Posted July 8, 2025 at 8:14 am by SUCH Buck Boost Converters

Power Stability for Telecom Networks with SUCH DC-DC Buck-Boost Converters

Telecommunications infrastructure relies on uninterrupted and stable power to ensure reliable data transmission and continuous network coverage. This is particularly true for telecom base stations, which are often located in remote or rural areas where grid power may be unreliable or supplemented by solar panels, wind turbines, or backup batteries. In such environments, SUCH Non-isolated DC-DC Buck-Boost Converters are essential components for maintaining consistent voltage levels across sensitive communication equipment.
Telecom base stations require precise voltage regulation to support critical components like signal processors, amplifiers, routers, and wireless transceivers. Variations in input voltage—common when relying on renewable energy or during power source transitions—can lead to performance degradation, dropped calls, or complete system outages. SUCH non-isolated buck-boost converters dynamically adjust to either increase (boost) or reduce (buck) the incoming voltage, delivering a stable and regulated output regardless of fluctuations. This ensures uninterrupted connectivity and reduces the risk of hardware damage caused by over-voltage or under-voltage conditions.
For example, the SC200-1836V2410 model accepts a wide input range of 18V to 36V, delivering a regulated 24V output at 10A—perfect for powering base-band units or signal amplifiers. For lower voltage applications, the SC200-0936V1205 provides a 12V output at 5A from a variable 9V–36V input, ideal for powering auxiliary systems like monitoring equipment or cooling fans. SUCH Non-isolated DC-DC Buck-Boost Converters are designed for high efficiency (up to 96%), and include essential features like over-voltage protection, thermal shutdown, short-circuit resistance, and remote on/off control.
SUCH non-isolated buck-boost converters are built for 24/7 uptime, supporting telecom operators in both urban towers and off-grid remote sites. By ensuring clean, stable DC power, they help safeguard communication infrastructure and maintain network availability in all operating conditions.

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