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 BUD636A
Vishay Telefunken
Silicon NPN High Voltage Switching Transistor
Features
D D D D D
Simple-sWitch-Off Transistor (SWOT) HIGH SPEED technology Planar passivation 100 kHz switching rate Very low switching losses
D D D D
Very low dynamic saturation Very low operating temperature Optimized RBSOA High reverse voltage
Applications
Electronic lamp ballast circuits Switch-mode power supplies
2
94 8965
1 1
94 8964
3
2
3
BUD636A 1 Base 2 Collector 3 Emitter
BUD636A -SMD 1 Base 2 Collector 3 Emitter
Absolute Maximum Ratings
Tcase = 25C, unless otherwise specified Parameter Collector-emitter voltage g Test Conditions Symbol VCEO VCEW VCES VEBO IC ICM IB IBM Ptot Tj Tstg Value 450 550 1000 11 5 7.5 2.5 4 40 150 -65 to +150 Unit V V V V A A A A W C C
Emitter-base voltage Collector current Collector peak current Base current Base peak current Total power dissipation Junction temperature Storage temperature range
Tcase 25C
Document Number 86504 Rev. 2, 20-Jan-99
www.vishay.de * FaxBack +1-408-970-5600 1 (9)
BUD636A
Vishay Telefunken Maximum Thermal Resistance
Tcase = 25C, unless otherwise specified Parameter Junction case Test Conditions Symbol RthJC Value 3.12 Unit K/W
Electrical Characteristics
Tcase = 25C, unless otherwise specified Test Conditions VCES = 1000 V VCES = 1000 V; Tcase = 150C Collector-emitter breakdown IC = 300 mA; L = 125 mH; voltage (figure 1) Imeasure = 100 mA Emitter-base breakdown voltage IE = 1 mA Collector-emitter saturation voltage IC = 0.8 A; IB = 0.2 A g IC = 2.5 A; IB = 0.8 A Base-emitter saturation voltage g IC = 0.8 A; IB = 0.2 A IC = 2.5 A; IB = 0.8 A DC forward current transfer ratio VCE = 2 V; IC = 10 mA VCE = 2 V; IC = 0.8 A VCE = 2 V; IC = 2.5 A VCE = 5 V; IC = 5 A Collector-emitter working voltage VS = 50 V; L = 1 mH; IC = 5 A; IB1 = 1.7 A; -IB2 = 0.5 A; -VBB = 5 V Dynamic saturation voltage y g IC = 2.5 A; IB = 0.5 A, t = 1 ms IC = 2.5 A; IB = 0.5 A; t = 3 ms Gain bandwidth product IC = 200 mA; VCE = 10 V; f = 1 MHz Parameter Collector cut-off current Symbol ICES ICES V(BR)CEO V(BR)EBO VCEsat VCEsat VBEsat VBEsat hFE hFE hFE hFE VCEW VCEsatdyn VCEsatdyn fT Min Typ Max 50 0.5 Unit
mA
mA V V V V V V
450 11 0.1 0.2 0.9 1 22 21 10 6 0.2 0.4 1 1.2
15 15 7 4 550
V
10 2.8 4
15 5
V V MHz
Switching Characteristics
Tcase = 25C, unless otherwise specified Parameter Test Conditions Resistive load (figure 2) Turn on time IC = 0.8 A; IB1 = 0.2 A; -IB2 = 0.4 A; VS = 250 V Storage time Fall time Turn on time IC = 2.5 A; IB1 = 0.5 A; -IB2 = 1.3 A; VS = 250 V Storage time Fall time Inductive load (figure 3) Storage time IC = 0.8 A; IB1 = 0.2 A; -IB2 = 0.4 A; Vclamp = 300 V; L = 200 mH Fall time Storage time Fall time IC = 2.5 A; IB1 = 0.5 A; -IB2 = 1.3 A; Vclamp = 300 V; L = 200 mH Symbol ton ts tf ton ts tf ts tf ts tf Min Typ 0.15 3 0.3 0.4 1.3 0.1 3 0.2 1.4 0.1 Max 0.25 3.5 0.45 0.6 1.5 0.15 3.5 0.3 1.7 0.15 Unit
ms ms ms ms ms ms ms ms ms ms
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Document Number 86504 Rev. 2, 20-Jan-99
BUD636A
Vishay Telefunken
94 8863
V S2
+ 10 V
IB
IC
w
Imeasure IC 5 IC
V S1 + 0 to 30 V V(BR)CEO tp T tp 3 Pulses
+
LC VCE V(BR)CEO 100 mW
+ 0.1 + 10 ms
I(BR)R
Figure 1. Test circuit for V(BR)CE0
94 8852
IB IB1 0 t RC -IB2
IC (1) IB1 RB VBB +
VCE IB
VCC
IC 0.9 IC
0.1 IC tr td ton t ts toff tf
(1) Fast electronic switch
Figure 2. Test circuit for switching characteristics - resistive load
Document Number 86504 Rev. 2, 20-Jan-99
www.vishay.de * FaxBack +1-408-970-5600 3 (9)
BUD636A
Vishay Telefunken
94 8853
IB IB1 LC 0 -IB2 IC (1) IB1 RB VBB IB VCE Vclamp (2) IC VCC 0.9 IC
t
+
(1) Fast electronic switch (2) Fast recovery rectifier
0.1 IC t ts tr
Figure 3. Test circuit for switching characteristics - inductive load
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Document Number 86504 Rev. 2, 20-Jan-99
BUD636A
Vishay Telefunken Typical Characteristics (Tcase = 25_C unless otherwise specified)
6 P tot - Total Power Dissipation ( W ) IC - Collector Current ( A ) 5 4 3 2 1 0 0
95 10508
100 3.12 K/W 12.5 K/W 10
1 25 K/W 0.1 0.01 0.001 50 K/W RthJA = 135 K/W
0.1 x IC < IB2 < 0.5 x IC VCEsat < 2V
100
200
300
400
500
600
95 10499
0
25
50
75
100
125
150
VCE - Collector Emitter Voltage ( V )
Tcase - Case Temperature ( C )
Figure 4. VCEW - Diagram
5 IB = 490 mA IC - Collector Current ( A ) 4 400 mA 290 mA 190 mA 95 mA 2 49 mA 1 0 0
95 10512
Figure 7. Ptot vs.Tcase
V CEsat - Collector Emitter Saturation Voltage ( V ) 10 1A 0.6A 1 2A 3A IC = 4A
3
0.1
4
8
12
16
20
0.01 0.01
0.1
1
10
VCE - Collector Emitter Voltage ( V )
95 10513
IB - Base Current ( A )
Figure 5. IC vs. VCE
h FE - Forward DC Current Transfer Ratio h FE - Forward DC Current Transfer Ratio 100 100
Figure 8. VCEsat vs. IB
Tj = 125C 75C 25C 10
25V 10V 10 5V VCE = 2V
1 0.001
95 10510
0.01
0.1
1
10
95 10511
1 0.001
0.01
0.1
1
10
IC - Collector Current ( A )
IC - Collector Current ( A )
Figure 6. hFE vs. IC
Figure 9. hFE vs. IC
Document Number 86504 Rev. 2, 20-Jan-99
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BUD636A
Vishay Telefunken
10 saturated switching R-load IC = 0.8A, IB1 = 0.1A t f - Fall Time ( ms ) 1.0 saturated switching R-load IC = 0.8A, IB1 = 0.1A
t s - Storage Time ( ms )
8
0.8
6 Tcase = 125C 4 2 25C 0 0 2 4 6 -IB2/IB1 8 10
0.6 Tcase = 125C 0.4 0.2 0 0 2 4 6 -IB2/IB1 8 10
25C
95 10517
95 10516
Figure 10. ts vs. -IB2/IB1
10 saturated switching R-load IC = 0.8A, IB1 = 0.2A t f - Fall Time ( ms ) 1.0
Figure 12. tf vs. -IB2/IB1
t s - Storage Time ( ms )
8
0.8
saturated switching R-load IC = 0.8A, IB1 = 0.2A
6 Tcase = 125C 4 2 25C 0 0 0.8 1.6 2.4 3.2 4.0
0.6 Tcase = 125C 0.4 0.2 25C 0 0 0.8 1.6 2.4 3.2 4.0
95 10515
-IB2/IB1
95 10514
-IB2/IB1
Figure 11. ts vs. -IB2/IB1
Figure 13. tf vs. -IB2/IB1
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Document Number 86504 Rev. 2, 20-Jan-99
BUD636A
Vishay Telefunken Dimensions in mm
14292
Document Number 86504 Rev. 2, 20-Jan-99
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BUD636A
Vishay Telefunken
14293
For ordering TO 252 add SMD to the type number (i.e. BUD636A -SMD)
www.vishay.de * FaxBack +1-408-970-5600 8 (9)
Document Number 86504 Rev. 2, 20-Jan-99
BUD636A
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 86504 Rev. 2, 20-Jan-99
www.vishay.de * FaxBack +1-408-970-5600 9 (9)


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