MF52F153F3470 Allicdata Electronics
Allicdata Part #:

MF52F153F3470-ND

Manufacturer Part#:

MF52F153F3470

Price: $ 0.57
Product Category:

Sensors, Transducers

Manufacturer: Cantherm
Short Description: THERMISTOR NTC 15KOHM 3470K BEAD
More Detail: NTC Thermistor 15k Bead
DataSheet: MF52F153F3470 datasheetMF52F153F3470 Datasheet/PDF
Quantity: 1000
1000 +: $ 0.51559
Stock 1000Can Ship Immediately
$ 0.57
Specifications
Series: MF52
Packaging: Bulk 
Part Status: Active
Resistance in Ohms @ 25°C: 15k
Resistance Tolerance: ±1%
B Value Tolerance: ±1%
B0/50: --
B25/50: 3470K
B25/75: --
B25/85: --
B25/100: --
Operating Temperature: -55°C ~ 125°C
Power - Max: 50mW
Length - Lead Wire: --
Mounting Type: Through Hole
Package / Case: Bead
Description

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Introduction to MF52F153F3470 and Its Application Field and Working Principle

MF52F153F3470 is a type of NTC thermistor commonly used in temperature sensing applications. NTC thermistors are thermally sensitive resistors which exhibit a predictable negative temperature coefficient of resistance. This makes them ideal for temperature measurement and regulation, as their resistance changes predictably when exposed to a temperature change.

The MF52F153F3470 is a particularly small, high precision thermal sensing device which is particularly well suited for applications requiring accurate temperature control over short time periods. The device can be used in a wide variety of applications, including environmental monitoring, refrigeration and cooling systems, medical instruments, consumer electronics, automotive control systems, and more.

Working Principle of the MF52F153F3470 NTC Thermistor

The MF52F153F3470 uses an NTC thermistor to measure temperature. The device is designed to operate in a range of -40 to +150°C (-40 to 302°F). It is a small, high precision device which is well suited for applications requiring accurate temperature control over short time periods.

The device works by measuring the change in its resistance when exposed to a temperature change. NTC thermistors have a predictable negative temperature coefficient of resistance (TCR). This means that as the device is exposed to a higher temperature, the resistance of the thermistor decreases. Conversely, as the device is exposed to lower temperatures, its resistance increases.

The rate of change of the resistance is dependent on the type of thermistor. The MF52F153F3470 uses a 3300 Ohm, 176ppm/°C NTC thermistor. This means that as the temperature changes by 1°C, the resistance of the thermistor will change by 176ppm (parts per million).

The thermistor is connected to a circuit which measures the resistance and calculates the temperature based on the rate of change. The circuit typically uses an embedded microcontroller or a specialised temperature control chip and associated software. This allows the circuit to measure the temperature quickly and accurately, and to regulate the temperature by controlling an output (such as a fan or heater).

Applications of the MF52F153F3470 NTC Thermistor

The MF52F153F3470 NTC thermistor is a small, high precision device which is ideal for applications requiring accurate temperature control over short time periods. The device is commonly used in the following applications:

  • Environmental monitoring
  • Refrigeration and cooling systems
  • Medical instruments
  • Consumer electronics
  • Automotive control systems

In these applications, the thermistor is typically connected to a microcontroller or temperature control chip, which measures the resistance and calculates the temperature. The chip then regulates the temperature by controlling an output (such as a fan or heater). This can help to maintain a stable and accurate temperature in a wide variety of applications.

Conclusion

The MF52F153F3470 is an NTC thermistor which is used to measure temperature. The device is small and accurate, making it well suited for applications requiring precise temperature regulation over short time periods. The device uses an embedded microcontroller or temperature control chip to measure the resistance and calculate the temperature, and can then be used to regulate the temperature by controlling an output. The device is commonly used in environmental monitoring, refrigeration and cooling systems, medical instruments, consumer electronics, and automotive control systems.

The specific data is subject to PDF, and the above content is for reference

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