BZW06-5V8(B) / 376(B) SERIES
Transient Voltage Suppressor Diodes
Voltage Range
5.8 to 376 Volts
600 Watts Peak Power
Features
a
a
a
a
a
a
a
a
a
UL Recognized File # E-96005
Plastic package has Underwriters Laboratory Flammability
Classification 94V-0
Exceeds environmental standards of MIL-STD-19500
600W surge capability at 10 x 100 us waveform, duty cycle:
0.01%
Excellent clamping capability
Low zener impedance
Fast response time: Typically less than 1.0ps from 0 volts to
VBR for unidirectional and 5.0 ns for bidirectional
Typical I
R
less than 1uA above 10V
High temperature soldering guaranteed: 260
O
C / 10 seconds
/ .375”,(9.5mm) lead length / 5lbs.,(2.3kg) tension
DO-15
Mechanical Data
a
a
a
Case: Molded plastic
Lead: Axial leads, solderable per MIL-STD-202,
Method 208
Polarity: Color band denotes cathode except bipolar
Weight: 0.34gram
a
Dimensions in inches and (millimeters)
Maximum Ratings and Electrical Characteristics (
T
A
= 25
O
C)
Type Number
P
eak Pulse
P
ower
D
issipation at
T
A
=25 C,
Tp=1ms (
N
ote)
O
Symbol
P
PP
P
D
I
FSM
T
J
, T
STG
Value
Minimum 600
1.7
100
-65 to + 175
Units
Watts
Watts
Amps
O
Steady State Power Dissipation at T
L
=75
O
C
Lead Lengths .375”, 9.5mm (Note 2)
Peak Forward Surge Current, 8.3 ms Single Half
Sine-wave Superimposed on Rated Load
(JEDEC method) (Note 3)
Operating and Storage Temperature Range
C
Notes: For a surge greater than the maximum values, the diode will fall in short-circuit.
Thermal Resistances
Type Number
Junction to leads
Junction to ambient on printed circuit.
L lead=10mm
Symbol
R JL
R JA
Value
60
100
Units
O
C/W
O
C/W
RATINGS AND CHARACTERISTIC CURVES (BZW06-5V8(B)/376(B)SERIES)
FIG.1- PEAK PULSE POWER VERSUS EXPONENTIAL
PULSE DURATION
Ppp(w)
1E5
T
J
Initial=25
0
C
100
FIG.2- PEAK PULSE POWER DISSIPATION VERSUS
INITIAL JUNCTION TEMPERATURE
(PRINTED CIRCUIT BOARD)
%
1E4
80
1E3
60
40
1E2
20
Tp (ms) EXPO.
T
J
Initial (
0
C)
1E1
0.001
0.01
0.1
1
10
100
0
0
20
40
60
80
100
120
140
160
180
200
FIG.3- PULSE WAVEFORM
150
PEAK PULSE CURRENT - %
tr=10
m
sec.
PULSE WIDTH (td) is DEFINED
as the POINT WHERE the PEAK
CURRENT DECAYS
to 50% of l
PPM
100
PEAK VALUE
l
PPM
50
HALF VALUE- l
PPM
2
10/1000 sec. WAVEFORM
as DEFINED by R.E.A.
FIG.4-CLAMPING VOLTAGE VERSUS PEAK PULSE
CURRENT.
EXPONENTIAL WAVEFORM tp-200 s
tp-1ms
tp-10m
10,000
V
CL
(V)
% I
PP
T
J
Initial=25
0
C
BZW06-376
BZW06-186
100
50
0
td
100
t, TIME, ms
0
tr
tp
tp<10 s
C
J
, JUNCTION CAPACITANCE.(pF)
0
1.0
2.0
3.0
4.0
BZW06-58
BZW06-33
BZW06-13
BZW06-10
FIG.5- CHARACTERASTICS VERSUS REVERSE APPLIED
VOLTAGE FOR UNIDIRECTIONAL TYPES
(TYPICAL VALUES)
10,000
C (pF)
T
j
=25
0
C
F=1MHz
10
BZW06-5V8
BZW06-5V8
1,000
BZW06-13
1
0.1
I
PP
(A)
1
10
100
1000
BZW06-58
100
BZW06-171
V
R
(V)
0
1
10
100
500
RATINGS AND CHARACTERISTIC CURVES (BZW06-5V8(B)/376(B)SERIES)
FIG.6- CHARACTERASTICS VERSUS REVERSE APPLIED
VOLTAGE FOR UNIDIRECTIONAL TYPES
(TYPICAL VALUES)
10,000
FIG.7- PEAK FORWARD VOLTAGE DROP VERSUS
PEAK FORWARD CURRENT (TYPICAL
VALUES FOR UNDIRECTIONAL TYPES)
100
I
FM
(A)
TJ Initial
25
0
C
150
0
C
C (pF)
T
j
=25
0
C
F=1MHz
BZW06-5V8
1,000
BZW06-13
10
BZW06-58
100
BZW06-171
V
FM
(V)
V
R
(V)
1
0
0.5
1
1.5
2
2.5
3
3.5
4
4.5
5
0
1
10
100
500
FIG.8- TRANSIENT THERMAL IMPEDANCE JUNCTION
AMBIENT VERSUS PULSE DURATION
(FOR FR4 PC BOARD WITH L LEAD=10mm)
100
FIG.9- RELATIVE VARIATION OF LEAKAGE CURRENT
VERSUS JUNCTION TEMPERATURE
I
R
(T
J
)
I
R
(T
J
=25
0
C
)
Zth (j-a) (
0
C/W)
5E+3
V
R
=V
RM
1E+3
1E+2
10
1E+1
1E+0
T
j
(
0
C)
1E-1
tp (s)
0
25
50
75
100
125
150
1
0.01
0.1
1
10
100
1000
E LE C TR IC A L C H A R A C TE R IS TIC S
Device
Unidirectional Bidirectional
BZW 06-5V8
BZW 06-6V4
BZW 06-8V5
BZW 06-10
BZW 06-13
BZW 06-15
BZW 06-19
BZW 06-20
BZW 06-23
BZW 06-26
BZW 06-28
BZW 06-31
BZW 06-33
BZW06-40
BZW 06-48
BZW 06-58
BZW 06-70
BZW 06-85
BZW 06-102
BZW 06-128
BZW 06-154
BZW 06-171
BZW 06-188
BZW 06-213
BZW 06-256
BZW 06-273
BZW 06-299
BZW 06-342
BZW 06-376
BZW 06-5V8B
BZW 06-6V4B
BZW 06-8V5B
BZW 06-10B
BZW 06-13B
BZW 06-15B
BZW 06-19B
BZW 06-20B
BZW 06-23B
BZW 06-26B
BZW 06-28B
BZW 06-31B
BZW 06-33B
BZW 06-40B
BZW 06-48B
BZW 06-58B
BZW 06-70B
BZW 06-85B
BZW 06-102B
BZW 06-128B
BZW 06-154B
BZW 06-171B
BZW 06-188B
BZW 06-213B
BZW 06-256B
BZW 06-273B
BZW 06-299B
BZW 06-342B
BZW 06-376B
I
RM
@ V
RM
m ax
uA
1000
500
10
5
5
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
V
5.8
6.4
8.5
10.2
12.8
15.3
18.8
20.5
23.1
25.6
28.2
30.8
33.3
40.2
47.8
58.1
70.1
85.5
102
128
154
171
188
231
256
273
299
342
376
(TA=25 C unless otherwise noted)
V
CL
@ I
PP
m ax
10/1000uS
V
A
10.5
11.3
14.5
16.7
21.2
25.2
30.6
33.2
37.5
41.5
45.7
49.9
53.9
64.8
77.0
92
113
137
165
207
246
274
328
344
414
438
482
548
603
57
53
41
36
28
24
19.6
28.0
16.0
14.5
13.1
12.0
11.1
0.3
7.8
6.5
5.3
4.4
3.6
2.9
2.4
2.2
2.0
2.0
1.6
1.6
1.6
1.3
1.3
V
CL
@ I
PP
m ax
8/20uS
V
A
13.4
14.5
18.6
21.7
27.2
32.5
39.3
42.8
48.3
53.5
59.0
64.3
69.7
84
100
121
146
178
212
265
317
353
388
442
529
564
618
706
776
298
276
215
184
147
123
102
93
83
75
68
62
57
48
40
33
27
23
19
15
13
11
10.3
9.0
7.6
7.1
6.5
5.7
5.7
T
m ax
note2
-4 O
10 / C
5.7
6.1
7.3
7.8
8.4
8.8
9.2
9.4
9.6
9.7
9.8
9.6
10.0
10.1
10.3
10.4
10.5
10.6
10.7
10.8
10.8
10.8
10.8
11.0
11.0
11.0
11.0
11.0
11.0
C
typ
note3
(pF)
4000
3700
2800
2300
1900
1600
1350
1250
1150
1075
1000
950
900
800
700
625
550
500
450
400
360
350
330
310
290
280
270
360
350
O
V
BR
@ I
R
m in
note1
V
mA
6.45
7.13
9.5
11.4
14.3
17.1
20.9
22.8
25.7
28.5
31.4
34.2
37.1
44.7
53.2
64.6
77.9
95
114
143
171
190
209
237
285
304
332
380
418
10
10
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
Notes: 1. Pulse test: tp < 50 m s.
O
2. V
BR
= T *(Tam b - 25) * V
BR
(25 C)
3. V
R
=0V, F=1M Hz, For bidirectional types, capacitance value is divided by 2