-
Supplier: Visual Sound, Inc.
Description: Yamaha to realize the installation series concept of Yamaha's legendary speaker engineer Akira Nakamura. For over 4 decades Mr. Nakamura had developed a wide variety of musical instruments, as well as hi-fi and commercial speakers, the most famous speaker being the legendary
-
Supplier: Visual Sound, Inc.
Description: Yamaha to realize the installation series concept of Yamaha's legendary speaker engineer Akira Nakamura. For over 4 decades Mr. Nakamura had developed a wide variety of musical instruments, as well as hi-fi and commercial speakers, the most famous speaker being the legendary
-
Supplier: Visual Sound, Inc.
Description: EAW - Eastern Acoustic Works, Inc. Long throw MF Phased PointSource Technology™ module. (3) 10-in. MF on separate SimplePhase™ horns. PPST™ systems build arrays for the largest spaces. Pre-configured DSP defines coverage by integrating cells and modules to fit its application. The
-
-
Supplier: Visual Sound, Inc.
Description: EAW - Eastern Acoustic Works, Inc. Long throw HF Phased PointSource Technology™ module. (5) 2 inch HF on separate SimplePhase™ horns. PPST™ systems build arrays for the largest spaces. Pre-configured DSP defines coverage by integrating cells and modules to fit its application. The
-
Supplier: TMP Pro Distribution
Description: Correction™can compensate for many causal phenomena such as the effects of waveguide acoustical impedance and loudspeaker cone resonance. The result is a loudspeaker system with excellent power response and extremely natural, uncolored sound across its frequency band and coverage area. An
- Application: Music / Audio Systems
-
Supplier: SAE International
Description: each actuator in the array. Experiment is conducted on a cutout roof panel of a midsize car. The preliminary test result shows that the localized in-phase vibration control yields a maximum deviation of 3\u02da in phase differences at the speaker zone.
-
Supplier: TMP Pro Distribution
Description: array modules. The S09 comes with two features that make it the perfect base for a high-quality satellite system - an integrated active stereo crossover with an adjustable cutoff frequency (90Hz and 120Hz) and a phase inversion switch. Speaker Type: Active Bandpass Subwoofer Frequency
- Speaker Size: 15 inch
- Application: Music / Audio Systems
-
Supplier: TMP Pro Distribution
Description: array modules. The S09 comes with two features that make it the perfect base for a high-quality satellite system - an integrated active stereo crossover with an adjustable cutoff frequency (90Hz and 120Hz) and a phase inversion switch. Speaker Type: Active Bandpass Subwoofer Frequency
- Speaker Size: 15 inch
- Application: Music / Audio Systems
-
Supplier: TMP Pro Distribution
Description: alone format, RAY SUB Technology, allows the same cabinet to be configured for any polar pattern, omni-directional as a standard direct radiating subwoofer when speakers are facing the audience, or highly directional when a speaker cabinet is rotated sideways or upwards. With
- Nominal Input Power: 1,400 watts
- Sensitivity: 105 dB
- Frequency Response: 35 to 250 Hz
- Speaker Size: 15 inch
-
Supplier: Biamp Systems, Ltd.
Description: I SERIES Point Source 600 loudspeakers provide excellent acoustic performance, modular flexibility and elegant aesthetics for modern performance venues. Designed to support the goals of systems integrators and consultants both acoustically and mechanically, I SERIES includes a wide variety of
- Speaker Size: 13 inch
- Application: Loudspeaker / Public Address, Telephone / Voice Communication
-
Supplier: Biamp Systems, Ltd.
Description: I SERIES Point Source 600 weather-resistant loudspeakers provide excellent acoustic performance, modular flexibility and elegant aesthetics for modern performance venues. Designed to support the goals of systems integrators and consultants both acoustically and mechanically, I SERIES includes a
- Speaker Size: 13 inch
- Application: Loudspeaker / Public Address, Telephone / Voice Communication
-
Supplier: Infineon Technologies AG
Description: of 71.5dB(A) enables far-field & low volume audio pick-up. The flat frequency response (11Hz low-frequency roll-off) & tight manufacturing tolerance improve performance of multi-microphone (array) applications. Summary of Features Signal-to-noise ratio of 71.5dB(A) SNR Acoustic overload point
- Signal to Noise Ratio: 71.5 dB
- Operating / Polarization Voltage: 1.62 to 3.6 volts
- Features: Audio, Digital Microphone, RoHS Compliant
-
Supplier: Infineon Technologies AG
Description: Applications Consumer electronics Semiconductor solutions for home entertainment applications Smart buildings Smart conference systems Smart speaker designs Designers who used this product also designed with CYUSB3302-68LTXI | EZ-USB™ HX3 USB 5 Gbps Hub Controller BSC070N10NS5SC | N-Channel
- Signal to Noise Ratio: 72 dB
- Operating / Polarization Voltage: 1.62 to 3.6 volts
- Features: Audio, Digital Microphone, RoHS Compliant
-
Supplier: Infineon Technologies AG
Description: Ultra-low noise digital XENSIVTM MEMS microphone IM73D122 is designed for applications which require a very high SNR (low self-noise) and a high sensitivity. The flat frequency response (20Hz low-frequency roll-off) and tight manufacturing tolerance improve performance of multi-microphone
- Signal to Noise Ratio: 73 dB
- Operating / Polarization Voltage: 1.62 to 3.6 volts
- Features: Audio, Digital Microphone, RoHS Compliant
Find Suppliers by Category Top
Featured Products Top
-
than power transformers, they are used to transmit audio signals from input devices, such as microphones, to output devices, such as speakers. Impedance matching is one of their most important functions, to prevent signal reduction and modify feedback signals. These transformers also exhibit great (read more)
Browse Audio Transformers Datasheets for Triad Magnetics
More Information Top
-
Wafer-compatible fabrication of thermally induced ultrasound emitters using nanocrystalline silicon layer
Applications for the device include high precision sensors, parametric speakers, phased array speakers and non-contactactuators.
-
AIAA Journal > Coherent motion in excited free shear flows
Measurements were obtained in the transition region of a laboratory jet where azimuthal modes were excited by a phased array of speakers situated around the circumference of the nozzle.10 The streamwise component of velocity was measured with a circumferential array of …
-
Inter-destination multimedia synchronization: schemes, use cases and standardization
The presented ranges of tolerated asynchrony levels obtained in such Social TV-like sce- narios are vastly different from some of the other use cases mentioned in the previous section (e.g. networked loud speakers , phased array transducers, etc.).
-
Springer Handbook of Experimental Fluid Mechanics
This can be accomplished with three, physically separate, sound drivers, or with a phased array of many speakers (some arrays with more than 100).
-
A real-time emergency response workstation using a 3-D numerical model initialized with sodar
Sodars emit pulses of sound upward into the atmosphere from a phased - array of speakers .
-
A real-time monitoring/emergency response workstation using a 3-D numerical model initialized with SODAR
SODARs emit pulses of sound upward into the atmosphere from a phased - array of speakers .
-
Theories and signal processing techniques for the implementation of sound ball in space using loudspeaker array
Since the acoustic sphere can be constructed by using many loudspeakers in space, the problem definition is to find the best possible means; the best method to control the gains and phases of the array speakers , which can satisfy the dissimilar objectives.
-
NIST Manuscript Publication Search
User Sensitive Interface, Speaker Identification, Phased Arrays , Beamforming, Speech Processing, Speech Recognition .
-
Objective functions incorporating various norms for the three-dimensional sound manipulation.
The most popular way to define the objective function is to utilize the form of L2 norm, but it is also likely possible to utilize L1 norm to decide corresponding array speakers magnitudes and phases .
-
http://vbn.aau.dk/files/168265902/166th_meeting_acoustical_society_america.pdf
The most popular way to define the objective function is to utilize the form of L2 norm, but it is also likely possible to utilize L1 norm to decide corresponding array speakers magnitudes and phases .
Indicates content that may require registration and/or purchase.