Produktdetails

Resolution (Bits) 16 Number of DAC channels 2 Interface type Parallel CMOS Sample/update rate (Msps) 800 Features High Performance Rating Catalog Interpolation 1x, 2x, 4x, 8x Power consumption (typ) (mW) 1750 SFDR (dB) 83 Architecture Current Sink Operating temperature range (°C) -40 to 85 Reference type Int
Resolution (Bits) 16 Number of DAC channels 2 Interface type Parallel CMOS Sample/update rate (Msps) 800 Features High Performance Rating Catalog Interpolation 1x, 2x, 4x, 8x Power consumption (typ) (mW) 1750 SFDR (dB) 83 Architecture Current Sink Operating temperature range (°C) -40 to 85 Reference type Int
VQFN (RGC) 64 81 mm² 9 x 9
  • Dual, 16-Bit, 800 MSPS DACs
  • Dual, 16-Bit, 250 MSPS CMOS Input Data
    • 16 Sample Input FIFO
    • Flexible Input Data Bus Options
  • High Performance
    • 81 dBc ACLR WCDMA TM1 at 70 MHz
  • Selectable 2x–8x Interpolation Filters
    • Stop-band Attenuation > 80 dB
  • Complex Mixer with 32-Bit NCO
  • Digital Quadrature Modulator Correction
    • Gain, Phase and Offset Correction
  • Digital Inverse SINC Filter
  • 3- or 4-Wire Serial Control Interface
  • On Chip 1.2-V Reference
  • Differential Scalable Output: 2 to 20 mA
  • Package: 64-pin 9×9mm QFN
  • APPLICATIONS
    • Cellular Base Stations
    • Broadband Wireless Access (BWA)
    • WiMAX 802.16
    • Fixed Wireless Backhaul
    • Cable Modem Termination System (CMTS)

  • Dual, 16-Bit, 800 MSPS DACs
  • Dual, 16-Bit, 250 MSPS CMOS Input Data
    • 16 Sample Input FIFO
    • Flexible Input Data Bus Options
  • High Performance
    • 81 dBc ACLR WCDMA TM1 at 70 MHz
  • Selectable 2x–8x Interpolation Filters
    • Stop-band Attenuation > 80 dB
  • Complex Mixer with 32-Bit NCO
  • Digital Quadrature Modulator Correction
    • Gain, Phase and Offset Correction
  • Digital Inverse SINC Filter
  • 3- or 4-Wire Serial Control Interface
  • On Chip 1.2-V Reference
  • Differential Scalable Output: 2 to 20 mA
  • Package: 64-pin 9×9mm QFN
  • APPLICATIONS
    • Cellular Base Stations
    • Broadband Wireless Access (BWA)
    • WiMAX 802.16
    • Fixed Wireless Backhaul
    • Cable Modem Termination System (CMTS)

The DAC5689 is a dual-channel 16-bit 800 MSPS digital-to-analog converter (DAC) with dual CMOS digital data bus, integrated 2x-8x interpolation filters, a fine frequency mixer with 32-bit complex numerically controlled oscillator (NCO), IQ compensation, and internal voltage reference. Different modes of operation enable or bypass various signal processing blocks. The DAC5689 offers superior linearity, noise and crosstalk performance.

The DAC5689 dual CMOS data bus provides 250 MSPS input data transfer per DAC channel. Several input data options are available: dual-bus data, single-bus interleaved data, even and odd multiplexing at half-rate, and an input FIFO with either external or internal clock to ease interface timing. Input data can be interpolated 2x, 4x or 8x by on-board digital interpolating FIR filters with over 80 dB of stop-band attenuation.

The DAC5689 allows both complex or real output. An optional 32-bit NCO/mixer in complex mode provides frequency upconversion and the dual DAC output produces a complex Hilbert Transform pair. A digital Inverse SINC filter compensates for the natural DAC sin(x)/x frequency roll-off. The digital Quadrature Modulator Correction (QMC) feature allows IQ compensation of phase, gain and offset to maximize sideband rejection and minimize LO feed-through of an external quadrature modulator performing the final single sideband RF up-conversion.

The DAC5689 is pin upgradeable to the DAC5688 which includes a clock multiplying PLL. The DAC5689 is characterized for operation over the industrial temperature range of –40°C to 85°C and is available in a 64-pin 9×9mm QFN package.

The DAC5689 is a dual-channel 16-bit 800 MSPS digital-to-analog converter (DAC) with dual CMOS digital data bus, integrated 2x-8x interpolation filters, a fine frequency mixer with 32-bit complex numerically controlled oscillator (NCO), IQ compensation, and internal voltage reference. Different modes of operation enable or bypass various signal processing blocks. The DAC5689 offers superior linearity, noise and crosstalk performance.

The DAC5689 dual CMOS data bus provides 250 MSPS input data transfer per DAC channel. Several input data options are available: dual-bus data, single-bus interleaved data, even and odd multiplexing at half-rate, and an input FIFO with either external or internal clock to ease interface timing. Input data can be interpolated 2x, 4x or 8x by on-board digital interpolating FIR filters with over 80 dB of stop-band attenuation.

The DAC5689 allows both complex or real output. An optional 32-bit NCO/mixer in complex mode provides frequency upconversion and the dual DAC output produces a complex Hilbert Transform pair. A digital Inverse SINC filter compensates for the natural DAC sin(x)/x frequency roll-off. The digital Quadrature Modulator Correction (QMC) feature allows IQ compensation of phase, gain and offset to maximize sideband rejection and minimize LO feed-through of an external quadrature modulator performing the final single sideband RF up-conversion.

The DAC5689 is pin upgradeable to the DAC5688 which includes a clock multiplying PLL. The DAC5689 is characterized for operation over the industrial temperature range of –40°C to 85°C and is available in a 64-pin 9×9mm QFN package.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet 16-Bit, 800 MSPS 2x–8x Interpolating Dual-Channel Digital-to-Analog Converter datasheet (Rev. A) 20 Aug 2010
Application note High Speed, Digital-to-Analog Converters Basics (Rev. A) 23 Okt 2012
EVM User's guide DAC5668/88/89 EVM (Rev. A) 19 Mär 2010

Design und Entwicklung

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Evaluierungsplatine

DAC5688EVM — DAC5688-Evaluierungsmodul

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