100 V, 19 A, 34.4 mΩ Low RDS(ON)
N ch Trench Power MOSFET
DKI10526
Package
Features
TO-252
V(BR)DSS -------------------------------- 100 V (ID = 100 µA)
ID ---------------------------------------------------------- 19 A
RDS(ON) ---------- 54.2 mΩ max. (VGS = 10 V, ID = 9.3 A)
Qg ------- 9.0 nC (VGS = 4.5 V, VDS = 50 V, ID = 11.9 A)
(4)
D
Low Total Gate Charge
High Speed Switching
Low On-Resistance
Capable of 4.5 V Gate Drive
100 % UIL Tested
RoHS Compliant
D
Equivalent circuit
Unless otherwise specified, TA = 25 °C
Test conditions
VDS
100
V
VGS
± 20
V
TC = 25 °C
19
A
PW ≤ 100µs
Duty cycle ≤ 1 %
37
A
19
A
37
A
47
mJ
13.3
A
37
W
ID
IDM
IS
ISM
PW ≤ 100µs
Duty cycle ≤ 1 %
VDD = 50 V, L = 1 mH,
IAS = 6.8 A, unclamped,
RG = 4.7 Ω
Refer to Figure 1
N
ot
R
Continuous Source Current
(Body Diode)
Pulsed Source Current
(Body Diode)
S(3)
Unit
m
m
Pulsed Drain Current
G(1)
Rating
en
Symbol
ec
o
Continuous Drain Current
de
Absolute Maximum Ratings
Parameter
D(2)(4)
d
fo
rN
ew
DC-DC converters
Synchronous Rectification
Power Supplies
Gate to Source Voltage
Not to scale
es
ig
Applications
Drain to Source Voltage
(3) (2) (1)
S D G
ns
(1) (2) (3)
G D S
Single Pulse Avalanche Energy
EAS
Avalanche Current
IAS
Power Dissipation
PD
Operating Junction Temperature
TJ
150
°C
TSTG
− 55 to 150
°C
Storage Temperature Range
DKI10526-DS Rev.1.5
Mar. 11, 2015
TC = 25 °C
SANKEN ELECTRIC CO.,LTD.
http://www.sanken-ele.co.jp
1
DKI10526
Thermal Characteristics
Unless otherwise specified, TA = 25 °C
Parameter
Thermal Resistance
Symbol
Test Conditions
RθJC
(Junction to Case)
Thermal Resistance
Mounted on PCB*
RθJA
(Junction to Ambient)
* 1 inch square 2 oz copper pad on 1.5 × 1.5 inch PCB.
Min.
Typ.
Max.
Unit
−
−
3.4
°C/W
−
−
35.7
°C/W
Min.
Typ.
Electrical Characteristics
Parameter
Drain to Source Breakdown
Voltage
Drain to Source Leakage Current
ns
Unless otherwise specified, TA = 25 °C
Unit
V(BR)DSS
ID = 100 μA, VGS = 0 V
100
−
−
V
IDSS
VDS = 100 V, VGS = 0 V
−
−
100
µA
Gate to Source Leakage Current
IGSS
VGS = ± 20 V
−
−
± 100
nA
VDS = VGS, ID = 350 µA
1.0
2.0
2.5
V
ID = 9.3 A, VGS = 10 V
−
34.4
54.2
mΩ
ID = 4.7 A, VGS = 4.5 V
−
36.3
56.2
mΩ
f = 1 MHz
−
2.3
−
Ω
−
1530
−
−
125
−
−
51
−
−
19.9
−
−
9.0
−
−
3.6
−
−
2.6
−
−
3.0
−
−
2.8
−
−
13.7
−
−
6.0
−
IS = 9.3 A, VGS = 0 V
−
0.9
1.5
V
IF = 11.9 A
di/dt = 100 A/µs
Refer to Figure 3
−
40.7
−
ns
−
68.2
−
nC
RDS(ON)
RG
Input Capacitance
Ciss
Output Capacitance
Coss
Reverse Transfer Capacitance
Crss
Total Gate Charge (VGS = 10 V)
Qg1
m
Qgs
ec
o
Turn-On Delay Time
Qg2
m
Gate to Drain Charge
Rise Time
R
Turn-Off Delay Time
N
ot
Fall Time
Source to Drain Diode Forward
Voltage
Source to Drain Diode Reverse
Recovery Time
Source to Drain Diode Reverse
Recovery Charge
DKI10526-DS Rev.1.5
Mar. 11, 2015
VDS = 50 V
ID = 11.9 A
Qgd
td(on)
tr
td(off)
VDD = 50 V
ID = 11.9 A
VGS = 10 V, RG = 4.7 Ω
Refer to Figure 2
tf
VSD
trr
Qrr
SANKEN ELECTRIC CO.,LTD.
Max.
es
ig
D
en
Total Gate Charge (VGS = 4.5 V)
Gate to Source Charge
VDS = 25 V
VGS = 0 V
f = 1 MHz
de
Gate Resistance
rN
Static Drain to Source
On-Resistance
fo
VGS(th)
d
Gate Threshold Voltage
Test Conditions
ew
Symbol
pF
nC
ns
2
DKI10526
Test Circuits and Waveforms
E AS
L
V(BR)DSS
1
2
L I AS
2
V(BR)DSS VDD
V(BR)DSS
ID
VDS
IAS
RG
VDD
VDS
0V
ID
VDD
ns
VGS
(b) Waveform
RL
RG
VDD
d
VGS
10%
de
m
90%
VDS
td(on) tr
en
P.W. = 10 μs
Duty cycle ≤ 1 %
td(off) tf
ton
toff
(a) Test Circuit
(b) Waveform
Figure 2 Switching Time
ec
o
m
10%
fo
VDS
0V
90%
rN
VGS
ew
D
Figure 1 Unclamped Inductive Switching
es
ig
(a) Test Circuit
ot
R
D.U.T.
IF
L
N
IF
VDD
RG
trr
0V
VGS
IRM × 90 %
di/dt
0V
IRM
(a) Test Circuit
(b) Waveform
Figure 3 Diode Reverse Recovery Time
DKI10526-DS Rev.1.5
Mar. 11, 2015
SANKEN ELECTRIC CO.,LTD.
3
DKI10526
RDS(ON)-ID characteristics (typical)
RDS(ON)-ID characteristics (typical)
VGS=10V
ID-VGS characteristics (typical)
VGS=4.5V
120
120
100
100
VDS=5V
40
35
60
75℃
40
25℃
80
Tc = 125℃
25
60
ID (A)
Tc = 125℃
RDS(ON) (mΩ )
RDS(ON) (mΩ )
30
80
75℃
25℃
40
20
Tc =125℃
15
75℃
10
20
20
0
0
25℃
5
15
20
25
30
35
40
0
5
10
15
ID (A)
20
25
30
35
0
1
2
Tc=25℃
0.6
40
40
35
35
30
25
20
3V
rN
10
0V
0.0
10
fo
5
5
IDR (A)
VGS=4.5V
15
ID=6.0A
ID=4.7A
0
15
0
0.5
VGS (V)
20
75℃
10
25℃
5
0
1
1.5
0
0.5
1
d
de
VGS - Qg characteristics (typical)
en
3
ec
o
m
VGS (V)
Vth (V)
10
1000
Coss
100
10
10
20
30
ot
0
5
1
Crss
ID=350uA
VGS=VDS
0
40
2
Tc=25℃
VDS=50V
ID=11.9A
0
0
50
5
10
15
25
20
50
Qg (nC)
N
VDS (V)
RDS(ON)-Tc characteristics (typical)
80
80
70
70
60
60
50
40
30
100
ID=9.3A
VGS=10V
10
125
50
40
30
120
115
110
ID=1mA
VGS=0V
105
ID=4.7A
VGS=4.5V
10
0
0
25
50
75
100
Tc (℃)
DKI10526-DS Rev.1.5
Mar. 11, 2015
125
150
150
BVDSS-Tc characteristics (typical)
20
20
125
130
BVDSS (V)
90
75
Tc (℃)
RDS(ON)-Tc characteristics (typical)
90
RDS(ON) (mΩ)
RDS(ON) (mΩ)
Vth-Tc characteristics (typical)
m
Ciss
R
Capacitance (pF)
Ta=25℃
VGS=0V
f =1MHz
1.5
VSD (V)
15
10000
VDS=0V
Tc =125℃
15
VSD (V)
Capacitance-VDS characteristics (typical)
6
25
ew
IDR (A)
VDS (V)
0.2
5
30
VGS=10V
0.4
ID=9.3A
4
IDR-VSD characteristics (typical)
IDR-VSD characteristics (typical)
Tc=25℃
3
VGS (V)
ID (A)
VDS-VGS characteristics (typical)
0
0
40
ns
10
es
ig
5
D
0
25
50
75
100
125
150
Tc (℃)
SANKEN ELECTRIC CO.,LTD.
100
25
50
75
100
125
150
Tc (℃)
4
DKI10526
PD-Ta Derating
SAFE OPERATING AREA
40
100
ID(pulse) MAX
PT=100μs
30
ID (A)
PD (W)
10
20
PT=1ms
1
10
0.1
0
50
100
0.1
150
1
10
VDS (V)
Ta (℃)
TRANSIENT THERMAL RESISTANCE - PULSE WIDTH
D
ew
1.E+00
rN
Rth j-c (℃/W)
1.E+01
100
es
ig
0
ns
1 shot
Tc=25℃
1.E-03
1.E-02
1.E-01
de
1.E-02
1.E-04
d
fo
1.E-01
1.E+00
Tc = 25℃
1shot
VDS < 10V
1.E+01
1.E+02
N
ot
R
ec
o
m
m
en
P.T. (sec)
DKI10526-DS Rev.1.5
Mar. 11, 2015
SANKEN ELECTRIC CO.,LTD.
5
DKI10526
Package Outline
TO252
Max.
2.39
0.13
0.89
0.86
1.14
5.46
0.61
0.56
0.89
6.22
-6.73
--
ns
Min.
2.18
-0.70
0.70
0.76
4.95
0.46
0.41
0.46
5.97
5.21
6.35
4.32
2.29
9.40
1.40
2.60
10.41
1.78
2.90
0.51
1.65
0.60
0.89
1°
1.95
0.90
1.27
5°
7° REF
1.20 REF
en
de
d
fo
rN
ew
D
es
ig
Symbol
A
A1
b
b1
b2
b3
c
c1
c2
D
D1
E
E1
e
H
L
L1
L2
L3
L4
L5
θ
θ1
φ
m
m
NOTES:
1) Dimension is in millimeters
2) Pb-free. Device composition compliant with the RoHS directive
R
ec
o
Marking Diagram
N
ot
SK
DKI×××××
YMDD
XXXB
Part Number
Lot Number
Y is the Last digit of the year (0 to 9)
M is the Month (1 to 9, O, N or D)
DD is the Date (two digit of 01 to 31)
XXX is the suffix No.
B expresses Pb free pins
DKI10526-DS Rev.1.5
Mar. 11, 2015
SANKEN ELECTRIC CO.,LTD.
6
DKI10526
OPERATING PRECAUTIONS
In the case that you use Sanken products or design your products by using Sanken products, the reliability largely
depends on the degree of derating to be made to the rated values. Derating may be interpreted as a case that an operation
range is set by derating the load from each rated value or surge voltage or noise is considered for derating in order to
assure or improve the reliability. In general, derating factors include electric stresses such as electric voltage, electric
current, electric power etc., environmental stresses such as ambient temperature, humidity etc. and thermal stress caused
due to self-heating of semiconductor products. For these stresses, instantaneous values, maximum values and minimum
values must be taken into consideration. In addition, it should be noted that since power devices or IC’s including power
devices have large self-heating value, the degree of derating of junction temperature affects the reliability significantly.
ns
Because reliability can be affected adversely by improper storage environments and handling methods, please
observe the following cautions.
D
es
ig
Cautions for Storage
Ensure that storage conditions comply with the standard temperature (5 to 35°C) and the standard relative humidity
(around 40 to 75%); avoid storage locations that experience extreme changes in temperature or humidity.
Avoid locations where dust or harmful gases are present and avoid direct sunlight.
Reinspect for rust on leads and solderability of the products that have been stored for a long time.
rN
ew
Cautions for Testing and Handling
When tests are carried out during inspection testing and other standard test periods, protect the products from power
surges from the testing device, shorts between the product pins, and wrong connections. Ensure all test parameters are
within the ratings specified by Sanken for the products.
ec
o
m
m
en
de
d
fo
Remarks About Using Thermal Silicone Grease
When thermal silicone grease is used, it shall be applied evenly and thinly. If more silicone grease than required is
applied, it may produce excess stress.
The thermal silicone grease that has been stored for a long period of time may cause cracks of the greases, and it
cause low radiation performance. In addition, the old grease may cause cracks in the resin mold when screwing the
products to a heatsink.
Fully consider preventing foreign materials from entering into the thermal silicone grease. When foreign material
is immixed, radiation performance may be degraded or an insulation failure may occur due to a damaged insulating
plate.
The thermal silicone greases that are recommended for the resin molded semiconductor should be used.
Our recommended thermal silicone grease is the following, and equivalent of these.
Type
Suppliers
G746
Shin-Etsu Chemical Co., Ltd.
YG6260 Momentive Performance Materials Japan LLC
SC102
Dow Corning Toray Co., Ltd.
N
ot
R
Soldering
When soldering the products, please be sure to minimize the working time, within the following limits:
・Reflow
Preheat ; 180 °C / 90 ± 30 s
Solder heating ; 250 °C / 10 ± 1s (260 °C peak, 2 times)
・Soldering iron ; 380 ± 10 °C / 3.5 ± 0.5s (1 time)
Electrostatic Discharge
When handling the products, the operator must be grounded. Grounded wrist straps worn should have at least 1MΩ
of resistance from the operator to ground to prevent shock hazard, and it should be placed near the operator.
Workbenches where the products are handled should be grounded and be provided with conductive table and floor
mats.
When using measuring equipment such as a curve tracer, the equipment should be grounded.
When soldering the products, the head of soldering irons or the solder bath must be grounded in order to prevent
leak voltages generated by them from being applied to the products.
The products should always be stored and transported in Sanken shipping containers or conductive containers, or
be wrapped in aluminum foil.
DKI10526-DS Rev.1.5
Mar. 11, 2015
SANKEN ELECTRIC CO.,LTD.
7
DKI10526
IMPORTANT NOTES
The contents in this document are subject to changes, for improvement and other purposes, without notice. Make
sure that this is the latest revision of the document before use.
Application examples, operation examples and recommended examples described in this document are quoted for
the sole purpose of reference for the use of the products herein and Sanken can assume no responsibility for any
infringement of industrial property rights, intellectual property rights, life, body, property or any other rights of
Sanken or any third party which may result from its use.
ns
Unless otherwise agreed in writing by Sanken, Sanken makes no warranties of any kind, whether express or
implied, as to the products, including product merchantability, and fitness for a particular purpose and special
environment, and the information, including its accuracy, usefulness, and reliability, included in this document.
es
ig
Although Sanken undertakes to enhance the quality and reliability of its products, the occurrence of failure and
defect of semiconductor products at a certain rate is inevitable. Users of Sanken products are requested to take, at
their own risk, preventative measures including safety design of the equipment or systems against any possible
injury, death, fires or damages to the society due to device failure or malfunction.
d
fo
rN
ew
D
Sanken products listed in this document are designed and intended for the use as components in general purpose
electronic equipment or apparatus (home appliances, office equipment, telecommunication equipment, measuring
equipment, etc.).
When considering the use of Sanken products in the applications where higher reliability is required (transportation
equipment and its control systems, traffic signal control systems or equipment, fire/crime alarm systems, various
safety devices, etc.), and whenever long life expectancy is required even in general purpose electronic equipment
or apparatus, please contact your nearest Sanken sales representative to discuss, prior to the use of the products
herein.
The use of Sanken products without the written consent of Sanken in the applications where extremely high
reliability is required (aerospace equipment, nuclear power control systems, life support systems, etc.) is strictly
prohibited.
en
de
When using the products specified herein by either (i) combining other products or materials therewith or (ii)
physically, chemically or otherwise processing or treating the products, please duly consider all possible risks that
may result from all such uses in advance and proceed therewith at your own responsibility.
m
Anti radioactive ray design is not considered for the products listed herein.
m
Sanken assumes no responsibility for any troubles, such as dropping products caused during transportation out of
Sanken’s distribution network.
N
ot
R
ec
o
The contents in this document must not be transcribed or copied without Sanken’s written consent.
DKI10526-DS Rev.1.5
Mar. 11, 2015
SANKEN ELECTRIC CO.,LTD.
8