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DS90C363B

DS90C363B Series

+3.3V Programmable LVDS Transmitter 18-Bit Flat Panel Display (FPD) Link - 65MHz

Manufacturer: Texas Instruments

Catalog

+3.3V Programmable LVDS Transmitter 18-Bit Flat Panel Display (FPD) Link - 65MHz

Key Features

No special start-up sequence required between clock/data and /PD pins. Input signal (clock and data) can be applied either before or after the device is powered.Support Spread Spectrum Clocking up to 100kHz frequency modulation and deviations of ±2.5% center spread or −5% down spread."Input Clock Detection" feature will pull all LVDS pairs to logic low when input clock is missing and when /PD pin is logic high.18 to 68 MHz shift clock supportBest–in–Class Set & Hold Times on TxINPUTsTx power consumption < 130 mW (typ) at 65MHz Grayscale40% Less Power Dissipation than BiCMOS AlternativesTx Power-down mode < 37μW (typ)Supports VGA, SVGA, XGA and Dual Pixel SXGA.Narrow bus reduces cable size and costUp to 1.3 Gbps throughputUp to 170 Megabytes/sec bandwidth345 mV (typ) swing LVDS devices for low EMIPLL requires no external componentsCompatible with TIA/EIA-644 LVDS standardLow profile 48-lead TSSOP packageImproved replacement for:SN75LVDS84, DS90C363AAll trademarks are the property of their respective owners. TRI-STATE is a trademark of Texas Instruments. TRI-STATE is a trademark of Texas Instruments.No special start-up sequence required between clock/data and /PD pins. Input signal (clock and data) can be applied either before or after the device is powered.Support Spread Spectrum Clocking up to 100kHz frequency modulation and deviations of ±2.5% center spread or −5% down spread."Input Clock Detection" feature will pull all LVDS pairs to logic low when input clock is missing and when /PD pin is logic high.18 to 68 MHz shift clock supportBest–in–Class Set & Hold Times on TxINPUTsTx power consumption < 130 mW (typ) at 65MHz Grayscale40% Less Power Dissipation than BiCMOS AlternativesTx Power-down mode < 37μW (typ)Supports VGA, SVGA, XGA and Dual Pixel SXGA.Narrow bus reduces cable size and costUp to 1.3 Gbps throughputUp to 170 Megabytes/sec bandwidth345 mV (typ) swing LVDS devices for low EMIPLL requires no external componentsCompatible with TIA/EIA-644 LVDS standardLow profile 48-lead TSSOP packageImproved replacement for:SN75LVDS84, DS90C363AAll trademarks are the property of their respective owners. TRI-STATE is a trademark of Texas Instruments. TRI-STATE is a trademark of Texas Instruments.

Description

AI
The DS90C363B transmitter converts 21 bits of CMOS/TTL data into three LVDS (Low Voltage Differential Signaling) data streams. A phase-locked transmit clock is transmitted in parallel with the data streams over a fourth LVDS link. Every cycle of the transmit clock 21 bits of input data are sampled and transmitted. At a transmit clock frequency of 65 MHz, 18 bits of RGB data and 3 bits of LCD timing and control data (FPLINE, FPFRAME, DRDY) are transmitted at a rate of 455 Mbps per LVDS data channel. Using a 65 MHz clock, the data throughput is 170 Mbytes/sec. The DS90C363B transmitter can be programmed for Rising edge strobe or Falling edge strobe through a dedicated pin. A Rising edge or Falling edge strobe transmitter will interoperate with a Falling edge strobe Receiver (DS90CF366) without any translation logic. This chipset is an ideal means to solve EMI and cable size problems associated with wide, high speed TTL interfaces. The DS90C363B transmitter converts 21 bits of CMOS/TTL data into three LVDS (Low Voltage Differential Signaling) data streams. A phase-locked transmit clock is transmitted in parallel with the data streams over a fourth LVDS link. Every cycle of the transmit clock 21 bits of input data are sampled and transmitted. At a transmit clock frequency of 65 MHz, 18 bits of RGB data and 3 bits of LCD timing and control data (FPLINE, FPFRAME, DRDY) are transmitted at a rate of 455 Mbps per LVDS data channel. Using a 65 MHz clock, the data throughput is 170 Mbytes/sec. The DS90C363B transmitter can be programmed for Rising edge strobe or Falling edge strobe through a dedicated pin. A Rising edge or Falling edge strobe transmitter will interoperate with a Falling edge strobe Receiver (DS90CF366) without any translation logic. This chipset is an ideal means to solve EMI and cable size problems associated with wide, high speed TTL interfaces.