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1N5820G bảng dữ liệu(PDF) 5 Page - ON Semiconductor

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Giải thích chi tiết về linh kiện  Axial Lead Rectifiers
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1N5820G bảng dữ liệu(HTML) 5 Page - ON Semiconductor

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1N5820, 1N5821, 1N5822
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5
Figure 1. Maximum Reference Temperature
1N5820
Figure 2. Maximum Reference Temperature
1N5821
Figure 3. Maximum Reference Temperature
1N5822
Figure 4. Steady−State Thermal Resistance
15
2.0
VR, REVERSE VOLTAGE (VOLTS)
115
125
105
30
4.0
VR, REVERSE VOLTAGE (VOLTS)
125
115
105
95
85
75
L, LEAD LENGTH (INCHES)
1/8
0
25
20
15
10
5.0
0
2/8
40
95
85
75
5.0
3.0
4.0
7.0
10
20
5.0
7.0
10
15
20
3/8
4/8
5/8
6/8
7/8
1.0
40
35
30
BOTH LEADS TO HEATSINK,
EQUAL LENGTH
MAXIMUM
TYPICAL
RqJA (°C/W) = 70
50
40
28
20
15
10
8.0
15
VR, REVERSE VOLTAGE (VOLTS)
115
105
95
85
75
5.0
3.0
4.0
7.0
10
20
RqJA (°C/W) = 70
50
40
28
20
15
10
8.0
125
30
RqJA (°C/W) = 70
50
40
28
20
15
10
8.0
0.2
0.5
1.0
2.0
5.0
10
20
50
100
200
500
1.0 k
2.0 k
5.0 k
10 k
0.05
0.03
0.02
0.01
0.1
t, TIME (ms)
0.5
0.3
0.2
1.0
LEAD LENGTH = 1/4
Ppk
Ppk
tp
t1
TIME
DUTY CYCLE = tp/t1
PEAK POWER, Ppk, is peak of an
equivalent square power pulse.
DTJL = Ppk • RqJL [D + (1 − D) • r(t1 + tp) + r(tp) − r(t1)] where:
DTJL = the increase in junction temperature above the lead temperature.
r(t) = normalized value of transient thermal resistance at time, t, i.e.:
r(t1 + tp) = normalized value of transient thermal resistance at time
t1 + tp, etc.
Figure 5. Thermal Response
20 k
The temperature of the lead should be measured using a ther-
mocouple placed on the lead as close as possible to the tie point.
The thermal mass connected to the tie point is normally large
enough so that it will not significantly respond to heat surges
generated in the diode as a result of pulsed operation once
steady−state conditions are achieved. Using the measured val-
ue of TL, the junction temperature may be determined by:
TJ = TL + DTJL


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