Skip to product information
1 of 2

APx1701 Transducer Test Interface



Interested in this product?

Send us your details and we’ll get back to you with availability, pricing, and any additional information you need.

APx1701 Transducer Test Interface

The Audio Precision APx1701 Transducer Test Interface is an APx accessory that integrates instrument-grade amplifiers and microphone power supplies for designers and production test engineers seeking clear insight into the behavior of loudspeakers, headphones and microphones.

It drives loudspeakers and headphones with dedicated power amplifiers, enables impedance measurements, and powers measurement microphones and microphones under test. Its functions are integrated with APx500 software and a connected B Series or legacy APx analyzer (APx500 v4.3 or later).

Key Features

  • Signal-to-noise ratio ≈ 134 dB; 20 dB fixed gain from DC to 100 kHz
  • Residual THD+N ≤ −100 dB (10 Hz–20 kHz, 80 kHz BW)
  • Two independent amplifier channels, up to 100 W into 8 Ω (single channel)
  • Current-sense resistors for easy impedance measurement
  • 2 balanced mic inputs with +48 V phantom; 2 unbalanced BNC inputs with CCP, TEDS-capable
  • Ships with ISO/IEC 17025 accredited calibration

Key Specifications

Power ratings 100 W (1 ch into 8 Ω); 60 W (1 ch into 4 Ω); 30 Vrms (2 ch into ≥ 15 Ω)
Frequency range DC to 100 kHz
Frequency response ±0.08 dB (10 Hz–20 kHz, DC-coupled); ±0.30 dB (20–50 kHz); ±0.80 dB (50–100 kHz)
Voltage gain 20.0 dB (×10)
Residual noise ≤ 7.5 µVrms (22 kHz BW); ≤ 13 µVrms (80 kHz BW)
Signal-to-noise ratio ≈ 134 dB (ref 30 Vrms output)
Output impedance ≈ 0.13 Ω
Residual THD+N ≤ −100 dB, 10 Hz–20 kHz (80 kHz BW)
Microphone inputs 2 balanced (XLR, switchable +48 V phantom); 2 unbalanced (BNC, switchable CCP 4 mA / +24 V, TEDS-capable)
Maximum mic input 10 Vpk balanced; 5 Vpk unbalanced
Input crosstalk ≤ −78 dB + 1 µV to 20 kHz

Datasheet available on request.

Get in touch

We're available 24/7 to assist. Just let us know what we can help you with and we'll do our best.

We'll aim to get back to you within 24 hours.