0 –10
–8
–6
0
VDS (V)
ID (A)
–2 –6–4 –8
–2
–4
–4.5V
–10V
–4.0V
–3.6V
–3.2V
VGS=–2.7V
N-channel + P-channel
ID (A)
VGS (V)
0 –10–4–2 –6 –8
–8
–6
0
–2
–4
Tc= –40°C
125°C
25°C
(VDS=–10V)
SLA5059
Absolute maximum ratings
Symbol Unit
N channel P channel
3-phase motor drive
Ratings
External dimensions
(Ta=25°C)
VDSS 60 –60 V
VGSS ±20 20 V
ID 4–4A
ID(pulse) 8 (PW≤1ms, Duty≤25%) –8 (PW≤1ms, Duty≤25%) A
PT
θ
j-a 25 (Junction-Air, Ta=25°C, with all circuits operating) °C/W
θ
j-c 4.17 (Junction-Case, Tc=25°C, with all circuits operating) °C/W
5 (Ta=25°C, with all circuits operating, without heatsink) W
30 (Tc=25°C, with all circuits operating, with infinite heatsink) W
Tch 150 °C
Tstg –40 to +150 °C
■Equivalent circuit diagram
1
2
Pch
Nch
8
4
6
9
3
7
10
11
B
• • •
SLA
Characteristic curves
8
6
4
(A)
D
I
2
0
0246810
0.6
0.5
0.4
(Ω)
0.3
DS (ON)
R
0.2
0.1
0
02 648
0.8
0.7
0.6
(Ω)
0.5
DS (ON)
R
0.4
0.3
0.2
–40
5
ID-VDS Characteristics (Typical) ID-VGS Characteristics (Typical)
N-ch P-ch N-ch
10V
VDS (V)
N-ch P-ch P-ch
VGS=4V
VGS=10V
I
D
(A)
N-ch P-ch
–25 50250 100 12575 150
Tc (°C)
4.5V
4.0V
3.5V
VGS=3.0V
DS(ON)-ID Characteristics (Typical)
R
(T
a
=25°C)
RDS(ON)-Ta Characteristics (Typical)
D
=2A
I
V
GS
=4V
12
VGS (V)
(VDS=10V)
8
0.6
0.5
0.4
(Ω)
0.3
DS (ON)
R
0.2
0.1
0.8
0.7
0.6
(Ω)
0.5
DS (ON)
R
0.4
0.3
0.2
–40
8
Ta=40°C
25°C
6
125°C
(A)
4
D
I
2
0
02 641
(Ta=25°C)
VGS= –4V
VGS= –10V
0
0
–2
–4 –6 –8
ID (A)
ID= –2A
V
GS
=–10V
0
50 100 150–25 25 75 125
Tc (°C)
SLA5059
1 10 100
1
0.1
10
I
D
(A)
VDS (V)
R
DS (on)
LIMITED
10ms
(Tc=25°C)
1ms
100µs
0.0 –1.0 –2.0–1.5
–2
0
–8
I
DR
(A)
VSD (V)
–0.5
–4
–6
VGS=–10V
–
4V
0V
Electrical characteristics
N channel P channel
Symbol Specification
min typ max min typ max
Unit Conditions
V(BR)DSS 60 V ID=100µA, VGS=0V –60 V ID=–100µA, VGS=0V
IGSS ±10
IDSS 100
µ
AVGS=±20V 10
µ
AVDS=60V, VGS=0V –100
VTH 1.0 2.0 V VDS=10V, ID=250µA –1.0 –2.0 V VDS=–10V, ID=–250µA
Re(yfs) 2.5 S VDS=10V, ID=2A 3 S VDS=–10V, ID=–2A
RDS(ON) 0.55 Ω VGS=4V, ID=2A 0.55 Ω VGS=–10V, ID=–2A
Ciss 150 pF
Coss 70 pF
Crss 15 pF 40 pF
td(on) 12 ns
tr 40 ns
td(off) 40 ns
tf 25 ns 60 ns
VDS=10V, f=1.0MHz,
VGS=0V
ID=2A, VDD 20V,
RL=10Ω, VGS=5V
see Fig. 3 on page 16.
VSD 1.2 V ISD=5A, VGS=0V 1.1 V ISD=–4A, VGS=0V
trr 75 ns
ISD=2A, VGS=0V ISD=–2A, VGS=0V
di/dt=100A/µs
Specification
320 pF
130 pF
20 ns
95 ns
70 ns
75 ns
Unit Conditions
µ
AVGS= 20V
µ
AVDS=–60V, VGS=0V
VDS=–10V, f=1.0MHz,
VGS=0V
ID=–2A, VDD–20V,
RL=10Ω, VGS=–5V
see Fig. 4 on page 16.
di/dt=100A/µs
(Ta=25°C)
Characteristic curves
Re (yfs) (S)
0.1
1000
100
Capacitance (pF)
(A)
DR
I
10
1
0.005 0.1 1
N-ch P-ch N-ch
N-ch P-ch P-ch
10
1
01020304050
(VDS=10V)
Tc= –40°C
25°C
125°C
VGS=0V
f=1MHz
Ciss
Coss
Crss
8
ID (A)
Capacitance-VDS Characteristics (Typical)
VDS (V)
IDR-VSD Characteristics (Typical) PT-Ta Characteristics
Re(yfs)-ID Characteristics (Typical) Safe Operating Area (SOA)
8
6
4
2
0
0.0 1.0 2.01.5
N-ch P-ch
VGS=10V
4V
0V
0.5
VSD (V)
10
1
Re (yfs) (S)
0.1
–0.1
1000
100
10
Capacitance (pF)
1
0 –10 –20 –30
ID (A)
VDS (V)
–1 –8–0.005
(VDS=–10V)
Tc=–40°C
25°C
125°C
VGS=0V
f=1MHz
–40
Ciss
Coss
Crss
–10
R
DS (ON)
LIMITED
–1
(A)
D
I
–50
–0.1
–1
40
35
30
25
20
(W)
T
P
15
10
Without Heatsink
5
0
0 50 100 150
VDS (V)
With Infinite Heatsink
Ta (°C)
(Tc=25°C)
100µs
1ms
10ms
–10 –100
With Silicone Grease
Natural Cooling
All Circuits Operating