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BZX5543

160 V, 0.5 W, SILICON, UNIDIRECTIONAL VOLTAGE REGULATOR DIODE, DO-35

器件类别:半导体    分立半导体   

厂商名称:New Jersey Semiconductor

厂商官网:http://www.njsemi.com

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, O
ne.
20 STERN AVE.
SPRINGFIELD, NEW JERSEY 07081
U.S.A.
TELEPHONE: (973) 376-2922
(212)227-6005
FAX: (973) 376-8960
BZX55 ...
SILICON PLANAR ZENER DIODES
DO-3S
DIMENSIONS
InchM
DIM
Mln.
mm
Noll
M».
Mln.
M«.
S.t
)9
*
*
A
B
C
0
-
0.1S4
0075
0.020
-
3750
O.SJ
1.0«3
Absolute Maximum Ratings rr.=25x:)
Symbol*
Zener current see Table •CturactarisUe*
1
V.IUM
Unit*
P.
Junction tempemajre
Storage temperature range
T
,
T
.
500"
175
-55 to +175
rnW
•c
r
Note:
(1) \^Wprovidod»«ltoadsare k^ 81 amb^lleiTlpefalUB at advance of 8 mm from caw
Characteristics *t T^=2sr
Symbol.
Thantwl rxMtnc*
Junction to ambient Mr
FonMn) voltage at l
F
«100mA
Mln.
-
TVP-
-
-
Max.
0.3"
1.0
Unltt
V
F
K/mW
V
(1) Valid provided that leads
an
kept at ambient temperature at a distance of 8 mm (ram case.
NJ Semi-Conductors reserves the right to change test conditions, parameter limits and package dimensions without
notice. Information furnished by NJ Semi-Conductors is believed to be both accurate and reliable at the time of going
to press. However, NJ Semi-Conductors assumes no responsibility for any errors or omissions discovered in its use.
NJ Semi-Conductors encourages customers to verify that datasheets are current before placing orders.
Quality Semi-Conductors
Zanar voltage range 1)
Typa
Dynamic resistance
r
IiT
and r,
A
at !„
Q
<8
<8S
<6S
<85
<85
<8S
<85
<85
<7S
<60
<35
<25
<10
<B
«7
<7
<10
<15
«20
<20
<26
<30
«40
<SO
<55
<55
Q
<50
Reverie leakage current
, and I, " a t V,
Tamp, covffietont
of Zenor voltage
TK
VI
V
%/K
v,...
V
!„ for V,, 'i
mA
5
5
5
5
5
5
S
5
5
S
5
S
5
S
5
S
5
5
5
5
5
5
S
5
S
S
5
5
S
S
S
2.S
2.5
2.5
25
2.5
2.5
2.S
2.S
2.S
1
1
1
1
1
1
1
1
1
V
mA
1
1
1
t
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
0.5
0.5
05
0.5
0.5
05
0.5
OS
0.25
uA
uA
BZX55/C OV«
BZXSS/C JVO
BZX55/C 2V4
BZX5S/C 2V7
BZXSS/C 3VO
BZX55/C 3V3
BZX55/C 3V8
BZX55/C 3V9
BZXSS/C 4V3
BZX55/C 4V7
BZXSS/C SV1
BZX55/C 5V 8
BZX55/C gV2
BZXSS/C 6VS
BZX55/C 7V5
BZX55/C 8V2
BZXS5/C 9V 1
BZXSS/C 10
BZXSS/C 11
BZXSS/C 12
BZX55/C 13
BZXSS/C 15
BZXSS/C IB
BZXSS/C 18
BZX55/C 20
BZXSS/C 22
BZX55/C 24
BZXSS/C 27
BZXSS/C 30
BZXSS/C 33
BZXSS/C 36
BZXSS/C 38
BZX55/C 43
BZXSS/C 47
BZXSS/C 51
BZXSS/C SB
BZX55/C 62
BZXSS/C SB
BZXS5/C 75
BZXSS/C 82
BZXSS/C 91
BZXSS/C 100
BZXSS/C 110
BZX5S/C 120
BZXSS/C 130
BZXSS/C 1SO
BZX55/C 160
BZXSS/C 1BO
BZXSS/C 200
01
2.0
24
2.7
30
3.3
3.6
39
4.3
4.7
S.1
S.B
68
8.8
7S
8.2
91
0.73
...
0.83
-0.26 ... -0.23
<100
1.9 ... 2.1
2 28 ... 2. 56
2.S ... 2.9
2,8 ... 3.2
3.1 ... 3.5
3.4 ... 3.8
3.7 ... 4.1
4.0 ... 4,«
4.4 ... 5.0
4.8 ... 5.4
52
60
5.8 ... 6.6
8.4 ... 7 2
7.0 ... 7.9
7.7 ...8.7
<eoo
<600
<BOO
<800
<200
<SO
<10
<4
<2
<2
<2
<1
<0.5
<100
<50
<40
<40
<40
<40
<20
<10
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<2
<5
<5
<5
<10
<10
<10
<10
<10
<10
<10
<10
<10
1
1
1
1
1
1
1
1
1
1
1
2
3
S
62
68
7.5
82
9.1
10
11
12
13
15
16
18
20
22
24
27
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
150
•0.09 ... -0.06
-0 09 ... -0.06
-0.09 ... -0.06
•0.08 .. -0.05
<$oo
<BOQ
<eoo
<600
<600
<sso
<450
<200
<150
-0.08 ... -0.05
•0 08 ... -0 05
-0.08 ... -0.05
-0.06 ... -0.03
•0.05 ... +0.02
<0 1
<0.1
-0.02 ... -0 02
•0.05 ... -0.05
<0 1
<0.1
0 03
0 06
0.03 ... 0.07
0 03
0 07
<50
<50
<50
<70
<70
<90
<110
<110
<170
<170
<0 1
<0.1
0.03 ... 0.08
0.03
. 0.09
8.S ... 9.6
9.4 ...
10.6
10.4
...
11.6
11.4
...
12.7
12.4
...
14.1
13.8
...
15.8
15.3
...
17.1
16.8
<0 1
<0.1
<0.1
<0.1
to
11
12
13
15
18
18
20
22
24
27
30
33
36
39
43
47
51
56
82
68
75
82
91
100
110
120
130
150
180
180
200
0.03 ... 0.1
0 03 ... 0 11
0.03 ... O . t t
0.03 ... 0.11
0.03 ... 0.11
0.03 .. 0.11
0.03 . . 0.11
003 ... 0.11
0.04
• 012
<0 1
<0,1
<0 1
19 1
<a
1
<0,1
<0.1
<0,1
<0.1
<0.1
<0.t
<0.1
<0.1
<0.1
<0 1
<0.1
<0 1
<0.1
• 0.1
<0 1
<0,1
<0 1
<0.1
<0.1
<0.1
<0.1
<0 1
<0.1
<0.1
<0.1
18.8
...
21.2
20.8
... 23 3
22.8
...
25.8
25.1
.„ 289
<220
<220
<220
<220
<220
<220
<220
<500
<500
<600
<700
«700
•=1000
1000
<eo
<eo
<80
<80
<80
<90
<90
0.04 ... 0.12
0.04 ... 0.12
0.04 ... 0.12
0 04 ... 0.12
0.04 ... 0.12
0 04
0.12
28 ... 32
31 ... 35
34 ... 38
37 ... 41
40 ... 46
44 ... 50
48 ... 54
52 ... 80
58 ... 66
64
72
70 ... 79
77 ... 87
85 ... 96
94
106
104 ... 116
114 ... 127
124 ... 141
13* ... 156
153 ... 171
188 ... 191
188 ... 212
0.04 ... 0.12
0.04
0.12
<110
<125
<13S
<150
0.04 ... 0.12
0.04 . . 0 1 2
0.04 ... 0.12
0.04 ... 0.12
0.04 ... 0.12
0 05 . 0 1 2
0.05 ... 0.12
0.05 .. 0.12
0.05 ... 0.12
0.05
0 12
<200
<2SO
<300
<4SO
<450
<«00
<800
<950
<t250
<1400
<1700
<2000
<1000
«1500
<2000
<5000
<SOOO
<5500
• 6000
<6500
<7000
<8500
<1000Q
0.1
0.1
0.1
0.1
0.1
0.1
0.1
0.1
0.1
<to
<10
<10
<10
<10
<10
0.05 ... 0.12
0 05
0 12
0.05 ... 0.12
O.OS
0 12
0.05 ... 0.12
Note*:
(1) Tested wi(h pulses tp=20ms.
(2) Valid provided that leads are kept at ambient temperature at
a
distance of 8 mm Iran c
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