Download DS90CF386 Datasheet PDF
National Semiconductor
DS90CF386
DS90CF386 is +3.3V LVDS Receiver manufactured by National Semiconductor.
Description The DS90CF386 receiver converts the four LVDS data streams (Up to 2.38 Gbps throughput or 297.5 Megabytes/ sec bandwidth) back into parallel 28 bits of CMOS/TTL data (24 bits of RGB and 4 bits of Hsync, Vsync, DE and CNTL). Also available is the DS90CF366 that converts the three LVDS data streams (Up to 1.78 Gbps throughput or 223 Megabytes/sec bandwidth) back into parallel 21 bits of CMOS/TTL data (18 bits of RGB and 3 bits of Hsync, Vsync and DE). Both Receivers’ outputs are Falling edge strobe. A Rising edge or Falling edge strobe transmitter (DS90C385/ DS90C365) will interoperate with a Falling edge strobe Receiver without any translation logic. This chipset is an ideal means to solve EMI and cable size problems associated with wide, high speed TTL interfaces. Features n 20 to 85 MHz shift clock support n Rx power consumption < 142 m W (typ) @85MHz Grayscale n Rx Power-down mode < 1.44 m W (max) n ESD rating > 7 k V (HBM), > 700V (EIAJ) n Supports VGA, SVGA, XGA and Single Pixel SXGA. n PLL requires no external ponents n patible with TIA/EIA-644 LVDS standard n Low profile 56-lead or 48-lead TSSOP package Block Diagrams DS90CF386 DS90CF366 DS101085-27 DS101085-28 Order Number DS90CF386MTD See NS Package Number MTD56 Order Number DS90CF366MTD See NS Package Number MTD48 TRI-STATE ® is a registered trademark of National Semiconductor Corporation. © 1999 National Semiconductor Corporation DS101085 .national. Absolute Maximum Ratings (Note 1) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage (VCC) CMOS/TTL Output Voltage LVDS Receiver Input Voltage Junction Temperature Storage Temperature Lead Temperature (Soldering, 4 sec) Maximum Package Power Dissipation Capacity @ 25˚C MTD56 (TSSOP) Package: DS90CF386 MTD48 (TSSOP) Package: DS90CF366 - 0.3V to +4V - 0.3V to (VCC + 0.3V) - 0.3V to (VCC + 0.3V) +150˚C - 65˚C to +150˚C...