STMICROELECTRONICS BZV47C39

BZV47C5V1 / 200

2W ZENER DIODES
FEATURES
VOLTAGE RANGE : 5.1 V to 200 V
HERMETICALLY SEALED PLASTIC CASE :
F126 PACKAGE
HIGH SURGE CAPABILITY : 55 W (10 ms) .
DESCRIPTION
F126
2 W silicon Zener diodes.
ABSOLUTE RATINGS (Tamb = 25°C)
Symbol
P
Tstg
Tj
TL
Parameter
Power dissipation on infinite heatsink
Tamb = 55°C
Storage temperature range
Maximum junction temperature
Maximum lead temperature for soldering during 10s at 5mm
from case
Value
Unit
2
W
- 65 to + 175
175
°C
°C
230
°C
Value
Unit
THERMAL RESISTANCES
Symbol
Parameter
R th (j-l)
Junction to lead
60
°C/W
R th (j-a)
Junction to ambient on printed circuit on recommended pad
layout
100
°C/W
January 1998 Ed : 2
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BZV47C5V1 / BZV47C200
ELECTRICAL CHARACTERISTIC (Tamb = 25°C)
TYPES
VZT @ IZT
min.
max.
(1)
(1)
rZK/ IZK
max.
IZT
I R / VR
max.
VR
(1)
IZM
Tamb=55°C
(2)
IZSM
(3)
10-4/°C
µA
V
mA
A
100
1
5
1
370
7.8
100
2.5
5
1
330
7.1
2
100
3.2
5
1
300
6.4
5.4
V
V
Ω
mA
BZV47C5V1
4.8
5.4
5
BZV47C5V6
5.2
6
2
BZV47C6V2
5.8
6.6
BZV47C7V5
∝VZ
typ.
7
7.9
2
100
4.5
5
2
250
BZV47C10
9.4
10.6
4
50
5.5
5
7.6
185
4
BZV47C12
11.4
12.7
7
50
6.5
1
9.1
155
3.3
BZV47C15
13.8
15.6
10
50
7
1
11.4
130
2.7
BZV47C18
16.8
19.1
15
25
7.5
0.5
13.7
105
2.2
BZV47C20
18.8
21.2
15
25
7.5
0.5
15.2
94
2
BZV47C22
20.8
23.3
15
25
8
0.5
16.7
86
1.8
BZV47C24
22.8
25.6
15
25
8
0.5
18.2
78
1.7
BZV47C27
25.1
28.9
15
25
8.5
0.5
20.5
69
1.5
BZV47C30
28
32
15
25
8.5
0.5
22.8
62
1.3
BZV47C36
34
38
40
10
8.5
0.5
27.4
52
1.1
BZV47C39
37
41
40
10
9
0.5
29.6
48
1
BZV47C47
44
50
45
10
9
0.5
35.7
40
0.85
BZV47C68
64
72
80
10
9
0.5
51.7
27
0.59
BZV47C100
94
106
200
5
9
0.5
76
18
0.4
BZV47C150
138
156
300
5
9.5
0.5
114
12.8
0.27
BZV47C200
188
212
350
5
9.5
0.5
152
9.4
0.20
Note 1 : Pulse test : tp ≤ 50ms
Note 2 : On infinite heatsink : L = 10mm
Note 3 : rectangular waveform (tp = 10ms)
Forward voltage drop : VF ≤ 1.2 V (Tamb = 25°C, I F = 500mA)
Fig. 1 : Power dissipation versus ambient
temperature.
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
Fig. 2 :Thermal resistance versus lead length.
BZV47C5V1 / BZV47C200
Fig. 3 : Relative variation of thermal impedance
junction to ambient versus pulse duration (PC
board FR4, Lleads = 10mm).
Fig. 4 : Junction capacitance versus reverse
voltage applied (typical values).
Fig. 5 : Peak forward current versus peak forward
voltage drop (typical values).
Fig. 6 : Leakage current versus regulation voltage (typical values).
IR(µA)
1E+2
Tj = 150°C
VR = 0.75*VZT
1E+1
1E+0
1E-1
1E-2
VZT (V)
1E-3
Fig. 7 : Differential resistance versus regulation
voltage (typical values).

1
10
100
200
Fig. 8 : Peak pulse power versus pulse duration
(rectangular waveform, maximum values).
3/4
BZV47C5V1 / BZV47C200
MARKING : Logo, Date Code, Type Code, Cathode Band (for unidirectional types only).
ORDER CODE
BZV47C
5V1
Type
Nominal Voltage
PACKAGE MECHANICAL DATA
F126 (Plastic)
DIMENSIONS
REF.
Millimeters
Inches
Min.
Typ. Max. Min.
Typ. Max.
A
6.05
6.20
0.244
B
26
∅C
2.95
∅D
0.76
L1
6.35
0.238
0.250
31
1.024
3.00
3.05
0.116
0.118
0.120
0.81
0.86
0.030
0.032
0.034
1.220
1.27
0.050
Note1 : Thelead is notcontrolled within zoneL1.
Packaging : standard packaging is in tape and reel.
Weight = 0.40 g.
Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsibility for the
consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No
license is granted by implication or otherwise under any patent or patent rights of SGS-THOMSON Microelectronics. Specifications mentioned
in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied.
SGS-THOMSON Microelectronics products are not authorized for use as critical components in life support devices or systems without express
written approval of SGS-THOMSON Microelectronics.
 1998 SGS-THOMSON Microelectronics - Printed in Italy - All rights reserved.
SGS-THOMSON Microelectronics GROUP OF COMPANIES
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