VISHAY BZG03C200

BZG03C...
Vishay Telefunken
Silicon Z–Diodes
Features
D
D
D
D
D
Glass passivated junction
High reliability
Voltage range 10V to 270V
Fits onto 5 mm SMD footpads
Wave and reflow solderable
15 811
Applications
Voltage stabilization
Absolute Maximum Ratings
Tj = 25_C
Parameter
Power dissipation
Non repetitive peak surge power
dissipation
Junction temperature
Storage temperature range
Test Conditions
RthJA<25K/W, Tamb=100°C
RthJA<100K/W, Tamb=50°C
tp=100ms sq.pulse, Tj=25°C
prior to surge
Type
Symbol
PV
PV
PZSM
Value
3
1.25
600
Unit
W
W
W
Tj
Tstg
175
–65...+150
°C
°C
Maximum Thermal Resistance
Tj = 25_C
Parameter
Test Conditions
Junction lead
Junction ambient mounted on epoxy–glass hard tissue, Fig. 1a
mounted on epoxy–glass hard tissue, Fig. 1b
mounted on Al–oxid–ceramic (Al2O3), Fig. 1b
Symbol
RthJL
RthJA
RthJA
RthJA
Value
25
150
125
100
Unit
K/W
K/W
K/W
K/W
Electrical Characteristics
Tj = 25_C
Parameter
Forward voltage
Document Number 85593
Rev. 5, 01-Apr-99
Test Conditions
IF=0.5A
Type
Symbol
VF
Min
Typ
Max
1.2
Unit
V
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BZG03C...
Vishay Telefunken
Type
y
BZG03C...
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
150
160
180
200
220
240
270
Min.
9.4
10.4
11.4
12.4
13.8
15.3
16.8
18.8
20.8
22.8
25.1
28
31
34
37
40
44
48
52
58
64
70
77
85
94
104
114
124
138
158
168
188
208
228
251
VZ
V
Typ.
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
150
160
180
200
220
240
270
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rzj
W
Max.
10.6
11.6
12.7
14.1
15.6
17.1
19.1
21.2
23.3
25.6
28.9
32
35
38
41
46
50
54
60
66
72
79
87
96
106
116
127
141
156
171
191
212
233
256
289
Typ.
2
4
4
5
5
6
6
6
6
7
7
8
8
21
21
24
24
25
25
25
25
30
30
60
60
80
80
110
130
150
180
200
350
400
450
and
Max.
4
7
7
10
10
15
15
15
15
15
15
15
15
40
40
45
45
60
60
80
80
100
100
200
200
250
250
300
300
350
400
500
750
850
1000
TKVZ at
%/K
Typ.
Max.
0.05
0.09
0.05
0.10
0.05
0.10
0.05
0.10
0.05
0.10
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.06
0.11
0.07
0.12
0.07
0.12
0.07
0.12
0.07
0.12
0.08
0.13
0.08
0.13
0.08
0.13
0.08
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
0.09
0.13
IZ
mA
50
50
50
50
50
25
25
25
25
25
25
25
25
10
10
10
10
10
10
10
10
10
10
5
5
5
5
5
5
5
5
5
2
2
2
IR at
mA
Max.
10
4
3
2
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
VR
V
7.5
8.2
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
150
160
180
200
Document Number 85593
Rev. 5, 01-Apr-99
BZG03C...
Vishay Telefunken
Characteristics (Tj = 25_C unless otherwise specified)
a)
b)
3.0
5.0
2.0
1.5
10.0
2.5
I F – Forward Current ( A )
2.0
2.0
1.5
1.0
0.5
1.0
25.0
0
0
25.0
94 9313
Figure 1. Boards for RthJA definition
(copper overlay 35m)
0.5
1.0
1.5
2.0
VF – Forward Voltage ( V )
94 9581
Figure 4. Forward Current vs. Forward Voltage
PZSM – Non-Repetitive Surge Power
Dissipation ( W )
10000
2.6
2.4
2.2
2.4
1000
100
7.0
10
0.01
94 9314
94 9582
Figure 2. Recommended foot pads (in mm)
0.1
1
10
100
tp – Pulse Length ( ms )
Figure 5. Non Repetitive Surge Power Dissipation
vs. Pulse Length
Ptot – Total Power Dissipation ( W )
4
3
RthJA=25K/W
2
RthJA=100K/W
1
0
0
94 9580
40
80
120
160
200
Tamb – Ambient Temperature ( °C )
Figure 3. Total Power Dissipation vs.
Ambient Temperature
Document Number 85593
Rev. 5, 01-Apr-99
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BZG03C...
Z thp – Thermal Resistance for Pulse Cond. (K/W)
Vishay Telefunken
1000
100
tp/T=0.5
tp/T=0.2
10
tp/T=0.1
tp/T=0.05
tp/T=0.02
1
10–5
tp/T=0.01
10–4
10–3
10–2
10–1
100
101
102
tp – Pulse Length ( s )
94 9583
Figure 6. Thermal Response
Dimensions in mm
14275
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Document Number 85593
Rev. 5, 01-Apr-99
BZG03C...
Vishay Telefunken
Ozone Depleting Substances Policy Statement
It is the policy of Vishay Semiconductor GmbH to
1. Meet all present and future national and international statutory requirements.
2. Regularly and continuously improve the performance of our products, processes, distribution and operating
systems with respect to their impact on the health and safety of our employees and the public, as well as their
impact on the environment.
It is particular concern to control or eliminate releases of those substances into the atmosphere which are known as
ozone depleting substances ( ODSs ).
The Montreal Protocol ( 1987 ) and its London Amendments ( 1990 ) intend to severely restrict the use of ODSs and
forbid their use within the next ten years. Various national and international initiatives are pressing for an earlier ban
on these substances.
Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of
ODSs listed in the following documents.
1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively
2 . Class I and II ozone depleting substances in the Clean Air Act Amendments of 1990 by the Environmental
Protection Agency ( EPA ) in the USA
3. Council Decision 88/540/EEC and 91/690/EEC Annex A, B and C ( transitional substances ) respectively.
Vishay Semiconductor GmbH can certify that our semiconductors are not manufactured with ozone depleting
substances and do not contain such substances.
We reserve the right to make changes to improve technical design and may do so without further notice.
Parameters can vary in different applications. All operating parameters must be validated for each customer application
by the customer. Should the buyer use Vishay-Telefunken products for any unintended or unauthorized application, the
buyer shall indemnify Vishay-Telefunken against all claims, costs, damages, and expenses, arising out of, directly or
indirectly, any claim of personal damage, injury or death associated with such unintended or unauthorized use.
Vishay Semiconductor GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany
Telephone: 49 ( 0 ) 7131 67 2831, Fax number: 49 ( 0 ) 7131 67 2423
Document Number 85593
Rev. 5, 01-Apr-99
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