Oven Temperature Profiling kit. Comes with TC101A Thermocouple based Temperature Data Logger with screw terminal, Thermally insulated enclosure, and Type K thermocouple probe.
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MAX31856 Thermocouple Sensor Arduino Shield
SEN-30007-T
Quad channel thermocouple Arduino shield based on the MAX31856 universal digital thermocouple interface IC. This is an exciting update of the MAX31855, with improvements in resolution (19 vs 14 bits), on-board temperature reference (6 vs 4 bits), and compensation (fully compensated vs nonlinear correction required). The MAX31856 is interfaced via 4-wire SPI with options for interrupt triggering. An LDO and a high-speed level shifter are included on ALL device pins to allow interfacing with to any Arduino - both 3.3V and 5.0V variants - without sacrificing device performance in any operating condition.
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Flexible Multisensor Probes
IT Series
Physitemp multisensors are made with our specially manufactured thermocouple wire. We test and grade this wire to standards better than the accepted ''Special Limits of Error'' and guarantee 0.1°C accuracy in the range of 0-50°C . All multisensor probes conform to NIST standards. These multisensor probes are custom-made and should be ordered to your requirements on number of sensors and spacing between sensors.
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Gauge Type T Thermocouple Wire
W-TW-40P2
Most thermocouple wire used in the manufacture of sensors is "Special Limits" wire which, to meet NIST standards, must be accurate to 0.5°C in the range 0-50°C. This means that even with most sophisticated electronics, the best possible accuracy for the system is 0.5°C.
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Suitable For Temperature And Potentiometer Sensors
SEM1600T
The SEM1600T accepts resistance or mV signals from RTD, Slidewire or Thermocouple sensors.
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THERMO MODULE OF THE COMPACT DEVICE FAMILY
ES620
This module measures temperatures using 16 electrically insulated measuring channels for temperature sensors. The adjustable acquisition rate per module is 10 samples/s to 0.1 samples/s. Signal smoothing occurs through a parameterized software filter, and high measuring accuracy is possible through 21 Bit resolution. The automotive measuring range is -210 C to 1372 C (-346 F to 2502 F); J, K, and N type thermocouples are used. Data transfer to PC occurs via Ethernet.
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Thermocouple Switchbox
SWT-2
The SWT-2 is a compact, economical switchbox that lets you use two probes in a thermometer which has a single input. SWT-2 was designed with our BAT-12 Thermometer in mind - it is small and easy to carry in the field with a portable BAT-12 - but it also fits any miniature Type T socket. A subminiature connector mates quickly and easily to most Type T thermometers.
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C Series Universal Analog Input Module
The C Series Universal Analog Input Module helps you perform multi-purpose measurements. This module includes built-in support for accelerometer, powered sensor, full-bridge, and voltage measurements as well as quarter-bridge, half-bridge, 60 V, and current measurements using measurement-specific adapters. You also can choose options to measure signals from sensors such as strain gages, resistance temperature detectors (RTDs), thermocouples, load cells, and other powered sensors.The C Series Universal Analog Input Module includes the NI-DAQmx driver and configuration utility that simplify configuration and measurements. NI-DAQmx supports NI programming environments as well as Python, ANSI C, C#.NET, and MathWorks MATLAB® software.
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K-Type Thermocouples Wire, Fiberglass (32deg F to 900deg F) 2 m
745690-K002
K-Type Thermocouple, 32°F to 900°F Temperature Sensor - The K-Type Thermocouple works with NI measurement devices and software to help you acquire temperature data within a measurement system. You can use LabVIEW or FlexLogger software and NI-DAQmx driver software to configure measurements and predefined scaling coefficients for the K-Type Thermocouple and acquire synchronized temperature data in units of degrees. The K-Type Thermocouple is available in various lengths and configurations including field-cuttable, ready-made sensors, and thermocouple wire extensions with a -20°F to 221°F temperature range.
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In-Line IR Sensor
ILA
10:1 Distance to Target Ratio, 32 to 932F. Dwyer Series ILA Non-Contact Sensors, measure temperatures from 32 to 932F (0 to 500C) and provide a linear 4 to 20 mA, 0 to 5 VDC or thermocouple output. The 2-wire signal is compatible with almost any indicator, controller, recorder, data logger, etc., without the need for special interfacing or signal conditioning.
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Industrial Calibrators
A temperature calibrator, often called a thermometer calibrator, is used to correct inaccuracies in installed thermometers and temperature sensors, because temperature measurement is a critical parameter in many industrial processes. Although simulators are sometimes called temperature calibrators or thermometer calibrators and may be used to provide thermometer calibration for the electronics in an installed system, a temperature source with a calibrated reference sensor is still required to provide a complete and meaningful calibration. Fluke Calibration industrial and field temperature calibrators include: Metrology Wells; Field Metrology Wells; field dry-well calibrators; handheld dry block calibrators; Micro-Baths; large target infrared calibrators; field IR calibrators; ice-point dry-well; and thermocouple furnaces.
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Basic Quad K-Type Analog Thermocouple Amplifier
SEN-30103-K1
Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.
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Submersible, Thermocouple Based Temperature Data Logger
TCTemp1000
The TCTemp1000 is a rugged, submersible, battery powered, thermocouple based temperature data logger. This is a stand-alone, compact, portable, easy to use device that can measure and record data for up to 16,383 measurements per channel. The storage medium is non-volatile solid state memory, providing maximum data security even if the battery becomes discharged. Its real time clock ensures all data is time and date stamped.
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NI-9213, 16-Channel, 75 S/s Aggregate, ±78 mV C Series Temperature Input Module
785185-01
16-Channel, 75 S/s Aggregate, ±78 mV C Series Temperature Input Module - The NI‑9213 is a high-density thermocouple input module that is designed for higher channel count systems. With this module, you can add thermocouples to mixed-signal test systems without taking up too many slots. The NI‑9213 includes anti-aliasing filters, open-thermocouple detection, and cold-junction compensation for high-accuracy thermocouple measurements. The NI‑9213 features NIST‑traceable calibration and a channel‑to‑earth ground double isolation barrier for safety, noise immunity, and high common-mode voltage range.
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Basic Quad J-Type Analog Thermocouple Amplifier
SEN-30103-J1
Analog thermocouple amplifier board based on the AD849x from Analog Devices (successor of the AD597). This quad-channel thermocouple board converts the very low voltage signal from a thermocouple to a highly-linear, 0.005V/C output with either 0V or 1.245V offset (both configurations stocked) while removing unwanted noise from the signal. Many supply and output configurations are available with this board, though the PCB was designed with Arduino in mind. Specifically, the output header will plug directly into a standard Arduino Uno or Mega, with a pin-for-pin match for power supply, ground and analog outputs. With a 5V Arduino, temperatures from 0C to 1,000C are possible with the 0V offset board and -249C to 750C with the 1.245V offset board. If using a 3.3V microcontroller (Due, etc), the board must be supplied with no more than 3.3V to avoid damaging the microcontroller. Temperature measurement range is dependent on the supply voltage. It is possible to supply the board with higher voltages to allow temperature measurement over the entire operating range of the K-Type and J-Type thermocouples, allowing use with more capable data acquisition equipment.
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PXI Simulation Modules For Sensor Simulation
PXI simulation solutions for sensor simulation, including PXI Programmable Resistors—ideal for the simulation of resistive sensors and PXI Thermocouple Simulators—these provide multiple low-voltage sources ideal for simulating the operation of a thermocouple. Take a look below for all of our PXI Simulation Solutions, we also offer some of these in PCI format as well . All of our PXI simulation cards are supplied with comprehensive software drivers for Windows® XP/Vista/7/8, Lab Windows / CVI and LabView. The Pickering IVI drivers also fully support National Instruments' Switch Executive.
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K Thermocouple Immersion Probe
TP750
Immersion “K” Type thermocouple probe. Tolerance according to IEC 60584-2 standard.
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Gauge Type T Thermocouple Wire
W-TW-36
Most thermocouple wire used in the manufacture of sensors is "Special Limits" wire which, to meet NIST standards, must be accurate to 0.5°C in the range 0-50°C. This means that even with most sophisticated electronics, the best possible accuracy for the system is 0.5°C.
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Thermocouple, Module, Receiver, ICon, 96 Position
510160110
Thermocouple, Module, Receiver, iCon, 96 Position
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4 Digits Temperature(TC) Meter
CM1-TC
Chuan Sheng Electronics Co., Ltd.
CM1-TC Thermocouple Temperature Meter has been designed in simple function and 4 digital 20.0mm LED displays with economic cost.They are can be programmed by tact switches that are hidden in front panel.They are also available to option relay output or an analog output or RS485(Modbus RTU Mode) communication.
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Multiplexed- Low-Level Function Card
Low-level multiplexed systems have a single programmable gain, wide-band amplifier following the input multiplexer. To accommodate low-level signal signals such as those from strain gauges or thermocouples and at the same time high level signals from other sources, the throughput rate must be limited to enable the high bandwidth amplifier to settle to the correct value after switching to a new channel. This results in a relatively low aggregate throughput rate when compared to an amplifier-per-channel system. A major benefit of a well designed low-level multiplexed system is the extremely high performance/cost relationship.
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Thermocouple Connectors
We are Europe's largest manufacturer of thermocouple connectors and accessories in IEC, ANSI and JIS colour codes. The full range of connectors are available from stock for immediate despatch.
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K Thermocouple Penetration Probe
TP758
"K" Type thermocouple penetration probe. °C max: 400. Response time: 4 s.
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Terminal Block For 34921A And L4421A Multiplexer
34921T
Offers a built-in thermocouple reference junction that helps minimize errors due to thermal offset
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Thermocouple, Contact, ITA, Alumel, Type K (°C)
610113134
Primary mating contact 610113132.Thermocouple contacts are manufactured from chromel or alumel alloys and color-coded for easy identification. Contacts are crimp terminated and easily inserted into the connector module. They can be readily removed from the connector module using a special removal tool.
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Oxygen Analyzer
Rapidox 2100
The Rapidox 2100 is a high-performance oxygen (O2) analyser fitted with a rugged long-life zirconia sensor on a remote cable, together with a type K thermocouple sensor; allowing direct in-process measurement of oxygen and temperature in the sample gas. The sensors provide fast and accurate analysis over the low ppm oxygen range in harsh environments up to 650°C.