产品详情

Sample rate (max) (Msps) 200 Resolution (Bits) 11 Number of input channels 2 Interface type Parallel CMOS, Parallel LVDS Analog input BW (MHz) 600 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 505 Architecture Pipeline SNR (dB) 66.8 ENOB (Bits) 10.7 SFDR (dB) 84 Operating temperature range (°C) -40 to 85 Input buffer No
Sample rate (max) (Msps) 200 Resolution (Bits) 11 Number of input channels 2 Interface type Parallel CMOS, Parallel LVDS Analog input BW (MHz) 600 Features High Performance Rating Catalog Peak-to-peak input voltage range (V) 2 Power consumption (typ) (mW) 505 Architecture Pipeline SNR (dB) 66.8 ENOB (Bits) 10.7 SFDR (dB) 84 Operating temperature range (°C) -40 to 85 Input buffer No
VQFN (RGC) 64 81 mm² (9 mm × 9 mm)
  • 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
  • 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

  • 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
  • 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).

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).

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评估板

ADS58C28EVM — ADS58C28 双通道 11 位 200MSPS 模数转换器评估模块

ADS58C28EVM 是一款电路板,设计者可将其用于评估德州仪器 (TI) ADS58C28 器件的性能。该器件是一款双通道 11 位 200MSPS 模数转换器,采用了 TI 的 SNRBoost 技术。ADC EVM 具有 DDR LVDS 数据输出,能与 TI 的 TSW1200 数据采集卡兼容,可进行快速评估。该 EVM 提供了可在各种时钟、输入和电源条件下测试 ADS58C28 的灵活环境。

评估模块在转换器的四个输入端均设计了背靠背宽带平衡-非平衡转换器。这使得各种单端输入信号都能输入到 ADC 的任意通道中。ADS58C28EVM 还兼容 FMC-ADC 适配器和 (...)

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评估模块 (EVM) 用 GUI

ADS58C28SPIGUI-SW — ADS42xxx SPI GUI

ADS58C28SPIGUI-SW 是 ADS58C28_ADS42xx_GUI 的安装包,其中 ADS58C28_ADS42xx_GUI 用于通过板载 USB 端口访问或写入 ADS58C28 的内部寄存器。
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评估模块 (EVM) 用 GUI

DATACONVERTERPRO-SW — 高速数据转换器专业 GUI 安装程序,v5.31

该高速数据转换器专业版 GUI 是一款 PC(与 Windows® XP/7/10 兼容)程序,旨在帮助评估大多数 TI 高速数据转换器 [模数转换器 (ADC) 和数模转换器 (DAC)] 和模拟前端 (AFE) 平台。DATACONVERTERPRO-SW 支持整个 TSW14xxx 系列的数据采集和图形生成卡,为分析时域和频域中的数据转换器提供了快速强大的解决方案以及单音、多音和调制信号支持。此 GUI 还兼容用于快速合成单音、多音和调制信号的 TI 图形生成 GUI。

用户可以向 DATACONVERTERPRO-SW 提供自定义图形以加载到 TI DAC。支持从 ADC 捕获导出 (...)

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支持软件

SBAC120 — TIGAR Support Files

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计算工具

ANALOG-ENGINEER-CALC — PC software analog engineer's calculator

模拟工程师计算器旨在加快模拟电路设计工程师经常运用的许多重复性计算。该基于 PC 的工具提供图形界面,其中显示各种常见计算列表,从使用反馈电阻器设置运算放大器增益到选择合适的电路设计元件,以稳定模数转换器 (ADC) 驱动器缓冲器电路。

除了可用作独立工具之外,该计算器还能很好地与模拟工程师口袋参考中所述的概念配合使用。

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计算工具

JITTER-SNR-CALC — Jitter and SNR calculator

JITTER-SNR-CALC 可用于根据输入频率和时钟抖动来计算 ADC 的理论信噪比 (SNR) 性能。

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设计工具

SBAC119 — TIGAR (Texas Instruments Graphical Evaluation of ADC Response Tool)

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封装 引脚 CAD 符号、封装和 3D 模型
VQFN (RGC) 64 Ultra Librarian

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