DLA DSCC-VID-V62 06637 REV A-2008 MICROCIRCUIT LINEAR NANOPOWER SUPERVISORY CIRCUITS MONOLITHIC SILICON.pdf
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1、 REVISIONS LTR DESCRIPTION DATE APPROVED A Activate device type 15. Correct VITmaximum limit from 2.30 V to 2.31 V in table I. Correct IDDmaximum limit from 2500 nA to 650 nA in table I. Update boilerplate to current revision. - CFS 08-12-05 Thomas M. Hess Prepared in accordance with ASME Y14.24 Ven
2、dor item drawing REV PAGE REV PAGE REV A A A A A A A A A A A REV STATUS OF PAGES PAGE 1 2 3 4 5 6 7 8 9 10 11 PMIC N/A PREPARED BY Phu H. Nguyen DEFENSE SUPPLY CENTER, COLUMBUS COLUMBUS, OHIO 43218-3990 Original date of drawing YY MM DD CHECKED BY Phu H. Nguyen APPROVED BY Thomas M. Hess TITLE MICRO
3、CIRCUIT, LINEAR, NANOPOWER SUPERVISORY CIRCUITS, MONOLITHIC SILICON SIZE A CODE IDENT. NO. 16236 DWG NO. V62/06637 06-08-22 REV A PAGE 1 OF 11 AMSC N/A 5962-V012-09Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-DEFENSE SUPPLY CENTER, COLUMBUS COLUMB
4、US, OHIO SIZE A CODE IDENT NO. 16236 DWG NO. V62/06637 REV A PAGE 2 1. SCOPE 1.1 Scope. This drawing documents the general requirements of high performance nanopower supervisory circuits, with an operating temperature range of -40C to +125C for device types 01 through 13, and an operating temperatur
5、e range of -55C to +125C for device types 14 through 26. 1.2 Vendor Item Drawing Administrative Control Number. The manufacturers PIN is the item of identification. The vendor item drawing establishes an administrative control number for identifying the item on the engineering documentation: V62/066
6、37 - 01 X E Drawing Device type Case outline Lead finish number (See 1.2.1) (See 1.2.2) (See 1.2.3) 1.2.1 Device type(s). Device type Generic Threshold Voltage Circuit function 01 TPS3836E18-EP 1/ 1.71 V Nanopower supervisory circuits 02 TPS3836J25-EP 1/ 2.25 V Nanopower supervisory circuits 03 TPS3
7、836H30-EP 1/ 2.79 V Nanopower supervisory circuits 04 TPS3836L30-EP 1/ 2.64 V Nanopower supervisory circuits 05 TPS3836K33-EP 1/ 2.93 V Nanopower supervisory circuits 06 TPS3837E18-EP 1/ 1.71 V Nanopower supervisory circuits 07 TPS3837J25-EP 1/ 2.25 V Nanopower supervisory circuits 08 TPS3837L30-EP
8、1/ 2.64 V Nanopower supervisory circuits 09 TPS3837K33-EP 1/ 2.93 V Nanopower supervisory circuits 10 TPS3838E18-EP 1/ 1.71 V Nanopower supervisory circuits 11 TPS3838J25-EP 1/ 2.25 V Nanopower supervisory circuits 12 TPS3838L30-EP 1/ 2.64 V Nanopower supervisory circuits 13 TPS3838K33-EP 1/ 2.93 V
9、Nanopower supervisory circuits 14 TPS3836E18-EP 2/ 1.71 V Nanopower supervisory circuits 15 TPS3836J25-EP 2/ 2.25 V Nanopower supervisory circuits 16 TPS3836H30-EP 2/ 2.79 V Nanopower supervisory circuits 17 TPS3836L30-EP 2/ 2.64 V Nanopower supervisory circuits 18 TPS3836K33-EP 2/ 2.93 V Nanopower
10、supervisory circuits 19 TPS3837E18-EP 2/ 1.71 V Nanopower supervisory circuits 20 TPS3837J25-EP 2/ 2.25 V Nanopower supervisory circuits 21 TPS3837L30-EP 2/ 2.64 V Nanopower supervisory circuits 22 TPS3837K33-EP 2/ 2.93 V Nanopower supervisory circuits 23 TPS3838E18-EP 2/ 1.71 V Nanopower supervisor
11、y circuits 24 TPS3838J25-EP 2/ 2.25 V Nanopower supervisory circuits 25 TPS3838L30-EP 2/ 2.64 V Nanopower supervisory circuits 26 TPS3838K33-EP 2/ 2.93 V Nanopower supervisory circuits 1.2.2 Case outline(s). The case outlines are as specified herein. Outline letter Number of pins JEDEC PUB 95 Packag
12、e style X 5 MO-178 Plastic small outline _ 1/ TA= -40C to +125C 2/ TA= -55C to +125C Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-DEFENSE SUPPLY CENTER, COLUMBUS COLUMBUS, OHIO SIZE A CODE IDENT NO. 16236 DWG NO. V62/06637 REV A PAGE 3 1.2.3 Lead
13、finishes. The lead finishes are as specified below or other lead finishes as provided by the device manufacturer: Finish designator Material A Hot solder dip B Tin-lead plate C Gold plate D Palladium E Gold flash palladium Z Other 1.3 Absolute maximum ratings. 3/ Supply voltage range (VDD) . 7.0 V 4
14、/ All other pins -0.3 V to 7.0 V 4/ Maximum low output current ( IOL) 5 mA Maximum high output current ( IOL) -5 mA Input clamp current (IIK) (VIVDD) . 10 mA Output clamp current ( IOK) ( VO 0 or VO VDD) . 10 mA Operating free-air temperature range (TA). -55C to +125C Storage temperature range (TSTG
15、). -65C to 150C Soldering temperature 260C 1.4 Recommended operating conditions. 5/ Supply voltage range (VDD) 1.6 V to 6.0 V Input voltage (VI) 0 V to VDD+ 0.3 V Minimum high level input voltage (VIH) . 0.7 x VDD Maximum low level input current (VIL) 0.3 x VDDInput transition rise and fall rate at
16、MR (t/V) . 100 ns/V Operating free-air temperature range (TA): Device type: 01-13 -40C to +125C Device type: 14-26 -55C to +125C Thermal resistance for case outline X: Case X Resistance High Low JC(C/W) 130.9 148.1 JA(C/W) 205.6 347 _ 3/ Stresses beyond those listed under “absolute maximum ratings”
17、may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under “recommended operating conditions” is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affe
18、ct device reliability. 4/ All voltage values are with respect to GND. For reliable operation, the device must not be operated at 7 V for more than t = 1000 hours continuously. 5/ Use of this product beyond the manufacturers design rules or stated parameters is done at the users risk. The manufacture
19、r and/or distributor maintain no responsibility or liability for product used beyond the stated limits. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-DEFENSE SUPPLY CENTER, COLUMBUS COLUMBUS, OHIO SIZE A CODE IDENT NO. 16236 DWG NO. V62/06637 REV A
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