54C165
54C165 is Parallel-Load 8-Bit Shift Register manufactured by National Semiconductor.
Description
The MM54C165 MM74C165 functions as an 8-bit parallelload serial shift register Data is loaded into the register independent of the state of the clock(s) when PARALLEL LOAD (PL) is low Shifting is inhibited as long as PL is low Data is sequentially shifted from plementary outputs Q7 and Q7 highest-order bit (P7) first New serial data may be entered via the SERIAL DATA (Ds) input Serial shifting occurs on the rising edge of CLOCK1 or CLOCK2 Clock inputs may be used separately or together for bined clocking from independent sources Either clock input may be used also as an active-low clock enable To prevent double-clocking when a clock input is used as an enable the enable must be changed to a high level (disabled) only while the clock is high
Features
Y Wide supply voltage range Y Guaranteed noise margin Y High noise immunity Y Low power TTL patibility
Y Parallel loading independent of clock Y Dual clock inputs Y Fully static operation
3V to 15V
1V
0 45 VCC (typ ) fan out of 2 driving 74L
Connection and Block Diagrams
Dual-In-Line Package
Top View
TL F 5897
- 2
Order Number MM54C165 or MM74C165
Please look into Section 8 Appendix D for availability of various package types
TL F 5897
- 1
C1995 National Semiconductor Corporation TL F 5897
TL F 5897
- 3 RRD-B30M105 Printed in U S A
Absolute Maximum Ratings (Note 1)
If Military Aerospace specified devices are required please contact the National Semiconductor Sales Office Distributors for availability and specifications
Voltage at Any Pin
Operating Temperature Range MM54C165 MM74C165 b0 3V to VCCa0 3V b55 C to a125 C b40 C to a85 C
Storage Temperature Range
Absolute Maximum VCC Power Dissipation
Dual-In-Line Small Outline
Operating VCC Range Lead Temperature (Soldering 10 sec ) b65 C to a150 C 18V
700 m W 500 m W 3V to 15V
260 C
DC Electrical Characteristics Min Max limits apply across temperature range unless otherwise noted
Symbol
Parameter
Conditions
Min Typ Max Units
CMOS TO...