Texas Instruments
CY74FCT827ATSOC
CY74FCT827ATSOC
Regular price
$0.36 USD
Regular price
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$0.36 USD
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CY74FCT827ATSOC Texas Instruments - Yeehing Electronics
10-ch, 4.75-V to 5.25-V buffers with TTL-compatible CMOS inputs and 3-state outputs
Pricing (USD)
| Quantity | Unit Price |
| 1 — 99 | 1.158 |
| 100 — 249 | 0.956 |
| 250 — 999 | 0.687 |
| 1,000 + | 0.36 |
The above prices are for reference only.
Specifications
| Manufacturer | Texas Instruments |
| Product Category | Buffers & Line Drivers |
| RoHS | Y |
| Number of Input Lines | 10 Input |
| Number of Output Lines | 10 Output |
| Polarity | Non-Inverting |
| Supply Voltage - Max | 5.25 V |
| Supply Voltage - Min | 4.75 V |
| Minimum Operating Temperature | - 40 C |
| Maximum Operating Temperature | + 85 C |
| Mounting Style | SMD/SMT |
| Package / Case | SOIC-24 |
| Packaging | Reel |
| Function | Buffer/Line Driver |
| Height | 2.35 mm |
| Length | 15.4 mm |
| Operating Temperature Range | - 40 C to + 85 C |
| Output Type | 3-State |
| Series | CY74FCT827T |
| Technology | CMOS |
| Width | 7.52 mm |
| Brand | Texas Instruments |
| Logic Family | FCT |
| Logic Type | CMOS |
| Number of Channels | 10 |
| High Level Output Current | - 32 mA |
| Input Signal Type | Single-Ended |
| Low Level Output Current | 64 mA |
| Operating Supply Voltage | 4.75 V to 5.25 V |
| Product Type | Buffers & Line Drivers |
| Propagation Delay Time | 15 ns at 5 V |
| Factory Pack Quantity | 2000 |
| Subcategory | Logic ICs |
| Unit Weight | 0.022025 oz |
For more information, please refer to datasheet
Documents
| CY74FCT827ATSOC Datasheet |
More Information
The x92FCT827T devices are 10-bit bus drivers that provide high-performance bus-interface buffering for wide data/address paths or buses carrying parity. The 10-bit buffers have NANDed output enables for maximum control flexibility. The x92FCT827T devices are designed for high-capacitance-load drive capability, while providing low-capacitance bus loading at both inputs and outputs. All outputs are designed for low-capacitance bus loading in the high-impedance state.
