Blonder Tongue BIDA 100A-43 Indoor Distribution Amplifier
Condition: New
Product Overview: The Blonder Tongue BIDA 100A-43 is a broadband indoor RF distribution amplifier designed for CATV, SMATV, and MATV systems that need high forward gain (43 dB) to compensate for cable losses and provide strong signal levels throughout a multi-drop network. It offers wide frequency coverage, adjustable controls, and built-in test points for easy setup, alignment, and monitoring — making it a versatile choice for residential and commercial RF distribution applications.
Features
High Forward Gain (43 dB): Delivers robust amplification to support long cable runs and multiple outlets with consistent, reliable RF levels
Broadband Frequency Coverage: Typically spans 49–1000 MHz, supporting a wide range of analog and digital signals
Adjustable Gain & Slope Controls: Front-panel controls allow tuning of overall level and frequency flatness for optimized performance
Built-In Test Points: Back-matched input/output test jacks enable in-service signal monitoring without disrupting service
Condition: New
Product Overview: The Blonder Tongue BIDA 100A-43 is a broadband indoor RF distribution amplifier designed for CATV, SMATV, and MATV systems that need high forward gain (43 dB) to compensate for cable losses and provide strong signal levels throughout a multi-drop network. It offers wide frequency coverage, adjustable controls, and built-in test points for easy setup, alignment, and monitoring — making it a versatile choice for residential and commercial RF distribution applications.
Features
High Forward Gain (43 dB): Delivers robust amplification to support long cable runs and multiple outlets with consistent, reliable RF levels
Broadband Frequency Coverage: Typically spans 49–1000 MHz, supporting a wide range of analog and digital signals
Adjustable Gain & Slope Controls: Front-panel controls allow tuning of overall level and frequency flatness for optimized performance
Built-In Test Points: Back-matched input/output test jacks enable in-service signal monitoring without disrupting service



















