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NTC4D-15 데이터시트 PDF




ETC에서 제조한 전자 부품 NTC4D-15은 전자 산업 및 응용 분야에서
광범위하게 사용되는 반도체 소자입니다.


PDF 형식의 NTC4D-15 자료 제공

부품번호 NTC4D-15 기능
기능 NTC THERMISTOR
제조업체 ETC
로고 ETC 로고


NTC4D-15 데이터시트 를 다운로드하여 반도체의 전기적 특성과 매개변수에 대해 알아보세요.



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NTC4D-15 데이터시트, 핀배열, 회로
NTC
NTC THERMISTOR
24
1200 1500
NTC
Rt
25
B
B
R25
B=ln RT1 / ( 1 1 )= T1 T2 ln RT1
Rt2 T1 T2 T2 T1 RT2
RT1 T1
RT2 T2
15K )
B 25 ( 298.
50 ( 323.15K )
,B
T
T=
1
RT
DRT =
DT
B
T2
TT
RT-
T
BB
T
(K
)
NTC
NTC THERMISTOR
OUTLINE
This is a Negative Temperature Coefficient Resistor Whose
resistance changes with ambient temperature changes.
Thermistor comprises 2or 4 kinds of metal oxides of iron,
nickel,cobalt, manganese and copper, being shaped and
Sintered at high temperature(1200 to 1500 )
Critical Technical Parameters of NTC Thermistor
Rt---Resistance Value at Zero-power
It's a resistance which is got at a fixed temperature on a
basis of a testing power which causes resistance to Vary in a
range which can be ignored in relation to the total testing eror.
R25---Resistance Value at Rated Zero-power
The design resistance of the thermistor usually refers to the
resistance value got at Zero-power at 25 , which is usually
indicated on the thermistor.
B Value
B value stands for the thermal exponent at a negative
temperature coefficient. lt's defined as a ratio of the balance
between the natural logarithms of resistance values at zero-
power to the balance between the reciprocals of the two
temperatures.The formula is as below:
B=ln RT1 / ( 1 1 =) T1 T2 ln RT1
Rt2 T1 T2
T2 T1 RT2
In this formula: RT1 is the resistance at Zero-power when the
temperature is T1
RT2 is the resisrtance at Zero-power when the temperature is
T2 Unless otherwise specified, B value is got by calculating
the Zero-power resistances at 25 ( 298.15K ) and50
( 323.15K ) . It's not a firm constant within the range of
working temperature.
Resistance-to-Temperature Coefficient at Zero-power
It refers to the ratio of changes of a thermistor. Resistance
value at Zero-powerwhen The temperature, to the resistance
value at Zero-power The formula is as below:
T=
1
RT
DRT =
DT
B
T2
In this formula, " " stands for the resistance-temperature
coefficient at Zero-power when the temperature is T:
RT stands for the resistance value at Zero-power when the
temperature is T
T stands for thetemperature(in K)
B stands for B value
1
Free Datasheet http://www.Datasheet4U.com




NTC4D-15 pdf, 반도체, 판매, 대치품
SPECIFICATIONS & PROPERTIES
Model
NTC 5D-7
NTC 8D-7
NTC 10D-7
NTC 16D-7
NTC 22D-7
NTC 2.5D-9
NTC 3D-9
NTC 5D-9
NTC 8D-9
NTC 10D-9
NTC 16D-9
NTC 22D-9
NTC 25D-9
NTC 35D-9
NTC 50D-9
NTC 60D-9
NTC 80D-9
NTC 100D-9
NTC 120D-9
NTC 200D-9
NTC 300D-9
NTC 2.5D-11
NTC 3D-11
NTC 5D-11
NTC 8D-11
NTC 10D-11
NTC 16D-11
NTC 2.5D-13
NTC 3D-13
NTC 5D-13
NTC 8D-13
NTC 10D-13
NTC 16D-13
NTC 3D-15
NTC 4D-15
NTC 5D-15
NTC 8D-15
NTC 10D-15
NTC 16D-15
NTC 3D-15
NTC 5D-20
NTC 8D-20
NTC 10D-20
R25
20%( )
5
8
10
16
22
2.5
3
5
8
10
16
22
25
35
50
60
80
100
120
200
300
2.5
3
5
8
10
16
2.5
3
5
8
10
16
3
4
5
8
10
16
3
5
8
10
(A)
Max Steady-
current(A)
2
1.5
1
0.7
0.6
4
4
3
2
2
1
1
1
1
1
1
0.8
0.8
0.8
0.5
0.5
5
5
4
3
3
2
6
6
5
4
4
3
7
6
6
5
5
4
8
7
6
6
()
Approx R of
Max.Cur.( )
0.241
0.436
0.572
0.897
1.083
0.128
0.133
0.236
0.382
0.476
0.688
0.899
0.914
1.103
1.265
1.521
2.108
2.576
3.115
5.900
9.150
0.120
0.126
0.288
0.301
0.395
0.488
0.099
0.112
0.136
0.256
0.271
0.368
0.094
0.128
0.132
0.196
0.255
0.307
0.079
0.106
0.157
0.194
Power
Dissipation coe-
fficient(mW/ )
10
9
9
9
8
11
11
11
11
11
11
11
12
12
11
11
11
11
11
10
10
13
13
13
13
14
14
13
14
15
15
15
16
18
20
20
20
20
19
24
23
23
23
Time
Constant
(s)
30
28
27
27
27
35
35
35
34
34
32
30
30
30
30
30
30
30
30
32
32
46
45
45
45
47
50
60
60
68
65
65
60
76
76
76
80
85
77
100
87
105
118
4
Free Datasheet http://www.Datasheet4U.com

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