Parameters |
Lifecycle Status |
ACTIVE (Last Updated: 5 days ago) |
Mount |
Through Hole |
Package / Case |
CDIP |
Number of Pins |
14 |
Packaging |
Rail/Tube |
Number of Terminations |
14 |
ECCN Code |
EAR99 |
Max Operating Temperature |
125°C |
Min Operating Temperature |
-55°C |
Technology |
TTL |
Terminal Position |
DUAL |
Number of Functions |
1 |
Supply Voltage |
5V |
Terminal Pitch |
2.54mm |
Output Type |
TTL |
Operating Supply Voltage |
5V |
Number of Elements |
1 |
Power Supplies |
5V |
Temperature Grade |
MILITARY |
Max Supply Voltage |
5.5V |
Min Supply Voltage |
4.5V |
Number of Bits |
8 |
Propagation Delay |
40 ns |
Family |
LS |
Logic Function |
Shift Register |
Direction |
Unidirectional |
Output Polarity |
COMPLEMENTARY |
Logic IC Type |
SERIAL IN SERIAL OUT |
Trigger Type |
POSITIVE EDGE |
Power Supply Current-Max (ICC) |
20mA |
Height |
5.08mm |
Length |
19.56mm |
Width |
6.67mm |
Thickness |
4.57mm |
Radiation Hardening |
No |
RoHS Status |
RoHS Compliant |
Lead Free |
Contains Lead |
SN54LS91J Overview
In package CDIP, there is an embedded device. 14 is the total number of terminations on the chip. Presented in a case of Rail/Tube. 5V is the part's operating supply voltage. It is a part that has 1 elements on it. It has 14 pins. Through Hole is recommended for mounting. An electronic component is included in the LS. In terms of supply voltage, this chip operates within the range of 5V. The device is capable of delivering voltage at 5V. IC chips contain a total of 8 bits. The product should be used at temperatures below 125°C. In order to operate the device, the value should not fall below -55°C. A voltage of this type is employed under 5.5V. It is necessary to use a voltage that is higher than 4.5V to provide this supply.
SN54LS91J Features
With 14 pins
Operate supply voltage at 5V
It supplies 5V power
SN54LS91J Applications
There are a lot of Texas Instruments SN54LS91J Shift Registers applications.
- ROM Chips
- Counter
- Pattern Recognizers
- LED matrix control
- Generate time delay toward digital circuits
- Dual-rank shift, hold, and bus applications
- data transfer
- Cache memory in CPU
- data manipulation
- Serial to parallel converter