dip quartz crystal oscillators resonators 16mhz
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Price: KSH 20.00

DIP Quartz Crystal Oscillators Resonators 16MHz

The 16MHz DIP Quartz Crystal Oscillator Resonator is commonly used to generate precise clock signals in electronic circuits. It plays a critical role in timing applications where accuracy and stability are required. The DIP package allows it to be easily integrated into standard PCB layouts, making it ideal for microcontroller systems, frequency generation, and other applications requiring a stable frequency source.

Specifications

  • Frequency: 16 MHz
  • Package Type: DIP-4 (Dual In-line Package with 4 pins)
  • Operating Temperature: -40°C to +85°C
  • Load Capacitance: Typically 18pF
  • Drive Level: 100uW (max)
  • Startup Time: 10ms (typical)
  • Output: Square wave
  • Accuracy: ±30ppm

Applications

Common applications for the 16MHz DIP Quartz Crystal Oscillator include:

  • Microcontroller clock generation: Provides a reliable clock signal for microcontrollers and embedded systems.
  • Frequency synthesis: Used in devices that require precise frequency generation for RF (radio frequency) systems.
  • Timing circuits: Critical for maintaining accurate timing in digital circuits, watches, and timers.
  • Embedded systems: Essential for system-level timing in embedded electronics applications.

Key Features

  • Stable frequency output: Reliable and precise signal generation for high-accuracy applications.
  • Low power consumption: Ideal for battery-powered devices that require a stable clock signal.
  • Wide operating temperature range: Suitable for use in harsh environments, with a range of -40°C to +85°C.
  • Compact and easy integration: The DIP package makes it easy to integrate into a variety of electronic projects.

Installation Tips

When using a 16MHz DIP crystal oscillator in your circuit, ensure that the following tips are followed:

  • Make sure to connect the oscillator properly with the microcontroller's clock input pin.
  • Ensure a stable power supply for the oscillator to avoid any frequency instability.
  • Use capacitors (typically 18pF) on the load pins to ensure proper frequency stability.
  • Verify all pin connections before powering up to avoid circuit damage.

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