Skip to content

Your Cart (0)

View cart

Your cart is empty

Continue shopping

Synergistic Research HFT 2.0 High Frequency Transducer, Set of 5

See more from Synergistic Research
Original price From $299.00
Original price
$299.00
From $299.00
Current price $299.00

FREE shipping to contiguous US

FREE store pickup at TMR Erie, CO.

Earn 299 TMR Rewards points for this purchase.
Not a member? Join today >

FREE
Shipping

FREE
Shipping

Financing
Available

Financing
Available

Trade Up
& Save

Trade Up
& Save

Full
Warranty

Full
Warranty

60-Day
Returns

60-Day
Returns

Lifetime Tech 
Support

Lifetime Tech
Support

Free Shipping & Safe Delivery Guaranteed

All new products ship free within the contiguous United States.

Every order is backed by our TMR Safe Pack & Ship Guarantee. We carefully double-box every shipment to protect the manufacturer's packaging, and larger items are professionally packed and palletized when required for safe, upright delivery.

Every shipment is fully insured, with signature confirmation required on orders over $750.

In the rare event of loss or damage, we fully protect your purchase and handle the resolution for you.

We DO NOT offer international shipping.

60-Day Risk-Free Returns

We want you to feel confident investing in new HiFi. That’s why all new products come with 60-day risk-free returns, giving you time to listen, evaluate, and make sure it’s the right fit for your system.

See our full return policy.

Full Manufacturer Warranty

Every new product is backed by its full manufacturer warranty, giving you long-term peace of mind and direct support from the brand—on top of TMR’s expert guidance and customer care.

About Synergistic Research HFT 2.0 High Frequency Transducer, Set of 5

Synergistic Research HFT 2.0 High Frequency Transducer Product Description: 

From the mysterious to the measurable, Synergistic’s UEF devices reshape how your room and system interact. They’re built on one belief: that every link in your chain can shape not just what you hear, but how you feel.

Your listening room isn’t neutral. Every surface—walls, furniture, windows—reacts to sound, and not in harmony. These reflections echo back out of time, out of tune, and out of phase, collapsing your soundstage and masking detail. The problem isn’t your gear—it’s your room.

How HFTs Work

High Frequency Transducers (HFTs) act as miniature acoustic processors, correcting distortion by generating real-time, phase-locked energy. This energy couples harmonically down into the audible range, restoring accurate timing, tonal balance, and spatial cues. Roughly the size of a shirt button, HFTs attach to walls, ceilings, and speakers. Once energized by sound pressure, electromagnetic energy, or RF, they respond in real time—emitting ultrasonic energy that reinforces the music instead of fighting it. The result is a cleaner, more coherent acoustic environment where the soundstage opens, instruments focus, and the room disappears.

System Building

The original HFTs form the foundation of most installations. Typically, 15–20 units are recommended for a standard room, placed strategically on walls and speakers. From there, HFT 2.0 modules can be added to introduce additional warmth and musicality, while HFT X modules bring even greater dimensionality. Together, these variations create a finely tuned acoustic system that balances clarity, scale, and natural timbre.

Synergistic Research HFT 2.0 High Frequency Transducer Key Features: 

  • Miniature Acoustic Processors – Phase-locked transducers that eliminate room distortion and restore natural timing, spatial cues, and tonal clarity.
  • Transforms Room Acoustics – Expands the soundstage into a holographic, realistic presentation where speakers and walls disappear.
  • Real-Time Resonance Control – Excited by music itself, HFTs emit ultrasonic energy that reinforces the soundstage instead of fighting it.
  • Enhanced Warmth & Musicality – Add HFT 2.0s to existing setups for richer tonality; combine with HFT Standard and HFT X for the most balanced results.

Explore More Synergistic Research

×

Please wait...

Make An Offer

Descriptive image text
Descriptive image text