Allicdata Part #: | B57871S0103F254-ND |
Manufacturer Part#: |
B57871S0103F254 |
Price: | $ 0.85 |
Product Category: | Sensors, Transducers |
Manufacturer: | EPCOS (TDK) |
Short Description: | THERMISTOR NTC 10KOHM 3988K BEAD |
More Detail: | NTC Thermistor 10k Bead |
DataSheet: | B57871S0103F254 Datasheet/PDF |
Quantity: | 1000 |
1500 +: | $ 0.77868 |
Series: | -- |
Packaging: | Tape & Box (TB) |
Part Status: | Active |
Resistance in Ohms @ 25°C: | 10k |
Resistance Tolerance: | ±1% |
B Value Tolerance: | ±1% |
B0/50: | -- |
B25/50: | -- |
B25/75: | -- |
B25/85: | -- |
B25/100: | 3988K |
Operating Temperature: | -55°C ~ 155°C |
Power - Max: | 60mW |
Length - Lead Wire: | -- |
Mounting Type: | Free Hanging |
Package / Case: | Bead |
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Temperature Sensors - NTC Thermistors
NTC thermistors are temperature sensing devices used in a vast array of modern applications where requisites for accuracy, speed of response and robustness are paramount. Temperature sensors based on NTC thermistors are the most popular solution in the market, due to their cost-effectiveness, light weight, resilience, and fast response times. Among them, the B57871S0103F254 is a particularly advanced temperature sensing device.
Application Field for the B57871S0103F254
The B57871S0103F254 is a precision NTC thermistor, widely used in applications requiring exactitude and fast response times. It is a widely used choice for most temperature sensing needs, due to its reliability, low cost, and fast response. This thermistor is especially suitable for use in leading-edge high-end industrial cooling applications, such as telecommunications switchgear and server room cooling.
This type of thermistor is particularly well-suited for electronic control systems, where speed and accuracy are of the highest priority. Its faster response makes it suitable for computationally intensive tasks, such as tracking rapid temperature fluctuations in explosives, and controlling complex oil or fuel systems where space is limited.
Due to its accuracy and fast response, mixing of liquids, temperature ramping in solid-state electronics and thermal stress testing are all applications where the B57871S0103F254 is an excellent choice.
Working Principle of the B57871S0103F254
The fundamental working principle of the B57871S0103F254 revolves around its ability to accurately measure temperature of the environment by using its electrical and chemical properties. The B57871S0103F254 is constructed from highly stable lead oxide-based materials, these properties allow the device to act as a variable resistor, whose resistance value changes in proportion to temperature.
The circuit of the B57871S0103F254 is composed of two elements. The first is a reference resistor used to create a current flow to the device. The second is the B57871S0103F254 itself, complete with a terminals for connection of a voltage. When voltage is applied between the two terminals, current begins to flow through the device. As this current passes through the device, it generates heat, which in turn causes the device\'s resistance to change.
The device is designed to have a non-linear resistance response, based on the properties of its material. As a result, the resistance will vary not in a linear fashion with increasing temperature, but in a predictable and repeatable manner. This predictable relationship between the device\'s resistance and temperature makes it possible to obtain precise temperature readings from the device.
The level of resistance provided by the B57871S0103F254 is already predetermined by the choice of fabrication material. This allows for direct temperature readings, removing the need for further calibration. This simplifies the process of setting up the temperature sensing circuit and allows for faster response times.
Overview
The B57871S0103F254 is a leading-edge precision NTC thermistor, offering accuracy and fast response times suitable for a range of advanced industrial cooling applications, such as telecommunications switchgear and server room cooling, as well as temperature ramping in solid-state electronics and thermal stress testing. Its ability to accurately measure temperature of the environment is based on its electrical and chemical properties, and is designed to provide reliable direct temperature readings.
The specific data is subject to PDF, and the above content is for reference
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