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HD74LS368AP

Renesas
Part Number HD74LS368AP
Manufacturer Renesas
Description Hex Bus Drivers
Published Jul 25, 2021
Detailed Description HD74LS368A Hex Bus Drivers (inverted data outputs with three-state outputs) Features • Ordering Information Part Name ...
Datasheet PDF File HD74LS368AP PDF File

HD74LS368AP
HD74LS368AP


Overview
HD74LS368A Hex Bus Drivers (inverted data outputs with three-state outputs) Features • Ordering Information Part Name Package Type Package Code (Previous Code) Package Abbreviation HD74LS368AP DILP-16 pin PRDP0016AE-B P (DP-16FV) HD74LS368AFPEL SOP-16 pin (JEITA) PRSP0016DH-B (FP-16DAV) FP PRSP0016DG-A HD74LS368ARPEL SOP-16 pin (JEDEC) (FP-16DNV) RP Note: Please consult the sales office for the above package availability.
Pin Arrangement REJ03D0481–0200 Rev.
2.
00 Feb.
18.
2005 Taping Abbreviation (Quantity) — EL (2,000 pcs/reel) EL (2,500 pcs/reel) G1 1 1A 2 1Y 3 2A 4 2Y 5 3A 6 3Y 7 GND 8 16 VCC 15 G2 14 6A 13 6Y 12 5A 11 5Y 10 4A 9 4Y (Top view) Function Table G A Y H X Z L L H L H L Note: H; high level, L; low level, X; irrelevant, Z; off (high-impedance) state of a 3-state output Rev.
2.
00, Feb.
18.
2005, page 1 of 5 HD74LS368A Absolute Maximum Ratings Item Symbol Ratings Supply voltage VCC 7 Input voltage VIN 7 Output voltage (off-state) VO (off) 5.
5 Power dissipation PT 400 Operating temperature Topr –20 to +75 Storage temperature Tstg –65 to +150 Note: Voltage value, unless otherwise noted, are with respect to network ground terminal.
Recommended Operating Conditions Item Supply voltage Output current Operating temperature Symbol VCC IOH IOL Topr Min 4.
75 — — –20 Typ 5.
00 — — 25 Max 5.
25 –2.
6 24 75 Unit V V V mW °C °C Unit V mA mA °C Electrical Characteristics (Ta = –20 to +75 °C) Item Symbol min.
typ.
* max.
Unit Condition Input voltage VIH VIL VOH Output voltage VOL Output current IOZH IOZL IIH A inputs Input current IIL 2.
0 — — V — — 0.
8 2.
4 — — VCC = 4.
75 V, VIH = 2 V, VIL = 0.
8 V, V IOH = –2.
6 mA — — 0.
4 IOL = 12 mA VCC = 4.
75 V, — — 0.
5 IOL = 24 mA VIH = 2 V, VIL = 0.
8 V — — — — 20 –20 µA VO = 2.
4 V VO = 0.
4 V VCC = 5.
25 V, VIH = 2 V, VIL = 0.
8 V — — 20 µA VCC = 5.
25 V, VI = 2.
7 V — — –20 µA VCC = 5.
25 V, VI = 0.
5 V, G input at 2 V — — –0.
4...



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