TD62081AP Toshiba, TD62081AP Datasheet

IC DRIVER DARL SINK 8-CH 18-DIP

TD62081AP

Manufacturer Part Number
TD62081AP
Description
IC DRIVER DARL SINK 8-CH 18-DIP
Manufacturer
Toshiba
Type
Driverr
Datasheet

Specifications of TD62081AP

Number Of Drivers/receivers
8/0
Voltage - Supply
30V
Mounting Type
Through Hole
Package / Case
18-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Protocol
-

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Company
Part Number
Manufacturer
Quantity
Price
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TOS
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Manufacturer:
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8ch Darlington Sink Driver
The TD62081AP/AF Series are high-voltage,
high-current darlington drivers comprised of eight NP darlington
pairs.
All units feature integral clamp diodes for switching inductive
loads.
Applications include relay, hammer, lamp and display (LED)
drivers.
Features
Pin Connection
Output current (single output)
500 mA (max) (TD62081AP/AF series)
High sustaining voltage output
50 V (min)
Output clamp diodes
Inputs compatible with various types of logic.
Package type-AP: DIP-18 pin
Package type-AF: SOP-18 pin
TD62081AP/AF
TD62082AP/AF
TD62083AP/AF
TD62084AP/AF
Type
O1
18
I1
1
TD62081AP,TD62081AF,TD62082AP,TD62082AF
TD62083AP,TD62083AF,TD62084AP,TD62084AF
(TD62081AP/AF series)
O2
17
I2
2
(top view)
Toshiba Bipolar Digital Integrated Circuit Silicon Monolithic
10.5-kΩ + 7 V
Zenner diode
O3
16
Input Base
I3
3
Resistor
External
10.5 kΩ
2.7 kΩ
O4
15
I4
4
O5
14
I5
5
General purpose
TTL, 5 V CMOS
PMOS, CMOS
14 V to 25 V
Designation
6 V to 15 V
O6
13
I6
6
PMOS
O7
12
I7
7
O8
11
I8
8
1
COMMON
GND
10
9
Weight
DIP18-P-300-2.54D: 1.47 g (typ.)
SOP18-P-375-1.27: 0.41 g (typ.)
TD62081AP, TD62082AP
TD62083AP, TD62084AP
TD62081AF, TD62082AF
TD62083AF, TD62084AF
TD62081~084AP/AF
2006-06-13

Related parts for TD62081AP

TD62081AP Summary of contents

Page 1

... Toshiba Bipolar Digital Integrated Circuit Silicon Monolithic TD62081AP,TD62081AF,TD62082AP,TD62082AF TD62083AP,TD62083AF,TD62084AP,TD62084AF 8ch Darlington Sink Driver The TD62081AP/AF Series are high-voltage, high-current darlington drivers comprised of eight NP darlington pairs. All units feature integral clamp diodes for switching inductive loads. Applications include relay, hammer, lamp and display (LED) drivers ...

Page 2

... Output sustaining voltage Output current Input voltage Input current Clamp diode reverse voltage Clamp diode forward current AP Power dissipation AF Operating temperature Storage temperature Note 1: Except TD62081AP/AF Note 2: Only TD62081AP/AF TD62082AP/AF Common Input 7 V Output 10.5 kΩ 7.2 kΩ GND (Ta = 25°C) Symbol Rating Unit − ...

Page 3

... Except Input voltage TD62081AP/AF TD62082AP/AF Input voltage TD62083AP/AF (Output on) TD62084AP/AF TD62082AP/AF Input voltage TD62083AP/AF (Output off) TD62084AP/AF Only Input current TD62081AP/AF Clamp diode reverse voltage Clamp diode forward current AP Power dissipation AF (Ta = −40 to 85°C) Symbol Test Condition V CE (SUS ms, Duty = 10 ...

Page 4

Electrical Characteristics Characteristics Output leakage current TD62082 TD62084 Collector-emitter saturation voltage TD62082AP/AF TD62083AP/AF Input current TD62084AP/AF TD62082AP/AF TD62083AP/AF Input voltage (Output on) TD62084AP/AF DC current transfer ratio Clamp diode reverse current Clamp diode forward voltage Input capacitance ...

Page 5

Test Circuit 1. I CEX Open I CEX Open (OFF) Open (OFF) OUT Open Open (sat) ...

Page 6

... Output Note 1: Pulse width 50 µs, duty cycle 10% Output impedance 50 Ω Note 2: See below. Input condition Type Number TD62081AP/AF TD62082AP/AF TD62083AP/AF TD62084AP/AF Note 3: C includes probe and jig capacitance L Precautions for Using This IC does not include built-in protection circuits for excess current or overvoltage. ...

Page 7

I – TD62082AP 2 max typ. 1 min Input voltage V ( – TD62084AP 2 max 1 typ. min Input ...

Page 8

I FE OUT 10000 TD62083 5000 2.0 V 3000 1000 85°C 500 −40 300 100 100 1000 Output current I (mA) OUT P – 2.0 ...

Page 9

Package Dimensions Weight: 1.47 g (typ.) TD62081~084AP/AF 9 2006-06-13 ...

Page 10

Package Dimensions Weight: 0.41 g (typ.) TD62081~084AP/AF 10 2006-06-13 ...

Page 11

Notes on Contents 1. Equivalent Circuits The equivalent circuit diagrams may be simplified or some parts of them may be omitted for explanatory purposes. 2. Test Circuits Components in the test circuits are used only to obtain and confirm the ...

Page 12

Points to Remember on Handling of ICs (1) Heat Radiation Design In using an IC with large current flow such as power amp, regulator or driver, please design the device so that heat is appropriately radiated, not to exceed the ...

Page 13

... TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property ...

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