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AD9779 Datasheet

AD9779 Datasheet

Dual 16-Bit, 1 GSPS, Digital-to-Analog Converter
Part No.: AD9779
Page: 56 Pages
Size: 1206 KB
Manufacturer: Analog Devices, Inc.
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Views: 1
Update Time: 2025-01-06 15:21:54
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AD9779 Datasheet Applicable Part

Part No. Packing SPQ Marking MSL Pins Temp Range Package Description Buy
AD9779BSVZ Tray 90 9779BSVZ 3 100 -40°C ~ 85°C 100-Lead TQFP (14mm x 14mm)  
AD9779BSVZRL Reel 1000 9779BSVZ 3 100 -40°C ~ 85°C 100-Lead TQFP (14mm x 14mm)  
SPQ:Standard Pack Quantity;MSL:Moisture Sensitivity Level

AD9779 Datasheet(PDF)

AD9779 Datasheet(Picture)

AD9779 Features

  • Low power: 1.0 W @ 1 GSPS, 600 mW @ 500 MSPS, full operating conditions
  • SFDR = 78 dBc to fOUT = 100 MHz
  • Single carrier WCDMA ACLR = 79 dBc @ 80 MHz IF
  • Analog output: adjustable 8.7 mA to 31.7 mA, RL = 25 Ω to 50 Ω
  • Novel 2×, 4×, and 8× interpolator/coarse complex modulator allows carrier placement anywhere in DAC bandwidth
  • Auxiliary DACs allow control of external VGA and offset control
  • Multiple chip synchronization interface
  • High performance, low noise PLL clock multiplier
  • Digital inverse sinc filter
  • 100-lead, exposed paddle TQFP package

AD9779 Applications

  • Wireless infrastructure
    WCDMA, CDMA2000, TD-SCDMA, WiMax, GSM
  • Digital high or low IF synthesis
  • Internal digital upconversion capability
  • Transmit diversity
  • Wideband communications: LMDS/MMDS, point-to-point

AD9779 Description

The AD9779 are dual, 16-bit, high dynamic range, digital-to-analog converters (DACs) that provide a sample rate of 1 GSPS, permitting multicarrier generation up to the Nyquist frequency. They include features optimized for direct conversion transmit applications, including complex digital modulation, and gain and offset compensation. The DAC outputs are optimized to interface seamlessly with analog quad-rature modulators such as the AD8349. A serial peripheral interface (SPI®) provides for programming/readback of many internal parameters. Full-scale output current can be programmed over a range of 10 mA to 30 mA. The devices are manufactured on an advanced 0.18 μm CMOS process and operate on 1.8 V and 3.3 V supplies for a total power consumption of 1.0 W. They are enclosed in 100-lead TQFP packages.

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