Overview
Features and Benefits
- 71dB ACLR at fOUT = 61.44MHz (Four-Carrier WCDMA)
- Meets Multicarrier UMTS, cdma2000®, GSM Spectral Masks (fOUT = 122MHz)
- Noise Spectral Density = -158dBFS/Hz at fOUT = 16MHz
- 92dBc SFDR at Low-IF Frequency (10MHz)
- 90dBc SFDR at High-IF Frequency (50MHz)
- Low Power: 511mW (fCLK = 100MHz)
- User Programmable
- Selectable 2x, 4x, or 8x Interpolating Filters
- < 0.01dB Passband Ripple
- > 99dB Stopband Rejection
- Selectable Real or Complex Modulator Operation
- Selectable Modulator LO Frequency: OFF, fIM/2, or fIM/4
- Selectable Output Filter: Lowpass or Highpass
- Channel Gain and Offset Adjustment
- Selectable 2x, 4x, or 8x Interpolating Filters
- EV Kit Available (Order the MAX5895EVKIT)
Product Details
The MAX5895 programmable interpolating, modulating, 500Msps, dual digital-to-analog converter (DAC) offers superior dynamic performance and is optimized for high-performance, wideband single- and multicarrier transmit applications. The device integrates a selectable 2x/4x/8x interpolating filter, a digital quadrature modulator, and dual 16-bit high-speed DACs on a single IC. At 30MHz output frequency and 500Msps update rate, the in-band SFDR is 88dBc while consuming 1.1W. The device also delivers 71dB ACLR for four-carrier WCDMA at a 61.44MHz output frequency.
The selectable interpolating filters allow lower input data rates while taking advantage of the high DAC update rates. These linear-phase interpolation filters ease reconstruction filter requirements and enhance the passband dynamic performance. Individual offset and gain programmability allow the user to calibrate out local oscillator (LO) feedthrough and sideband suppression errors generated by analog quadrature modulators.
The MAX5895 features a fIM/4 digital image-reject modulator. This modulator generates a quadrature-modulated IF signal that can be presented to an analog I/Q modulator to complete the upconversion process. A second digital modulation mode allows the signal to be frequency-translated with image pairs at fIM/2 or fIM/4.
The MAX5895 features a standard 1.8V CMOS, 3.3V tolerant data input bus for easy interface. A 3.3V SPI™ port is provided for mode configuration. The programmable modes include the selection of 2x/4x/8x interpolating filters, fIM/2, fIM/4 or no digital quadrature modulation with image rejection, channel gain and offset adjustment, and offset binary or two's complement data interface.
Pin-compatible 12- and 14-bit devices are also available. Refer to the MAX5894 data sheet for the 14-bit version and the MAX5893 data sheet for the 12-bit version.
See a parametric table of the complete family of pin-compatible 12-/14-/16-bit high-speed DACs.
Applications
- Analog Quadrature Modulation Architectures
- Base Stations: 3G Multicarrier UMTS, CDMA, and GSM
- Broadband Cable Infrastructure
- Broadband Wireless Transmitters
- Instrumentation and Automatic Test Equipment (ATE)
Product Categories
Product Lifecycle
Pre-Release
This product is new and engineering validation may still be underway. Quantities may be limited and design specifications may change while we ready the product for release to production.
Evaluation Kits (6)
Documentation & Resources
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MAX5895 Reliability Data1/12/2023PDF32K
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Folded-Frequency Calculator12/23/2005
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Equalizing Techniques Flatten DAC Frequency Response8/20/2012
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Reduce the Chances of Human Error: Part 2, Super Amps and Filters for Analog Interface3/8/2011
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Setup and Hold Times for High-Speed Digital-to-Analog Converters (DACs) Demystified6/14/2007
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High-Performance RF Modulator Enables Multi-Carrier Communications Transmitters6/20/2005
Tools & Simulations
IBIS Models
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ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal.
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