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TC7SZ02FU

Toshiba
Part Number TC7SZ02FU
Manufacturer Toshiba
Description 2-Input NOR Gate
Published Apr 23, 2005
Detailed Description CMOS Digital Integrated Circuits Silicon Monolithic TC7SZ02FU TC7SZ02FU 1. Functional Description • 2-Input NOR Gate 2...
Datasheet PDF File TC7SZ02FU PDF File

TC7SZ02FU
TC7SZ02FU


Overview
CMOS Digital Integrated Circuits Silicon Monolithic TC7SZ02FU TC7SZ02FU 1.
Functional Description • 2-Input NOR Gate 2.
Features (1) AEC-Q100 (Rev.
H) (Note 1) (2) Wide operating temperature range: Topr = -40 to 125  (Note 2) (3) High output current: ±24 mA (min) at VCC = 3.
0 V (4) Super high speed operation: tpd = 2.
4 ns (typ.
) at VCC = 5.
0 V, CL = 50 pF (5) Operation voltage range: VCC = 1.
65 to 5.
5 V (6) 5.
5 V tolerant inputs (7) 5.
5 V power down protection output (8) Matches the performance of TC74LCX series when operated at 3.
3 V VCC Note 1: This device is compliant with the reliability requirements of AEC-Q100.
For details, contact your Toshiba sales representative.
Note 2: For devices with the ordering part number ending in J(CT.
Topr = -40 to 85  for the other devices.
3.
Packaging USV ©2015 Toshiba Corporation 1 Start of commercial production 1998-08 2017-05-17 Rev.
3.
0 4.
Marking and Pin Assignment TC7SZ02FU Marking 5.
IEC Logic Symbol Pin Assignment (Top view) 6.
Truth Table A B Y L L H L H L H L L H H L 7.
Absolute Maximum Ratings (Note) (Unless otherwise specified, Ta = 25 ) Characteristics Symbol Note Rating Unit Supply voltage VCC -0.
5 to 6.
0 V Input voltage VIN -0.
5 to 6.
0 V DC output voltage VOUT (Note 1) -0.
5 to 6.
0 V (Note 2) -0.
5 to VCC + 0.
5 Input diode current IIK -20 mA Output diode current IOK (Note 3) -20 mA DC output current IOUT ±50 mA VCC/ground current ICC ±50 mA Power dissipation PD 200 mW Storage temperature Tstg -65 to 150  Note: Exceeding any of the absolute maximum ratings, even briefly, lead to deterioration in IC performance or even destruction.
Using continuously under heavy loads (e.
g.
the application of high temperature/current/voltage and the significant change in temperature, etc.
) may cause this product to decrease in the reliability significantly even if the operating conditions (i.
e.
operating temperature/current/voltage, etc.
) are within the absol...



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