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ERT-J1VR103J

更新时间: 2024-09-19 01:09:11
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松下 - PANASONIC /
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描述
NTC Thermistors

ERT-J1VR103J 数据手册

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NTC Thermistors  
The NTC Thermistors  
This is a Negative Temperature Coefficient Resistor whose resistance changes as ambient temperature changes. Therm-  
istor comprises 2 or 4 kinds of metal oxides of iron, nickel, cobalt, manganese and copper, being shaped and sintered  
°
at high temperature (1200 to 1500 C)  
Features  
Recommended Applications  
For temperature measurement or temperature detection :  
Temperature Coefficient of Resistance is negative and  
extremely large  
thermometer, temperature controller  
Various kinds of types especially smaller ones are  
available.  
For temperature compensation : transistor circuit,  
measuring instruments  
Resistance values are available from 22 Ω to 470 kΩ  
Physical Characteristics of NTC Thermistors  
Thermistor is a resistor sensitive to temperature utilizing  
the large temperature-coefficient of metal oxide semi-  
conductor. And its temperature dependency of resistance  
value is indicated by the following equation:  
Fig. 1  
1000  
100  
10  
1
1
T
1
....................................  
(1)  
0
R=R exp  
B
[ ( )]  
0
T
0
°
T : Standard Temperature 298.15 K(25 C)  
R : Resistance at T K  
0
0
B: Thermistor Constant (K)  
a
So called Temperature Coefficient ( ) is generally  
indicated as follows:  
3000  
4000  
0.1  
B
....................................................................  
a
=
(2)  
T2  
0.01  
a
But is not adequate for use as a constant, because a  
change by temperature is considerably large, so B Value  
is used as a coefficient of thermistor.  
0.001  
–40 –20  
0
20 40 60 80 100 120 140  
T (˚C)  
Major Characteristics of NTC Thermistors  
The relation between resistance and temperature of a  
thermistor is linear as shown in Fig. 2, in which resistance  
is shown in vertical direction in a logarithmic scale and  
reciprocal of absolute temperature in horizontal direction.  
Bias degrees in these straight lines are determined according  
to the B Value expressed by the following equation.  
Fig. 2  
10000000  
1000000  
100000  
10000  
1000  
100  
<
=
1
2
nR – nR  
k
k
5
..................................................  
B =  
(3)  
5
5
&
45  
1
1
1
T
2
T
3
&
1
1
R : Resistance at T K  
&
2
2
R : Resistance at T K  
<
When calculated from this equation, B Value is a variable  
in a strict sense, and the resistance is expressed by the  
following equation:  
10  
R = AT C exp D/T  
(4)  
........................................................  
In (4), C is a small positive or negative constant and quite  
negligible except use in precision temperature-measuring  
device, thereby the B Value is, in practical usage, to be  
considered as a constant. In Fig. 1,  
1
2.4  
2.9  
3.4  
(L10 –3K–1  
3.9  
4.4  
1
T
)
125  
85  
50  
25  
T (˚C)  
0
–20  
–40  
T
25  
the relation between the resistance ratio R /R  
25  
°
T
°
(R : Resistance at 25 C, R : Resistance at T C) and B Value is  
°
shown with T C, in the horizontal direction.  
00 Sep. 2010  
2

ERT-J1VR103J 替代型号

型号 品牌 替代类型 描述 数据表
NCP18XV103J03RB MURATA

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