Download DS25BR110 Datasheet PDF
National Semiconductor
DS25BR110
DS25BR110 is 3.125 Gbps LVDS Buffer manufactured by National Semiconductor.
Description The DS25BR110 is a single channel 3.125 Gbps LVDS buffer optimized for high-speed signal transmission over lossy FR-4 printed circuit board backplanes and balanced metallic cables. A fully differential signal path ensures exceptional signal integrity and noise immunity. The DS25BR110 features four levels of receive equalization (EQ), making it ideal for use as a receiver device. Other LVDS devices with similar IO characteristics include the following products. The DS25BR120 features four levels of pre-emphasis for use as an optimized driver device, while the DS25BR100 features both pre-emphasis and equalization for use as an optimized repeater device. The DS25BR150 is a buffer/repeater with the lowest power consumption and does not feature transmit pre-emphasis nor receive equalization. Wide input mon mode range allows the receiver to accept signals with LVDS, CML and LVPECL levels; the output levels are LVDS. A very small package footprint requires minimal space on the board while the flow-through pinout allows easy board layout. The differential inputs and outputs are internally terminated with a 100Ω resistor to lower device input and output return losses, reduce ponent count, and further minimize board space. Features - DC - 3.125 Gbps low jitter, high noise immunity, low power operation - Four levels of receive equalization reduce ISI jitter - On-chip 100Ω input and output termination minimizes insertion and return losses, reduces ponent count and minimizes board space - 7 k V ESD on LVDS I/O pins protects adjoining ponents - Small 3 mm x 3 mm 8-LLP space saving package Applications - Clock and data buffering - Metallic cable equalization - FR-4 equalization Typical Application © 2007 National Semiconductor Corporation .national. Block Diagram Pin Diagram Pin Descriptions Pin Name EQ0 IN+ INEQ1 NC OUTOUT+ VCC GND Pin Name 1 2 3 4 5 6 7 8 DAP Pin Type Input Input Input Input NA Output Output...