Manufacturer Part Number
BA3835F-E2
Manufacturer
ROHM Semiconductor
Introduction
The ROHM Semiconductor BA3835F-E2 is a 7-channel active band-pass filter designed for applications that require precise signal conditioning and filtering. This filter IC offers advanced performance and flexibility to meet the demands of various electronic systems.
Product Features and Performance
7 independent band-pass filters with adjustable center frequency and bandwidth
Wide supply voltage range of 4.5V to 6.5V
Low power consumption
Precise filter characteristics with low distortion
High attenuation in the stop-band
Small 18-SOIC package for compact design
Product Advantages
Enables reliable signal filtering and conditioning in compact electronic devices
Customizable filter parameters for optimal performance in diverse applications
Efficient power management for extended battery life in portable devices
Robust and reliable design for long-term reliability and stability
Key Reasons to Choose this Product
Exceptional filtering performance for high-quality signal processing
Flexible configuration options to meet specific application requirements
Space-saving package for integrating into compact electronic designs
Excellent value proposition for cost-effective solution development
Quality and Safety Features
Rigorous quality control and testing procedures
Compliance with industry safety and environmental standards
Compatibility
The BA3835F-E2 is designed for use in a wide range of electronic devices and applications, including:
Audio and video equipment
Industrial control systems
Telecommunications equipment
Instrumentation and measurement devices
Application Areas
Signal conditioning and filtering in audio, video, and communication systems
Noise reduction and signal enhancement in industrial and measurement applications
Customizable filter solution for diverse electronic device designs
Product Lifecycle
The BA3835F-E2 is an active product and is not recommended for new designs. Customers are advised to contact our website's sales team for information on equivalent or alternative models that may better suit their current design requirements.