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The Ultimate Resource for Engineering and Technical Research. (Learn More) |
Resistive temperature device (RTD) elements are wire windings or other thin-film serpentines that exhibit changes in resistance with changes in temperature. They are usually made of metallic elements or alloys such as copper, nickel, or nickel-iron. Search by Specification | Learn More
RTD temperature probes convert the RTD resistance measurement to a current signal, eliminating the problems inherent in RTD signal transmission via lead resistance. Search by Specification | Learn More
Resistance temperature detector (RTD) temperature transmitters convert RTD resistance measurements to current signals, eliminating the problems inherent in RTD signal transmission via lead resistance. Search by Specification | Learn More
Thermocouple simulators and resistance temperature detector (RTD) simulators provide precise standard values of resistance or voltage for simulation and calibration. Search by Specification | Learn More
Temperature instruments use contact or noncontact methods to measure temperature. Products include dial, digital, industrial and laboratory thermometers; temperature probes, indicators, and sensors; RTD elements and transmitters; and thermistors, thermocouples, thermopiles, and thermal switches. Search by Specification | Learn More
Temperature sensors are measurement devices that infer temperature by sensing some physical characteristic (i.e. resistance, emf or thermal radiation). Search by Specification | Learn More
Thermistors are thermally-sensitive devices whose electrical resistance varies with temperature. Unlike RTDs and thermocouples, thermistors do not have standards associated with their resistance vs. temperature characteristics or curves. Search by Specification | Learn More
Temperature probes are used in various temperature sensing applications. Technology options include thermocouple, RTD, thermistor and solid state style probes. Search by Specification | Learn More
Resistance standards and decade boxes provide a highly accurate standard value of resistance for calibration and testing. Search by Specification | Learn More
Temperature indicators and temperature instruments are designed for temperature monitoring and analysis. These devices either come equipped with an integral sensor, or require sensor input. Search by Specification | Learn More
Analog resistance meters are instruments that measure electrical resistance. They display values on a dial, usually with a needle or moving pointer. Search by Specification | Learn More
Temperature signal conditioners accept outputs from temperature measurement devices such as resistance temperature detectors (RTDs), thermocouples, and thermistors. They then filter, amplify, and/or convert these outputs to digital signals, or to levels suitable for digitization. Search by Specification | Learn More
Noncontact infrared temperature sensors absorb ambient infrared (IR) radiation given off by a heated surface. They are used in applications where direct temperature measurement is not possible. Search by Specification | Learn More
Thermistor temperature probes sense temperature by using thermistors, devices made of semiconductor materials which exhibit a large change in resistance for a small change in temperature. Search by Specification | Learn More
Thermocouple temperature transmitters convert the small millivolt output of a thermocouple to a current signal (typically 4-20 mADC) that is immune to noise and voltage drops over a long distance. Search by Specification | Learn More
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Platinum Wirewound Resistance Temperature Detector Temperature Specialists, Inc.
Thin Film Resistance Temperature Detectors Temperature Specialists, Inc.
Duct Sensor With Mounting Bracket... Sensor Scientific, Inc.
Resistance Temperature Detectors (RTD) Elements Ultra Electronics formerly Weed Instrument Company
Immersion RTD Sensor Durex Industries
RTDs Resistance Temperature Detectors Pyromation, Inc.
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Resistance Temperature Detectors are sensors that measure temperature by correlating the resistance of the RTD element with temperature. Most RTD elements consist of a length of fine coiled wire wrapped around a ceramic or glass core. (read more)
Resistance temperature detectors (RTD) accurately sense temperature with an excellent degree of repeatability and interchangeability of elements. The RTD is composed of certain metallic elements whose change in resistance is a function of temperature. (read more)
Spectrum Sensors & Controls has developed a line of Resistance Temperature Detectors (RTDs) using thin film technology that provides excellent sensing at a lower cost than wire wound elements. Spectrum's RTDs are available with both nickel and platinum elements, and set the highest standard in temperature measurement devices. (read more)
Platinum wire wound Resistance Temperature Detectors (RTD) construction consists of very fine high purity Platinum wire wound onto a ceramic core and then hermetically sealed with a glassed coating. The wire used is 99.99% pure platinum which gives excellent mechanical and electrical stability, provides close interchangeability and very little drift with age. (read more)
Thin Film Platinum Resistance Temperature Detectors (RTD) consist of a very thin layer of Platinum deposited onto an Aluminum Oxide ceramic substrate. The Platinum film is laser etched into a grid to form a resistive circuit and coated with a thin layer of glass. Larger lead wires are attached to the film and the attachment point is cemented in place with glass. (read more)
Acrolab's Resistance Temperature Detector RTD Assemblies utilize wire wound platinum elements and are of the "filled tube" or "MgO" construction, providing long operating life in high vibration and/or temperature applications. (read more)
RTI Electronics manufactures and distributes disc style thermistors in resistance values ranging form 1.0 to 1500 ohms @25°C, and switching temperatures (Ts) of 40 to 120°C. The maximum operating voltage (Vmax) available is 350V DC. (read more)
The PolyZen device is a polymer enhanced, precision Zener diode micro-assembly. By clamping and smoothing inductive voltage spikes, they help shield downstream electronics from overvoltage and reverse bias. Now available with a higher hold current (2.3A), the new PolyZen devices help protect circuits in automotive infotainment peripherals. (read more)
PolyZen polymer enhanced, precision Zener diodes are designed to meet the growing need for overcurrent and overvoltage protection on portable equipment that utilizes barrel jacks for DC power input. (read more)
Useful in helping to provide resettable overcurrent protection for passenger vehicle and heavy truck wire harnesses, the PolySwitch bladed contact device features a 2.8 mm form factor to facilitate easy, one-to-one replacement of mini-sized fuses and Type II bimetal circuit protection devices in 12V vehicle systems. (read more)
| Part # | Distributor | Manufacturer | Product Category | Description |
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| 2N7002 | Newark | Nxp | All Supplier Direct Ship | Mosfet, N, Sot-23; Transistor Type:Trenchmos; Current, Id Cont:0.3A; Resistance, Rds On:2.8R; Case Style:Sot-23; Current, Idm Pulse:1.2A; Device Marking:2N7002; Power Dissipation:0.83W; Power, Pd:0.83W; Temperature, Tj Max:150(Degree Rohs Compliant: Yes |
| AD5161BRMZ5 | Newark | ANALOG DEVICES | All Supplier Direct Ship | Digital Pot 8Bit 5K, Msop10, 5.5V; Resistance Range Type:Lin; Memory Type:Volatile; Channels, No. Of:1; Positions, No. Of:256; Interface Type:Spi/I2C; Termination Type:Smd; Package/Case:Msop; Pins, No. Of:10; Temperature, Operating Rohs Compliant: Yes |
| AD5171BRJZ100-R2 | Newark | ANALOG DEVICES | All Supplier Direct Ship | Digipot 6Bit Otp I2C 100K, 5171; Resistance Range Type:Lin; Memory Type:One-Time Programmable; Channels, No. Of:1; Positions, No. Of:64; Interface Type:I2C; Termination Type:Smd; Package/Case:Sot-23; Pins, No. Of:8; Temperature, Rohs Compliant: Yes |
| ADG758BCPZ | Newark | ANALOG DEVICES | Analog Switches | Multiplexer IC; Analog Switch Type:Single Multiplexer, 8:1; Voltage Supply Source:Dual; On State Resistance:3ohm; Termination:SMD; Package/Case:20-CSP; Operating Temperature Range:-40?C to +85?C; Dual Supply Voltage Max (?V):2.5V RoHS Compliant: Yes |
| ADG333ABRSZ | Newark | ANALOG DEVICES | Analog Switches | Multiplexer IC; Analog Switch Type:Switch, SPDT; Voltage Supply Source:Dual; On State Resistance:20ohm; Termination:SMD; Package/Case:20-SSOP; No. of Pins:20; Operating Temperature Range:-40?C to +85?C RoHS Compliant: Yes |
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Thermistor - Wikipedia, the free encyclopedia k. If k is positive, the resistance increases with increasing temperature, and the device is called a positive temperature coefficient (PTC) |
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MOSFET - Wikipedia, the free encyclopedia The metal?oxide?semiconductor field-effect transistor (MOSFET, MOS-FET, or MOS FET) is a device used to amplify or switch electronic signals. |
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AN 358: Thermal Management for FPGAs The thermal resistance of a device depends on the sum of the thermal resistances from the thermal circuit model shown in Figure 1. Table 1. Thermal See Altera Corporation Information |
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PowerPlay Early Power Estimator User Guide For Stratix II,... 1?1 Device Family Support ......................................................................................................................... See Altera Corporation Information |
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SG1549/SG2549/SG3549 CURRENT SENSE LATCH DESCRIPTION FEATURES THERMAL DATA Y Package: Thermal Resistance-Junction to Case, .................. 50?C/W Note A. Junction Temperature Calculation: T = T + (P x ). JC J See Microsemi Corp. Information |
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Application Note 336 Understanding Integrated Circuit Package... Die junction temperature J T = Ambient temperature in the vicinity device A P = Total power dissipation (in watts) D = Thermal resistance See National Semiconductor Information |
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LMD18200 3A, 55V H-Bridge Boldface limits apply over the entire operating S temperature range, -40?C T +125?C, all other limits are for T = T = 25?C. J A J Symbol Parameter See National Semiconductor Information |
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Xilinx XAPP189: Powering Xilinx Spartan-II FPGAs, application... See Xilinx, Inc. Information |
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owwl: Device Types owwl_device_type_enum { OwwlDev_Any = -1, OwwlDev_Temperature = 0, OwwlDev_Barometer, OwwlDev_Humidity, OwwlDev_Wind, OwwlDev_Rain, OwwlDev_Gpc, |
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owwl: device_data_union Union Reference device_data_union Union Reference A union of all possible device data structures. owwl_data_temperature temperature owwl_data_humidity |