FVT-2S SMD VCTCXO | 2.5×2.0mm | 10~52MHz | Clipped Sine Wave | GPS, IoT, Mobile
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  • FVT-2S SMD VCTCXO | 2.5×2.0mm | 10~52MHz | Clipped Sine Wave | GPS, IoT, Mobile

FVT-2S SMD VCTCXO | 2.5×2.0mm | 10~52MHz | Clipped Sine Wave | GPS, IoT, Mobile

SMD 2.5 x 2.0 mm, AEC-Q100 Available


FEATURE

The FVT-2S is a compact voltage-controlled temperature-compensated crystal oscillator (VCTCXO) designed for high-precision wireless applications. Housed in a 2.5×2.0×0.7 mm ceramic package, it delivers clipped sine wave output with tight frequency stability of ±2.0ppm and extremely low phase noise. The device supports a wide range of supply voltages (1.8V to 3.3V) and is ideal for GPS, IoT, mobile, and wearable devices requiring compact form factor and precision timing.

Product Description

FVT-2S SMD VCTCXO (10~52MHz)

Key Features

  • Miniature 2.5 × 2.0 × 0.7 mm ceramic SMD package
  • Frequency range: 10 ~ 52 MHz
  • Clipped sine wave output
  • Supply voltages: 3.3V / 3.0V / 2.8V / 2.5V / 1.8V
  • Frequency tolerance: ±2.0 ppm (initial), ±1.0 ppm/year aging
  • Pulling range: ±5.0 ppm (VCTCXO)
  • Phase noise at 19.2 MHz: -115 dBc/Hz @100Hz, -135 dBc/Hz @1kHz, -148 dBc/Hz @10kHz
  • Low current consumption: max 2.0mA
  • Control voltage range: 0.3V to 2.5V depending on Vdd

Recommended Applications

  • GPS and GNSS Modules
  • WiMAX and WLAN Systems
  • Mobile Phones and Handheld Devices
  • IoT Terminals
  • Wearable Electronics

Electrical Characteristics

FVT-2S Electrical Specifications Table

Package Dimension

FVT-2S 2.5x2.0mm Package Drawing

Design Recommendations

For optimal operation, a 0.1μF bypass capacitor should be placed between Vdd and GND as close as possible to the oscillator. FVT-2S ensures highly stable performance under environmental changes such as voltage fluctuation, temperature variation, and mechanical stress, making it reliable for precision and space-constrained designs.

 
Key words:

High Frequency High Stability Low Noise VCTCXO

High Frequency High Stability Low Noise VCTCXO for Automotive

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