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Электронный компонент: DNB6428

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DNB64
FEATURES
s
Double Side Cooling
s
High Surge Capability
APPLICATIONS
s
Rectification
s
Freewheel Diode
s
DC Motor Control
s
Power Supplies
s
Welding
s
Battery Chargers
VOLTAGE RATINGS
ORDERING INFORMATION
When ordering, select the required part number shown in the
Voltage Ratings selection table, e.g.:
DNB64 34
Note: Please use the complete part number when ordering
and quote this number in any future correspondance relating
to your order.
DNB64
Rectifier Diode
Replaces January 2000 version, DS4180-5.0
DS4180-6.0 August 2001
3600
3400
3200
3000
2800
2600
DNB64 36
DNB64 34
DNB64 32
DNB64 30
DNB64 28
DNB64 26
Conditions
V
RSM
= V
RRM
+ 100V
Lower voltage grades available.
Type Number
Repetitive Peak
Reverse Voltage
V
RRM
V
KEY PARAMETERS
V
RRM
3600V
I
F(AV)
3019A
I
FSM
27000A
Outline type code: DO200AD
See Package Details for further information.
Fig. 1 Package outline
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DNB64
Symbol
Parameter
Conditions
Double Side Cooled
I
F(AV)
Mean forward current
I
F(RMS)
RMS value
I
F
Continuous (direct) forward current
Single Side Cooled (Anode side)
I
F(AV)
Mean forward current
I
F(RMS)
RMS value
I
F
Continuous (direct) forward current
Units
Max.
Half wave resistive load, T
case
= 100
o
C
2530
A
T
case
= 100
o
C
3980
A
T
case
= 100
o
C
3635
A
Half wave resistive load, T
case
= 100
o
C
1655
A
T
case
= 100
o
C
2600
A
T
case
= 100
o
C
2280
A
CURRENT RATINGS
T
case
= 75
o
C unless otherwise stated
Symbol
Parameter
Conditions
Double Side Cooled
I
F(AV)
Mean forward current
I
F(RMS)
RMS value
I
F
Continuous (direct) forward current
Single Side Cooled (Anode side)
I
F(AV)
Mean forward current
I
F(RMS)
RMS value
I
F
Continuous (direct) forward current
Units
Max.
Half wave resistive load
3019
A
-
4741
A
-
4414
A
Half wave resistive load
2280
A
-
3581
A
-
3182
A
T
case
= 100
o
C unless otherwise stated
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DNB64
SURGE RATINGS
Conditions
10ms half sine; T
case
= 175
o
C
V
R
= 50% V
RRM
- 1/4 sine
10ms half sine; T
case
= 175
o
C
V
R
= 0
Max.
Units
Symbol
Parameter
I
FSM
Surge (non-repetitive) forward current
I
2
t
I
2
t for fusing
I
FSM
Surge (non-repetitive) forward current
I
2
t
I
2
t for fusing
3.645 x 10
6
A
2
s
27.0
kA
2.33 x 10
6
A
2
s
21.5
kA
THERMAL AND MECHANICAL DATA
dc
Conditions
Min.
Max.
Units
o
C/W
-
0.025
Anode dc
Clamping force 45.0kN
with mounting compound
Thermal resistance - case to heatsink
R
th(c-h)
0.003
Double side
-
T
vj
Virtual junction temperature
T
stg
Storage temperature range
Single side
-
Thermal resistance - junction to case
R
th(j-c)
Single side cooled
Symbol
Parameter
-55
200
o
C
Forward (conducting)
-
o
C
-
0.006
o
C/W
o
C/W
Cathode dc
-
0.027
o
C/W
Double side cooled
-
0.013
o
C/W
Clamping force
40.0
48.0
kN
175
Reverse (blocking)
-
o
C
185
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DNB64
CHARACTERISTICS
Forward voltage
Peak reverse current
Parameter
C
-
Q
S
Total stored charge
Symbol
V
FM
I
RRM
I
RR
Peak recovery current
150
-
A
4000
At V
RRM
, T
case
= 175
o
C
-
100
mA
-
1.1
V
At 1500A peak, T
case
= 25
o
C
Conditions
Typ.
Max.
Units
At T
vj
= 175C
-
V
TO
Threshold voltage
r
T
Slope resistance
0.2
m
At T
vj
= 175C
-
0.86
V
t
rr
Reverse recovery time
30
-
s
I
F
= 1000A, dI
RR
/dt = 5A/
s
T
case
= 125C, V
R
= 100V
CURVES
Fig.2 Maximum (limit) forward characteristics
Fig.3 Dissipation curves
V
FM
Equation:-
V
FM
= A + Bln (I
F
) + C.I
F
+D.
I
F
Where
A = 0.506497
B = 0.070975
C = 0.000219
D = 0.00553
these values are valid for T
j
= 125C for I
F
500A to 10000A
0
1.0
2.0
3.0
Instantaneous forward voltage, V
F
- (V)
0
2000
4000
6000
8000
10000
Instantaneous forward current, I
F
- (A)
Measured under
pulse conditions
T
j
= 25C
T
j
= 175C
0
2000
4000
6000
Mean forward current, I
F(AV)
- (A)
0
2000
4000
6000
8000
10000
Mean power dissipation - (W)
dc
Half wave
3 phase
6 phase
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DNB64
Fig.5 Maximum (limit) transient thermal impedance -
junction to case
Fig.4 Surge (non-repetitive) forward current vs time
(at T
case
175C)
1
10
1
2
3
5
10
20
50
0
10
20
30
40
50
60
I
2
t value - (A
2
s x 10
6
)
ms
Cycles at 50Hz
Duration
Pea
k half sine forward current - (kA)
I
2
t =
2
x t
2
0
1
2
3
4
5
I
2
t
V
R
= 0
V
R
= 50% V
RRM
10
1
0.1
0.01
0.001
Time - (s)
0.1
0.01
0.001
0.0001
Thermal impedance - (

C/W)
Double side cooled
Anode side cooled
100
Conduction
d.c.
Halfwave
3 phase 120
6 phase 60
Effective thermal resistance
Junction to case C/W
Double side
0.0130
0.0141
0.0170
0.0200
Anode side
0.0250
0.0261
0.0290
0.0320
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DNB64
Cathode
Anode
32.9
34.1
63nom
92 max
Hole 3.6 x 2.0 deep
(One in each electrode)
102 max
63nom
Nominal weight: 1100g
Clamping force: 45kN 10%
Package outine type code: DO200AD
PACKAGE DETAILS
For further package information, please contact your nearest Customer Service Centre. All dimensions in mm, unless stated otherwise.
DO NOT SCALE.
Note:
1. Package maybe supplied with pins and/or tags.
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DNB64
POWER ASSEMBLY CAPABILITY
The Power Assembly group was set up to provide a support service for those customers requiring more than the basic semiconductor,
and has developed a flexible range of heatsink / clamping systems in line with advances in device types and the voltage and current
capability of our semiconductors.
We offer an extensive range of air and liquid cooled assemblies covering the full range of circuit designs in general use today. The
Assembly group continues to offer high quality engineering support dedicated to designing new units to satisfy the growing needs of our
customers.
Using the up to date CAD methods our team of design and applications engineers aim to provide the Power Assembly Complete solution
(PACs).
DEVICE CLAMPS
Disc devices require the correct clamping force to ensure their safe operation. The PACs range offers a varied selection of pre-loaded
clamps to suit all of our manufactured devices. This include cube clamps for single side cooling of `T' 22mm
Clamps are available for single or double side cooling, with high insulation versions for high voltage assemblies.
Please refer to our application note on device clamping, AN4839
HEATSINKS
Power Assembly has its own proprietary range of extruded aluminium heatsinks. They have been designed to optimise the performance
or our semiconductors. Data with respect to air natural, forced air and liquid cooling (with flow rates) is available on request.
For further information on device clamps, heatsinks and assemblies, please contact your nearest Sales Representative or Customer
Services.
CUSTOMER SERVICE CENTRES
Mainland Europe Tel: +33 (0)1 58 04 91 00. Fax: +33 (0)1 46 38 51 33
North America Tel: (613) 723-7035. Fax: (613) 723-1518.
UK, Scandinavia & Rest Of World Tel: +44 (0)1522 500500. Fax: +44 (0)1522 500020
SALES OFFICES
Mainland Europe Tel: +33 (0)1 58 04 91 00. Fax: +33 (0)1 46 38 51 33
North America Tel: (613) 723-7035. Fax: (613) 723-1518. Toll Free: 1.888.33.DYNEX (39639) /
Tel: (949) 733-3005. Fax: (949) 733-2986.
UK, Scandinavia & Rest Of World Tel: +44 (0)1522 500500. Fax: +44 (0)1522 500020
These offices are supported by Representatives and Distributors in many countries world-wide.
Dynex Semiconductor 2001 Publication No. DS4180-6 Issue No. 6.0August 2001
TECHNICAL DOCUMENTATION NOT FOR RESALE. PRINTED IN UNITED KINGDOM
HEADQUARTERS OPERATIONS
DYNEX SEMICONDUCTOR LTD
Doddington Road, Lincoln.
Lincolnshire. LN6 3LF. United Kingdom.
Tel: 00-44-(0)1522-500500
Fax: 00-44-(0)1522-500550
DYNEX POWER INC.
99 Bank Street, Suite 410,
Ottawa, Ontario, Canada, K1P 6B9
Tel: 613.723.7035
Fax: 613.723.1518
Toll Free: 1.888.33.DYNEX (39639)
This publication is issued to provide information only which (unless agreed by the Company in writing) may not be used, applied or reproduced for any purpose nor form part of any order or contract nor to be regarded as
a representation relating to the products or services concerned. No warranty or guarantee express or implied is made regarding the capability, performance or suitability of any product or service. The Company reserves
the right to alter without prior notice the specification, design or price of any product or service. Information concerning possible methods of use is provided as a guide only and does not constitute any guarantee that such
methods of use will be satisfactory in a specific piece of equipment. It is the user's responsibility to fully determine the performance and suitability of any equipment using such information and to ensure that any publication
or data used is up to date and has not been superseded. These products are not suitable for use in any medical products whose failure to perform may result in significant injury
or death to the user. All products and materials are sold and services provided subject to the Company's conditions of sale, which are available on request.
All brand names and product names used in this publication are trademarks, registered trademarks or trade names of their respective owners.
http://www.dynexsemi.com
e-mail: power_solutions@dynexsemi.com
Datasheet Annotations:
Dynex Semiconductor annotate datasheets in the top right hard corner of the front page, to indicate product status. The annotations are as follows:-
Target Information: This is the most tentative form of information and represents a very preliminary specification. No actual design work on the product has been started.
Preliminary Information: The product is in design and development. The datasheet represents the product as it is understood but details may change.
Advance Information: The product design is complete and final characterisation for volume production is well in hand.
No Annotation: The product parameters are fixed and the product is available to datasheet specification.