ICEpower 100AS1


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The ICEpower 100AS1 amplifier module is an exceptional piece of audio equipment that provides high-quality amplification for a variety of applications. The module is built around an advanced flyback power supply that delivers a continuous power output of 100 W, with a short-term power capacity of up to 300 W. This makes the 100AS1 an ideal choice for high-performance audio systems that demand plenty of power.

One of the key benefits of the ICEpower 100AS1 is its class D amplifier circuitry. This type of amplifier is known for its exceptional efficiency, which allows it to deliver a high level of power while generating minimal heat. As a result, the 100AS1 can operate without the need for forced cooling, making it an excellent choice for applications where space is at a premium.

The 100AS1 module is also designed to be very easy to use. It features a compact, self-contained design that makes it simple to incorporate into a wide range of audio systems. Additionally, the module comes equipped with a variety of input and output options, including balanced and unbalanced inputs, as well as stereo and bridged outputs.

Thanks to its outstanding performance and ease of use, the ICEpower 100AS1 is a popular choice among audio professionals and enthusiasts alike. Whether you're building a high-end guitar amplifier, a powerful bass system, or a home theater subwoofer, the 100AS1 provides the power and performance you need to get the job done right.


  • Bass amplifiers
  • Guitar amplifiers
  • Subwoofers
  • Active 2-way hifi speakers and studio monitors
  • Mono amplifiers

Key Performance Parameters

Output Power per channel 1 % THD+N, 20 Hz – 20 kHz 100 W (4 Ω)
50 W (8 Ω)
Output Power per channel 10 % THD+N, 20 Hz – 20 kHz 135 W (4 Ω)
Minimum load impedance 3 Ω
Maximum amplifier efficiency
Maximum total amp+psu efficiency 72 %
Supply voltage input 85-264 VAC
Peak output current 12.5 A
Dynamic range 109 dB
Amplifier maximum output peak voltage per channel 30 V
Output referenced idle noise (A-weighted) 75 µV
THD+N 1 W/1 kHz 0.006 %