Blonder Tonure BIDA 55A-30 Indoor Distribution Amplifier
Condition: New
Product Overview: The Blonder Tongue BIDA 55A‑30 is a broadband indoor RF distribution amplifier designed for CATV, MATV, and SMATV systems that require dependable signal gain up to 550 MHz. With 30 dB of forward gain, adjustable controls, and built‑in test points, this model helps overcome cable loss and delivers strong, balanced RF levels across a distribution network — especially in installations where 550 MHz bandwidth is sufficient and cost efficiency is important.
Features
30 dB Forward Gain: Provides substantial RF amplification to support distribution to multiple outlets or long cable runs
Broadband Performance (Up to 550 MHz): Covers lower/mid RF spectrum (up to 550 MHz) ideal for systems not requiring full 860 / 1000 MHz bandwidth
Adjustable Gain & Slope Controls: Front‑panel controls let you fine‑tune signal level and frequency flatness for a balanced system
Built‑In Test Points: Back‑matched input/output test jacks allow in‑service signal monitoring without disrupting service
Condition: New
Product Overview: The Blonder Tongue BIDA 55A‑30 is a broadband indoor RF distribution amplifier designed for CATV, MATV, and SMATV systems that require dependable signal gain up to 550 MHz. With 30 dB of forward gain, adjustable controls, and built‑in test points, this model helps overcome cable loss and delivers strong, balanced RF levels across a distribution network — especially in installations where 550 MHz bandwidth is sufficient and cost efficiency is important.
Features
30 dB Forward Gain: Provides substantial RF amplification to support distribution to multiple outlets or long cable runs
Broadband Performance (Up to 550 MHz): Covers lower/mid RF spectrum (up to 550 MHz) ideal for systems not requiring full 860 / 1000 MHz bandwidth
Adjustable Gain & Slope Controls: Front‑panel controls let you fine‑tune signal level and frequency flatness for a balanced system
Built‑In Test Points: Back‑matched input/output test jacks allow in‑service signal monitoring without disrupting service



















