AD9635 Dual, 12-Bit, 80 MSPS/125 MSPS Serial LVDS 1.8 V Analog-to-Digital Converter

The AD9635 is a dual, 12-bit, 80 MSPS/125 MSPS analog-to- digital converter (ADC) with an on-chip sample-and-hold circuit designed for low cost, low power, small size, and ease of use. The product operates at a conversion rate of up to 125 MSPS and is optimized for outstanding dynamic performance and low power in applications where a small package size is critical. Small Footprint. Two ADCs are contained in a small, spacesaving package. Low Power. The AD9635 uses 115 mW/channel at 125 MSPS with scalable power options. Pin Compatibility with the AD9645, a 14-Bit Dual ADC. Ease of Use. A data clock output (DCO) operates at frequencies of up to 500 MHz and supports double data rate (DDR) operation. User Flexibility. The SPI control offers a wide range of flexible features to meet specific system requirements.

The ADC requires a single 1.8 V power supply and LVPECL-/ CMOS-/LVDS-compatible sample rate clock for full performance operation. No external reference or driver components are required for many applications.

The ADC automatically multiplies the sample rate clock for the appropriate LVDS serial data rate. A data clock output (DCO) for capturing data on the output and a frame clock output (FCO) for signaling a new output byte are provided. Individual channel power-down is supported; the AD9635 typically consumes less than 2 mW in the full power-down state. The ADC provides several features designed to maximize flexibility and minimize system cost, such as programmable output clock and data alignment and digital test pattern generation. The available digital test patterns include built-in deterministic and pseudorandom patterns, along with custom user-defined test patterns entered via the serial port interface (SPI).

The AD9635 is available in a RoHS-compliant, 32-lead LFCSP. It is specified over the industrial temperature range of −40°C to +85°C. This product is protected by a U.S. patent.

PRODUCT HIGHLIGHTS
  • Small Footprint. Two ADCs are contained in a small, spacesaving package.
  • Low Power. The AD9635 uses 115 mW/channel at 125 MSPS with scalable power options.
  • Pin Compatibility with the AD9645, a 14-Bit Dual ADC.
  • Ease of Use. A data clock output (DCO) operates at frequencies of up to 500 MHz and supports double data rate (DDR) operation.
  • User Flexibility. The SPI control offers a wide range of flexible features to meet specific system requirements.
APPLICATIONS
  • Communications
  • Diversity radio systems
  • Multimode digital receivers GSM, EDGE, W-CDMA, LTE, CDMA2000, WiMAX, TD-SCDMA
  • I/Q demodulation systems
  • Smart antenna systems
  • Broadband data applications
  • Battery-powered instruments
  • Hand held scope meters
  • Portable medical imaging and ultrasound
  • Radar/LIDAR
Features and Benefits
  • 1.8 V supply operation
  • Low power: 115 mW per channel at 125 MSPS with scalable power options
  • SNR = 71 dBFS (to Nyquist)
  • SFDR = 93 dBc at 70MHz
  • DNL = -0.1 LSB to +0.2 LSB (typical);
    INL = ±0.4 LSB (typical)
  • Serial LVDS (ANSI-644, default) and low power, reduced signal option (similar to IEEE 1596.3)
  • 650 MHz full power analog bandwidth
  • 2 V p-p input voltage range
  • See data sheet for additional features
Analog to Digital Converters
Data Sheets
Documentnote
AD9635: Dual, 12-Bit, 80 MSPS/125 MSPS, Serial LVDS 1.8 V Analog-to-Digital Converter (Rev. B)PDF 1664 kB
Application Notes
Documentnote
AN-878: High Speed ADC SPI Control Software (Rev. A)PDF 585 kB
AN-905: Visual Analog Converter Evaluation Tool Version 1.0 User Manual (Rev. 0)PDF 2124 kB
AN-835: Understanding High Speed ADC Testing and Evaluation (Rev. B)PDF 985 kB
AN-501: Aperture Uncertainty and ADC System Performance (Rev. A)PDF 227 kB
AN-827: A Resonant Approach to Interfacing Amplifiers to Switched-Capacitor ADCs (Rev. 0)PDF 203 kB
AN-935: Designing an ADC Transformer-Coupled Front End (Rev. 0)PDF 363 kB
AN-1142: Techniques for High Speed ADC PCB Layout (Rev. 0)PDF 392 kB
AN-737: How ADIsimADC Models an ADC (Rev. B)PDF 373 kB
User Guides
Documentnote
AD9655/AD9645/AD9635 Evaluation DocumentationWIKI
Order Information
Part NumberPackagePacking QtyTemp RangePrice 100-499Price 1000+RoHS
AD9635BCPZ-125 Production32 ld LFCSP (5x5x.75mm) w/3.6exposed padOTH 490-40 to 85C34.6929.49Y
AD9635BCPZ-80 Production32 ld LFCSP (5x5x.75mm) w/3.6exposed padOTH 490-40 to 85C21.9918.69Y
AD9635BCPZRL7-125 Production32 ld LFCSP (5x5x.75mm) w/3.6exposed padREEL 1500-40 to 85C34.6929.49Y
AD9635BCPZRL7-80 Production32 ld LFCSP (5x5x.75mm) w/3.6exposed padREEL 1500-40 to 85C21.9918.69Y
Evaluation Boards
Part NumberDescriptionPriceRoHS
AD9635-125EBZEvaluation Board300Y
Reference Materials
AD9635: Dual, 12-Bit, 80 MSPS/125 MSPS, Serial LVDS 1.8 V Analog-to-Digital Converter (Rev. B) ad9635
AD9635: 双通道、12位、80 MSPS/125 MSPS串行LVDS 1.8 V模数转换器 (Rev. 0) ad9635
AN-878: High Speed ADC SPI Control Software (Rev. A) ad6655
AN-905: Visual Analog Converter Evaluation Tool Version 1.0 User Manual (Rev. 0) ad9220
AN-835: Understanding High Speed ADC Testing and Evaluation (Rev. B) ad9220
AN-501: Aperture Uncertainty and ADC System Performance (Rev. A) ad9220
AN-827: A Resonant Approach to Interfacing Amplifiers to Switched-Capacitor ADCs (Rev. 0) ad6655
AN-935: Designing an ADC Transformer-Coupled Front End (Rev. 0) ad9220
AN-835: 高速ADC测试和评估 (Rev. 0) ad9510
AN-1142: 高速ADC PCB布局布线技巧 (Rev. 0) ad6655
AN-1142: Techniques for High Speed ADC PCB Layout (Rev. 0) ad6655
AN-878: 高速ADC SPI控制软件[中文版] (Rev. A) ad6655
AN-737: 如何用ADIsimADC完成ADC建模 (Rev. B) ad6642
AN-737: How ADIsimADC Models an ADC (Rev. B) ad9220
AN-827: 放大器与开关电容ADC接口的匹配方法[中文版] (Rev. 0) ad8351
AN-905: VisualAnalog™转换器评估工具1.0版用户手册 (Rev. 0) ad6655
AN-935: ADC变压器耦合前端设计[中文版] (Rev. 0) ad6655
AN-501: 孔径不确定度与ADC系统性能[中文版] (Rev. A) ad9540
MS-2210:高速ADC的电源设计 ad9861