TD62001~004AP/AF
TOSHIBA Bipolar Digital Integrated Circuit Silicon Monolithic
TD62001AP,TD62001AF,TD62002AP,TD62002AF,
TD62003AP,TD62003AF,TD62004AP,TD62004AF
7-channel Darlington Sink Driver
The TD62001AP/AF Series are high-voltage, high-current
darlington drivers comprised of seven NPN darlington pairs.
All units feature integral clamp diodes for switching inductive
loads.
Applications include relay, hammer, lamp and display (LED)
drivers.
TD62001AP, TD62002AP
TD62003AP, TD62004AP
Features
Output current (single output): 500 mA (max)
High sustaining voltage output: 50 V (min)
Output clamp diodes
Inputs compatible with various types of logic
Package type
AP: DIP-16 pin
AF: SOP-16 pin
TD62001AF, TD62002AF
TD62003AF, TD62004AF
Type
TD62001AP/AF
TD62002AP/AF
TD62003AP/AF
TD62004AP/AF
Input base resistor
External
10.5-kΩ + 7-V
Zenner diode
2.7 kΩ
10.5 kΩ
Designation
General purpose
14-V to 25-V PMOS
TTL, 5-V CMOS
6-V to 15-V PMOS,
CMOS
Weight
DIP16-P-300-2.54A: 1.11 g (typ.)
SOP16-P-225-1.27: 0.16 g (typ.)
Pin Connection
(top view)
1
2006-06-13
TD62001~004AP/AF
Schematics
(each driver)
TD62001AP/AF
TD62002AP/AF
TD62003AP/AF
TD62004AP/AF
Note:
The input and output parasitic diodes cannot be used as clamp diodes.
Absolute Maximum Ratings
(Ta = 25°C)
Characteristics
Output sustaining voltage
Output current
Input voltage
Input current
Clamp diode reverse voltage
Clamp diode forward current
AP
Power dissipation
Operating temperature
Storage temperature
AF
P
D
T
opr
T
stg
Symbol
V
CE (SUS)
I
OUT
V
IN
(Note 1)
I
IN
(Note 2)
V
R
I
F
Rating
−0.5
to 50
500
−0.5
to 30
25
50
500
1.47
0.625
(Note 3)
−40
to 85
−55
to 150
W
°C
°C
Unit
V
mA/ch
V
mA
V
mA
Note 1: Except TD62001AP/AF
Note 2: Only TD62001AP/AF
Note 3: When mounted on a glass-epoxy PCB (30 mm
×
30 mm
×
1.6 mm, Cu area: 50%)
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2006-06-13
TD62001~004AP/AF
Recommended Operating Conditions
(Ta =
−40°C
to 85°C)
Characteristics
Output sustaining voltage
AP
Output current
AF
Except
TD62001AP/A
F
TD62002
Input voltage (output on)
TD62003
TD62004
TD62001
Input voltage (output off)
TD62002
TD62003
TD62004
Input current
Only TD62001
I
IN
V
R
I
F
AP
AF
P
D
Ta = 85°C
Ta = 85°C
(Note)
V
IN (OFF)
V
IN (ON)
I
OUT
= 400 mA
h
FE
= 800
I
OUT
Symbol
V
CE (SUS)
Duty = 10%
T
pw
= 25 ms
7 circuits
Ta = 85°C
T
j
= 120°C
Duty = 50%
Duty = 10%
Duty = 50%
V
IN
Condition
Min
0
0
0
0
0
0
14.5
2.8
6.2
0
0
0
0
0
―
―
―
―
Typ.
―
―
―
―
―
―
―
―
―
―
―
―
―
―
―
―
―
―
Max
50
370
130
233
70
24
24
24
24
0.6
7.4
0.7
1.0
10
50
350
0.76
0.325
mA
V
mA
W
V
V
V
mA/ch
Unit
V
Input voltage
Clamp diode reverse voltage
Clamp diode forward current
Power dissipation
Note: When mounted on a glass-epoxy PCB (30 mm
×
30 mm
×
1.6 mm, Cu area: 50%)
3
2006-06-13
TD62001~004AP/AF
Electrical Characteristics
(Ta = 25°C unless otherwise noted)
Characteristics
Ooutput leakage current
Symbol
I
CEX
Test
Circuit
1
Test Condition
V
CE
= 50 V, Ta = 25°C
V
CE
= 50 V, Ta = 85°C
I
OUT
= 350 mA, I
IN
= 500
µA
Collector−emitter saturation voltage
V
CE (sat)
2
I
OUT
= 200 mA, I
IN
= 350
µA
I
OUT
= 100 mA, I
IN
= 250
µA
DC current transfer ratio
TD62002
Input current (output on)
TD62003
TD62004
Input current (output off)
TD62002
V
CE
= 2 V
h
FE
= 800
I
IN (OFF)
4
I
IN (ON)
3
h
FE
2
V
CE
= 2 V, I
OUT
= 350 mA
V
IN
= 20 V, I
OUT
= 350 mA
V
IN
= 2.4 V, I
OUT
= 350 mA
V
IN
= 9.5 V, I
OUT
= 350 mA
I
OUT
= 500
µA,
Ta = 85°C
I
OUT
= 350 mA
I
OUT
= 200 mA
V
IN (ON)
5
I
OUT
= 350 mA
I
OUT
= 200 mA
I
OUT
= 350 mA
I
OUT
= 200 mA
I
R
V
F
C
IN
t
ON
t
OFF
6
7
―
8
8
V
OUT
= 50 V, R
L
= 125
Ω
C
L
= 15 pF
V
OUT
= 50 V, R
L
= 125
Ω
C
L
= 15 pF
V
R
= 50 V, Ta = 25°C
V
R
= 50 V, Ta = 85°C
I
F
= 350 mA
Min
―
―
―
―
―
1000
―
―
―
50
―
―
―
―
―
―
―
―
―
―
―
―
Typ.
―
―
1.3
1.1
0.9
―
1.1
0.4
0.8
65
―
―
―
―
―
―
―
―
―
15
0.1
0.2
Max
50
100
1.6
1.3
1.1
―
1.7
0.7
1.2
―
13.7
11.4
2.6
2.0
4.7
4.4
50
100
2.0
―
―
µs
―
µA
V
pF
V
µA
mA
V
Unit
µA
Input voltage (output on)
TD62003
TD62004
Clamp diode reverse current
Clamp diode forward voltage
Input capacitance
Turn−on delay
Turn−off delay
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2006-06-13
TD62001~004AP/AF
Test Circuit
1.
I
CEX
2.
V
CE (sat)
, h
FE
3.
IIN (ON)
4.
I
IN (OFF)
5.
V
IN (ON)
6.
I
R
7.
V
F
5
2006-06-13