ON Semiconductor FIN1108MTD: High-Speed Differential Receiver
The FIN1108MTD from ON Semiconductor is a quint (5-bit) differential line receiver designed for applications requiring ultra low power dissipation, low noise, and high data rates. This product is part of ON Semiconductor's high-performance line of interface solutions and is particularly suited for high-speed signal processing tasks in telecommunications, networking, and data communications.
Key Features
- High Data Rates: Supports signaling rates up to 1 Gbps, enabling high-speed data transmission for advanced applications.
- Low Power Consumption: Designed for energy efficiency, it helps in reducing power dissipation in high-performance systems.
- Flow-Through Pinout: Simplifies PCB layout by facilitating a straight-line signal path, which minimizes signal skew and crosstalk.
- Hot-Swapping Capability: Allows the addition or removal of devices without the need to power down the system, enhancing system flexibility and uptime.
- Enhanced Signal Integrity: Incorporates differential signaling to reduce electromagnetic interference (EMI) and improve noise immunity.
Applications
The FIN1108MTD is ideal for a variety of high-speed data transfer applications, including:
- Gigabit Ethernet
- Fibre Channel
- Backplane data transmission
- Cellular base stations
- Switch-to-switch interfaces
Quality and Reliability
ON Semiconductor is known for its commitment to quality, and the FIN1108MTD is no exception. Manufactured using advanced techniques, this differential receiver is designed for robust performance in demanding environments. It is available in a compact TSSOP-16 package, making it suitable for space-constrained applications.
Technical Specifications
| Parameter |
Value |
| Signaling Rate |
Up to 1 Gbps |
| Power Supply |
3.3V ±0.3V |
| Package |
TSSOP-16 |
| Operating Temperature |
-40°C to +85°C |
For detailed product specifications, technical documents, and application support, visit ON Semiconductor's official website or contact their customer support team.