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Functional Attributes of SN74LVC4245APWRE4
- Octal Bus Transceiver: Facilitates eight channels of bidirectional data transmission.
- Voltage Level Shifting: Enables interface between two voltage domains.
- Individual Direction Control: Allows control over the direction of data flow for each channel.
Typical Usage Scenarios
- Interfacing Between Microcontroller and High-Voltage Peripherals: Ideal for systems where a microcontroller operates at a lower voltage than the connected peripherals.
- Data Transfer in Mixed-Voltage Environments: Suitable for environments with devices operating at different logic levels.
Core Specifications
- Dual Voltage Ranges: Compatible with 1.65V to 5.5V on the A side and 2.3V to 5.5V on the B side.
- Bidirectional Communication: Each channel can transmit data in both directions.
- Energy Efficiency: Designed for minimal power consumption.
Example Circuit: Connecting a 3.3V Microcontroller to 5V Sensors
Design a circuit to interface a 3.3V microcontroller with a series of 5V sensors using the SN74LVC4245APWRE4.
1. Power Supply Connections:
- VCCA for Microcontroller: Connect VCCA (pin 1) to the 3.3V power supply of the microcontroller.
- VCCB for Sensors: Link VCCB (pin 24) to the 5V power supply for the sensors.
2. Microcontroller Interface:
- Microcontroller to Transceiver Connection: Attach the microcontroller's data outputs to A1-A8 (pins 2-9) on the SN74LVC4245APWRE4.
3. Sensor Interface:
- Transceiver to Sensor Connection: Connect B1-B8 (pins 18-25) to the data inputs of the 5V sensors.
4. Direction and Output Control:
- Data Direction Control (DIR): Set the DIR pin (pin 19) based on the required data flow direction.
- Output Enable (OE): Link OE (pin 20) to a low logic level to activate the outputs.
Key Design Considerations
- Matching Voltage Levels: Ensure compatibility between the voltage levels of the microcontroller and sensors with the respective A and B sides of the transceiver.
- Maintaining Signal Integrity: Utilize appropriate PCB layout practices for signal integrity, especially in high-speed data applications.
- Stability of Power Supplies: Ensure that the power supplies for both the 3.3V and 5V sides are stable and regulated.
In this configuration, the SN74LVC4245APWRE4 serves as a crucial interface component, effectively bridging the microcontroller and sensors operating at different voltage levels. This setup is critical in mixed-voltage systems, enabling seamless communication across different voltage domains. Attention to voltage matching, signal integrity, and power supply stability is paramount in such designs for reliable and efficient operation.
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(1)Such as a deficiency in quantity, delivery of wrong items, and apparent external defects (breakage and rust, etc.), and we acknowledge such problems.
(2)We are informed of the defect described above within 90 days after the delivery of SN74LVC4245APWRE4.
(3)The PartNo is unused and only in the original unpacked packaging.
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(1)Inform us within 90 days
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