Texas Instruments SN74HC163NS is a SN74HC163NS from Texas Instruments, part of the Counters / Dividers. It is designed for 上升沿 2V~6V 1 36MHz SO-16 Counters / Dividers ROHS. This product comes in a SO-16 package and is sold as Bag-packed. Key features include:
- Direction: 向上计数器
- Logic Type: Binary Counter
- Trigger Type: 上升沿
- Operating Temperature: -40℃~+85℃
- Timing mode: Synchronous
- Supply Voltage: 2V~6V
- Reset Style: Synchronous
- Number of Elements: 1
- Count Rate: 36MHz
Additional details: This product is environmentally friendly, does not contain a battery, and weighs approximately 1 grams.
More on SN74HC163NS
Full Specifications of SN74HC163NS
Model Number | SN74HC163NS |
Model Name | Texas Instruments SN74HC163NS |
Category | Counters / Dividers |
Brand | Texas Instruments |
Description | 上升沿 2V~6V 1 36MHz SO-16 Counters / Dividers ROHS |
RoHS | Lead free / RoHS Compliant |
Unit | Piece |
Weight: | 1.000 grams / 0.035274 oz |
Package / Case | SO-16 |
Package / Arrange | Bag-packed |
Battery | No |
ECCN | EAR99 |
Direction | 向上计数器 |
Logic Type | Binary Counter |
Trigger Type | 上升沿 |
Operating Temperature | -40℃~+85℃ |
Timing mode | Synchronous |
Supply Voltage | 2V~6V |
Reset Style | Synchronous |
Number of Elements | 1 |
Count Rate | 36MHz |
Compare Texas Instruments - SN74HC163NS With Other 200 Models
Related Models - SN74HC163NS Alternative
- Texas Instruments SN74LS592N
- Texas Instruments CD74ACT161ME4
- Texas Instruments CD4018BPWE4
- Texas Instruments SN74AS161N
- Texas Instruments SN74HC191NG4
- Texas Instruments SN74AS169AN
- Texas Instruments SN74AS867DW
- Texas Instruments SN74AS869DW
- Texas Instruments SN54HC191TDE1
- Texas Instruments CD74HC40103EG4
Other Models You Might Like
Parity Generators & Checkers
|
Digital Comparators
|
Inverters
|
FIFO Memory
|
Monostable Multivibrators
|
Latches
|
Buffer/Driver/Transceiver
|
Gates
|
Counters / Dividers
|
Shifting Register
|
Special Logic ICs
|
Signal Switches / Encoders & Decoders / Multiplexers
|
Flip Flops
|
Translators / Level Shifters
|
Logic ICs