The TG-5006CG-12H 26MHZ is a temperature-compensated crystal oscillator (TCXO) manufactured by TDK Corporation. It provides a stable and accurate clock signal at a frequency of 26 MHz. This TCXO is designed for applications requiring high frequency stability over a wide temperature range.
Applications:
- GPS Receivers: Provides a stable reference frequency for accurate positioning.
- Wireless Communication Devices: Used in radios, mobile phones, and other wireless devices for frequency control.
- Navigation Systems: Ensures accurate timing and frequency in navigation equipment.
- Measurement Instruments: Provides a precise clock signal for high-resolution measurements.
- Industrial Control Systems: Used in industrial controllers for stable and reliable operation.
Features:
- Temperature Compensation: Maintains frequency stability over a wide temperature range.
- 26 MHz Output Frequency: Provides a precise clock signal at 26 MHz.
- Compact Size: Small footprint for space-constrained applications.
- Low Power Consumption: Minimizes power drain in battery-powered devices.
- Surface Mount Technology (SMT): Enables automated assembly and efficient manufacturing.
Benefits:
- High Frequency Stability: Ensures accurate timing and frequency control.
- Reliable Operation: Provides stable performance over a wide temperature range.
- Reduced System Size: Compact design allows for integration into small devices.
- Extended Battery Life: Low power consumption minimizes battery drain.
- Simplified Manufacturing: SMT package enables automated assembly.
Additional Details:
The TG-5006CG-12H 26MHZ TCXO is engineered to provide excellent frequency stability in various operating conditions. The built-in temperature compensation circuitry corrects for frequency drift caused by temperature variations. This crystal oscillator features tight frequency tolerance and is suitable for applications that demand a highly accurate and stable clock signal. It meets RoHS compliance standards and it is designed to operate within a broad voltage range. The small size allows for use in portable and densely-packed devices.