產品詳細資料

Output type LVCMOS Output frequency (MHz) 12.288, 19.2, 20, 24, 25, 27, 33.333, 40, 48, 50, 100, 125 Stability (ppm) +/-25 Operating temperature range (°C) -40 to 125 Jitter (ps) 0.4 Frequency range 250 kHz - 200 MHz
Output type LVCMOS Output frequency (MHz) 12.288, 19.2, 20, 24, 25, 27, 33.333, 40, 48, 50, 100, 125 Stability (ppm) +/-25 Operating temperature range (°C) -40 to 125 Jitter (ps) 0.4 Frequency range 250 kHz - 200 MHz
VSON (DLR) 4 3.2 mm² (2 mm × 1.6 mm) VSON (DLF) 4 5 mm² (2.5 mm × 2 mm) VSON (DLY) 4 1.92 mm² (1.6 mm × 1.2 mm) VSON (DLN) 4 8 mm² (3.2 mm × 2.5 mm)
  • AEC Q-100 qualified:
    • Device temperature grade 1: –40°C to +125°C
  • Functional Safety-Capable:
  • LVCMOS output oscillator supporting frequency range from 250kHz to 200MHz
  • Supply voltage supports 1.8V to 3.3V ±10%.
  • Very low power consumption: 4.57mA typical and 7.9mA maximum for 25MHz at 1.8V
  • Stand by current 1.5µA typical at 1.8V helps for battery powered applications
  • Low jitter: < 750fs RMS jitter for Fout ≥ 10MHz
  • Smallest industry wettable flank standard package: 1.60mm × 1.20mm (DLY), 2.00mm × 1.60mm (DLR), 2.5mm × 2.00mm (DLF), 3.20mm × 2.5mm (DLN)
    • Universal land pattern footprint under Mechanical, Packaging, and Orderable Information
  • 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.
  • AEC Q-100 qualified:
    • Device temperature grade 1: –40°C to +125°C
  • Functional Safety-Capable:
  • LVCMOS output oscillator supporting frequency range from 250kHz to 200MHz
  • Supply voltage supports 1.8V to 3.3V ±10%.
  • Very low power consumption: 4.57mA typical and 7.9mA maximum for 25MHz at 1.8V
  • Stand by current 1.5µA typical at 1.8V helps for battery powered applications
  • Low jitter: < 750fs RMS jitter for Fout ≥ 10MHz
  • Smallest industry wettable flank standard package: 1.60mm × 1.20mm (DLY), 2.00mm × 1.60mm (DLR), 2.5mm × 2.00mm (DLF), 3.20mm × 2.5mm (DLN)
    • Universal land pattern footprint under Mechanical, Packaging, and Orderable Information
  • 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-Q1 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-Q1 can produce any frequency within the specified range, providing one 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 automotive applications.

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-Q1 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-Q1 can produce any frequency within the specified range, providing one 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 automotive applications.

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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-Q1 Low Power LVCMOS Output BAW Oscillator datasheet (Rev. C) PDF | HTML 2026/7/31
Application brief BAW Clocking Designs for In-Vehicle Infotainment (Rev. A) PDF | HTML 2026/4/13
應用說明 CDC6Cx OPN Decoder (Rev. A) PDF | HTML 2025/10/2
應用說明 CDC6C-Q1 CISPR-25 EMI Report (Rev. A) PDF | HTML 2025/9/12
應用說明 Clocking Selection Guide for FPD-Link III and FPD-Link IV SerDes PDF | HTML 2025/4/17
技術文章 不只是石英:BAW 時脈如何重新定義 ADAS 與 IVI PDF | HTML Download English Version PDF | HTML 2025/4/15
功能安全資訊 CDC6C-Q1 Functional Safety FIT Rate, FMD and Pin FMA PDF | HTML 2025/3/20
Application brief ADAS Domain Controller BAW Clock Architecture PDF | HTML 2025/3/19
Application brief BAW Solutions in Automotive Front Camera Systems PDF | HTML 2025/3/19
Application brief System Overview: Telematics Control Units PDF | HTML 2025/3/4

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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。
使用指南: PDF | HTML
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參考設計

TIDA-020093 — 適用於汽車前端雷達的單晶片 mmWave 串流雷達參考設計

隨著自動駕駛功能越來越多,汽車產業將轉向雷達價值和性能最佳化。透過原始雷達資料串流拓撲,可提高雷達性能和成本。此參考設計採用 AWR2188 雷達前端,搭配 8TX 和 8RX 天線元件,可實現高角解析度。此設計結合 DS90UB971S-Q1 FPD-Link™ 串聯器,將原始資料傳輸至中央處理單元及 MSPM0G3519-Q1 控制器,即可實現串流雷達應用。系統整合了廣泛輸入電壓前置穩壓器和雷達電源管理積體電路 (PMIC),可提供雷達性能所需的超低雜訊電源。

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VSON (DLR) 4 Ultra Librarian
VSON (DLF) 4 Ultra Librarian
VSON (DLY) 4 Ultra Librarian
VSON (DLN) 4 Ultra Librarian

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