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TOPPING designed the aluminum chassis of the new A50s for maximum durability and heat dissipation. The casing CNC-machined to precision from a solid block of aluminum and accommodates a thermal conductive column. The thermal column transfers the heat generated from the op-amps and power supply to the surrounding aluminum case, dissipating the heat.
Optimized design allows the A50s to maintain its tiny footprint, preserving a good appearance with no seams or visible screws. Aluminum is an excellent material because of its high thermal conductivity and structural strength.
NFCA modules result from TOPPING’s intensive research and development into headphone amplification technology, and the flagship A90 was the first amplifier from TOPPING that incorporated these modules. NFCA modules ensure low noise levels and distortion under all conditions and when used with all headphones.
The A50s leverages TOPPING’s revolutionary NFCA (Nested Feed Composite Amplifier) modules in a balanced configuration. Besides the balanced NFCA modules, A50s also uses ultra high gain feedback (UHGF) technology.
A revolutionary voltage-current hybrid architecture provides exceptionally low noise and distortion performance. The result is a drastic improvement in sound quality, with no hint of noise or distortion.
The high current output makes the A50s suitable for driving low impedance, while the high voltage output benefits high impedance headphones. A virtually nonexistent ultra-low noise floor of 0.3uV makes the A50s it a superb choice for sensitive IEMs.
High power output, exceptional dynamic range, and an unprecedented ultra-low noise floor allows the TOPPING A50s to deliver a performance unmatched by any other headphone amplifier regardless of its topology.
Despite having only single-ended RCA inputs, the TOPPING A50s headphone amplifier’s internal circuitry is internally balanced. The front panel features a 6.35-millimeter single-ended output and a 4.4 -millimeter balanced output.
The balanced 4.4mm output of the A50s provides the benefits of balanced headphone output, such as higher power output, high voltage swing, and avoiding any mains noise. Thus, A50s can separately power single-ended headphones through the 6.35mm SE output and balanced headphones via the 4.4mm balanced output.
Besides being a headphone amplifier, the A50s is also a state-of-the-art preamplifier. A pair of single-ended RCA output on the rear panel provides a preamp output connection to a power amplifier or powered speakers, delivering superb performance.
The volume knob on the front panel adjusts the volume of the RCA preamp outputs. The low output impedance of 20 ohms ensures smooth integration with many devices.
Unplugging the connected headphones will activate the analog preamp mode of the A50s. Preamp mode switches off the headphone amplifier section of the A50s. Plugging the headphones back in starts the headphone amplifier section deactivates the preamp section, allowing the A50s to allow the A50s to function as a pure headphone amplifier.
The gain levels of the A50s allow for easy switching between 0dB/6dB (single-ended) and 6dB/12dB (balanced) using the power/gain switch button on the front panel. The dual gain settings and headphone outputs give users the ability to adjust the headphone amplifier according to their listening preferences.
The noise level for single-ended output is 0.3uVrms and 0.4uVrms in low and high gain, respectively. At all gain settings, the noise floor and dynamic range of the A50s are miles ahead of the competition on all outputs and gain settings.
A50s will deliver up to 3.5W of power into 32 ohms & 760mW in 300 ohm loads on its 4.4mm balanced output with both channels driven. When using a source that provides a signal level of 2Vrms, the A50s will output 1950mW into 32 ohms and 208mW into 300 ohms.
Specs
THD+N @1 kHz A-wt
6.35mm headphone jack
<0.00007% @Output=850mW(32Ω)
<0.00006% @Output=90mW(300Ω)
4 4mm Balanced headphone jack
<0.00007% @Output=3.4W(32Ω)
<0.00006% @Output=367mW(300Ω)
THD ©20-20kHz 90kBW
6.35mm headphone jack
<0.0004% @Output=720mW(32Ω)
<0.0002% @Output=77mW(300Ω)
4 4mm Balanced headphone jack
<0.001% @Output=2.88W(32Ω)
<0.0005% @Output=307mVV(300Ω)
SNR @MAX OUT 1 kHz A-wt
6.35mm headphone jack: 137dB
4 4mm Balanced headphone jack: 143dB
Dynamic Range @1 kHz A-wt
6.35mm headphone jack: 138dB
4 4mm Balanced headphone jack: 144dB
Frequency Response: 20Hz-200kHz(±0.05dB)
Output Level
6.35mm headphone jack: 21Vpp
4 4mm Balanced headphone jack: 42Vpp
AP measured noise level @A-wt
6.35mm headphone jack
<0.7uVrms @G=L
<0.8uVrms @G=H
4 4mm Balanced headphone jack
<0.9uVrms @G=L
<1.1uVrms @G=H
Actual noise level * @A-wt
6.35mm headphone jack
<0.3uVrms @G=L
<0.45uVrms @G=H
4 4mm Balanced headphone jack
<0.6uVrms @G=L
<0.95uVrms @G=H
Channel Crosstalk @ 1kHz
6.35mm headphone jack: -86dB
4 4mm Balanced headphone jack: -128dB
IMD CCIF@(18kHz + 19kHz)
6.35mm headphone jack: -116dB
4 4mm Balanced headphone jack: -116dB
IMD SMPTE @(60Hz + 7kHz)
6.35mm headphone jack
-110dB, SMPTE4: 1
-118dB, SMPTE1: 1
4 4mm Balanced headphone jack
-110dB, SMPTE4: 1
-118dB, SMPTE1: 1
Input Sensitivity
6.35mm headphone jack
7.5Vrms @G=0dB
3.8Vrms @G=6dB
4 4mm Balanced headphone jack
7.5Vrms @G=odB
-3.8Vrms @G=6dB
Gain
6.35mm headphone jack
0.0dB @G=0dB
6.0dB @G=6dB
4 4mm Balanced headphone jack
6.0dB @G=0dB
12.0dB @G=6dB
Output Impedance
6.35mm headphone jack: <0.1Ω
4 4mm Balanced headphone jack: <0.2Ω
Output Power THD+N<1%
6.35mm headphone jack
1.4W x 2 @32Ω
192mW x 2 @300Ω
4 4mm Balanced headphone jack
3.5W x 2 @32Ω
760mW x 2 @300Ω
Output Power @2Vrms
6.35mm headphone jack
485mW x 2 @32Ω
52mW x 2 @300Ω
4 4mm Balanced headphone jack
1950mW x 2 @32Ω
208mW x 2 @300Ω
Load Impedance
6.35mm headphone jack: >8Ω
4 4mm Balanced headphone jack: >8Ω
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