The MAX3283EAUT/GG8 has a total of 6 pins arranged as follows:
```
| | --| VCC GND |-- Pin 1: Power Supply --| A B |-- Pin 2: Differential Input A --| Y Z |-- Pin 3: Differential Output Y --| /RE DE |-- Pin 4: Receiver Enable/Input Disable --| RO DI |-- Pin 5: Receiver Output/Input --| RE DE |-- Pin 6: Driver Enable |___________| ```
Advantages: - High-speed data transmission capability - Low power consumption - Small package size for space-constrained applications - Flexible control options for receiver input and driver output
Disadvantages: - Limited operating temperature range (-40°C to +85°C) - Relatively small quantity per reel (3000 pieces)
The MAX3283EAUT/GG8 operates by receiving differential input signals on pins A and B. The received signals are processed and amplified, and the resulting differential output is provided on pins Y and Z. The receiver can be enabled or disabled using the /RE pin, while the driver can be enabled or disabled using the DE pin. This allows for efficient control of the signal flow in the system.
The MAX3283EAUT/GG8 is suitable for various high-speed communication applications, including:
These alternative models offer similar functionality and can be considered as alternatives to the MAX3283EAUT/GG8.
Word count: 408 words
What is the operating voltage range of MAX3283EAUT/GG8?
What is the maximum data rate supported by MAX3283EAUT/GG8?
Can MAX3283EAUT/GG8 be used in industrial applications?
What is the typical supply current of MAX3283EAUT/GG8?
Does MAX3283EAUT/GG8 have built-in ESD protection?
Is MAX3283EAUT/GG8 compatible with half-duplex communication?
What is the temperature range for operation of MAX3283EAUT/GG8?
Does MAX3283EAUT/GG8 require external components for operation?
Can MAX3283EAUT/GG8 be used in automotive applications?
What is the package type of MAX3283EAUT/GG8?