Details
BUY 74FCT244CTP https://www.utsource.net/itm/p/1757937.html
IC LOGIC 2245 OCTAL BI-DIRECTIONAL TRANSCEIVER 5V -40+85C QSOP-20 55/TUBE
| Parameter | Description | Value |
|---|---|---|
| Part Number | Component Identifier | 74FCT244CTP |
| Function | Octal Buffer/Line Driver with Three-State Outputs | |
| Supply Voltage (VCC) | Operating Voltage Range | 2.0V to 5.5V |
| Output Type | Output Configuration | Three-State |
| Input Type | Input Configuration | Standard |
| Propagation Delay Time | Maximum Propagation Delay | 3.5 ns (typical at VCC = 3.3V) |
| Operating Temperature | Temperature Range | -40掳C to +85掳C |
| Package Type | Enclosure Type | TSSOP (Thin Shrink Small Outline Package) |
| Pin Count | Number of Pins | 20 |
| Manufacturer | Manufacturer | Texas Instruments |
Instructions for Use:
Power Supply Connection:
- Connect the VCC pin to the positive supply voltage (between 2.0V and 5.5V).
- Connect the GND pin to the ground.
Signal Inputs:
- Apply input signals to the data input pins (A1-A8). Ensure that the input voltage levels are within the specified range for the given VCC.
Enable Control:
- Use the output enable (OE) pin to control the three-state outputs. A low signal on OE enables the outputs, while a high signal places them in a high-impedance state.
Output Connections:
- Connect the output pins (Y1-Y8) to the desired load or next stage circuitry. When OE is low, the outputs will reflect the state of the inputs; otherwise, they will be in a high-impedance state.
Handling Static Electricity:
- Handle the device with care to avoid damage from static electricity. Use appropriate ESD protection measures during installation.
Mounting and Soldering:
- Ensure proper mounting and soldering techniques are used to prevent thermal and mechanical stress on the package. Follow the manufacturer's guidelines for soldering temperature and duration.
Testing:
- After installation, verify the functionality by applying test signals to the inputs and monitoring the outputs. Confirm that the outputs correctly follow the inputs when enabled and remain in high-impedance state when disabled.
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