TD62001~004APG/AFG
TOSHIBA Bipolar Digital Integrated Circuit Silicon Monolithic
TD62001APG,TD62001AFG,TD62002APG,TD62002AFG,
TD62003APG,TD62003AFG,TD62004APG,TD62004AFG
7-channel Darlington Sink Driver
The TD62001APG/AFG 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.
Features
l
l
l
l
l
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
APG: DIP-16 pin (Pb free package)
AFG: SOP-16 pin (Pb free package)
Type
TD62001APG/AFG
TD62002APG/AFG
TD62003APG/AFG
TD62004APG/AFG
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
2002-12-11
TD62001~004APG/AFG
Schematics
(each driver)
TD62001APG/AFG
TD62002APG/AFG
TD62003PAPG/AFG
TD62004APG/AFG
Note:
The input and output parasitic diodes cannot be used as clamp diodes.
Maximum Ratings
(Ta = 25°C)
Characteristics
Output sustaining voltage
Output current
Input voltage
Input current
Clamp diode reverse voltage
Clamp diode forward current
APG
Power dissipation
Operating temperature
Storage temperature
AFG
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 TD62001APG/AFG
Note 2: Only TD62001APG/AFG
Note 3: When mounted on a glass-epoxy PCB (30 mm
´
30 mm
´
1.6 mm, Cu area: 50%)
2
2002-12-11
TD62001~004APG/AFG
Recommended Operating Conditions
(Ta =
−40°C
to 85°C)
Characteristics
Output sustaining voltage
APG
Output current
AFG
Except
TD62001APG/
AFG
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
APG
AFG
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
2002-12-11
TD62001~004APG/AFG
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
mA
Collector−emitter saturation voltage
V
CE (sat)
2
I
OUT
= 200 mA, I
IN
= 350
mA
I
OUT
= 100 mA, I
IN
= 250
mA
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
mA,
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
W
C
L
= 15 pF
V
OUT
= 50 V, R
L
= 125
W
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
―
―
ms
―
mA
V
pF
V
mA
mA
V
Unit
mA
Input voltage (output on)
TD62003
TD62004
Clamp diode reverse current
Clamp diode forward voltage
Input capacitance
Turn−on delay
Turn−off delay
4
2002-12-11
TD62001~004APG/AFG
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
2002-12-11