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April 1st, 2010
Renesas Electronics Corporation
Issued by: Renesas Electronics Corporation (http://www.renesas.com)
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400 mW DHD ZENER DIODE
(DO-34)
DESCRIPTION
NEC Type RD2.0ES to RD39ES Series are planar type diodes into DO-34
Package (Body length 2.4 mm MAX.) with DHD (Double Heatsink Diode)
construction having allowable power dissipation of 400 mW.
FEATURES
DO-34 Glass sealed package
This diode can be inserted into a PC board with a shorter pitch (5 mm)
Planar process
DHD (Double Heatsink Diode) construction
•V
Z Applied E24 standard
ORDERING INFORMATION
RD2.0ES to RD39ES with suffix "AB1", "AB2", or "AB3" should be applied
for orders for suffix "AB".
APPLICATIONS
Circuits for Constant Voltage, Constant Current, Waveform clipper, Surge absorber, etc.
ABSOLUTE MAXIMUM RATINGS (TA = 25°C)
Forward Current IF150 mA
Power Dissipation P 400 mW to see Fig. 6
Surge Reverse Power PRSM 100 W (t = 10
µ
s) to see Fig. 10
Junction Temperature Tj175°C
Storage Temperature Tstg –65 to +175°C
ZENER DIODES
RD2.0ES to RD39ES
Document No. D13935EJ7V0DS00 (7th edition)
Date Published April 2003 N CP(K)
Printed in Japan
DATA SHEET
0.4
Cathode
indication
2.0 MAX.
25 MIN. 25 MIN.
2.4 MAX.
DO-34 (JEDEC)
Markin
g
color: Black
PACKAGE DIMENSIONS
(in millimeters)
φ
φ
5 mm
The information in this document is subject to change without notice. Before using this document, please
confirm that this is the latest version.
Not all products and/or types are available in every country. Please check with an NEC Electronics
sales representative for availability and additional information.
c
2
RD2.0ES to RD39ES
Data Sheet D13935EJ7V0DS
ELECTRICAL CHARACTERISTICS (TA = 25°C)
MIN. MAX. IZ(mA) MAX. IZ(mA) MAX. IZ(mA) MAX. VR(V)
AB 1.88 2.20
RD2.0ES AB1 1.88 2.10 5 100 5 1000 0.5 120 0.5
AB2 2.02 2.20
AB 2.12 2.41
RD2.2ES AB1 2.12 2.30 5 100 5 1000 0.5 120 0.7
AB2 2.22 2.41
AB 2.33 2.63
RD2.4ES AB1 2.33 2.52 5 100 5 1000 0.5 120 1.0
AB2 2.43 2.63
AB 2.54 2.91
RD2.7ES AB1 2.54 2.75 5 110 5 1000 0.5 100 1.0
AB2 2.69 2.91
AB 2.85 3.22
RD3.0ES AB1 2.85 3.07 5 120 5 1000 0.5 50 1.0
AB2 3.01 3.22
AB 3.16 3.53
RD3.3ES AB1 3.16 3.38 5 120 5 1000 0.5 20 1.0
AB2 3.32 3.53
AB 3.47 3.83
RD3.6ES AB1 3.47 3.68 5 120 5 1100 0.5 10 1.0
AB2 3.62 3.83
AB 3.77 4.14
RD3.9ES AB1 3.77 3.98 5 120 5 1200 0.5 5 1.0
AB2 3.92 4.14
AB 4.05 4.53
RD4.3ES AB1 4.05 4.26 5 120 5 1200 0.5 5 1.0
AB2 4.20 4.40
AB3 4.34 4.53
AB 4.47 4.91
RD4.7ES AB1 4.47 4.65 5 100 5 1200 0.5 5 1.0
AB2 4.59 4.77
AB3 4.71 4.91
AB 4.85 5.35
RD5.1ES AB1 4.85 5.03 5 70 5 1200 0.5 5 1.5
AB2 4.97 5.18
AB3 5.12 5.35
AB 5.29 5.88
RD5.6ES AB1 5.29 5.52 5 40 5 900 0.5 5 2.5
AB2 5.46 5.70
AB3 5.64 5.88
AB 5.81 6.40
RD6.2ES AB1 5.81 6.06 5 30 5 500 0.5 5 3.0
AB2 5.99 6.24
AB3 6.16 6.40
AB 6.32 6.97
RD6.8ES AB1 6.32 6.59 5 25 5 150 0.5 2 3.5
AB2 6.52 6.79
AB3 6.70 6.97
AB 6.88 7.64
RD7.5ES AB1 6.88 7.19 5 25 5 120 0.5 0.5 4.0
AB2 7.11 7.41
AB3 7.33 7.64
AB 7.56 8.41
RD8.2ES AB1 7.56 7.90 5 20 5 120 0.5 0.5 5.0
AB2 7.82 8.15
AB3 8.07 8.41
AB 8.33 9.29
RD9.1ES AB1 8.33 8.70 5 20 5 120 0.5 0.5 6.0
AB2 8.61 8.99
AB3 8.89 9.29
AB 9.19 10.30
RD10ES AB1 9.19 9.59 5 20 5 120 0.5 0.2 7.0
AB2 9.48 9.90
AB3 9.82 10.30
Type
Number Suffix
Zener Voltage
VZ (V)Note 1
Dynamic Impedance
Z
Z
()
Note 2
Knee Dynamic
Impedance
ZZK ()Note 2
Reverse Current
IR (
µ
A)
3
RD2.0ES to RD39ES
Data Sheet D13935EJ7V0DS
Type
Number Suffix
Zener Voltage
VZ (V)Note 1
Dynamic Impedance
Z
Z
()
Note 2
Knee Dynamic
Impedance
ZZK ()Note 2
Reverse Current
IR (
µ
A)
MIN. MAX. IZ(mA) MAX. IZ(mA) MAX. IZ(mA) MAX. VR(V)
AB 10.18 11.26
RD11ES AB1 10.18 10.63 5 20 5 120 0.5 0.2 8.0
AB2 10.50 10.95
AB3 10.82 11.26
AB 11.13 12.30
RD12ES AB1 11.13 11.63 5 25 5 110 0.5 0.2 9.0
AB2 11.50 11.92
AB3 11.80 12.30
AB 12.18 13.62
RD13ES AB1 12.18 12.71 5 25 5 110 0.5 0.2 10
AB2 12.59 13.16
AB3 13.03 13.62
AB 13.48 15.02
RD15ES AB1 13.48 14.09 5 25 5 110 0.5 0.2 11
AB2 13.95 14.56
AB3 14.42 15.02
AB 14.87 16.50
RD16ES AB1 14.87 15.50 5 25 5 150 0.5 0.2 12
AB2 15.33 15.96
AB3 15.79 16.50
AB 16.34 18.30
RD18ES AB1 16.34 17.06 5 30 5 150 0.5 0.2 13
AB2 16.90 17.67
AB3 17.51 18.30
AB 18.14 20.45
RD20ES AB1 18.14 18.96 5 30 5 200 0.5 0.2 15
AB2 18.80 19.68
AB3 19.52 20.45
AB 20.23 22.61
AB1 20.23 21.08
RD22ES AB2 20.76 21.65 5 30 5 200 0.5 0.2 17
AB3 21.22 22.09
AB4 21.68 22.61
AB 22.26 24.81
AB1 22.26 23.12
RD24ES AB2 22.75 23.73 5 35 5 200 0.5 0.2 19
AB3 23.29 24.27
AB4 23.81 24.81
AB 24.26 27.64
AB1 24.26 25.52
RD27ES AB2 24.97 26.26 5 45 5 250 0.5 0.2 21
AB3 25.63 26.95
AB4 26.29 27.64
AB 26.99 30.51
AB1 26.99 28.39
RD30ES AB2 27.70 29.13 5 55 5 250 0.5 0.2 23
AB3 28.36 29.82
AB4 29.02 30.51
AB 29.68 33.11
AB1 29.68 31.22
RD33ES AB2 30.32 31.88 5 65 5 250 0.5 0.2 25
AB3 30.90 32.50
AB4 31.49 33.11
AB 32.14 35.77
AB1 32.14 33.79
RD36ES AB2 32.79 34.49 5 75 5 250 0.5 0.2 27
AB3 33.40 35.13
AB4 34.01 35.77
AB 34.68 38.52
AB1 34.68 36.47
RD39ES AB2 35.36 37.19 5 85 5 250 0.5 0.2 30
AB3 36.00 37.85
AB4 36.63 38.52
Notes 1. tested with pulse (40 ms)
2. ZZ and ZZK are measured at lz by given a very small A.C. current signal.
3. Suffix AB is Suffix AB1, AB2, AB3 or AB4.
4
RD2.0ES to RD39ES
Data Sheet D13935EJ7V0DS
TYPICAL CHARACTERISTICS (TA = 25°C)
Fig. 1 ZENER CURRENT vs.
ZENER VOLTAGE
Fig. 2 ZENER CURRENT vs.
ZENER VOLTAGE
Fig. 3 ZENER CURRENT vs.
ZENER VOLTAGE
Fig. 4 ZENER CURRENT vs.
ZENER VOLTAGE
Fig. 5 ZENER CURRENT vs.
ZENER VOLTAGE
100 m
10 m
1 m
100
10
1
100 n
10 n
1 n 012345
V
Z
– Zener Volta
g
e – V
I
Z
– Zener Current – A
678910
RD2.2ES
RD2.0ES
RD2.4ES
RD2.7ES
RD3.0ES
RD3.3ES
RD3.6ES
RD3.9ES
RD8.2ES
RD7.5ES
RD5.6ES
RD5.1ES
RD4.7ES
RD4.3ES
RD6.2ES
RD6.8ES
µ
µ
µ
RD9.1ES
018202224262830
RD27ES
RD22ES RD24ES
RD30ES
100 m
10 m
1 m
100
10
1
100 n
10 n
1 n
VZ Zener Volta
g
e V
IZ Zener Current A
µ
µ
µ
025 30 35 40
RD33ES RD36ES
RD39ES
100 m
10 m
1 m
100
10
1
100 n
10 n
1 n
V
Z
Zener Volta
g
e V
I
Z
Zener Current A
µ
µ
µ
0 121314151617181920
RD15ES
RD16ES
RD18ES
RD20ES
100 m
10 m
1 m
100
10
1
100 n
10 n
1 n
V
Z
Zener Volta
g
e V
I
Z
Zener Current A
µ
µ
µ
0 7 8 9 10 11 12 13 14 15
RD12ES
RD11ES
RD10ES RD13ES
100 m
10 m
1 m
100
10
1
100 n
10 n
1 n
V
Z
Zener Voltage V
I
Z
Zener Current A
µ
µ
µ
5
RD2.0ES to RD39ES
Data Sheet D13935EJ7V0DS
Fig. 6 POWER DISSIPATION vs.
AMBIENT TEMPERATURE
Fig. 7 THERMAL RESISTANCE vs.
SIZE OF P.C BOARD
Fig. 8 DYNAMIC IMPEDANCE vs.
ZENER CURRENT
Fig. 9 ZENER VOLTAGE TEMPERATURE
COEFFICIENT vs. ZENER VOLTAGE
Fig. 10 SURGE REVERSE POWER RATINGS
0.08
0.06
0.04
0.02
0
0.02
0.04
0.06
32
0.1
TYP.
40
24
16
8
0
8
16
24
0.08 32
0.1 40
84121620
γ
Z
V
Z
Temperature Coefficience %/°C
γ
Z
V
Z
Temperature Coefficience mV/°C
24 28 32 36 40
mV/°C
RD2.0ES to RD39ES
%/°C
V
Z
Zener Voltage V
440
500
400
300
200
100
0 20406080100
TA Ambient Temperature °C
P Power Dissipation mW
120 140 160 180 200
= 5 mm
= 10 mm
7 mm P.C. Board
t = 0.035 mm
= 5 mm
= 10 mm
= 3 mm
φ
= 3 mm
3 mm P.C. Board
t = 0.035 mm
φ
500
400
300
200
100
02040
S Size of P.C. Board mm2
Rth Thermal Resistance °C/W
60 80 100
= 10 mm
= 5mm
= 3mm
S
Junction to ambient
1000
100
10
TYP.
1
0.01 0.1
IZ Zener Current mA
ZZ Dynamic Impedance
101 100
RD3.3ES
RD15ES
RD39ES
RD20ES
RD5.6ES
RD10ES
RD7.5ES
RD5.1ES
RD2.0ES
RD3.9ES
RD4.7ES
1000 TA=25°C
Non-Repetitive
tT
PRSM
100
10
11 10 100 m
µµ
100 1 m 10 m
µ
tT Pulse Width s
PRSM Surge Reverse Power W
6
RD2.0ES to RD39ES
Data Sheet D13935EJ7V0DS
Fig. 11 TRANSIENT THERMAL IMPEDANCE CHARACTERISTIC
1000
100
10
11 m 10 m 100 m 100110
t Time s
Z
th
Transient Thermal Impedance °C/W
375°C/W
RD2.0ES to RD39ES
The information in this document is current as of April, 2003. The information is subject to change
without notice. For actual design-in, refer to the latest publications of NEC Electronics data sheets or
data books, etc., for the most up-to-date specifications of NEC Electronics products. Not all
products and/or types are available in every country. Please check with an NEC Electronics sales
representative for availability and additional information.
No part of this document may be copied or reproduced in any form or by any means without the prior
written consent of NEC Electronics. NEC Electronics assumes no responsibility for any errors that may
appear in this document.
NEC Electronics does not assume any liability for infringement of patents, copyrights or other intellectual
property rights of third parties by or arising from the use of NEC Electronics products listed in this document
or any other liability arising from the use of such products. No license, express, implied or otherwise, is
granted under any patents, copyrights or other intellectual property rights of NEC Electronics or others.
Descriptions of circuits, software and other related information in this document are provided for illustrative
purposes in semiconductor product operation and application examples. The incorporation of these
circuits, software and information in the design of a customer's equipment shall be done under the full
responsibility of the customer. NEC Electronics assumes no responsibility for any losses incurred by
customers or third parties arising from the use of these circuits, software and information.
While NEC Electronics endeavors to enhance the quality, reliability and safety of NEC Electronics products,
customers agree and acknowledge that the possibility of defects thereof cannot be eliminated entirely. To
minimize risks of damage to property or injury (including death) to persons arising from defects in NEC
Electronics products, customers must incorporate sufficient safety measures in their design, such as
redundancy, fire-containment and anti-failure features.
NEC Electronics products are classified into the following three quality grades: "Standard", "Special" and
"Specific".
The "Specific" quality grade applies only to NEC Electronics products developed based on a customer-
designated "quality assurance program" for a specific application. The recommended applications of an NEC
Electronics product depend on its quality grade, as indicated below. Customers must check the quality grade of
each NEC Electronics product before using it in a particular application.
"Standard": Computers, office equipment, communications equipment, test and measurement equipment, audio
and visual equipment, home electronic appliances, machine tools, personal electronic equipment
and industrial robots.
"Special": Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster
systems, anti-crime systems, safety equipment and medical equipment (not specifically designed
for life support).
"Specific": Aircraft, aerospace equipment, submersible repeaters, nuclear reactor control systems, life
support systems and medical equipment for life support, etc.
The quality grade of NEC Electronics products is "Standard" unless otherwise expressly specified in NEC
Electronics data sheets or data books, etc. If customers wish to use NEC Electronics products in applications
not intended by NEC Electronics, they must contact an NEC Electronics sales representative in advance to
determine NEC Electronics' willingness to support a given application.
(Note)
(1) "NEC Electronics" as used in this statement means NEC Electronics Corporation and also includes its
majority-owned subsidiaries.
(2) "NEC Electronics products" means any product developed or manufactured by or for NEC Electronics (as
defined above).
M8E 02. 11-1