SGS Thomson Microelectronics TPB68, TPB270, TPB240, TPB180, TPB220 Datasheet

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FEATURES

BIDIRECTIONAL CROWBAR PROTECTION. VOLTAGE RANGE: FROM 62 V TO 270 V.

HOLDING CURRENT : IH = 150mA min.

REPETITIVE PEAK PULSE CURRENT : IPP = 100 A, 10/1000 μs.

UL RECOGNIZED FILE # E136224

DESCRIPTION

The TPB series are TRISIL devices especially designed for protecting sensitive telecommunication equipment against lightning and transient voltages induced by AC power lines. They are available in the CB429 axial package.

TRISIL devices provide bidirectional protection by crowbar action. Their characteristic response to transient overvoltages makes them particularly suited to protect voltage sensitive telecommunication equipment.

TPB SERIES

TRISILTM

CB429

SCHEMATIC DIAGRAM

COMPLIES WITH THE FOLLOWING STANDARDS:

CCITT K20

VDE0433

VDE0878

IEC-1000-4-5

FCC Part 68, lightning surge type A

FCC Part 68, lightning surge type B

Peak Surge

Voltage

Current

Admissible

Necessary

Voltage

Waveform

Waveform

Ipp

Resistor

(V)

(μs)

(μs)

(A)

(Ω)

4000

10/700

5/310

100

-

4000

10/700

5/310

100

-

4000

1.2/50

1/20

100

-

level 4

10/700

5/310

100

-

level 4

1.2/50

8/20

100

-

1500

10/160

10/160

200

-

800

10/560

10/560

100

-

100

5/320

5/320

25

-

BELLCORE TR-NWT-001089

2500

2/10

2/10

500

-

First level

1000

10/1000

10/1000

100

-

BELLCORE TR-NWT-001089

500

2/10

2/10

500

-

Second level

 

 

 

 

 

CNET l31-24

4000

0.5/700

0.8/310

100

-

October 1998 - Ed: 6A

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SGS Thomson Microelectronics TPB68, TPB270, TPB240, TPB180, TPB220 Datasheet

TPB SERIES

ABSOLUTE MAXIMUM RATINGS (Tamb = 25°C)

Symbol

Parameter

 

Value

Unit

P

Power dissipation on infinite heatsink

Tamb = 50 °C

5

W

IPP

Peak pulse current

10/1000 μs

100

A

 

 

8/20 μs

150

 

 

 

2/10 μs

500

 

ITSM

Non repetitive surge peak on-state current

tp = 20 ms

50

A

I2t

I2t value for fusing

tp = 20 ms

25

A2s

dV/dt

Critical rate of rise of off-state voltage

VRM

5

kV/μs

Tstg

Storage temperature range

 

- 55 to + 150

°C

Tj

Maximum junction temperature

 

150

°C

TL

Maximum lead temperature for soldering during 10s at 5mm for

230

°C

 

case

 

 

 

THERMAL RESISTANCES

Symbol

Rth (j-l)

Rth (j-a)

Parameter

Value

Unit

Junction to leads (Llead = 10mm)

20

°C/W

Junction to ambient on printed circuit (Llead = 10 mm)

75

°C/W

ELECTRICAL CHARACTERISTICS

(Tamb = 25°C)

Symbol

Parameter

 

 

 

 

 

 

VRM

Stand-offvoltage

 

 

 

 

 

 

IRM

Leakage current at stand-off voltage

 

 

 

 

 

VR

Continuous Reverse voltage

 

 

 

 

 

VBR

Breakdown voltage

 

 

 

 

 

 

VBO

Breakover voltage

 

 

 

 

 

 

IH

Holding current

 

 

 

 

 

 

 

IBO

Breakover current

 

 

 

 

 

 

IPP

Peak pulse current

 

 

 

 

 

 

C

Capacitance

 

 

 

 

 

 

 

Type

IRM @ VRM

IR @ VR

VBO @ IBO

IH

C

 

max.

 

max.

 

max.

 

min.

max.

 

 

 

note1

 

note2

 

note3

note4

 

μA

V

μA

V

V

mA

mA

pF

TPB62

2

56

50

62

82

800

150

300

TPB68

2

61

50

68

90

800

150

300

TPB100

2

90

50

100

133

800

150

200

TPB120

2

108

50

120

160

800

150

200

TPB130

2

117

50

130

173

800

150

200

TPB180

2

162

50

180

240

800

150

200

TPB200

2

180

50

200

267

800

150

200

TPB220

2

198

50

220

293

800

150

200

TPB240

2

216

50

240

320

800

150

200

TPB270

2

243

50

270

360

800

150

200

Note 1:

IR measured at VR guarantees VBRmin VR

Note 3:

See test circuit 2.

Note 2: Measured at 50 Hz (1 cycle) - See test circuit 1. Note 4: VR = 1V, F = 1MHz, refer to fig.3 for C versus VR .

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