DSC6013CI2A-PROGRAMMABLE
Microchip Technology
        
                                DSC6013CI2A-PROGRAMMABLE                            
                        
                                Microchip Technology                            
                        
                                MEMS OSC PROG XO CMOS 1.71V                            
                        Reference Price (USD)
1+
                                            $9.21000
                                        500+
                                            $9.1179
                                        1000+
                                            $9.0258
                                        1500+
                                            $8.9337
                                        2000+
                                            $8.8416
                                        2500+
                                            $8.7495
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                            Product details
                    The DSC6013CI2A-PROGRAMMABLE by Microchip Technology establishes new benchmarks in Programmable Oscillators, engineered for ultra-stable timing solutions. This precision component excels in clock synchronization while delivering superior phase noise performance for RF applications.ActiveUtilizing MEMS technology, this oscillator outperforms conventional designs in thermal stability, making it ideal for aerospace navigation systems.As a XO (Standard) device, it provides critical clock generation for high-speed data converters in medical imaging equipment.With Programmed by Digi-Key (Enter your frequency in Web Order Notes) capability, designers can achieve customized frequency synthesis without compromising signal integrity in 5G base stations.Covering 1 MHz ~ 80 MHz, this versatile solution supports both legacy industrial controls and next-gen satellite communications.The Standby feature enables adaptive power management for energy-efficient smart grid infrastructure.Delivering CMOS performance, this component ensures robust signal transmission in EMI-intensive automotive radar systems.Operating at 1.71V ~ 3.63V, it achieves optimal power efficiency for portable military communications devices.Maintaining ±25ppm ensures long-term reliability for undersea cable repeaters.Rated for -40°C ~ 85°C, this solution maintains precision in extreme conditions encountered in oil drilling equipment.With 1.3mA (Typ) consumption, it sets new standards for energy-efficient edge AI processors.Compliant with AEC-Q100 standards, this solution meets rigorous requirements for nuclear power plant control systems.The Surface Mount design facilitates reliable PCB integration in vibration-prone railway signaling systems.Housed in a compact 4-SMD, No Lead, this solution meets stringent size requirements of wearable health monitors.With dimensions of 0.126" L x 0.098" W (3.20mm x 2.50mm), it enables high-density layouts in millimeter-wave antenna arrays.At just 0.035" (0.89mm), this low-profile component is ideal for space-constrained industrial IoT gateways.                
                Product Attributes
- Product Status: Active
- Base Resonator: MEMS
- Type: XO (Standard)
- Programmable Type: Programmed by Digi-Key (Enter your frequency in Web Order Notes)
- Available Frequency Range: 1 MHz ~ 80 MHz
- Function: Standby
- Output: CMOS
- Voltage - Supply: 1.71V ~ 3.63V
- Frequency Stability: -
- Frequency Stability (Total): ±25ppm
- Operating Temperature: -40°C ~ 85°C
- Spread Spectrum Bandwidth: -
- Current - Supply (Max): 1.3mA (Typ)
- Ratings: AEC-Q100
- Mounting Type: Surface Mount
- Package / Case: 4-SMD, No Lead
- Size / Dimension: 0.126" L x 0.098" W (3.20mm x 2.50mm)
- Height - Seated (Max): 0.035" (0.89mm)


 
                         
                                     
                                     
                                     
                                     
                                     
                                     
                                     
                                     
                                    