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Custom Made MF57 Leadless Disc Ring NTC Thermistor Chip 516Ohm For Automotive AEC-Q200 Engine Coolant Temperature Senso

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Aolittel Technology Co.,Ltd

Custom Made MF57 Leadless Disc Ring NTC Thermistor Chip 516Ohm For Automotive AEC-Q200 Engine Coolant Temperature Senso

Country/Region china
City & Province dongguan guangdong
Categories Electrical Plugs & Sockets
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Product Details

 

Custom Made MF57 Leadless Disc Ring NTC Thermistor Chip 516Ohm For Automotive AEC-Q200 Engine Coolant Temperature Sensor

 

 

Features & Benefits


Fully metalized leadless disc
Multiple temperature stability options
Customized solutions ,normally on dimension ,temperature,resistance,tolerance.

High precision.

Excellent consistency and interchangeability

 

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General

 

Aolitel leadless disc NTC thermistors offer excellent thermal and electrical stability with wide range of resistance values customizable based on material properties and customer requirements. These parts are ideal for various general purpose and automotive (AEC-Q200) applications. Available in custom disc sizes and multiple temperature stability options.

 

This type of product is widely used in automotive and consumer applications. They are assembled in custom-probes for sensing the temperature of liquids (water, oil, ...), gases or surface of any other component. The metallization covers completely the surfaces of the thermistor. The particularly flat and smooth surfaces ensure an excellent electrical and thermal contact under pressure.

 

 

Typical Applications

 

Temperature sens ing and measuring in automobi le cool ing system, combus tion engine, larger power electric engine, oil transformer etc . Also applicable for temperature meausing on other occasions.


Ambient temperatur sensing, control and compensation
Liquid or gas temperature contol and monitoring
Assembly into probes
Automotive (air conditioning, temperature monitoring, heated seat, oil temperature control, others)
Fire detecting systems
Chemical industry

 

 

Structure Dimension (mm)

 

 

CodeTolerance
Φ6.7~6.9
Φ13.6~3.8
t1.4 ~ 1.6
Pack-bulk500/Bag

 

 
Electrical Performances
 
NOParameterSymbolTest ConditionsMinNor.Max.Unit
a.Resistance At 25℃R80

Ta=25℃±0.1℃

T<0.5mA

490.2516541.8Ω
b.Resistance At 100℃R100

Ta=100℃±0.1℃

T<0.5mA

36.738.640.5Ω
c.R25/R100k-----
d.B ConstantB8876Log K381138503880k
 
 
Maximum Ratings
 
 
NOParameterSpecifcationUnint
a.Opeation Temperature Range-40 ~ +160
b.Max. Permissible Current100mA
c.Max. Operation Current10mA
 
 

Resistance Vs. Temperature Curve

 

 

 

DESIGN OF THE THERMISTOR

 

Choice of the resistances If the application is to measure the temperature around a defined point, a unique nominal resistance can be chosen (for example, among standard values of the ND range products presented on pages 20 to 24).

When it is required to measure the temperature over selected ranges T1 –T2 , T2 –T3 , ..., the corresponding resistance R1 , R2 , R3 , ..., must be such that they can be located on the R (T) characteristic of an existing NTC material (for example among standard materials whose R (T) are displayed on pages 29 to 33).

The resistances must also be compatible with the resistivity of the material and the dimensions of the thermistor.

 

 

Series Catalogue Guidation

 

ModelRated Resistance R25B Value (25/50℃)Rated Power (W)Measuring Power (mW)Themal time Constant (S)Dissi. Coet. (mW/℃)Operating Temp (℃)
Range(Ω)ToleranceValue(Ω)Tolerance
MF57□□□2700220-630

±1%

±3%

±5%

2700

±1%

±3%

±5%

0.3

0.5

≤0.5≤606-13-55-+125
MF57□□□3000270-5.1K3000
MF57□□□3300270-5.1K3300
MF57□□□3600270-5.1K3600
MF57□□□3900270-5.1K3900
MF57□□□4100330-6.8K4100
MF57□□□4300330-6.8K4300
MF57□□□4700330-10K4700

Remarks: Custom design for different RT curve and mounting configuration available

 

 

Choice of the tolerances

 

The precision of the temperature measurement determines the calculation of the tolerance on the resistance: R/R = (%/°C). T (°C)

For example, the NTC NR55--3049-99, using “N5” material (R (T) characteristic displayed on page 31), requires a precision of 1°C over the temperature range 110°C - 120°C.

The tolerances can be calculated: R110°C /R110°C = 1°C* 2.91%/°C = 2.91% R120°C /R120°C = 1°C* 2.76%/°C = 2.76%

 

*For your specific requirements, please consult us.  

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