PD-94234A
HEXFET
®
POWER MOSFET
THRU-HOLE (TO-254AA)
Product Summary
Part Number
IRF5M3710
BVDSS
IRF5M3710
100V, N-CHANNEL
100V
R
DS(on)
0.03Ω
I
D
35A*
Fifth Generation HEXFET
®
power MOSFETs from
International Rectifier utilize advanced processing
techniques to achieve the lowest possible on-resistance
per silicon unit area. This benefit, combined with the
fast switching speed and ruggedized device design
that HEXFET power MOSFETs are well known for,
provides the designer with an extremely efficient device
for use in a wide variety of applications.
These devices are well-suited for applications such
as switching power supplies, motor controls, inverters,
choppers, audio amplifiers and high-energy pulse
circuits.
TO-254AA
Features:
n
n
n
n
n
n
n
Low R
DS(on)
Avalanche Energy Ratings
Dynamic dv/dt Rating
Simple Drive Requirements
Ease of Paralleling
Hermetically Sealed
Light Weight
Absolute Maximum Ratings
Parameter
ID @ VGS = 10V, TC = 25°C
ID @ VGS = 10V, TC = 100°C
IDM
PD @ TC = 25°C
VGS
EAS
IAR
EAR
dv/dt
TJ
T STG
Continuous Drain Current
Continuous Drain Current
Pulsed Drain Current
À
Max. Power Dissipation
Linear Derating Factor
Gate-to-Source Voltage
Single Pulse Avalanche Energy
Á
Avalanche Current
À
Repetitive Avalanche Energy
À
Peak Diode Recovery dv/dt
Â
Operating Junction
Storage Temperature Range
Lead Temperature
Weight
* Current is limited by package
For footnotes refer to the last page
35*
29
140
125
1.0
±20
350
28
12.5
4.0
-55 to 150
o
Units
A
W
W/°C
V
mJ
A
mJ
V/ns
C
300 (0.063in./1.6mm from case for 10s)
9.3 (Typical)
g
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1
05/15/15
IRF5M3710
Electrical Characteristics
@ Tj = 25°C (Unless Otherwise Specified)
Parameter
BVDSS
Drain-to-Source Breakdown Voltage
∆BV
DSS /∆T J Temperature Coefficient of Breakdown
Voltage
RDS(on)
Static Drain-to-Source On-State
Resistance
VGS(th)
Gate Threshold Voltage
g fs
Forward Transconductance
IDSS
Zero Gate Voltage Drain Current
Min
100
—
—
2.0
20
—
—
—
—
—
—
—
—
—
—
—
—
Typ Max Units
—
0.11
—
—
—
—
—
—
—
—
—
—
—
—
—
—
6.8
—
—
0.03
4.0
—
25
250
100
-100
200
28
94
22
105
75
60
—
V
V/°C
Ω
V
S
µA
Test Conditions
VGS = 0V, ID = 250µA
Reference to 25°C, ID = 1.0mA
VGS = 10V, ID = 28A
Ã
VDS = VGS, ID = 250µA
VDS =15V, IDS = 28A
Ã
VDS = 100V ,VGS = 0V
VDS = 80V,
VGS = 0V, TJ =125°C
VGS = 20V
VGS = -20V
VGS =10V, ID = 28A
VDS = 80V
VDD = 50V, ID = 28A,
VGS = 10V, RG = 2.5Ω
IGSS
IGSS
Qg
Q gs
Q gd
td
(on)
tr
td
(off)
tf
LS + LD
Gate-to-Source Leakage Forward
Gate-to-Source Leakage Reverse
Total Gate Charge
Gate-to-Source Charge
Gate-to-Drain (‘Miller’) Charge
Turn-On Delay Time
Rise Time
Turn-Off Delay Time
Fall Time
Total Inductance
nA
nC
ns
nH
Ciss
C oss
C rss
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
—
—
—
2920
670
340
—
—
—
pF
Measured from drain lead (6mm /
0.25in. from package ) to source
lead (6mm/0.25in. from pacakge
VGS = 0V, VDS = 25V
f = 1.0MHz
Source-Drain Diode Ratings and Characteristics
Parameter
IS
ISM
VSD
trr
QRR
ton
Continuous Source Current (Body Diode)
Pulse Source Current (Body Diode)
À
Diode Forward Voltage
Reverse Recovery Time
Reverse Recovery Charge
Forward Turn-On Time
Min Typ Max Units
—
—
—
—
—
—
—
—
—
—
35*
140
1.3
280
2.0
Test Conditions
A
V
ns
µC
T
j
= 25°C, IS = 28A, VGS = 0V
Ã
Tj = 25°C, IF = 28A, di/dt
≤
100A/µs
VDD
≤
50V
Ã
Intrinsic turn-on time is negligible. Turn-on speed is substantially controlled by LS + LD.
* Current is limited by package
Thermal Resistance
Parameter
RthJC
Junction-to-Case
Min Typ Max
—
—
1.0
Units
°C/W
Test Conditions
Note: Corresponding Spice and Saber models are available on Ineternational Rectifier website.
For footnotes refer to the last page
2
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IRF5M3710
1000
I
D
, Drain-to-Source Current (A)
100
I
D
, Drain-to-Source Current (A)
VGS
15V
10V
8.0V
7.0V
6.0V
5.5V
5.0V
BOTTOM 4.5V
TOP
1000
100
VGS
15V
10V
8.0V
7.0V
6.0V
5.5V
5.0V
BOTTOM 4.5V
TOP
10
10
4.5V
4.5V
20µs PULSE WIDTH
T
J
= 25
°
C
1
10
100
1
0.1
1
0.1
20µs PULSE WIDTH
T
J
= 150
°
C
1
10
100
V
DS
, Drain-to-Source Voltage (V)
V
DS
, Drain-to-Source Voltage (V)
Fig 1.
Typical Output Characteristics
Fig 2.
Typical Output Characteristics
1000
2.5
R
DS(on)
, Drain-to-Source On Resistance
(Normalized)
I
D
= 35A
I
D
, Drain-to-Source Current (A)
2.0
T
J
= 25
°
C
T
J
= 150
°
C
100
1.5
1.0
10
0.5
1
4.0
15
V DS = 50V
20µs PULSE WIDTH
5.0
6.0
7.0
8.0
9.0
10.0
0.0
-60 -40 -20
V
GS
= 10V
0
20
40
60
80 100 120 140 160
V
GS
, Gate-to-Source Voltage (V)
T
J
, Junction Temperature (
°
C)
Fig 3.
Typical Transfer Characteristics
Fig 4.
Normalized On-Resistance
Vs. Temperature
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IRF5M3710
5000
V
GS
, Gate-to-Source Voltage (V)
4000
V
GS
= 0V,
f = 1MHz
C
iss
= C
gs
+ C
gd ,
C
ds
SHORTED
C
rss
= C
gd
C
oss
= C
ds
+ C
gd
20
I
D
= 28A
16
V
DS
= 80V
V
DS
= 50V
V
DS
= 20V
C, Capacitance (pF)
Ciss
3000
12
2000
8
Coss
1000
Crss
4
0
1
10
100
0
FOR TEST CIRCUIT
SEE FIGURE 13
0
40
80
120
160
200
V
DS
, Drain-to-Source Voltage (V)
Q
G
, Total Gate Charge (nC)
Fig 5.
Typical Capacitance Vs.
Drain-to-Source Voltage
Fig 6.
Typical Gate Charge Vs.
Gate-to-Source Voltage
1000
1000
OPERATION IN THIS AREA
LIMITED BY R DS(on)
I
SD
, Reverse Drain Current (A)
100
T
J
= 150
°
C
ID, Drain-to-Source Current (A)
100
10
T
J
= 25
°
C
10
1ms
Tc = 25°C
Tj = 150°C
Single Pulse
1
10
10ms
100
1000
1
0.4
V
GS
= 0 V
0.8
1.2
1.6
2.0
2.4
1
V
SD
,Source-to-Drain Voltage (V)
VDS , Drain-toSource Voltage (V)
Fig 7.
Typical Source-Drain Diode
Forward Voltage
Fig 8.
Maximum Safe Operating Area
4
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IRF5M3710
50
V
DS
LIMITED BY PACKAGE
R
D
V
GS
R
G
40
D.U.T.
+
I
D
, Drain Current (A)
-
V
DD
30
V
GS
Pulse Width
≤ 1
µs
Duty Factor
≤ 0.1 %
20
Fig 10a.
Switching Time Test Circuit
10
V
DS
90%
0
25
50
T
C
, Case Temperature ( °C)
75
100
125
150
Fig 9.
Maximum Drain Current Vs.
Case Temperature
10%
V
GS
t
d(on)
t
r
t
d(off)
t
f
Fig 10b.
Switching Time Waveforms
10
Thermal Response (Z
thJC
)
1
D = 0.50
0.20
0.1
0.10
0.05
0.02
0.01
SINGLE PULSE
(THERMAL RESPONSE)
P
DM
t
1
t
2
Notes:
1. Duty factor D = t
1
/ t
2
2. Peak T
J
= P
DM
x Z
thJC
+ T
C
0.001
0.01
0.1
1
0.01
0.00001
0.0001
t
1
, Rectangular Pulse Duration (sec)
Fig 11.
Maximum Effective Transient Thermal Impedance, Junction-to-Case
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