Datasheet ULN2077B, ULN2075B, ULN2071B, ULN2069B, ULN2067B Datasheet (SGS Thomson Microelectronics)

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Page 1
80 V - 1.5 AQUAD DARLINGTONSWITCHES
.OUTPUT CURRENT TO 1.5 A EACH DAR-
LINGTON
.MINIMUMBREAKDOWN80 V
.SUSTAININGVOLTAGEAT LEAST50V
.INTEGRAL SUPPRESSION DIODES
.ISOLATEDDARLINGTONPINOUT(ULN2075B
and ULN2077B)
.VERSIONS COMPATIBLE WITH ALL POPU-
LARLOGIC FAMILIES
DESCRIP TION
Designedto interfacelogic to a widevariety of high current,highvoltageloads,thesedeviceseachcon­tain four NPN darlington switches delivering up to
1.5 A with a specifiedminimumbreakdownof 80 V and a sustainingvoltage of 50 V. The ULN2065B, ULN2067B,ULN2069BandULN2071Bcontainin­tegral suppression diodes for inductive loads and have common emitters ; the ULN2075B and ULN2077Bfeature isolateddarlington pinoutsand are intended for applications such as emitter fol­lower configurations. Inputs of the ULN2065B, ULN2069B and ULN2075B are compatible with popular 5 V logic families and the ULN2067B, ULN2071Band ULN2077Bare compatible with 6­15 VCMOS and PMOS. The ULN2069B and ULN2071Bincludea predriverstageto provideex­tragain,reducingthe loadon controllogic.
ULN2065B - ULN2067B
ULN2069B - ULN2071B
ULN2075B - ULN2077B
POWERDIP
12 + 2 + 2
PIN CONNECTIONS AND ORDER CO DES
ULN2065B ULN2067B
April1993
ULN2069B ULN2071B
ULN2075B ULN2077B
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ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
SCHEMATIC DIAG RAM
ULN2065B : RIN=350
ULN2067B : R
IN
=3k
ULN2069B : R
ULN2071B : R
=2.5k,Rs=900
IN
= 11.6k,Rs=3.4k
IN
ULN2075B : R
ULN2077B : R
= 350
IN
=3k
IN
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value Unit
V
V
CE(sus)
P
T
T
CEX
I
O
V
I
V
amb
stg
tot
Output Voltage 80 V Output Sustaining Voltage 50 V Output Current 1.75 A Input Voltage for ULN2075B – 2077B
i
for ULN2067B – 2071B for ULN2065B – 2069B
Input Current 25 mA
I
Supply Voltage for ULN2069B
s
Power Dissipation at T
for ULN2071B
=90°C
pins amb
=70°C
at T
60 30 15
10 20
4.3 1
Operating Ambient Temperature Range – 20 to 85 °C Storage Temperature – 55 to 150 °C
V V V
V V
W W
ELECTRICAL CHARACTERISTICS (T
=25oC unless otherwise specified )
amb
Symbol Parameter Test Conditions Min. Typ. Max. Unit Fig.
I
V
CE(sus)
V
CE(sat)
I
Output Leakage Current VCE= 80V
CEX
T T
amb amb
=25°C
=70°C Collector-emitter Sustaining Voltage IC= 100mA, Vi= 0.4V 50 V 2 Collector-emitter Saturation Voltage IC= 500mA IB= 625µA
= 750mA IB= 935µA
I
C
=1A IB= 1.25mA
I
C
= 1.25A IB= 2mA
I
C
= 1.5A IB= 2.25mA
I
C
Input Current for ULN2065B and ULN2075B
i(on)
= 2.4V
V
i
= 3.75V
V
i
for ULN2067B and ULN2077B
=5V
V
i
= 12V
V
i
for ULN2069B
= 2.75V
V
i
= 3.75V
V
i
for ULN2071B
=5V
V
i
= 12V
V
i
1.4
3.3
0.6
1.7
100 500µAµA
1.1
1.2
1.3
1.4
1.5
4.3
mA
9.6
mA
1.8
mA
5.2
mA
5.5
mA
10
mA
4
mA
12.5
mA
V V V V V
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1
3 3 3 3 3
4 4
4 4
4 4
4 4
Page 3
ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
ELECTRICAL CHARACTERISTICS (T
=25oC unless otherwise specified ) (continued)
amb
Symbol Parameter Test Conditions Min. Typ. Max. Unit Fig.
V
t t
Notes : 1. Input voltage is with reference to the substrate (no connection to any other pins) for the ULN2075B and ULN2077B
Input Voltage VCE= 2V, IC=1A
i(on)
ULN2065B, ULN2075B ULN2067B, ULN2077B
= 2V, IC= 1.5A
V
CE
ULN2065B, ULN2075B ULN2067B, ULN2077B ULN2069B ULN2071B
Supply Current for ULN2069B
I
s
Turn-on Delay Time 0.5 Vito 0.5 V
PLH
Turn-off Delay Time 0.5 Vito 0.5 V
PHL
Clamp Diode Leakage Current for ULN2065B-ULN2067B
I
R
Clamp Diode Forward Voltage for ULN2065B-ULN2067B
V
F
reference is ground for all other types.
2. Input current may be limited by maximum allowable input voltage.
= 500mA, Vi= 2.75V
I
C
for ULN2071B
= 500mA, Vi=5V
I
C
and ULN2069B-ULN2071B
=80V
V
R
T T
amb amb
=25°C
=70°C
and ULN2069B-ULN2071B
=1A
I
F
= 1.5 A
I
F
2
V
6.5
2.5 10
2.75 5
5
V
5
V
5
V
5
V
5
V
5
6
4.5mAmA88
o o
1 µs
1.5 µs 6
50
100µAµA
7
1.752V V
TEST CIRCUITS Figure 1. Figure2.
Figure 3. Figure4.
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ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
Figure 5. Figure6.
Figure 7. Figure8.
Figure 9 : InputCurrentas a Functionof
InputVoltage.
Figure11 : CollectorCurrent as a Functionof
Input Current.
Figure10 : Input Current as a Functionof
InputVoltage.
4/7
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ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
MOUNTING I NST RUCTIO NS
TheR pins to a suitable copperarea of the printed circuit board(Fig. 12) or to anexternalheatsink(Fig. 13).
The diagram of figure 14 showsthe maximum dis­sipablepowerP the side”” of two equalsquare copper areashav­inga thicknessof 35 µ (1.4 mils).
canbe reduced by solderingthe GND
th j-amb
and the R
tot
asa functionof
th j-amb
During solderingthe pins temperaturemust not ex­ceed 260 °C and the soldering time must not be longerthan 12seconds.
Theexternalheatsinkor printed circuit copperarea must be connectedto electrical ground.
Figure 12 : Exampleof P.C. Board Area whichis
Usedas Heatsink.
Figure 14 : MaximumDissipable Powerand Junc-
tionto AmbientThermal Resistance vs. Side”I”.
Figure13 : ExternalHeatsinkMountingExample.
Figure15 : MaximumAllowablePower Dissipa-
tionvs. Ambient Temperature.
5/7
Page 6
ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
POWERDIP 16 PACKAGE MECHANICAL DATA
DIM.
MIN. TYP. MAX. MIN. TYP. MAX.
a1 0.51 0.020
B 0.85 1.40 0.033 0.055
b 0.50 0.020
b1 0.38 0.50 0.015 0.020
D 20.0 0.787
E 8.80 0.346
e 2.54 0.100
e3 17.78 0.700
F 7.10 0.280
I 5.10 0.201
L 3.30 0.130
Z 1.27 0.050
mm inch
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ULN2065B-ULN2067B-ULN2069B-ULN2071B-ULN2075B-ULN2077B
Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of SGS-THOMSON Microelectronics. Specifica­tions mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information pre­viously supplied. SGS-THOMSON Microelectronics products are not authorized for use as critical components in life support devices or systems withoutexpress written approval of SGS-THOMSON Microelectronics.
1994 SGS-THOMSON Microelectronics - All Rights Reserved
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