Manufacturer Part Number
DSC1001CI1-024.0000T
Manufacturer
microchip-technology
Introduction
The DSC1001CI1-024.0000T is a high-performance MEMS-based crystal oscillator from Microchip Technology. It is designed for a wide range of applications that require a stable and accurate clock source, including consumer electronics, telecommunications, and industrial automation.
Product Features and Performance
MEMS-based crystal technology for improved reliability and performance
Operates at a frequency of 24 MHz
Standby/Power-down function for low-power applications
CMOS output
Supply voltage range of 1.8V to 3.3V
Frequency stability of ±50 ppm
Operating temperature range of -40°C to 85°C
Maximum supply current of 6.3 mA
AEC-Q100 qualified for automotive applications
Product Advantages
Compact surface-mount package (3.20 mm x 2.50 mm)
Low power consumption in standby mode (15 µA max)
Robust MEMS-based design for improved reliability and shock/vibration resistance
Wide operating temperature range suitable for diverse applications
Key Reasons to Choose This Product
Reliable and accurate clock source for critical applications
Compact size and low power consumption make it ideal for space-constrained and power-sensitive designs
AEC-Q100 qualification ensures the product meets stringent automotive industry standards
Backed by Microchip's reputation for high-quality semiconductor solutions
Quality and Safety Features
AEC-Q100 qualified
RoHS and REACH compliant
Compatibility
This oscillator is compatible with a wide range of digital and microprocessor-based systems that require a stable clock source.
Application Areas
Consumer electronics
Telecommunications equipment
Industrial automation and control systems
Automotive electronics
Medical devices
Product Lifecycle
The DSC1001CI1-024.0000T is an active product and is currently available for purchase. There are no known equivalent or alternative models from Microchip Technology at this time. If you have any further questions or need assistance, please contact our sales team through our website.