The Peerless by Tymphany LCPF1200 DSPflow is a high-performance 2.1 channel Class D amplifier module equipped with integrated DSP processing and advanced connectivity options. Designed for powered speaker systems, subwoofer integration, and audio installations, it delivers robust power with fine-tuned control in a compact, efficient form factor.
Highlights of the Peerless LCPF1200 DSPflow
- 2.1 channel Class D amplifier with 1200W total power output
- Integrated SigmaDSP® digital signal processing with configurable presets
- Flexible I/O including analog, digital (SPDIF), and Bluetooth (aptX HD optional)
- Compact, fanless design for silent operation and versatile mounting
Product details Peerless LCPF1200 DSPflow
Peerless LCPF1200 DSPflow amplifier module
The Peerless by Tymphany LCPF1200 DSPflow is engineered for seamless integration in high-fidelity loudspeaker systems, offering a combination of strong power output and sophisticated signal processing. This module provides a total output power of 1200W: 2 x 250W (satellite channels) and 1 x 700W (subwoofer), making it ideal for active 2.1 audio configurations. Built on a reliable Class D topology, it ensures energy efficiency and low thermal footprint.
At its core, the LCPF1200 uses Analog Devices’ SigmaDSP® processor, allowing designers to configure EQ, crossover, limiters, and delay settings via software. Pre-configured DSP presets can be uploaded through the onboard USB port, facilitating fast integration and tuning. The amplifier accepts a wide range of inputs including balanced analog, SPDIF digital, and optional Bluetooth (with aptX HD support), making it compatible with diverse source equipment.
The module’s mechanical design is compact and passively cooled—no fans are required—ensuring silent performance. This makes it a solid choice for studio monitors, home audio systems, and commercial installations where noise and space efficiency are key concerns. With robust thermal protection and over-current safeguards, the LCPF1200 DSPflow provides consistent and safe operation across demanding use cases.
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