Philips PIP3202-DC 用户手册

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页码 9
Philips Semiconductors
Product specification
 TOPFET dual high side switch
PIP3202-DC 
 
 
THERMAL CHARACTERISTIC
SYMBOL
PARAMETER
CONDITIONS
MIN.
TYP.
MAX.
UNIT
Thermal resistance
1
R
th j-mb
Junction to mounting base
per channel
-
2.4
3
K/W
both channels
-
1.2
1.5
K/W
STATIC CHARACTERISTICS
Limits are at -40˚C 
 T
mb
 
 150˚C and typicals at T
mb
 = 25 ˚C unless otherwise stated
SYMBOL
PARAMETER
CONDITIONS
MIN.
TYP.
MAX.
UNIT
Clamping voltages
V
BG
Battery to ground
I
G
 = 1 mA
45
55
65
V
V
BL
Battery to load per channel
I
L
 = I
G
 = 1 mA
50
55
65
V
V
GL
Ground to load
2
I
L
 = 10 mA
18
23
28
V
I
L
 = 10 A; t
p
 = 300 
µ
s
20
25
30
V
Supply voltage
battery to ground
V
BG
Operating range
3
-
5.5
-
35
V
Currents
9 V 
 V
BG
 
 35 V
I
B
Total quiescent current
4
V
LG
 = 0 V
-
-
20
µ
A
T
mb
 = 25˚C
-
0.1
1
µ
A
I
L
Off-state load current per
V
BL
 = V
BG
-
-
10
µ
A
channel
T
mb
 = 25˚C
-
0.1
1
µ
A
I
G
Operating current
one channel on
-
1.8
3
mA
both channels on
-
3.6
6
mA
I
L
Nominal load current
5
V
BL
 = 0.5 V; T
mb
 = 85˚C
8
-
-
A
R
G
Effective internal ground
I
G
 = -200 mA; t
p
 = 300 
µ
s
40
75
100
Ω
resistance
6
Resistances per channel
V
BG
I
L
t
p
7
T
j
R
ON
On-state resistance
9 to 35 V
10 A
300 
µ
s
25˚C
-
30
40
m
Ω
150˚C
-
60
80
m
Ω
R
ON
On-state resistance
5.5 V
5 A
300 
µ
s
25˚C
-
50
60
m
Ω
150˚C
-
100
120
m
Ω
Of the output Power MOS transistors.
For a high side switch, the load pin voltage goes negative with respect to ground during the turn-off of an inductive load.  This negative voltage
is clamped by the device.
On-state resistance is increased if the supply voltage is less than 7 V.
This is the continuous current drawn from the battery when both inputs are low and includes leakage currents to the loads.
Per channel but with both channels conducting.  Defined as in ISO 10483-1.
Equivalent of the parallel connected resistors for both channels.
The supply and input voltage for the R
ON
 tests are continuous.  The specified pulse duration t
p
 refers only to the applied load current.
September 2001
3
Rev 1.000