BZW06-342B STMicroelectronics, BZW06-342B Datasheet

TRANSIL 600W 342V BIDIR DO-15

BZW06-342B

Manufacturer Part Number
BZW06-342B
Description
TRANSIL 600W 342V BIDIR DO-15
Manufacturer
STMicroelectronics
Series
TRANSIL™r
Datasheet

Specifications of BZW06-342B

Voltage - Reverse Standoff (typ)
342V
Voltage - Breakdown
380V
Power (watts)
600W
Polarization
Bidirectional
Mounting Type
Through Hole
Package / Case
DO-204AC, DO-15, Axial
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
DESCRIPTION
Transil diodes provide high overvoltage protection
by clamping action. Their instantaneous response
to transient overvoltages makes them particu-
larly suited to protect voltage sensitive devices
such as MOS Technology and low voltage sup-
plied IC’s.
ABSOLUTE MAXIMUM RATINGS (T
Note 1 : For a surge greater than the maximum values, the diode will fail in short-circuit.
FEATURES
THERMAL RESISTANCES
February 2003 - Ed : 3A
PEAK PULSE POWER : 600 W (10/1000 s)
STAND-OFF VOLTAGE RANGE :
UNI AND BIDIRECTIONAL TYPES
LOW CLAMPING FACTOR
FAST RESPONSE TIME
UL RECOGNIZED
Symbol
Symbol
From 5.8V to 376 V
R
R
I
P
T
th (j-a)
FSM
th (j-l)
T
T
P
stg
PP
L
j
®
Peak pulse power dissipation (see note 1)
Power dissipation on infinite heatsink
Non repetitive surge peak forward current
for unidirectional types
Storage temperature range
Maximum junction temperature
Maximum lead temperature for soldering during 10s a 5mm
from case.
Junction to leads
Junction to ambient on printed circuit.
Parameter
amb
Parameter
= 25°C)
L
lead
= 10 mm
Tj initial = Tamb
T
tp = 10ms
Tj initial = T
amb
BZW06-5V8B/376B
= 75°C
BZW06-5V8/376
amb
DO-15
Value
- 65 to + 175
100
60
Value
600
100
175
230
1.7
TRANSIL
°C/W
Unit
Unit
C/W
°C
W
W
A
C
C
TM
1/6

Related parts for BZW06-342B

BZW06-342B Summary of contents

Page 1

... Symbol R Junction to leads th (j-l) R Junction to ambient on printed circuit. th (j-a) February 2003 - BZW06-5V8B/376B = 25°C) amb Parameter Tj initial = Tamb T = 75°C amb tp = 10ms Tj initial = T Parameter lead BZW06-5V8/376 TRANSIL DO-15 Value Unit 600 W 1.7 W 100 A amb - 175 C 175 C 230 °C Value Unit 60 °C/W 100 ...

Page 2

... BZW06-10 BZW06-10B BZW06-13 BZW06-13B BZW06-15 BZW06-15B BZW06-19 BZW06-19B BZW06-20 BZW06-20B BZW06-23 BZW06-23B BZW06-26 BZW06-26B BZW06-28 BZW06-28B BZW06-31 BZW06-31B BZW06-33 BZW06-33B BZW06-40 BZW06-40B BZW06-48 BZW06-48B BZW06-58 BZW06-58B BZW06-70 BZW06-70B BZW06-85 BZW06-85B BZW06-102 BZW06-102B BZW06-128 BZW06-128B BZW06-154 BZW06-154B BZW06-171 BZW06-171B 2/6 = 25°C) amb ...

Page 3

... Types Unidirectional Bidirectional BZW06-188 BZW06-188B BZW06-213 BZW06-213B BZW06-256 BZW06-256B BZW06-273 BZW06-273B BZW06-299 BZW06-299B BZW06-342 BZW06-342B BZW06-376 BZW06-376B % 100 PULSE WAVEFORM 10/1000 1000 s Note 2 : Pulse test < 50 ms. Note amb - 25 (25°C) Note MHz. For bidirectional types, capacitance value is divided min max note2 ...

Page 4

... BZW06-xx Fig Peak pulse power versus exponential pulse duration. Ppp (W) 1E5 1E4 1E3 1E2 1E1 0.001 Fig Clamping voltage versus peak pulse current. Exponential waveform t Note : The curves of the figure 3 are specified for a junction temperature of 25°C before surge. The given results may be extrapolated for other junction temperatures by using the following formula : ...

Page 5

... Fig Relative variation of leakage current ver- sus junction temperature. Fig Capacitance versus reverse applied voltage for bidirectional types (typical values). Fig Transient thermal impedance junction ambi- ent versus pulse duration (For FR4 PC Board with L = 10mm). lead BZW06-xx 5/6 ...

Page 6

... BZW06-xx ORDER BZW 600W STAND-OFF VOLTAGE MARKING : Logo, Date Code, Type Code, Cathode Band (for unidirectional types only). PACKAGE MECHANICAL DATA DO-15 (Plastic Packaging : standard packaging is in tape and reel. Weight = 0.4 g. Information furnished is believed to be accurate and reliable. However, STMicroelectronics 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 ...

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