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Our stock is strategically distributed across multiple warehouses to ensure swift processing and delivery. For urgent click and collect where products are showing in stock, please call us at 01442 292929 or email sales@proav.co.uk to check for availability.
Our stock is strategically distributed across multiple warehouses to ensure swift processing and delivery. For urgent click and collect where products are showing in stock, please call us at 01442 292929 or email sales@proav.co.uk to check for availability.
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Wired Dynamic Handheld Vocal Microphone
With two ultra-thin diaphragms and groundbreaking reverse airflow technology, the KSM8 Dualdyne™ delivers unmatched control of proximity effect, presence peaks, and bleed and requires minimal EQ and processing.
Meticulously crafted for world-class vocal performances and presentations in elite venues, the KSM8 Dualdyne is the revolutionary dynamic microphone that only Shure could make.
Achieving the sound quality demanded by elite performers and venues no longer requires sacrificing the rugged reliability of a dynamic microphone. The KSM8 Dualdyne features a patented cartridge design with two ultra-thin diaphragms and groundbreaking reverse airflow technology.
Dent-resistant, hardened carbon-steel grille
Lined with hydrophobic woven fabric for exceptional protection against wind, plosives and water, the KSM8 Dualdyne grille is durability redefined.
Patent-pending Diaphragm Stabilization System
Protecting and stabilizing the active diaphragm during plosives and impact, the DSS greatly reduces high-frequency handling noise.
Patented cartridge design with two ultra-thin diaphragms and reverse airflow
Controlled proximity effect vastly increases the working distance without on-axis coloration, delivering the most accurate frequency response available in a dynamic microphone.
Reimagined Shure pumping pneumatic shock mount
An elaborate architecture of tuned cavities, specific resistances, and precisely machined components is fully integrated into the cartridge’s acoustic properties, dramatically reducing handling noise without loss of low-end response.
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