Audio Technica BP893XCT4-TH, Omni Condenser Microphone
Vendor: Audio Technica
Available
Audio Technica BP893XCT4-TH, Omni Condenser Microphone
Audio Technica BP893XCT4-TH is an omnidirectional condenser headworn wireless microphone and features an unobtrusive 0.2" boom that extends just beyond the bottom of your year. Audio Technica BP893XCT4-TH is designed to give an outstanding intelligible, vocal reproduction for stage and television talent, lecturers and worship leaders. Audio Technica BP893XCT4-TH also includes the BPCB-cT4-TH detachable 1.4m (55") cable terminated for Shure wireless systems using TA4F-type connector. Other detachable cables with a variety of output terminations are available separately.
Audio Technica BP893XCT4-TH includes AT8440 cable clip, AT8464x-TH dual-ear adapter kit, AT8157-TH windscreen, AT8171-TH windscreen, two AT8156-TH element covers, a moisture guard, and a carrying case.
Audio Technica BP893XCT4-TH Product Features
- Subminiature omnidirectional condenser capsule offers extended frequency response for extremely intelligible, natural vocal reproduction
- Lightweight, ergonomic design
- Extremely unobtrusive, 0.2" boom
- Secure under-the-ear placement
- BPCB-cT4-TH detachable, field-replaceable 1.4 m (55") cable terminated for Shure® wireless systems using TA4F-type connector
- Comes with the AT8464x-TH Dual-Ear Adapter Kit that converts the single-ear MicroSet to a unit that’s worn on both ears for maximum stability and comfort
- Constructed of hypoallergenic material
- Available in black and beige, wired and wireless models
Sound Field | Mono |
Capsule | Condenser |
Polar Pattern | Omnidirectional |
Frequency Range | 20 Hz to 20 kHz |
Signal-to-Noise Ratio | 63 dB A-Weighted |
Maximum SPL | 131 dB SPL Peak |
Sensitivity | -38 dB |
Dynamic Range | 100 dB A-Weighted |
Output Connector | TA4F/Mini XLR |
Cable Length | 55" / 139.70 cm |
Operating Voltage | 2.5 to 10 V |
Operating Current Consumption | 0.2 mA |
Length | 0.37" / 9.40 mm |
Diameter | 0.10" / 2.54 mm |
Weight | 0.07 oz / 2 g |