SGS Thomson Microelectronics SMBJ16A-TR, SMBJ5.0A-TR, SMBJ5.0CA-TR, SMBJ6.5CA-TR, SMBJ6.0A-TR Datasheet

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SMBJ5.0A-TR,CA-TR

®

SMBJ188A-TR,CA-TR

 

TRANSILTM

FEATURES

PEAK PULSE POWER : 600 W (10/1000μs)

STAND OFF VOLTAGE RANGE : From 5V to 188V.

UNI AND BIDIRECTIONAL TYPES

LOW CLAMPING FACTOR

FAST RESPONSE TIME

JEDEC REGISTERED PACKAGE OUTLINE

DESCRIPTION

The SMBJ series are TRANSILTM diodes designed specifically for protecting sensitive equipment against transient overvoltages.

Transil diodes provide high overvoltage protection by clamping action. Their instantaneous response to transient overvoltages makes them particularly suited to protect voltage sensitive devices such as MOS Technology and low voltage supplied IC’s.

SMB

(JEDEC DO-214AA)

ABSOLUTE MAXIMUM RATINGS (Tamb = 25°C)

Symbol

Parameter

 

Value

Unit

 

 

 

 

 

PPP

Peak pulse power dissipation (see note 1)

Tj initial = Tamb

600

W

P

Power dissipation on infinite heatsink

Tamb = 50°C

5

W

IFSM

Non repetitive surge peak forward

tp = 10ms

100

A

 

current for unidirectional types

Tj initial = Tamb

 

 

Tstg

Storage temperature range

 

- 65 to + 175

°C

Tj

Maximum junction temperature

 

150

°C

TL

Maximum lead temperature for soldering during 10 s.

260

°C

Note 1 : For a surge greater than the maximum values, the diode will fail in short-circuit.

THERMAL RESISTANCES

Symbol

Parameter

Value

Unit

 

 

 

 

Rth (j-l)

Junction to leads

20

°C/W

Rth (j-a)

Junction to ambient on printed circuit on recommended pad

100

°C/W

 

layout

 

 

 

 

 

 

October 2001Ed: 4

1/6

SGS Thomson Microelectronics SMBJ16A-TR, SMBJ5.0A-TR, SMBJ5.0CA-TR, SMBJ6.5CA-TR, SMBJ6.0A-TR Datasheet

SMBJxxxA-TR, CA-TR

 

ELECTRICAL CHARACTERISTICS (Tamb = 25°C)

 

 

 

 

 

 

 

IF

I

 

 

 

 

 

 

Symbol

 

 

 

Parameter

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

VRM

 

Stand-off voltage

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

VBR

 

Breakdown voltage

 

 

 

 

VCL VBR

 

 

 

 

 

 

 

 

 

VCL

 

Clamping voltage

 

 

 

 

 

 

 

VRM

 

 

 

V F

 

 

V

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

IRM

 

Leakage current @ VRM

 

 

 

 

 

 

 

 

 

 

I RM

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

IPP

 

Peak pulse current

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

αT

 

Voltage temperature coefficient

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

VF

 

Forward voltage drop

 

 

 

 

 

 

 

 

 

 

 

I PP

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Types

 

IRM @ VRM

VBR @ IR

VCL @ IPP

VCL @ IPP

αT

 

C

 

 

 

 

 

max.

 

 

min.

 

max.

 

max.

 

 

max.

 

typ.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

note2

10/1000μs

 

8/20μs

note3

 

note4

 

Unidirectional

 

Mark.

Bidirectional

Mark.

μA

V

V

 

mA

V

 

A

 

V

 

A

10-4/°C

pF

 

SMBJ5.0A-TR

 

BUZ

SMBJ5.0CA-TR

BBZ

800

5.0

 

6.4

 

10

9.2

 

68

13.4

 

298

5.7

 

4000

 

SMBJ6.0A-TR

 

BUA

SMBJ6.0CA-TR

BBA

800

6.0

 

6.7

 

10

10.3

 

61

13.7

 

290

5.9

 

3850

 

SMBJ6.5A-TR

 

BUB

SMBJ6.5CA-TR

BBB

500

6.5

 

7.2

 

10

11.2

 

56

14.5

 

276

6.1

 

3700

 

SMBJ8.5A-TR

 

BUC

SMBJ8.5CA-TR

BBC

5

8.5

 

9.4

 

1

14.4

 

41.7

19.5

 

205

7.3

 

2800

 

SMBJ10A-TR

 

BUD

SMBJ10CA-TR

BBD

5

10

 

11.1

 

1

17

 

37

21.7

 

184

7.8

 

2300

 

SMBJ12A-TR

 

BUE

SMBJ12CA-TR

BBE

5

12

 

13.3

 

1

19.9

 

31

25.3

 

157

8.3

 

2025

 

SMBJ13A-TR

 

BUF

SMBJ13AC-TR

BBF

1

13

 

14.4

 

1

21.5

 

29

27.2

 

147

8.4

 

1900

 

SMBJ15A-TR

 

BUG

SMBJ15CA-TR

BBG

1

15

 

16.7

 

1

24.4

 

25.1

32.5

 

123

8.8

 

1600

 

SMBJ16A-TR

 

CUG

SMBJ16CA-TR

CBG

1

16

 

17.8

 

1

26

 

23.1

32.5

 

123

8.8

 

1600

 

SMBJ18A-TR

 

BUH

SMBJ18CA-TR

BBH

1

18

 

20

 

1

29.2

 

21.5

39.3

 

102

9.2

 

1350

 

SMBJ20A-TR

 

BUI

SMBJ20CA-TR

BBI

1

20

 

22.2

 

1

32.4

 

19.4

42.8

 

93

9.4

 

1250

 

SMBJ22A-TR

 

BVA

SMBJ22CA-TR

CBH

1

22

 

24.4

 

1

35.5

 

17.7

48.3

 

83

9.6

 

1150

 

SMBJ24A-TR

 

BUJ

SMBJ24CA-TR

BBJ

1

24

 

26.7

 

1

38.9

 

16

50

 

80

9.6

 

1112

 

SMBJ26A-TR

 

BUK

SMBJ26CA-TR

BBK

1

26

 

28.9

 

1

42.1

 

14.9

53.5

 

75

9.7

 

1075

 

SMBJ28A-TR

 

BUL

SMBJ28CA-TR

BBL

1

28

 

31.1

 

1

45.4

 

13.8

59

 

68

9.8

 

1000

 

SMBJ30A-TR

 

BUM

SMBJ30CA-TR

BBM

1

30

 

33.3

 

1

48.4

 

13

64.3

 

62

9.9

 

950

 

SMBJ33A-TR

 

BUN

SMBJ33CA-TR

BBN

1

33

 

36.7

 

1

53.3

 

11.8

69.7

 

57

10.0

 

900

 

SMBJ40A-TR

 

CUJ

SMBJ40CA-TR

CBJ

1

40

 

44.4

 

1

64.5

 

9.7

84

 

48

10.1

 

800

 

SMBJ48A-TR

 

BUW

SMBJ48CA-TR

BBW

1

48

 

53.3

 

1

77.4

 

8.1

100

 

40

10.3

 

700

 

SMBJ58A-TR

 

BUO

SMBJ58CA-TR

BBO

1

58

 

64.4

 

1

93.6

 

6.7

121

 

33

10.4

 

625

 

SMBJ70A-TR

 

CUM

SMBJ70CA-TR

CBM

1

70

 

77.8

 

1

113

 

5.5

146

 

27

10.5

 

550

 

SMBJ85A-TR

 

BUQ

SMBJ85CA-TR

BBQ

1

85

 

94.4

 

1

137

 

4.6

178

 

22.5

10.6

 

500

 

SMBJ100A-TR

 

CUQ

SMBJ100CA-TR

CBQ

1

100

 

111

 

1

162

 

3.8

212

 

19

10.7

 

450

 

SMBJ130A-TR

 

BUS

SMBJ130CA-TR

BBS

1

130

 

144

 

1

209

 

3

265

 

15

10.8

 

400

 

SMBJ154A-TR

 

BUT

SMBJ154CA-TR

BBT

1

154

 

171

 

1

246

 

2.4

317

 

12.6

10.8

 

360

 

SMBJ170A-TR

 

BUU

SMBJ170CA-TR

BBU

1

170

 

189

 

1

275

 

2.2

353

 

11.3

10.8

 

350

 

SMBJ188A-TR

 

BUV

SMBJ188CA-TR

BBV

1

188

 

209

 

1

328

 

2

388

 

10.3

10.8

 

330

 

% I PP

Note 2

: Pulse test : tp < 50 ms.

100

 

10 s

Note 3

: VBR = αT * (Tamb - 25) * VBR(25°C).

 

 

 

Note 4

: VR = 0 V, F = 1 MHz. For bidirectional types,

 

 

 

 

 

 

PULSE WAVEFORM 10/1000

s

capacitance value is divided by 2.

 

 

 

50

 

 

 

 

 

0 t

1000s

2/6

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