Offering a completely new full-range, midfield option in Neumann's KH line, the Neumann KH 350 is an active 3-way studio monitor ideal for film scoring and immersive audio applications in medium to large rooms. Sporting an improved Class-D tri-amped design, advanced 32-bit DSP for easy MA 1 Automatic Monitor Alignment, and improved SPL performance, this monitor offers low-end authority and exceptional midrange clarity.
The KH 350 sports a 1" tweeter, an 8.25" woofer, and Neumann's iconic 3" mid-frequency soft-dome driver. ELFF woofer technology ensures that the low-frequency driver avoids distortion, even at full excursion. The monitor provides an extended low-frequency response that stretches down to 27 Hz, making it ideal for multichannel projects that demand significant SPLs and low-end projection without a subwoofer. The large MMD waveguide delivers controlled directivity and consistent off-axis behavior. I/O includes an analog XLR and digital AES3id BNC input. The KH 350 includes a mains power cable with four international plugs and four self-adhesive feet.
- 8.25" woofer, 3" midrange, and 1" tweeter
- ELFF woofer technology delivering extremely low distortion even at high excursion
- Neumann’s legendary midrange driver, acclaimed globally for its tonality and precision
- Large MMD waveguide for controlled directivity and off-axis behavior
- Full 32-bit DSP signal path, enabling precise system alignment and advanced processing
- Extended low-frequency response (30 Hz at 3 dB and 27 Hz at 6 dB)
- 2 dB more max SPL than KH 310 II between 50 and 100 Hz and enhanced LF authority
- Digital AES3id (BNC) and analog (XLR) inputs
- High-efficiency Class-D amplifiers with advanced limiter structure
- Improved power output for each of the three amps
- Improved unit-to-unit consistency for predictable multichannel setups and razor-sharp stereo image
- Ready for MA 1 Automatic Monitor Alignment
- Recording
- Film scoring
- Music creation
- Postproduction
- Mastering
- Immersive audio (Dolby Atmos, etc.)
- Any audio application with higher SPL and lower frequency demands
