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ASE-30.000MHZ-L-C-T

ASE-30.000MHZ-L-C-T

Abracon LLC
30 MHz XO (Standard) CMOS Oscillator 3.3V Enable/Disable 4-SMD, No Lead
Active843 in stock

Overview

The Abracon ASE-30.000MHZ-L-C-T is a 30 MHz crystal oscillator (XO) that provides a CMOS output. Designed for surface mount applications, this component operates from a 3.3V supply and features an enable/disable function for power management. It offers a frequency stability of +/-50ppm.

Why Choose This Part

This crystal oscillator offers a reliable 30 MHz CMOS output with an enable/disable feature, allowing for power conservation when the clock is not needed. Its surface mount package is compact, making it suitable for space-constrained designs. The +/-50ppm frequency stability ensures consistent performance across its operating temperature range of -40C to +85C.

Applications

Microcontroller Clock Source
Provides a stable 30 MHz clock signal for microcontrollers in various embedded systems, ensuring precise timing for operations.
Digital System Timing
Suitable for general-purpose digital circuits requiring a fixed frequency clock, such as data converters, FPGAs, and CPLDs.
Communication Modules
Used in communication interfaces and modules to generate the necessary clock frequency for data transmission and reception protocols.
Industrial Control Systems
Employed in industrial equipment and control systems where reliable timing is crucial for process automation and sensor synchronization.

Key Specifications

Type XO (Standard)
Output CMOS
Function Enable/Disable
Frequency 30 MHz
Mounting Type Surface Mount
Base Resonator Crystal
Package / Case 4-SMD, No Lead
Size / Dimension 0.126" L x 0.098" W (3.20mm x 2.50mm)
Voltage - Supply 3.3V
Frequency Stability +/-50ppm
Height - Seated (Max) 0.047" (1.20mm)
Operating Temperature -40degC ~ 85degC
Current - Supply (Max) 13mA
Supplier Device Package 4-SMD (3.2x2.5)

Getting Started

Integrating this oscillator involves connecting its supply voltage, ground, output, and enable pins to the corresponding circuitry. No specific development boards or complex toolchains are required beyond standard PCB design and assembly practices. Ensure proper decoupling capacitance near the supply pin for optimal performance.