Mitsubishi FS5KM-5 High-speed switching use Datasheet

MITSUBISHI Nch POWER MOSFET
FS5KM-5
HIGH-SPEED SWITCHING USE
FS5KM-5
OUTLINE DRAWING
Dimensions in mm
3 ± 0.3
6.5 ± 0.3
2.8 ± 0.2
φ 3.2 ± 0.2
3.6 ± 0.3
14 ± 0.5
15 ± 0.3
10 ± 0.3
1.1 ± 0.2
1.1 ± 0.2
0.75 ± 0.15
w
2.6 ± 0.2
1 2 3
¡VDSS .............................................................................. 250V
¡rDS (ON) (MAX) .............................................................. 1.3Ω
¡ID .......................................................................................... 5A
¡Viso .............................................................................. 2000V
0.75 ± 0.15
2.54 ± 0.25
4.5 ± 0.2
2.54 ± 0.25
q GATE
w DRAIN
e SOURCE
q
e
TO-220FN
APPLICATION
SMPS, DC-DC Converter, battery charger, power
supply of printer, copier, HDD, FDD, TV, VCR, personal computer etc.
MAXIMUM RATINGS
Symbol
(Tc = 25°C)
Parameter
VDSS
VGSS
ID
Drain-source voltage
Gate-source voltage
Drain current
IDM
PD
Tch
Drain current (Pulsed)
Maximum power dissipation
Channel temperature
Storage temperature
Isolation voltage
Weight
Tstg
Viso
—
Conditions
VGS = 0V
VDS = 0V
AC for 1minute, Terminal to case
Typical value
Ratings
Unit
250
±30
5
V
V
A
15
30
–55 ~ +150
–55 ~ +150
A
W
°C
°C
2000
2.0
Vrms
g
Feb.1999
MITSUBISHI Nch POWER MOSFET
FS5KM-5
HIGH-SPEED SWITCHING USE
ELECTRICAL CHARACTERISTICS
(Tch = 25°C)
Symbol
Parameter
V (BR) DSS
Drain-source breakdown voltage
Gate-source breakdown voltage
Gate-source leakage current
Drain-source leakage current
ID = 1mA, VGS = 0V
IG = ±100µA, VDS = 0V
VGS = ±25V, VDS = 0V
VDS = 250V, VGS = 0V
Gate-source threshold voltage
Drain-source on-state resistance
ID = 1mA, VDS = 10V
ID = 2A, VGS = 10V
ID = 2A, VGS = 10V
ID = 2A, VDS = 10V
IDSS
VGS (th)
rDS (ON)
VDS (ON)
yfs
Ciss
Drain-source on-state voltage
Forward transfer admittance
Input capacitance
Coss
Output capacitance
Reverse transfer capacitance
Turn-on delay time
Rise time
VDS = 25V, VGS = 0V, f = 1MHz
VDD = 150V, ID = 2A, VGS = 10V, RGEN = RGS = 50Ω
IS = 2A, VGS = 0V
Channel to case
Thermal resistance
POWER DISSIPATION DERATING CURVE
50
40
30
20
10
0
0
50
100
150
200
250
±30
—
—
—
—
—
—
±10
V
V
µA
—
2
—
—
—
3
1.0
2.0
1
4
1.3
2.6
mA
V
Ω
V
1.6
—
—
—
2.5
270
55
10
—
—
—
—
S
pF
pF
pF
—
—
—
—
11
13
32
22
—
—
—
—
ns
ns
ns
ns
—
1.5
2.0
V
—
—
4.17
°C/W
tw=10µs
100µs
1ms
100
7
5
3
2
10ms
TC = 25°C
Single Pulse
DC
2 3 5 7 101 2 3 5 7 102 2 3 5 7 103 2
DRAIN-SOURCE VOLTAGE VDS (V)
OUTPUT CHARACTERISTICS
(TYPICAL)
VGS=20V
5
10V
6V
7V
6
6V
4
5V
2
Max.
101
7
5
3
2
10–1
7
5
OUTPUT CHARACTERISTICS
(TYPICAL)
VGS = 20V
10V
PD=
TC = 25°C
30W
Pulse Test
8
Typ.
MAXIMUM SAFE OPERATING AREA
CASE TEMPERATURE TC (°C)
10
Unit
Min.
5
3
2
DRAIN CURRENT ID (A)
VSD
Rth (ch-c)
Turn-off delay time
Fall time
Source-drain voltage
POWER DISSIPATION PD (W)
td (off)
tf
DRAIN CURRENT ID (A)
Crss
td (on)
tr
DRAIN CURRENT ID (A)
V (BR) GSS
IGSS
Limits
Test conditions
TC = 25°C
Pulse Test
PD=
30W
4
3
5.5V
2
5V
1
4.5V
4V
0
0
10
20
30
40
50
DRAIN-SOURCE VOLTAGE VDS (V)
0
0
4
8
12
16
20
DRAIN-SOURCE VOLTAGE VDS (V)
Feb.1999
MITSUBISHI Nch POWER MOSFET
FS5KM-5
HIGH-SPEED SWITCHING USE
ON-STATE VOLTAGE VS.
GATE-SOURCE VOLTAGE
(TYPICAL)
ON-STATE RESISTANCE VS.
DRAIN CURRENT
(TYPICAL)
5
32
24
ID = 10A
16
8A
8
0
5A
0
4
8
12
3A
20
1
0
10–1 2 3 5 7 100 2 3 5 7 101 2 3 5 7 102
2
4
8
12
16
VDS = 10V
Pulse Test
TC = 25°C
3
2
100
7
5
75°C
125°C
3
2
10–1 –1
10
20
2 3
5 7 100
2 3
5 7 101
GATE-SOURCE VOLTAGE VGS (V)
DRAIN CURRENT ID (A)
CAPACITANCE VS.
DRAIN-SOURCE VOLTAGE
(TYPICAL)
SWITCHING CHARACTERISTICS
(TYPICAL)
103
7
5
3
2
Ciss
Coss
3
2
101
Crss
7
5 Tch = 25°C
f = 1MHz
3 VGS = 0V
2
2 3 5 7 100 2 3 5 7 101 2 3 5 7 102 2 3
DRAIN-SOURCE VOLTAGE VDS (V)
SWITCHING TIME (ns)
CAPACITANCE
Ciss, Coss, Crss (pF)
20V
101
7
5
4
102
7
5
VGS = 10V
2
FORWARD TRANSFER ADMITTANCE
VS.DRAIN CURRENT
(TYPICAL)
6
3
2
3
TRANSFER CHARACTERISTICS
(TYPICAL)
TC = 25°C
VDS = 50V
Pulse Test
0
4
DRAIN CURRENT ID (A)
8
0
TC = 25°C
Pulse Test
GATE-SOURCE VOLTAGE VGS (V)
10
DRAIN CURRENT ID (A)
16
DRAIN-SOURCE ON-STATE
RESISTANCE rDS (ON) (Ω)
TC = 25°C
Pulse Test
FORWARD TRANSFER
ADMITTANCE yfs (S)
DRAIN-SOURCE ON-STATE
VOLTAGE VDS (ON) (V)
40
Tch = 25°C
VDD = 150V
VGS = 10V
RGEN = RGS = 50Ω
102
7
5
td(off)
3
2
tf
td(on)
101
7
5
tr
3
2
100
10–1
2 3
5 7 100
2 3
5 7 101
DRAIN CURRENT ID (A)
Feb.1999
MITSUBISHI Nch POWER MOSFET
FS5KM-5
HIGH-SPEED SWITCHING USE
GATE-SOURCE VOLTAGE
VS.GATE CHARGE
(TYPICAL)
SOURCE-DRAIN DIODE
FORWARD CHARACTERISTICS
(TYPICAL)
VDS = 50V
100V
12
200V
8
4
101
7
5
0
4
8
12
16
25°C
8
75°C
4
0
0.8
1.6
2.4
3.2
4.0
SOURCE-DRAIN VOLTAGE VSD (V)
ON-STATE RESISTANCE VS.
CHANNEL TEMPERATURE
(TYPICAL)
THRESHOLD VOLTAGE VS.
CHANNEL TEMPERATURE
(TYPICAL)
5.0
VGS = 10V
ID = 1/2ID
Pulse Test
100
7
5
3
2
–50
0
50
100
BREAKDOWN VOLTAGE VS.
CHANNEL TEMPERATURE
(TYPICAL)
1.4
VGS = 0V
ID = 1mA
1.2
1.0
0.8
0.6
–50
0
50
100
150
CHANNEL TEMPERATURE Tch (°C)
VDS = 10V
ID = 1mA
4.0
3.0
2.0
1.0
0
150
CHANNEL TEMPERATURE Tch (°C)
0.4
TC = 125°C
12
GATE CHARGE Qg (nC)
3
2
10–1
VGS = 0V
Pulse Test
16
0
20
GATE-SOURCE THRESHOLD
VOLTAGE VGS (th) (V)
DRAIN-SOURCE ON-STATE RESISTANCE rDS (ON) (25°C)
DRAIN-SOURCE BREAKDOWN VOLTAGE V (BR) DSS (25°C)
DRAIN-SOURCE ON-STATE RESISTANCE rDS (ON) (t°C)
SOURCE CURRENT IS (A)
16
0
DRAIN-SOURCE BREAKDOWN VOLTAGE V (BR) DSS (t°C)
20
Tch = 25°C
ID = 5A
–50
0
50
100
150
CHANNEL TEMPERATURE Tch (°C)
TRANSIENT THERMAL IMPEDANCE Zth (ch – c) (°C/ W)
GATE-SOURCE VOLTAGE VGS (V)
20
TRANSIENT THERMAL IMPEDANCE
CHARACTERISTICS
101
7
5 D=1
3 0.5
2
0.2
100
7 0.1
5
3
2
10–1
7
5
3
2
0.05
0.02
0.01
Single Pulse
PDM
tw
T
D= tw
T
10–2
10–4 2 3 5710–3 2 3 5710–22 3 5710–12 3 57100 2 3 57101 2 3 57102
PULSE WIDTH tw (s)
Feb.1999
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