DZ23-G Series
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Rev. 1.1, 01-Mar-13 1Document Number: 85879
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Small Signal Zener Diodes, Dual
FEATURES
Dual silicon planar Zener diodes, common
cathode
The Zener voltages are graded according to
the international E24 standard. Standard
Zener voltage tolerance is ± 5 %.
The parameters are valid for both diodes in
one case. VZ and Rzj of the two diodes in
one case is 5 %
AEC-Q101 qualified
ESD capability according to AEC-Q101:
Human body model > 8 kV
Machine model > 800 V
Base P/N-G3 - green, commercial grade
Material categorization: For definitions of compliance
please see www.vishay.com/doc?99912
PRIMARY CHARACTERISTICS
PARAMETER VALUE UNIT
VZ range nom. 2.7 to 51 V
Test current IZT 5mA
VZ specification Pulse current
Int. construction Dual common cathode
1
3
2
ORDERING INFORMATION
DEVICE NAME ORDERING CODE TAPED UNITS PER REEL MINIMUM ORDER QUANTITY
DZ23-G-Series
DZ23C2V7-G3-08 to DZ23C51-G3-08 3000 (8 mm tape on 7" reel) 10 000
DZ23C2V7-G3-18 to DZ23C51-G3-18 10 000 (8 mm tape on 13" reel) 15 000
PACKAGE
PACKAGE NAME WEIGHT MOLDING COMPOUND
FLAMMABILITY RATING
MOISTURE SENSITIVITY
LEVEL SOLDERING CONDITIONS
SOT-23 8.1 mg UL 94 V-0 MSL level 1
(according J-STD-020) 260 °C/10 s at terminals
ABSOLUTE MAXIMUM RATINGS (Tamb = 25 °C, unless otherwise specified)
PARAMETER TEST CONDITION SYMBOL VALUE UNIT
Power dissipation Device on fiberglass substrate,
see layout on page 6 Ptot 300 mW
Thermal resistance,
junction to ambient air
Device on fiberglass substrate,
see layout on page 6 RthJA 420 K/W
Junction temperature Tj150 °C
Storage temperature range Tstg - 65 to + 150 °C
Operating temperature range Top - 55 to + 150 °C
Zener current IZPtot/VZmA
DZ23-G Series
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Rev. 1.1, 01-Mar-13 2Document Number: 85879
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ELECTRICAL CHARACTERISTICS (Tamb = 25 °C, unless otherwise specified)
PART NUMBER MARKING
CODE
ZENER VOLTAGE
RANGE (1)
TEST
CURRENT
REVERSE
VOLTAGE
DYNAMIC
RESISTANCE
f = 1 kHz
TEMPERATURE
COEFFICIENT OF
ZENER VOLTAGE
VZ at IZT1 IZT1 IZT2 VR at IRZZ at IZT1 ZZK at IZT2 VZ at IZT1
VmA VnA 10-4/°C
MIN. NOM. MAX. MAX. MAX. MAX. MIN. MAX.
DZ23C2V7-G V41 2.5 2.7 2.9 5 1 - - 75 (< 83) < 500 - 9 - 4
DZ23C3V0-G V42 2.8 3.0 3.2 5 1 - - 80 (< 95) < 500 - 9 - 3
DZ23C3V3-G V43 3.1 3.3 3.5 5 1 - - 80 (< 95) < 500 - 8 - 3
DZ23C3V6-G V44 3.4 3.6 3.8 5 1 - - 80 (< 95) < 500 - 8 - 3
DZ23C3V9-G V45 3.7 3.9 4.1 5 1 - - 80 (< 95) < 500 - 7 - 3
DZ23C4V3-G V46 4 4.3 4.6 5 1 - - 80 (< 95) < 500 - 6 - 1
DZ23C4V7-G V47 4.4 4.7 5 5 1 - - 70 (< 78) < 500 - 5 2
DZ23C5V1-G V48 4.8 5.1 5.4 5 1 > 0.8 100 30 (< 60) < 480 - 3 4
DZ23C5V6-G V49 5.2 5.6 6 5 1 > 1 100 10 (< 40) < 400 - 2 6
DZ23C6V2-G V50 5.8 6.2 6.6 5 1 > 2 100 4.8 (< 10) < 200 - 1 7
DZ23C6V8-G V51 6.4 6.8 7.2 5 1 > 3 100 4.5 (< 8) < 150 2 7
DZ23C7V5-G V52 7 7.5 7.9 5 1 > 5 100 4 (< 7) < 50 3 7
DZ23C8V2-G V53 7.7 8.2 8.7 5 1 > 6 100 4.5 (< 7) < 50 4 7
DZ23C9V1-G V54 8.5 9.1 9.6 5 1 > 7 100 4.8 (< 10) < 50 5 8
DZ23C10-G V55 9.4 10 10.6 5 1 > 7.5 100 5.2 (< 15) < 70 5 8
DZ23C11-G V56 10.4 11 11.6 5 1 > 8.5 100 6 (< 20) < 70 5 9
DZ23C12-G V57 11.4 12 12.7 5 1 > 9 100 7 (< 20) < 90 6 9
DZ23C13-G V58 12.4 13 14.1 5 1 > 10 100 9 (< 25) < 110 7 9
DZ23C15-G V59 13.8 15 15.6 5 1 > 11 100 11 (< 30) < 110 7 9
DZ23C16-G V60 15.3 16 17.1 5 1 > 12 100 13 (< 40) < 170 8 9.5
DZ23C18-G V61 16.8 18 19.1 5 1 > 14 100 18 (< 50) < 170 8 9.5
DZ23C20-G V62 18.8 20 21.2 5 1 > 15 100 20 (< 50) < 220 8 10
DZ23C22-G V63 20.8 22 23.3 5 1 > 17 100 25 (< 55) < 220 8 10
DZ23C24-G V64 22.8 24 25.6 5 1 > 18 100 28 (< 80) < 220 8 10
DZ23C27-G V65 25.1 27 28.9 5 1 > 20 100 30 (< 80) < 250 8 10
DZ23C30-G V66 28 30 32 5 1 > 22.5 100 35 (< 80) < 250 8 10
DZ23C33-G V67 31 33 35 5 1 > 25 100 40 (< 80) < 250 8 10
DZ23C36-G V68 34 36 38 5 1 > 27 100 40 (< 90) < 250 8 10
DZ23C39-G V69 37 39 41 5 1 > 29 100 50 (< 90) < 300 10 12
DZ23C43-G V70 40 43 46 5 1 > 32 100 60 (< 100) < 700 10 12
DZ23C47-G V71 44 47 50 5 1 > 35 100 70 (< 100) < 750 10 12
DZ23C51-G V72 48 51 54 5 1 > 38 100 70 (< 100) < 750 10 12
Note
(1) Tested with pulses tp = 5 ms
DZ23-G Series
www.vishay.com Vishay Semiconductors
Rev. 1.1, 01-Mar-13 3Document Number: 85879
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TYPICAL CHARACTERISTICS (Tamb = 25 °C, unless otherwise specified)
Fig. 1 - Forward Characteristics
Fig. 2 - Admissible Power Dissipation vs.
Ambient Temperature
Fig. 3 - Dynamic Resistance vs. Zener Current
Fig. 4 - Dynamic Resistance vs. Zener Current
Fig. 5 - Dynamic Resistance vs. Zener Current
Fig. 6 - Thermal Differential Resistance vs. Zener Voltage
18114
mA
10
3
10
2
10
-1
10
-2
10
-3
10
-4
10
-5
10
1
IF
VF
0 0.2 0.4 0.6 0.8 1V
T
J
= 100 °C
T
J
= 25 °C
18115
mW
400
100
0
300
200
Ptot
Tamb
0 100 200 °C
500
18117
1000
5
4
3
2
5
4
3
2
100
1
r
zj
0.1
25 25
110
I
Z
T
J
= 25 °C
2.7
5
4
3
2
10
25
100 mA
3.6
4.7
5.1
5.6
Ω
18119
100
5
4
3
2
5
4
3
2
10
rzj
0.1
25 25
110
I
Z
1
25
100 mA
Ω
T
J
= 25 °C
33
27
22
18
15
12
10
6.8/8.2
6.2
18120
10
3
7
5
4
3
2
7
5
4
3
2
10
Ω
0.1
2345 2345
110
mA
R
zj
I
Z
T
j
= 25 °C
47 + 51
43
39
36
10
2
18121
10
3
5
4
3
2
5
4
3
2
10
2
1
Rzth
5
4
3
2
10
Ω
1
2345 2345
10 100 V
VZ at IZ = 5 mA
negativepositive
Δ
Δ
VZ
Tj
R
zth
= R
thA
x V
Z
x
DZ23-G Series
www.vishay.com Vishay Semiconductors
Rev. 1.1, 01-Mar-13 4Document Number: 85879
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THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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Fig. 7 - Dynamic Resistance vs. Zener Voltage
Fig. 8 - Temperature Dependence of Zener Voltage vs.
Zener Voltage
Fig. 9 - Change of Zener Voltage vs. Junction Temperature
Fig. 10 - Temperature Dependence of Zener Voltage vs.
Zener Voltage
Fig. 11 - Change of Zener Voltage vs. Junction Temperature
Fig. 12 - Change of Zener Voltage from Turn-on up to the Point of
Thermal Equilibrium vs. Zener voltage
18122
100
7
5
4
3
2
7
5
4
3
2
1
Ω
Rzj
10
T
j
= 25 °C
I
Z
= 5 mA
1
2345 2345
10 100 V
VZ
18124
V
Z
at I
Z
= 5 mA
25 15
10
8
7
6.2
5.9
5.6
5.1
4.7
3.6
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
- 1
- 0.2
VZ
V
Tj
020406080
100 120 140 C
Δ
18125
Δ
100
80
60
40
20
0
mV/°C
Δ
VZ
Tj
020 40 80
60 100 V
VZ
IZ = 5 mA
18126
Δ
9
7
5
3
1
- 1
V
V
Z
8
6
4
2
0
0100
60
T
j
20 40 120
80 140 °C
I
Z
= 2 mA
51
43
36
18127
Δ
1.6
1.2
0.8
0.4
0
- 0.4
V
VZ
1.4
1
0.6
0.2
- 0.2
12345 2345
10 100 V
VZ at IZ = 5 mA
VZ = Rzth x IZ
Δ
DZ23-G Series
www.vishay.com Vishay Semiconductors
Rev. 1.1, 01-Mar-13 5Document Number: 85879
For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
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Fig. 13 - Change of Zener Voltage from Turn-on up to the Point of
Thermal Equilibrium vs. Zener voltage
Fig. 14 - Breakdown Characteristics
Fig. 15 - Breakdown Characteristics
Fig. 16 - Breakdown Characteristics
LAYOUT FOR RthJA TEST
Thickness: fiberglass 0.059" (1.5 mm)
Copper leads 0.012" (0.3 mm)
18128
Δ
5
4
3
2
1
0
V
VZ
020 40 60 80 100 V
VZ
IZ = 5 mA
IZ = 2 mA
VZ = Rzth x IZ
Δ
18111
Test
current
I
Z
5 mA
123456789
0 10 V
V
Z
3.3
3.9 5.6
2.7
mA
50
40
30
20
10
0
lZ
T
j
= 25 °C
8.2
6.8
4.7
18112
10 20 30
0 40 V
V
Z
mA
30
20
10
0
l
Z
33
Test
current
I
Z
5 mA
T
j
= 25 °C
10
12
15
18
22
27
36
18113
mA
10
8
6
4
2
0
l
Z
10 20 30 40 50 60 70 80 90
0 100 V
V
Z
43
39
Test
current
I
Z
5 mA
T
j
= 25 °C
47
51
17451
15 (0.59)
12 (0.47)
0.8 (0.03)
5 (0.2)
7.5 (0.3)
3 (0.12)
1 (0.4)
1 (0.4)
2 (0.8)
2 (0.8)
1.5 (0.06)
5.1 (0.2)
DZ23-G Series
www.vishay.com Vishay Semiconductors
Rev. 1.1, 01-Mar-13 6Document Number: 85879
For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
PACKAGE DIMENSIONS in millimeters (inches): SOT-23
Foot print recommendation:
Rev. 8 - Date: 23.Sept.2009
17418
Document no.: 6.541-5014.01-4
0.9 (0.035)
1 (0.039)
0.9 (0.035)
1 (0.039)
1.43 (0.056)
0.45 (0.018)
0.35 (0.014)
2.8 (0.110)
3.1 (0.122)
0.45 (0.018)
0.35 (0.014)
0.45 (0.018)
0.35 (0.014)
0.1 (0.004) max.
2.35 (0.093)
2.6 (0.102)
0.175 (0.007)
0.098 (0.004)
1.15 (0.045)
0.9 (0.035)
1.20 (0.047)
0.95 (0.037) 0.95 (0.037)
2 (0.079)
0.7 (0.028)
0.9 (0.035)
0° to 8°
0.2 (0.008)
0.3 (0.012)
0.5 (0.020)
0.550 ref. (0.022 ref.)
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DZ23C51-G3-18 DZ23C10-G3-18 DZ23C18-G3-08 DZ23C3V0-G3-08 DZ23C7V5-G3-18 DZ23C3V9-G3-18
DZ23C8V2-G3-08 DZ23C11-G3-08 DZ23C2V7-G3-08 DZ23C24-G3-18 DZ23C5V1-G3-08 DZ23C43-G3-08
DZ23C6V8-G3-18 DZ23C27-G3-08 DZ23C3V6-G3-18 DZ23C36-G3-08 DZ23B6V8-G3-08 DZ23C51-G3-08
DZ23C4V3-G3-18 DZ23C30-G3-18 DZ23C20-G3-18 DZ23C3V3-G3-18 DZ23C4V7-G3-08 DZ23C22-G3-08
DZ23C13-G3-08 DZ23C11-G3-18 DZ23C16-G3-18 DZ23C6V2-G3-08 DZ23C5V6-G3-08 DZ23C9V1-G3-08
DZ23B5V6-G3-08 DZ23C5V1-G3-18 DZ23C20-G3-08 DZ23C15-G3-18 DZ23C39-G3-08 DZ23C36-G3-18
DZ23C4V7-G3-18 DZ23C47-G3-08 DZ23C33-G3-18 DZ23C6V8-G3-08 DZ23C3V6-G3-08 DZ23C12-G3-18
DZ23C3V0-G3-18 DZ23C9V1-G3-18 DZ23C33-G3-08 DZ23C2V7-G3-18 DZ23C43-G3-18 DZ23C7V5-G3-08
DZ23C15-G3-08 DZ23C6V2-G3-18 DZ23C5V6-G3-18 DZ23C47-G3-18 DZ23C4V3-G3-08 DZ23C18-G3-18
DZ23C3V3-G3-08 DZ23C10-G3-08 DZ23C22-G3-18 DZ23C16-G3-08 DZ23C13-G3-18 DZ23C3V9-G3-08
DZ23C24-G3-08 DZ23B24-G3-08 DZ23C8V2-G3-18 DZ23C30-G3-08 DZ23C12-G3-08 DZ23C27-G3-18 DZ23C39-
G3-18