ZETEX ZXMHC6A07T8TA

ZXMHC6A07T8
COMPLEMENTARY 60V ENHANCEMENT MODE MOSFET H-BRIDGE
SUMMARY
N-Channel V(BR)DSS = 60V; RDS(ON) = 0.300 ; ID= 1.8A
P-Channel V(BR)DSS = -60V; RDS(ON) = 0.425 ; ID= -1.5A
DESCRIPTION
This new generation of trench MOSFETs from Zetex utilizes a unique
structure that combines the benefits of low on-resistance with fast switching
speed. This makes them ideal for high efficiency, low voltage, power
management applications.
FEATURES
SM8
• Low On - Resistance
S1
• Fast switching speed
• Low threshold
S4
G1
G4
• Low gate drive
• SM8 package
D1, D2
D3, D4
APPLICATIONS
• Motor drive
G3
G2
S2
S3
ORDERING INFORMATION
PINOUT DIAGRAM
DEVICE
REEL
SIZE
TAPE
WIDTH
QUANTITY
PER REEL
ZXMHC6A07T8TA
7’‘
12mm
1000 units
ZXMHC6A07T8TC
13’‘
12mm
4000 units
DEVICE MARKING
• ZXMH
C6A07
Top View
ISSUE 1 - JULY 2004
1
SEMICONDUCTORS
ZXMHC6A07T8
ABSOLUTE MAXIMUM RATINGS
PARAMETER
SYMBOL
N-Channel
P-Channel
UNIT
Drain-Source Voltage
V DSS
60
-60
V
Gate-Source Voltage
V GS
⫾20
⫾20
V
Continuous Drain Current@V GS =10V; T A =25⬚C (b)(d)
@V GS =10V; T A =70⬚C (b)(d)
@V GS =10V; T A =25⬚C (a)(d)
ID
1.8
1.4
1.6
-1.5
-1.2
-1.3
A
A
Pulsed Drain Current (c)
I DM
8.7
-7.5
A
Continuous Source Current (Body Diode)
(b)
IS
2.3
-2.1
A
Pulsed Source Current (Body Diode) (c)
I SM
8.7
-7.5
A
Power Dissipation at T A =25°C (a)(d)
Linear Derating Factor
PD
1.3
10.4
W
mW/°C
Power Dissipation at T A =25°C (b)(d)
Linear Derating Factor
PD
1.7
13.6
W
mW/°C
Operating and Storage Temperature Range
T j :T stg
-55 to +150
°C
VALUE
UNIT
THERMAL RESISTANCE
PARAMETER
SYMBOL
Junction to Ambient
(a)(d)
R θJA
96
°C/W
Junction to Ambient
(b)(d)
R θJA
73
°C/W
Notes
(a) For a device surface mounted on 50mm x 50mm FR4 PCB with high coverage of single sided 2oz copper, in still air conditions.
(b) For a device surface mounted on FR4 PCB measured 1.6mm at t ≤ 10sec.
(c) Repetitive rating - 50mm x 50mm x 1.6mm FR4 PCB, D = 0.2, pulse width 300␮S pulse width limited by maximum junction temperature. Refer
to Transient Thermal Impedance graph.
(d) For device with one active die.
ISSUE 1 - JULY 2004
SEMICONDUCTORS
2
ZXMHC6A07T8
TYPICAL CHARACTERISTICS
ISSUE 1 - JULY 2004
3
SEMICONDUCTORS
ZXMHC6A07T8
N-CHANNEL
ELECTRICAL CHARACTERISTICS (at Tamb = 25°C unless otherwise stated)
PARAMETER
SYMBOL
MIN.
Drain-Source Breakdown Voltage
V (BR)DSS
60
Zero Gate Voltage Drain Current
I DSS
Gate-Body Leakage
I GSS
TYP.
MAX.
UNIT
CONDITIONS
STATIC
Gate-Source Threshold Voltage
Static Drain-Source On-State Resistance
V GS(th)
(1)
Forward Transconductance (1)(3)
1
R DS(on)
V
I D =250µA, V GS =0V
1
µA
V DS =60V, V GS =0V
100
nA
V GS =±20V, V DS =0V
3.0
V
I =250µA, V DS = V GS
D
0.300
0.450
Ω
Ω
V GS =10V, I D =1.8A
V GS =4.5V, I D =1.3A
V DS =15V,I D =1.8A
g fs
2.3
S
Input Capacitance
C iss
166
pF
Output Capacitance
C oss
19.5
pF
Reverse Transfer Capacitance
C rss
8.7
pF
Turn-On Delay Time
t d(on)
1.8
ns
Rise Time
tr
1.4
ns
Turn-Off Delay Time
t d(off)
4.9
ns
Fall Time
tf
2.0
ns
Gate Charge
Qg
1.65
nC
Total Gate Charge
Qg
3.2
nC
Gate-Source Charge
Q gs
0.67
nC
Gate-Drain Charge
Q gd
0.82
nC
V SD
0.85
t rr
Q rr
DYNAMIC (3)
SWITCHING
V DS =40V, V GS =0V,
f=1MHz
(2) (3)
V DD =30V, I D =1.8A
R G ≅6.0Ω, V GS =10V
V DS =30V,V GS =5V,
I D =1.8A
V DS =30V,V GS =10V,
I D =1.8A
SOURCE-DRAIN DIODE
Diode Forward Voltage (1)
Reverse Recovery Time (3)
Reverse Recovery Charge
(3)
0.95
V
T J =25°C, I S =0.45A,
V GS =0V
20.5
ns
T J =25°C, I F =1.8A,
di/dt= 100A/µs
21.3
nC
NOTES
(1) Measured under pulsed conditions. Width ≤300µs. Duty cycle ≤ 2% .
(2) Switching characteristics are independent of operating junction temperature.
(3) For design aid only, not subject to production testing.
ISSUE 1 - JULY 2004
SEMICONDUCTORS
4
ZXMHC6A07T8
P-CHANNEL
ELECTRICAL CHARACTERISTICS (at Tamb = 25°C unless otherwise stated)
PARAMETER
SYMBOL
MIN.
Drain-Source Breakdown Voltage
V (BR)DSS
-60
Zero Gate Voltage Drain Current
I DSS
Gate-Body Leakage
I GSS
TYP.
MAX.
UNIT
CONDITIONS
STATIC
Gate-Source Threshold Voltage
Static Drain-Source On-State Resistance
V GS(th)
(1)
Forward Transconductance (1)(3)
V
I D =-250µA, V GS =0V
-1
␮A
V DS =-60V, V GS =0V
100
nA
V GS =±20V, V DS =0V
V
I =-250µA, V DS = V GS
D
Ω
Ω
V GS =-10V, I D =-0.9A
V GS =-4.5V, I D =-0.8A
V DS =-15V,I D =-0.9A
-1.0
R DS(on)
0.425
0.630
g fs
1.8
S
Input Capacitance
C iss
233
pF
Output Capacitance
C oss
17.4
pF
Reverse Transfer Capacitance
C rss
9.6
pF
Turn-On Delay Time
t d(on)
1.6
ns
Rise Time
tr
2.3
ns
Turn-Off Delay Time
t d(off)
13
ns
Fall Time
tf
5.8
ns
Gate Charge
Qg
2.4
nC
Total Gate Charge
Qg
5.1
nC
Gate-Source Charge
Q gs
0.7
nC
Gate-Drain Charge
Q gd
0.7
nC
V SD
-0.85
t rr
Q rr
DYNAMIC (3)
SWITCHING
V DS =-30 V, V GS =0V,
f=1MHz
(2) (3)
V DD =-30V, I D =-1A
R G ≅ 6.0 Ω, V GS =-10V
V DS =-30V,V GS =-5V,
I D =-0.9A
V DS =-30V,V GS =-10V,
I D =-0.9A
SOURCE-DRAIN DIODE
Diode Forward Voltage (1)
Reverse Recovery Time (3)
Reverse Recovery Charge
(3)
-0.95
V
T J =25°C, I S =-0.8A,
V GS =0V
22.6
ns
T J =25°C, I F =-0.9A,
di/dt= 100A/µs
23.2
nC
NOTES
(1) Measured under pulsed conditions. Width ≤300µs. Duty cycle ≤ 2% .
(2) Switching characteristics are independent of operating junction temperature.
(3) For design aid only, not subject to production testing.
ISSUE 1 - JULY 2004
5
SEMICONDUCTORS
ZXMHC6A07T8
N-CHANNEL TYPICAL CHARACTERISTICS
ISSUE 1 - JULY 2004
SEMICONDUCTORS
6
ZXMHC6A07T8
N-CHANNEL TYPICAL CHARACTERISTICS
ISSUE 1 - JULY 2004
7
SEMICONDUCTORS
ZXMHC6A07T8
P-CHANNEL TYPICAL CHARACTERISTICS
ISSUE 1 - JULY 2004
SEMICONDUCTORS
8
ZXMHC6A07T8
P-CHANNEL TYPICAL CHARACTERISTICS
ISSUE 1 - JULY 2004
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SEMICONDUCTORS
ZXMHC6A07T8
PACKAGE OUTLINE
Controlling dimensions are in millimeters. Approximate conversions are given in inches
PACKAGE DIMENSIONS
Millimeters
Inches
Millimeters
DIM
Inches
DIM
Min
Max
Typ.
Min
Max
Typ.
Min
Max
Typ.
Min
Max
Typ.
A
-
1.7
-
-
0.067
-
e1
-
-
4.59
-
-
0.1807
A1
0.02
0.1
-
0.008 0.004
-
e2
-
-
1.53
-
-
0.0602
b
-
-
0.7
0.0275
He
6.7
7.3
-
0.264 0.287
-
c
0.24
0.32
-
0.009 0.013
-
Lp
0.9
-
-
0.035
-
-
D
6.3
6.7
-
0.248 0.264
-
␣
-
15°
-
-
15°
-
E
3.3
3.7
-
0.130 0.145
-
␤
-
-
10°
-
-
10°
-
-
© Zetex Semiconductors plc 2004
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ISSUE 1 - JULY 2004
SEMICONDUCTORS
10