ADS58C28
- Maximum Sample Rate: 200MSPS
- High Dynamic Performance:
- 83dBc SFDR at 140MHz
- 72.5dBFS SNR with 60MHz BW Using SNRBoost3G Technology
- SNRBoost3G Highlights:
- Supports Wide Bandwidth (up to 60MHz)
- Programmable Bandwidths:
20MHz, 30MHz, and 40MHz - Flat Noise Floor within the Band
- Independent SNRBoost3G Coefficients for Both Channels
- Output Interface:
- Double Data Rate (DDR) LVDS with Programmable Swing and Strength:
- Standard Swing: 350mV
- Low Swing: 200mV
- Default Strength: 100Ω termination
- 2× Strength: 50Ω termination
- Compatible with GC6016
- 1.8V Parallel CMOS Interface Also Supported
- Double Data Rate (DDR) LVDS with Programmable Swing and Strength:
- Ultralow Power with Single 1.8V Supply:
- 470mW Total Power
- 710mW Total Power (200MSPS) with SNRBoost3G on Both Channels
- Programmable Gain up to 6dB for
SNR/SFDR Trade-off - DC Offset Correction
- Supports Low Input Clock Amplitude
- Package: QFN-64 (9mm × 9mm)
PowerPAD is a trademark of Texas Instruments Incorporated.
All other trademarks are the property of their respective owners
The ADS58C28 is a dual-channel, 11-bit analog-to-digital converter (ADC) with sampling rates up to 200MSPS. The device uses innovative design techniques to achieve high dynamic performance, while consuming extremely low power at 1.8V supply. This architecture makes it well-suited for multi-carrier, wide bandwidth communications applications.
The ADS58C28 uses third-generation SNRBoost3G technology to overcome SNR limitation as a result of quantization noise (for bandwidths less than Nyquist, fS/2). Enhancements in the SNRBoost3G technology allow support for SNR improvements over wide bandwidths (up to 60MHz). In addition, separate SNRBoost3G coefficients can also be programmed for each channel.
The device has a digital gain function that can be used to improve SFDR performance at lower full-scale input ranges. It includes a dc offset correction loop that can be used to cancel the ADC offset. The digital outputs of all channels are output as double data rate (DDR) low-voltage differential signaling (LVDS) together with an LVDS clock output. The low data rate of this interface (400MBPS at 200MSPS sample rate) makes it possible to use low-cost field-programmable gate array (FPGA)-based receivers. The strength of the LVDS output buffers can be increased to support 50Ω differential termination. This increase allows the output clock signal to be connected to two separate receiver chips with an effective 50Ω termination (such as the two clock ports of the GC5330). The same digital output pins can also be configured as a parallel 1.8V CMOS interface.
The device includes internal references while the traditional reference pins and associated decoupling capacitors have been eliminated. The ADS58C28 is specified over the industrial temperature range (–40°C to +85°C).
技术文档
| 顶层文档 | 类型 | 标题 | 格式选项 | 下载最新的英语版本 | 日期 | |
|---|---|---|---|---|---|---|
| * | 数据表 | Dual Channel IF Receiver with SNRBoost3G 数据表 (Rev. B) | 2010-10-29 | |||
| 应用手册 | Band-Pass Filter Design Techniques for High-Speed ADCs | 2012-2-27 | ||||
| 应用手册 | High-Speed, Analog-to-Digital Converter Basics | 2012-1-11 | ||||
| 应用手册 | Power Supply Design for the ADS41xx (Rev. A) | 2011-12-29 | ||||
| 应用手册 | Understanding Low-Amplitude Behavior of 11-bit ADCs | 2011-10-22 | ||||
| 应用手册 | Driving High-Speed ADCs: Circuit Topologies and System-Level Parameters (Rev. A) | 2010-9-10 | ||||
| 应用手册 | Using Windowing With SNRBoost 3G Technology | 2010-8-30 | ||||
| 应用手册 | Smart Selection of ADC/DAC Enables Better Design of Software-Defined Radio | 2009-4-28 | ||||
| 应用手册 | CDCE62005 as Clock Solution for High-Speed ADCs | 2008-9-4 | ||||
| 应用手册 | CDCE72010 as a Clocking Solution for High-Speed Analog-to-Digital Converters | 2008-6-8 | ||||
| 应用手册 | Phase Noise Performance and Jitter Cleaning Ability of CDCE72010 | 2008-6-2 | ||||
| 应用手册 | QFN Layout Guidelines | 2006-7-28 |
设计与开发
如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。
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| 封装 | 引脚 | CAD 符号、封装和 3D 模型 |
|---|---|---|
| VQFN (RGC) | 64 | Ultra Librarian |