L6221AD STMicroelectronics, L6221AD Datasheet

IC DARLINGTON SWITCH QUAD SOIC20

L6221AD

Manufacturer Part Number
L6221AD
Description
IC DARLINGTON SWITCH QUAD SOIC20
Manufacturer
STMicroelectronics
Type
Darlington Arrayr
Datasheet

Specifications of L6221AD

Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
20-SOIC (7.5mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of Drivers/receivers
-
Protocol
-

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Features
Applications
The L6221 monolithic quad Darlington switch is
designed for high current, high voltage switching
applications.
Description
Each of the four switches is controlled by a logic
input and all four are controlled by a common
enable input. All inputs are TTL-compatible for
direct connection to logic circuits.
Each switch consists of an open-collector
Darlington transistor plus a fast diode for
switching applications with inductive device loads.
The emitters of the four switches are commoned.
Any number of inputs and outputs of the same
device may be paralleled.
Table 1.
March 2009
E-L6221AS
E-L6221AD
E-L6221AD013TR
E-L6221C/CD/CN
Four non-inverting inputs with enable
Output voltage up to 50 V
Output current up to 1.8 A
Very low saturation voltage
TTL compatible inputs
Integral fast recirculation diodes
Order code
Device summary
Power DIP
SO16+2+2
SO16+2+2 (tape and reel)
Obsolete product
Package
Rev 4
Figure 1.
Block diagram
Quad Darlington switch
Power DIP 12+2+2
SO16+2+2
L6221
www.st.com
1/22
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Related parts for L6221AD

L6221AD Summary of contents

Page 1

... The emitters of the four switches are commoned. Any number of inputs and outputs of the same device may be paralleled. Table 1. Device summary Order code E-L6221AS Power DIP E-L6221AD SO16+2+2 E-L6221AD013TR SO16+2+2 (tape and reel) E-L6221C/CD/CN Obsolete product March 2009 Figure 1. Package Rev 4 L6221 Quad Darlington switch ...

Page 2

Contents Contents 1 Thermal data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 3

Thermal data Table 2. Thermal data Symbol R Thermal resistance junction-pins max. th j-pins R Thermal resistance junction-ambient max. th j-amb Parameter SO20 Thermal data Power DIP Unit 17 14 °C °C/W 3/22 ...

Page 4

... Pin information 2 Pin information Figure 2. Pin connections (top views) 4/22 E-L6221AS (Power DIP) E-L6221AD (SO16+2+2) ...

Page 5

Table 3. Truth table Enable For each input High level Low level (1) Table 4. Pin description Name IN 1 Input to driver Input to driver 2 OUT ...

Page 6

Absolute maximum ratings 3 Absolute maximum ratings Table 5. Absolute maximum ratings Symbol V Output voltage o V Logic supply voltage Input voltage, enable voltage Continuous collector current (for each channel ...

Page 7

Electrical characteristics Note: Refer to the test circuits specified). Table 6. Electrical characteristics Symbol Parameter V Logic supply voltage S I Logic supply current s V Output sustaining voltage CE(sus) I Output leakage current CEX Collector emitter saturation V ...

Page 8

Test circuits 5 Test circuits Note: Pin numbers without parentheses apply to the Power DIP package. Pin numbers in parentheses are not applicable. Figure 3. Logic supply current Figure 4. Output sustaining voltage Figure 5. Output leakage current 8/22 Set ...

Page 9

Figure 6. Collector-emitter saturation voltage Figure 7. Logic input characteristics Set S 1 Set S 1 Set S 1 Set S 1 Figure 8. Clamp-diode leakage current , S open 0.8 V for ...

Page 10

Test circuits Figure 9. Clamp-diode forward voltage Figure 10. Switching time test circuit Figure 11. Switching time waveforms 10/22 ...

Page 11

Figure 12. Allowed peak collector current versus duty cycle for contemporary working outputs (L6221AS) Figure 13. Collector saturation voltage versus collector current Figure 14. Free-wheeling diode forward voltage versus diode current Test circuits 11/22 ...

Page 12

Test circuits Figure 15. Collector saturation voltage versus junction temperature at I Figure 16. Free-wheeling diode forward voltage versus junction temperature Figure 17. Saturation voltage against junction temperature 12/ ...

Page 13

Figure 18. Free-wheeling diode forward voltage against junction temperature Test circuits 13/22 ...

Page 14

Application information 6 Application information When inductive loads are driven by the L6221, a Zener diode in series with the integral free- wheeling diodes increases the voltage across which energy stored in the load is discharged and therefore speeds the ...

Page 15

Figure 20. Driver for solenoids Figure 21. Saturation voltage versus collector current Figure 22. L6221AS peak collector current versus duty cycle for paralleled outputs driven Application information 15/22 ...

Page 16

Mounting instructions 7 Mounting instructions The R of the E-L6221AS can be reduced by soldering the GND pins to a suitable th j-amb copper area of the printed circuit board ( Figure 23. Example of PCB copper area used as ...

Page 17

Figure 25 shows the maximum dissipable power P side " " of two equal square copper areas having a thickness of 35 µm (1.4 mils). During soldering the pins temperature must not exceed 260 °C and the soldering time must ...

Page 18

Package mechanical data 8 Package mechanical data In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK® packages, depending on their level of environmental compliance. ECOPACK® specifications, grade definitions and product status are available at: ...

Page 19

DIM. MIN. TYP. MAX. MIN. a1 0.51 0.020 B 0.85 1.40 0.033 b 0.50 b1 0.38 0.50 0.015 D 20.0 E 8.80 e 2.54 e3 17.78 F 7.10 I 5.10 L 3.30 Z 1.27 inch OUTLINE AND MECHANICAL DATA ...

Page 20

Package mechanical data 20/22 ...

Page 21

Revision history Table 7. Document revision history Date 14-Jan-2004 19-Jan-2009 30-Mars-2009 Revision 2 Released in EDOCS Document reformatted. Figure 19 Inserted title for 3 Removed reference to obsolete product L6221N and the associated package (multiwatt-15). 4 Obsolete products E-L6221C/CD/CN ...

Page 22

... Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST’s terms and conditions of sale. ...

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