MITSUBISHI Nch POWER MOSFET
FK16UM-6
HIGH-SPEED SWITCHING USE
FK16UM-6
OUTLINE DRAWING
10.5MAX. r
3.2 7.0
Dimensions in mm
4.5 1.3
16
φ 3.6
3.8MAX.
1.0
12.5MIN.
0.8
2.54
2.54
4.5MAX.
0.5
2.6
qwe
wr q GATE w DRAIN e SOURCE r DRAIN e
¡VDSS ................................................................................ 300V ¡rDS (ON) (MAX) .............................................................. 0.41Ω ¡ID ......................................................................................... 16A ¡Integrated Fast Recovery Diode (MAX.) ........150ns
q
TO-220
APPLICATION Servo motor drive, Robot, UPS, Inverter Fluorecent lamp, etc.
MAXIMUM RATINGS
Symbol VDSS VGSS ID IDM IS ISM PD Tch Tstg —
(Tc = 25°C)
Parameter Drain-source voltage Gate-source voltage Drain current Drain current (Pulsed) Source current Source current (Pulsed) Maximum power dissipation Channel temperature Storage temperature Weight Typical value VGS = 0V VDS = 0V
Conditions
Ratings 300 ±30 16 48 16 48 125 –55 ~ +150 –55 ~ +150 2.0
Unit V V A A A A W °C °C g
Feb.1999
MITSUBISHI Nch POWER MOSFET
FK16UM-6
HIGH-SPEED SWITCHING USE
ELECTRICAL CHARACTERISTICS
Symbol V (BR) DSS V (BR) GSS IGSS IDSS VGS (th) rDS (ON) VDS (ON) yfs Ciss Coss Crss td (on) tr td (off) tf VSD Rth (ch-c) trr Parameter
(Tch = 25°C)
Test conditions ID = 1mA, VGS = 0V IG = ±100µA, VDS = 0V VGS = ±25V, VDS = 0V VDS = 300V, VGS = 0V ID = 1mA, VDS = 10V ID = 8A, VGS = 10V ID = 8A, VGS = 10V ID = 8A, VDS = 10V VDS = 25V, VGS = 0V, f = 1MHz
Limits Min. 300 ±30 — — 2 — — 6.5 — — — — — — — — — — Typ. — — — — 3 0.31 2.48 10.0 1050 220 45 20 40 110 50 1.5 — — Max. — — ±10 1 4 0.41 3.28 — — — — — — — — 2.0 1.00 150
Unit V V µA mA V Ω V S pF pF pF ns ns ns ns V °C/W ns
Drain-source breakdown voltage Gate-source breakdown voltage Gate-source leakage current Drain-source leakage current Gate-source threshold voltage Drain-source on-state resistance Drain-source on-state voltage Forward transfer admittance Input capacitance Output capacitance Reverse transfer capacitance Turn-on delay time Rise time Turn-off delay time Fall time Source-drain voltage Thermal resistance Reverse recovery time
VDD = 150V, ID = 8A, VGS = 10V, RGEN = RGS = 50Ω
IS = 8A, VGS = 0V Channel to case IS = 16A, dis/dt = –100A/µs
PERFORMANCE CURVES
POWER DISSIPATION DERATING CURVE 200
POWER DISSIPATION PD (W) DRAIN CURRENT ID (A)
MAXIMUM SAFE OPERATING AREA 102 7 5 3 2 101 7 5 3 2 100 7 5 3 2
tw=10µs 100µs 1ms 10ms TC = 25°C Single Pulse DC
160
120
80
40
0
0
50
100
150
200
10–1 100 2 3 5 7 101 2 3 5 7 102 2 3 5 7 103 DRAIN-SOURCE VOLTAGE VDS (V)
Feb.1999
CASE TEMPERATURE TC (°C)
MITSUBISHI Nch POWER MOSFET
FK16UM-6
HIGH-SPEED SWITCHING USE
OUTPUT CHARACTERISTICS (TYPICAL) 50 PD = 125W VGS = 20V 10V 7V 20 TC = 25°C Pulse Test
DRAIN CURRENT ID (A)
OUTPUT CHARACTERISTICS (TYPICAL) VGS=20V 10V TC = 25°C Pulse Test 6V
DRAIN CURRENT ID (A)
40
16
30
12 PD = 125W 8 5V
20
6V
10
5V
4
0
0
10
20
30
40
50
0
0
4
8
12
16
20
DRAIN-SOURCE VOLTAGE VDS (V)
DRAIN-SOURCE VOLTAGE VDS (V)
ON-STATE VOLTAGE VS. GATE-SOURCE VOLTAGE (TYPICAL) 20
DRAIN-SOURCE ON-STATE VOLTAGE VDS (ON) (V) DRAIN-SOURCE ON-STATE RESISTANCE rDS (ON) (Ω)
ON-STATE RESISTANCE VS. DRAIN CURRENT (TYPICAL) 1.0 TC = 25°C Pulse Test 0.8 VGS = 10V 0.6 20V
TC = 25°C Pulse Test 16 ID = 30A
12
8 16A 4 8A
0.4
0.2 0 10–1 2 3 5 7 100 2 3 5 7 101 2 3 5 7 102 DRAIN CURRENT ID (A)
0
0
4
8
12
16
20
GATE-SOURCE VOLTAGE VGS (V)
TRANSFER CHARACTERISTICS (TYPICAL) 40 TC = 25°C VDS = 50V Pulse Test 101 7 5
FORWARD TRANSFER ADMITTANCE yfs (S)
FORWARD TRANSFER ADMITTANCE VS.DRAIN CURRENT (TYPICAL) TC = 25°C 75°C 125°C 3 2 100 7 5 3 2 10–1 100 23 5 7 101
DRAIN CURRENT ID (A)
32
24
16
8
0
VDS = 10V Pulse Test 23 5 7 102
0
4
8
12
16
20
GATE-SOURCE VOLTAGE VGS (V)
DRAIN CURRENT ID (A)
Feb.1999
MITSUBISHI Nch POWER MOSFET
FK16UM-6
HIGH-SPEED SWITCHING USE
CAPACITANCE VS. DRAIN-SOURCE VOLTAGE (TYPICAL) 5 3 2 103 7 5 Ciss
SWITCHING CHARACTERISTICS (TYPICAL) Tch = 25°C VDD = 150V VGS = 10V RGEN = RGS = 25Ω td(off) 102 7 5 3 2 101 100 23
103 7 5 3 2 102 7 5
SWITCHING TIME (ns)
CAPACITANCE Ciss, Coss, Crss (pF)
3 2
Coss
tf tr td(on) 5 7 101 23 5 7 102
Crss 3 Tch = 25°C 2 f = 1MHz VGS = 0V 101 2 3 5 7 100 2 3 5 7 101 2 3 5 7 102 2 3 DRAIN-SOURCE VOLTAGE VDS (V)
DRAIN CURRENT ID (A)
GATE-SOURCE VOLTAGE VS.GATE CHARGE (TYPICAL) 20 40
SOURCE-DRAIN DIODE FORWARD CHARACTERISTICS (TYPICAL) VGS = 0V Pulse Test TC = 125°C 25°C 24 75°C
GATE-SOURCE VOLTAGE VGS (V)
16
SOURCE CURRENT IS (A)
80 100
Tch = 25°C ID = 16A VDS = 50V 100V 200V 8
32
12
16
4
8
0
0
20
40
60
0
0
0.8
1.6
2.4
3.2
4.0
GATE CHARGE Qg (nC)
SOURCE-DRAIN VOLTAGE VSD (V)
DRAIN-SOURCE ON-STATE RESISTANCE rDS (ON) (25°C)
DRAIN-SOURCE ON-STATE RESISTANCE rDS (ON) (t°C)
ON-STATE RESISTANCE VS. CHANNEL TEMPERATURE (TYPICAL) 101 7 5 3 2 100 7 5 3 2 10–1 0 50 100 150 200 250 5.0 VGS = 10V ID = 1/2ID Pulse Test
THRESHOLD VOLTAGE VS. CHANNEL TEMPERATURE (TYPICAL) VDS = 10V ID = 1mA 4.0
GATE-SOURCE THRESHOLD VOLTAGE VGS (th) (V)
3.0
2.0
1.0
0
–50
0
50
100
150
CHANNEL TEMPERATURE Tch (°C)
CHANNEL TEMPERATURE Tch (°C)
Feb.1999
MITSUBISHI Nch POWER MOSFET
FK16UM-6
HIGH-SPEED SWITCHING USE
DRAIN-SOURCE BREAKDOWN VOLTAGE V (BR) DSS (25°C)
DRAIN-SOURCE BREAKDOWN VOLTAGE V (BR) DSS (t°C)
BREAKDOWN VOLTAGE VS. CHANNEL TEMPERATURE (TYPICAL) VGS = 0V ID = 1mA 1.2
REVERSE RECOVERY TIME trr (ns)
1.4
1.0
3 2 102 7 5 3 2 101 100
3 2 101 7 5 Irr Tch = 25°C Tch = 150°C 23 5 7 101 23 3 2
0.8
trr
0.6
0.4
–50
0
50
100
150
100 5 7 102
CHANNEL TEMPERATURE Tch (°C)
SOURCE CURRENT IS (A)
TRANSIENT THERMAL IMPEDANCE Zth (ch–c) (°C/W)
REVERSE RECOVERY CURRENT Irr (A)
REVERSE RECOVERY TIME trr (ns)
DIODE REVERSE VS. SOURCE CURRENT dis/dt CHARACTERISTIC (TYPICAL) 5 5 IS = 16A VGS = 0V 3 3 VDD = 150V 2 2 102 7 5 3 2 Irr 101 7 5 101 23 5 7 102 Tch = 25°C Tch = 150°C 7 5 23 5 7 103 100 trr 101 7 5 3 2
TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS 101 7 5 3 2 100 7 5 3 2 7 5 3 2 D=1 0.5 0.2 0.1 0.05 0.02 0.01 PDM
tw T D= tw T
10–1
Single Pulse 10–2 10–4 2 3 5710–3 2 3 5710–22 3 5710–12 3 57 100 2 3 57 101 2 3 57 102 PULSE WIDTH tw (s)
SOURCE CURRENT dis/dt (–A/µs)
REVERSE RECOVERY CURRENT Irr (A)
Feb.1999
DIODE REVERSE VS. SOURCE CURRENT CHARACTERISTIC (TYPICAL) 102 103 dis/dt = –100A /µs 7 7 VGS = 0V 5 5 VDD = 150V
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