Product details

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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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet CDC6Cx-Q1 Low Power LVCMOS Output BAW Oscillator datasheet (Rev. C) PDF | HTML Jul 31, 2026
Application brief BAW Clocking Designs for In-Vehicle Infotainment (Rev. A) PDF | HTML Apr 13, 2026
Application note CDC6Cx OPN Decoder (Rev. A) PDF | HTML Oct 2, 2025
Application note CDC6C-Q1 CISPR-25 EMI Report (Rev. A) PDF | HTML Sep 12, 2025
Application note Clocking Selection Guide for FPD-Link III and FPD-Link IV SerDes PDF | HTML Apr 17, 2025
Technical article Beyond quartz: How BAW clocks are redefining ADAS and IVI PDF | HTML Apr 9, 2025
Functional safety information CDC6C-Q1 Functional Safety FIT Rate, FMD and Pin FMA PDF | HTML Mar 20, 2025
Application brief ADAS Domain Controller BAW Clock Architecture PDF | HTML Mar 19, 2025
Application brief BAW Solutions in Automotive Front Camera Systems PDF | HTML Mar 19, 2025
Application brief System Overview: Telematics Control Units PDF | HTML Mar 4, 2025

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

CDC6CEVM — CDC6C evaluation module

The CDC6EVM provides a complete platform to evaluate the clock performance and flexibility of the CDC6C low-power LVCMOS BAW oscillator family. This evaluation module can be used as a flexible clock source for compliance testing, performance evaluation and initial system prototyping. The onboard (...)
User guide: PDF | HTML
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Reference design

TIDA-020093 — Single-chip mmWave streaming radar reference design for automotive front radar

With more autonomous driving features, the automotive industry shifts to radar value and performance optimization. Radar performance and cost can be improved by raw radar data streaming topologies. This reference design features the AWR2188 radar front end with 8TX and 8RX antenna elements for high (...)

Supported products & hardware
Package Pins CAD symbols, footprints & 3D models
VSON (DLR) 4 Ultra Librarian
VSON (DLF) 4 Ultra Librarian
VSON (DLY) 4 Ultra Librarian
VSON (DLN) 4 Ultra Librarian

Ordering & quality

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