Manufacturer Part Number
MAX4888BETI+
Manufacturer
Analog Devices
Introduction
The MAX4888BETI+ is an interface analog switch designed for special applications such as PCI Express systems, offering high-speed operation and low on-state resistance.
Product Features and Performance
Supports high-speed PCI Express data switching
Dual DPDT (Double Pole Double Throw) switch configuration
Two independent channels
Low on-state resistance of 8.4Ohm for efficient signal conductance
Wide -3db bandwidth of 8GHz for handling fast signals
Suitable for operating temperatures ranging from -40°C to 85°C
Product Advantages
High signal integrity for PCI Express applications
Robust performance at a wide range of temperatures
Simplifies designs by replacing multiple discrete components
Enables compact PCB layouts due to small 28-WFQFN package
Key Technical Parameters
On-State Resistance (Max): 8.4Ohm
Voltage Supply, Single (V+): 3V to 3.6V
Number of Channels: 2
-3db Bandwidth: 8GHz
Operating Temperature: -40°C to 85°C
Mounting Type: Surface Mount
Package / Case: 28-WFQFN Exposed Pad
Quality and Safety Features
Manufactured to industry standards by Analog Devices, ensuring high-quality and reliability
Compatibility
Specifically designed for PCI Express applications
Compatible with 3V to 3.6V power supplies
Application Areas
High-speed data transmission and switching in computer systems
PCI Express interfaces and related technologies
Product Lifecycle
Product status is active
No indication of discontinuation, with ongoing support and availability
Several Key Reasons to Choose This Product
Enhanced signal integrity vital for high-speed data applications
Low on-state resistance minimizes signal loss and power dissipation
Wide bandwidth capable of supporting the latest high-speed interfaces
Manufactured by leading semiconductor company Analog Devices, ensuring reliability and performance
Suitable for use in commercial and industrial temperature ranges, providing versatility for different operating environments
Compact size assists in achieving smaller and more efficient PCB designs