


Texas Instruments
MF10CCWM/NOPB
Why Choose Us?
Professional Platform
B2B & B2C purchasingDelivery at full speed
1-2 days deliveryWide variety
Original manufacturers365 days guarantee
Responsible qualityTech Specifications
MF10CCWM/NOPB Description
MF10CCWM/NOPB Description
The MF10CCWM/NOPB is a highly versatile and advanced Universal Switched Capacitor filter IC designed by Texas Instruments. This product is engineered to meet the stringent requirements of modern electronic systems, offering exceptional performance and reliability. The MF10CCWM/NOPB features a 4th order filter with two independent filters, making it ideal for applications requiring precise signal processing and filtering capabilities. It operates within a supply voltage range of ±9V to ±14V, ensuring compatibility with a wide range of power supply configurations.
The MF10CCWM/NOPB is housed in a surface-mount package, specifically a 20SOIC, which facilitates easy integration into compact and high-density PCB designs. This package type also enhances the mechanical stability and thermal performance of the device. The product is REACH unaffected and RoHS3 compliant, ensuring environmental sustainability and adherence to global regulatory standards. Additionally, it has a moisture sensitivity level (LMS) of 3, allowing for a storage time of 168 hours before assembly.
MF10CCWM/NOPB Features
- High-Order Filtering: The 4th order filter design provides superior attenuation characteristics, effectively reducing unwanted frequencies and improving signal integrity.
- Dual Filters: With two independent filters, the MF10CCWM/NOPB can handle multiple filtering tasks simultaneously, optimizing system performance and reducing component count.
- Wide Supply Voltage Range: The ±9V to ±14V supply voltage range ensures compatibility with various power supply configurations, it making suitable for a broad range of applications.
- Surface-Mount Package: The 20SOIC package type facilitates easy integration into compact and high-density PCB designs, enhancing mechanical stability and thermal performance.
- Environmental Compliance: The MF10CCWM/NOPB is REACH unaffected and RoHS3 compliant, ensuring environmental sustainability and adherence to global regulatory standards.
- Moisture Sensitivity Level (MSL) 3: The MSL rating of 3 allows for a storage time of 168 hours before assembly, providing flexibility in manufacturing processes.
MF10CCWM/NOPB Applications
The MF10CCWM/NOPB is ideal for a variety of applications where precise signal processing and filtering are critical. Its high-order filtering capabilities and dual filter design make it particularly suitable for:
- Audio Signal Processing: Enhancing audio quality by filtering out unwanted noise and harmonics.
- Telecommunications: Improving signal clarity and reducing interference in communication systems.
- Medical Equipment: Ensuring accurate signal processing in medical devices where precision is paramount.
- Industrial Control Systems: Filtering out noise and interference in industrial environments to maintain system reliability and.
accuracy- Consumer Electronics: Enhancing the performance of consumer electronics by providing clean and precise signal processing.
Conclusion of MF10CCWM/NOPB
The MF10CCWM/NOPB from Texas Instruments is a robust and versatile Universal Switched Capacitor filter IC that offers significant advantages over similar models. Its high-order filtering capabilities, dual filter design, and wide supply voltage range make it an ideal choice for a variety of applications requiring precise signal processing. The surface-mount package, environmental compliance, and moisture sensitivity level further enhance its suitability for modern electronic systems. Whether used in audio signal processing, telecommunications, medical equipment, industrial control systems, or consumer electronics, the MF10CCWM/NOPB delivers exceptional performance and reliability, making it a standout choice for engineers and designers in the electronics industry.



.png)














.png?x-oss-process=image/format,webp/resize,h_32)










