SN74LVC8T245RHLR
Manufacturer Part Number: SN74LVC8T245RHLR | Manufacturer / Brand: Texas Instruments |
Part of Description: SoC FPGA SN74LVC8T245RHLR | Lead Free Status / RoHS Status: |
Ship From: HK/Shen Zhen | Shipment Way: DHL/Fedex/TNT/UPS |
Datasheets: |
Product parameters
Manufacturer | Texas Instruments |
RoHS | Details |
Product Status | Active |
Type | 8-bit Translating Transceiver |
Package / Case | VQFN-24 |
Mounting Style | SMD/SMT |
Series | SN74LVC8T245 |
Packaging | Reel |
Brand | Texas Instruments |
Maximum Operating Temperature | -40C |
Minimum Operating Temperature | +85 C |
Voltage – Supply | 1.65V ~ 5.5V |
Factory Pack Quantity | 1000 |
Moisture Sensitive | Yes |
Supply Voltage – Min | 1.65 V |
Supply Voltage – Max | 5.5V |
Unit Weight | 0.001767oz |
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What is SN74LVC8T245RHLR?
SN: Is commonly used in part numbers from Texas Instruments.
74:Indicates that the device is part of the standard 74 series, which encompasses a wide range of logic ICs.
LVC: Code indicates the specific family of the IC. for Low-Voltage CMOS.
8T245: This is the specific model or part number for the IC.
RHLR: This part of the code specifies the package type .
RH: Package type physical packaging of the IC. The exact details of the package (number of pins, form factor) .
LR: These letters might indicate additional specifications, such as the temperature range or other features.
SN74LVC8T245RHLR Applications:
Used to interface between devices operating at different voltage levels on communication buses such as I2C, SPI, or UART.
Connects microcontrollers to peripherals (e.g., sensors, displays) that operate at different voltage levels.
Enables communication and data transfer in systems where different components operate at distinct voltage levels.
Suitable for use in battery-powered devices, ensuring efficient communication while supporting low-voltage operation for power efficiency.
In portable electronics like smartphones and tablets, it facilitates level shifting between components to ensure proper communication.
Used in industrial control systems where components may operate at different voltage levels, and reliable communication is essential.
Applications in automotive electronics where components may have different voltage requirements, especially in vehicles with mixed-voltage systems.
Applied in systems requiring bidirectional data transfer, such as data communication networks, where different modules operate at varying voltage levels.
In embedded systems, it serves to interface components with different voltage requirements, ensuring seamless communication.
Used in portable medical devices where reliable communication between different subsystems is crucial.
Various applications in consumer electronics, including smart devices, wearables, and multimedia devices.
Used in systems involving instrumentation and measurements, where different sensors and devices need to communicate at varying voltage levels.
Signal Conditioning in Power Electronics.