Texas Instruments
SN74ALS158NSR
SN74ALS158NSR
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$1.22 USD
Regular price
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$1.22 USD
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SN74ALS158NSR Texas Instruments - Yeehing Electronics
Quadruple 1-of-2 Data Selectors/Multiplexers
Pricing (USD)
| Quantity | Unit Price |
| 1 — 99 | 3.533 |
| 100 — 249 | 3.096 |
| 250 — 999 | 2.171 |
| 1,000 + | 1.22 |
The above prices are for reference only.
Specifications
| Manufacturer | Texas Instruments |
| Product Category | Encoders, Decoders, Multiplexers & Demultiplexers |
| RoHS | Y |
| Product | Selectors / Multiplexers |
| Logic Family | ALS |
| Number of Bits | 4 bit |
| Number of Input Lines | 2 Input |
| Number of Output Lines | 1 Output |
| Propagation Delay Time | 14 ns |
| Supply Voltage - Min | 4.5 V |
| Supply Voltage - Max | 5.5 V |
| Minimum Operating Temperature | 0 C |
| Maximum Operating Temperature | + 70 C |
| Mounting Style | SMD/SMT |
| Package / Case | SO-16 |
| Packaging | Reel |
| Function | Quad 1 to 2 |
| Height | 1.95 mm |
| Input Voltage | 2.0 V to 0.8 V |
| Length | 10.3 mm |
| Number of Circuits | Quad |
| Operating Temperature Range | 0 C to + 70 C |
| Output Current | 8 mA |
| Output Voltage | 4.5 V to 5.5 V |
| Series | SN74ALS158 |
| Technology | Bipolar |
| Width | 5.3 mm |
| Brand | Texas Instruments |
| Logic Type | Data Selectors/Multiplexers |
| High Level Output Current | - 0.4 mA |
| Low Level Output Current | 8 mA |
| Maximum Clock Frequency | 75 MHz |
| Operating Supply Voltage | 5 V |
| Product Type | Encoders, Decoders, Multiplexers & Demultiplexers |
| Factory Pack Quantity | 2000 |
| Subcategory | Logic ICs |
| Unit Weight | 0.007079 oz |
For more information, please refer to datasheet
Documents
| SN74ALS158NSR Datasheet |
More Information
These data selectors/multiplexers contain inverters and drivers to supply full data selection to the four output gates. A separate strobe (G) input is provided. A 4-bit word is selected from one of two sources and is routed to the four outputs. The ´ALS157A and SN74AS157 present true data. The ´ALS158 and SN74AS158 present inverted data to minimize propagation delay time.
