產品詳細資料

Output type LVCMOS Output frequency (MHz) 1.2, 5.12, 7.68, 8, 8.192, 10, 12, 12.288, 16, 19.2, 20, 24, 25, 26, 27, 33.333, 38.4, 40, 43.5, 48, 50, 66.666, 100, 125, 156.25 Stability (ppm) +/-25 Operating temperature range (°C) -40 to 105 Jitter (ps) 0.4 Frequency range 250 kHz - 200 MHz
Output type LVCMOS Output frequency (MHz) 1.2, 5.12, 7.68, 8, 8.192, 10, 12, 12.288, 16, 19.2, 20, 24, 25, 26, 27, 33.333, 38.4, 40, 43.5, 48, 50, 66.666, 100, 125, 156.25 Stability (ppm) +/-25 Operating temperature range (°C) -40 to 105 Jitter (ps) 0.4 Frequency range 250 kHz - 200 MHz
VSON (DLY) 4 1.92 mm² (1.6 mm × 1.2 mm) VSON (DLX) 4 3.2 mm² (2 mm × 1.6 mm) VSON (DLE) 4 8 mm² (3.2 mm × 2.5 mm) VSON (DLF) 4 5 mm² (2.5 mm × 2 mm)
  • LVCMOS output oscillator supporting frequency range from 250kHz to 200MHz
  • ±25ppm total frequency stability inclusive of all factors and including 10 years aging
  • Supply voltage supports 1.8V to 3.3V ±10%.
  • Very low power consumption: 4.32mA typical and 7.4mA maximum for 25MHz at 1.8V
  • Stand by current 1.5µA typical at 1.8V helps for battery powered applications
  • Low jitter: < 1ps RMS jitter for Fout ≥ 10MHz
  • Smallest industry standard package: 1.60mm × 1.2mm (DLY), 2.00mm × 1.60mm (DLX), 2.50mm × 2.00mm (DLF), 3.20mm × 2.5mm (DLE)
    • Universal land pattern footprint under Mechanical, Packaging, and Orderable Information
  • Operating temperature range: –40°C to +105°C
  • Integrated LDO for robust supply noise immunity
  • Start-up time < 3ms
    • Contact TI for different start-up times.
  • Orderable options for slow rise and fall time for EMI reduction
  • Supported frequencies (MHz):
    • 1.2, 2.048, 4, 5.12, 6.78, 8, 8.192, 10, 12, 12.288, 16, 19.2, 20, 24, 24.576, 25, 26, 27, 30, 33.33, 33.333, 38.4, 40, 48, 50, 66.666, 76.8, 100, 125, 156.25, and more
  • Contact TI representative for any frequency and samples needed.
  • LVCMOS output oscillator supporting frequency range from 250kHz to 200MHz
  • ±25ppm total frequency stability inclusive of all factors and including 10 years aging
  • Supply voltage supports 1.8V to 3.3V ±10%.
  • Very low power consumption: 4.32mA typical and 7.4mA maximum for 25MHz at 1.8V
  • Stand by current 1.5µA typical at 1.8V helps for battery powered applications
  • Low jitter: < 1ps RMS jitter for Fout ≥ 10MHz
  • Smallest industry standard package: 1.60mm × 1.2mm (DLY), 2.00mm × 1.60mm (DLX), 2.50mm × 2.00mm (DLF), 3.20mm × 2.5mm (DLE)
    • Universal land pattern footprint under Mechanical, Packaging, and Orderable Information
  • Operating temperature range: –40°C to +105°C
  • Integrated LDO for robust supply noise immunity
  • Start-up time < 3ms
    • Contact TI for different start-up times.
  • Orderable options for slow rise and fall time for EMI reduction
  • Supported frequencies (MHz):
    • 1.2, 2.048, 4, 5.12, 6.78, 8, 8.192, 10, 12, 12.288, 16, 19.2, 20, 24, 24.576, 25, 26, 27, 30, 33.33, 33.333, 38.4, 40, 48, 50, 66.666, 76.8, 100, 125, 156.25, and more
  • Contact TI representative for any frequency and samples needed.

Texas Instruments’ high-precision Bulk-Acoustic Wave (BAW) micro-resonator technology is integrated directly into a package allowing for low jitter clock circuitry. BAW is fully designed and manufactured at TI factories like other silicon-based fabrication processes.

The CDC6Cx device is a low jitter, low power, fixed-frequency oscillator which incorporates the BAW as the resonator source. The device is factory-programmed per specific frequency and function pin. With a frequency control logic and output frequency divider, the CDC6Cx is capable of producing any frequency within the specified range providing a single device family for all frequency needs.

The high-performance clocking, mechanical stability, lower power consumption, flexibility, and small package options for this device are designed for reference clock and core clocks in Industrial, Telecom, Data and Enterprise Network and Personal Electronics end equipments.

Texas Instruments’ high-precision Bulk-Acoustic Wave (BAW) micro-resonator technology is integrated directly into a package allowing for low jitter clock circuitry. BAW is fully designed and manufactured at TI factories like other silicon-based fabrication processes.

The CDC6Cx device is a low jitter, low power, fixed-frequency oscillator which incorporates the BAW as the resonator source. The device is factory-programmed per specific frequency and function pin. With a frequency control logic and output frequency divider, the CDC6Cx is capable of producing any frequency within the specified range providing a single device family for all frequency needs.

The high-performance clocking, mechanical stability, lower power consumption, flexibility, and small package options for this device are designed for reference clock and core clocks in Industrial, Telecom, Data and Enterprise Network and Personal Electronics end equipments.

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重要文件 類型 標題 格式選項 下載最新的英文版本 日期
* 資料表 CDC6Cx Low Power LVCMOS Output BAW Oscillator datasheet (Rev. D) PDF | HTML 2026/1/5
應用說明 Oscillator Power Considerations for PLL Devices PDF | HTML 2025/10/30
應用說明 CDC6Cx OPN Decoder (Rev. A) PDF | HTML 2025/10/2
應用說明 Comparing BAW vs. Quartz Oscillator Radiated Emissions PDF | HTML 2025/6/3
應用說明 BAW Oscillator Clocking TI Processors PDF | HTML 2025/3/27
應用說明 Low Power BAW Oscillators Clocking Industrial 100Mbit Ethernet PHY PDF | HTML 2025/3/26

設計與開發

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開發板

ADS131M08MET-EVM — ADS131M08 測量評估模組

ADS131M08MET 評估模組 (EVM) 採用 ADS131M08 和 MSPM0G1506SRHB,以 IEC-62053、EN 50470 及 ANSI C12 測試方法實現 0.1 級的三相能源測量。ADS131M08 會以 8kHz 進行取樣,測量電流變壓器 (CT) 或 Rogowski 線圈 (RC) 的輸出,並使用高電壓電阻分壓器,測量最多三相的電流和電壓。EVM 可在廣泛輸入電流範圍(0.1A 至 100A)和高達 270V 的 AC 電壓中實現高準確度。測量軟體已內建於 MSPM0-SDK 中,並可搭配 Code Composer Studio™ 編譯以進一步自訂。
使用指南: PDF | HTML
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開發板

CDC6CEVM — CDC6C 評估模組

CDC6EVM 提供完整平台,可評估 CDC6C 低功耗 LVCMOS BAW 振盪器系列的時鐘性能和彈性。此評估模組可做為彈性時鐘來源用於合規測試、性能評估和初始系統原型設計。板載邊緣啟動 SMA 埠提供對 CDC6C 可配置時鐘輸出的存取,允許裝置使用市售同軸纜線、轉接器或平衡不平衡轉換器 (未隨附) 與測試設備和參考電路板介接。
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參考設計

TIDA-010244 — 三相分流架構能源計量參考設計

此參考設計利用隔離式高效能、多通道類比轉數位轉換器 (ADC) 實作 0.2S 級三相能源量測,其會在 4 kHz 時對分流電流感測器取樣,以量測 AC 主電源各腳的電流與電壓。此參考設計可在廣泛輸入電流範圍 (0.05 A 至 100 A ) 中實現高準確度,並支援如獨立諧波分析等電源品質功能所需的更高取樣頻率。使用 TI Arm® Cortex® -M0+ 主機微控制器計算計量參數時,可支援高達 16 ksps 的更快 ADC 取樣率。
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封裝 針腳 CAD 符號、佔位空間與 3D 模型
VSON (DLY) 4 Ultra Librarian
VSON (DLX) 4 Ultra Librarian
VSON (DLE) 4 Ultra Librarian
VSON (DLF) 4 Ultra Librarian

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