75 V, 85 A, 5.3 mΩ Low RDS(ON)
N ch Trench Power MOSFET
EKI07076
Data Sheet
Package
●
●
●
●
V(BR)DSS --------------------------------- 75 V (ID = 100 µA)
ID ---------------------------------------------------------- 85 A
RDS(ON) ---------- 6.9 mΩ max. (VGS = 10 V, ID = 44.0 A)
Qg ------42.9 nC (VGS = 4.5 V, VDS = 38 V, ID = 44.0 A)
● TO220-3L
●
●
●
●
●
●
Low Total Gate Charge
High Speed Switching
Low On-Resistance
Capable of 4.5 V Gate Drive
100 % UIL Tested
RoHS Compliant
(4)
ns
Features
es
ig
(1) (2) (3)
Applications
D(2)(4)
ew
D
● DC-DC converters
● Synchronous Rectification
● Power Supplies
Not to scale
Symbol
m
ec
o
Pulsed Drain Current
Rating
Unit
VDS
75
V
VGS
± 20
V
TC = 25 °C
85
A
PW ≤ 100µs
Duty cycle ≤ 1 %
170
A
85
A
170
A
170
mJ
30
A
135
W
m
Gate to Source Voltage
Continuous Drain Current
Test conditions
en
Parameter
de
Unless otherwise specified, TA = 25 °C
d
Absolute Maximum Ratings
Drain to Source Voltage
ot
R
Continuous Source Current
(Body Diode)
Pulsed Source Current
(Body Diode)
N
Single Pulse Avalanche Energy
S(3)
fo
rN
G(1)
ID
IDM
IS
ISM
EAS
PW ≤ 100µs
Duty cycle ≤ 1 %
VDD = 38 V, L = 1 mH,
IAS = 13 A, unclamped,
RG = 4.7 Ω
Refer to Figure 1
Avalanche Current
IAS
Power Dissipation
PD
Operating Junction Temperature
TJ
150
°C
TSTG
− 55 to 150
°C
Storage Temperature Range
TC = 25 °C
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
1
EKI07076
Thermal Characteristics
Unless otherwise specified, TA = 25 °C
Parameter
Thermal Resistance
(Junction to Case)
Thermal Resistance
(Junction to Ambient)
Symbol
Test Conditions
Min.
Typ.
Max.
Unit
RθJC
−
−
0.9
°C/W
RθJA
−
−
62.5
°C/W
Min.
Typ.
Electrical Characteristics
ns
Unless otherwise specified, TA = 25 °C
Unit
−
−
V
−
100
µA
−
−
± 100
nA
VDS = VGS, ID = 1.5 mA
1.0
2.0
2.5
V
ID = 44.0 A, VGS = 10 V
−
5.3
6.9
mΩ
ID = 22.0 A, VGS = 4.5 V
−
6.0
7.6
mΩ
f = 1 MHz
−
0.8
−
Ω
−
6340
−
−
575
−
−
365
−
−
91.6
−
−
42.9
−
−
16.5
−
−
12.4
−
−
10.7
−
−
10.1
−
−
49.1
−
−
21.0
−
IS = 44.0 A, VGS = 0 V
−
0.9
1.5
V
IF = 44.0 A
di/dt = 100 A/µs
Refer to Figure 3
−
48.4
−
ns
−
75.7
−
nC
ID = 100 μA, VGS = 0 V
75
IDSS
VDS = 75 V, VGS = 0 V
−
Gate to Source Leakage Current
IGSS
VGS = ± 20 V
RG
Input Capacitance
Ciss
Output Capacitance
Coss
Reverse Transfer Capacitance
Crss
Total Gate Charge (VGS = 10 V)
Qg1
en
Total Gate Charge (VGS = 4.5 V)
ec
o
Turn-On Delay Time
Qgs
m
Gate to Drain Charge
Qg2
m
Gate to Source 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
VDS = 25 V
VGS = 0 V
f = 1 MHz
de
Gate Resistance
rN
RDS(ON)
fo
Static Drain to Source
On-Resistance
d
VGS(th)
VDS = 38 V
ID = 44.0 A
Qgd
td(on)
tr
td(off)
VDD = 38 V
ID = 44.0 A
VGS = 10 V, RG = 4.7 Ω
Refer to Figure 2
tf
VSD
trr
Qrr
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
Max.
es
ig
V(BR)DSS
Gate Threshold Voltage
Test Conditions
ew
Symbol
D
Parameter
Drain to Source Breakdown
Voltage
Drain to Source Leakage Current
pF
nC
ns
2
EKI07076
Test Circuits and Performance Curves
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
Unclamped Inductive Switching
RL
RG
VDD
d
VGS
90%
VDS
de
10%
td(on) tr
m
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.
es
ig
(a) Test Circuit
R
D.U.T.
ot
IF
L
IF
N
VDD
RG
trr
0V
VGS
IRM × 90 %
di/dt
0V
IRM
(a) Test Circuit
Figure 3.
(b) Waveform
Diode Reverse Recovery Time
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
3
EKI07076
RDS(ON)-ID characteristics (typical)
RDS(ON)-ID characteristics (typical)
ID-VGS characteristics (typical)
VGS=4.5V
14
16
12
14
150
75℃
6
25℃
4
Tc = 125℃
10
120
75℃
8
25℃
6
Tc =125℃
60
75℃
4
30
2
0
0
30
60
90
120
150
180
0
0
30
60
90
ID (A)
120
150
180
VGS=10V
150
rN
60
fo
30
10
15
0
0.5
0
1
1.5
1
d
en
Vth (V)
10
ec
o
Crss
5
2
1
ID=1.5mA
VGS=VDS
R
Tc=25℃
VDS=38V
ID=44A
0
40
0
0
50
25
50
75
25
100
50
Qg (nC)
N
VDS (V)
RDS(ON)-Tc characteristics (typical)
12
10
10
8
8
75
100
125
150
Tc (℃)
RDS(ON)-Tc characteristics (typical)
12
1.5
3
m
Coss
ot
0.5
Vth-Tc characteristics (typical)
VGS (V)
1000
30
0
VSD (V)
m
Ciss
20
25℃
30
VGS - Qg characteristics (typical)
15
10000
10
75℃
60
de
Capacitance-VDS characteristics (typical)
0
Tc =125℃
VSD (V)
VGS (V)
10
90
0V
0
5
IDR (A)
ew
IDR (A)
90
0.0
VDS=0V
120
VGS=4.5V
3V
ID=22.0A
0.1
5
150
120
ID=44.0A
ID=38.5
4
180
0.4
0.2
3
D
180
0.3
2
IDR-VSD characteristics (typical)
Tc=25℃
0.5
Ta=25℃
VGS=0V
f =1MHz
1
VGS (V)
IDR-VSD characteristics (typical)
Tc=25℃
100
0
ID (A)
VDS-VGS characteristics (typical)
0
25℃
es
ig
0
VDS (V)
90
ns
8
ID (A)
Tc = 125℃
2
Capacitance (pF)
VDS=5V
180
12
10
RDS(ON) (mΩ )
RDS(ON) (mΩ )
VGS=10V
BVDSS-Tc characteristics (typical)
96
94
6
4
6
4
25
50
75
100
Tc (℃)
125
150
88
86
ID=1mA
VGS=0V
82
ID=22A
VGS=4.5V
80
0
0
90
84
2
ID=44A
VGS=10V
2
BVDSS (V)
RDS(ON) (mΩ)
RDS(ON) (mΩ)
92
25
50
75
100
125
150
Tc (℃)
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
78
25
50
75
100
125
150
Tc (℃)
4
EKI07076
PD-Ta Derating
SAFE OPERATING AREA
140
1000
ID(pulse) MAX
120
PT=100μs
100
100
ID (A)
60
40
10
PT=1ms
1
1 shot
Tc=25℃
20
0
50
100
0.1
150
1
10
100
VDS (V)
Ta (℃)
TRANSIENT THERMAL RESISTANCE - PULSE WIDTH
ew
D
1.E+01
1.E+00
rN
Rth j-c (℃/W)
ns
0.1
0
es
ig
PD (W)
80
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)
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
5
EKI07076
Physical Dimensions
en
de
d
fo
rN
ew
D
es
ig
ns
TO220-3L
NOTES:
Dimensions in millimeters
Maximum gate burr height is 0.3 mm.
Bare lead frame: Pb-free (RoHS compliant)
When soldering the products, it is required to minimize the working time, within the following limits:
Flow: 260 ± 5 °C / 10 ± 1 s, 2 times
Soldering Iron: 380 ± 10 °C / 3.5 ± 0.5 s, 1 time
Soldering should be at a distance of at least 1.5 mm from the body of the product.
- Recommended screw torque for TO220: 0.490 N∙m to 0.686 N∙m (5 kgf∙cm to 7 kgf∙cm)
R
ec
o
m
m
-
N
ot
Marking Diagram
YMW
BXX
EKI×××××
Lot Number:
Y is the last digit of the year of manufacture (0 to 9)
M is the month of the year (1 to 9, O, N, or D)
W is the week of the month (1 to 5)
B expresses Pb free pins
XX is the control number
Part Number
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
6
EKI07076
Important Notes
N
ot
R
ec
o
m
m
en
de
d
fo
rN
ew
D
es
ig
ns
● All data, illustrations, graphs, tables and any other information included in this document (the “Information”) as to Sanken’s
products listed herein (the “Sanken Products”) are current as of the date this document is issued. The Information is subject to any
change without notice due to improvement of the Sanken Products, etc. Please make sure to confirm with a Sanken sales
representative that the contents set forth in this document reflect the latest revisions before use.
● The Sanken Products are intended for use as components of general purpose electronic equipment or apparatus (such as home
appliances, office equipment, telecommunication equipment, measuring equipment, etc.). Prior to use of the Sanken Products,
please put your signature, or affix your name and seal, on the specification documents of the Sanken Products and return them to
Sanken. When considering use of the Sanken Products for any applications that require higher reliability (such as transportation
equipment and its control systems, traffic signal control systems or equipment, disaster/crime alarm systems, various safety
devices, etc.), you must contact a Sanken sales representative to discuss the suitability of such use and put your signature, or affix
your name and seal, on the specification documents of the Sanken Products and return them to Sanken, prior to the use of the
Sanken Products. The Sanken Products are not intended for use in any applications that require extremely high reliability such as:
aerospace equipment; nuclear power control systems; and medical equipment or systems, whose failure or malfunction may result
in death or serious injury to people, i.e., medical devices in Class III or a higher class as defined by relevant laws of Japan
(collectively, the “Specific Applications”). Sanken assumes no liability or responsibility whatsoever for any and all damages and
losses that may be suffered by you, users or any third party, resulting from the use of the Sanken Products in the Specific
Applications or in manner not in compliance with the instructions set forth herein.
● In the event of using the Sanken Products by either (i) combining other products or materials or both therewith or (ii) physically,
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such uses in advance and proceed therewith at your own responsibility.
● Although Sanken is making efforts to enhance the quality and reliability of its products, it is impossible to completely avoid the
occurrence of any failure or defect or both in semiconductor products at a certain rate. You must take, at your own responsibility,
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● The circuit constant, operation examples, circuit examples, pattern layout examples, design examples, recommended examples, all
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● Sanken assumes no responsibility whatsoever for any and all damages and losses that may be suffered by you, users or any third
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the falling thereof, out of Sanken’s distribution network.
● Although Sanken has prepared this document with its due care to pursue the accuracy thereof, Sanken does not warrant that it is
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relevant specification documents in relation to particular precautions when using the Sanken Products.
● All rights and title in and to any specific trademark or tradename belong to Sanken and such original right holder(s).
DSGN-CEZ-16003
EKI07076-DSE Rev.1.4
SANKEN ELCTRIC CO., LTD.
May 09, 2018
http://www.sanken-ele.co.jp/en
© SANKEN ELECTRIC CO., LTD. 2013
7