Infineon Technologies Micrófonos MEMS XENSIV™

Los micrófonos MEMS XENSIV™ de Infineon están diseñados para aplicaciones que requieren bajo nivel de auto-ruido (alto nivel de SNR), un amplio rango dinámico, distorsiones inferiores al 1 % en 128dBSPL y un punto de sobrecarga acústica alta. Los micrófonos tienen una relación señal-ruido (SNR) de 70 dB. Los micrófonos MEMS XENSIV™ ofrecen señales de audio clarísimas, una distancia de recogida ampliada y sensibilidad a señales suaves y fuertes en aplicaciones.

Los micrófonos cuentan con tecnología MEMS de doble placa posterior, basada en un diseño de micrófono simétrico miniaturizado, como se usa en los micrófonos de condensador de estudio. Esto resulta en un alto nivel de linealidad de la señal de salida dentro de un rango dinámico de 95 dB para el IM69D120 y 105 dB para el IM69D130. Esto se combina con un nivel de distorsión excepcionalmente bajo del 10 % a un nivel de presión sonora (SPL) de 135 dB.

Características

  • Rango dinámico de 105 dB
  • Relación señal-ruido de 69 dB(A) SNR
  • <1 % de distorsión armónica total de hasta 128 dBSPL
  •  Punto de sobrecarga acústica de 130 dBSPL
  • Coincidencia de sensibilidad (± 1 dB) y fase (± 2° a 1 kHz)
  • Respuesta de frecuencia plana con bajo nivel de caída de frecuencia a 28 Hz
  • Velocidad muy rápida de conversión de señal analógica a digital (latencia de 6 μs a 1 kHz)
  • Modos optimizados de potencia determinados por la frecuencia de reloj PDM
  • Dimensiones del paquete: 4 mm x 3 mm x 1.2 mm
  • Salida PDM
  • Patrón de captación omnidireccional

Aplicaciones

  • Dispositivos con interfaz de usuario por voz (VUI)
  • Altavoces inteligentes
  • Automatización del hogar
  • Dispositivos IOT
  • Auriculares e intraauriculares con cancelación activa del ruido (ANC)
  • Captura de audio de alta calidad
  • Sistemas de conferencia
  • Cámaras y videocámaras
  • Monitoreo doméstico o industrial con detección de patrón de audio

IM69D128S

Great signal-to-noise ratio (SNR) of 69dB(A) enables a crystal clear audio experience without compromising on battery life. Enabled by a revolutionary digital microphone ASIC, the IM69D128S sets a benchmark by cutting current consumption to 520μA – almost half of what models with similar performance on the market can offer.  Additionally, IM69D128S masters the art of switching between different power and performance profiles without any audible artifacts, i.e., glitches that the user can hear.

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IM70D122

High performance digital XENSIV MEMS microphone IM70D122 makes the most out of Infineon´s Sealed Dual Membrane technology to meet a very high signal-to-noise ratio of 70dB(A) and a very high sensitivity of -26dBFS. Especially thanks to its high sensitivity and high SNR, the IM70D122 is perfectly tailored for advanced audio capturing, which can uplift the audio experience for laptops, tablets, cameras, and conference systems.

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IM73D122

Ultra-low noise digital XENSIV MEMS microphone IM73D122 is designed for applications that require a very high SNR (low self-noise) and high sensitivity. The flat frequency response (20Hz low-frequency roll-off) and tight manufacturing tolerance improve the performance of multi-microphone (array) applications. This microphone is based on Infineon's Sealed Dual Membrane MEMS technology, which delivers high ingress protection (IP57) at a microphone level.

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IM68A130

The IM68A130 is a high-performance, single-ended, analog MEMS microphone designed for applications that require a low LFRO (10Hz), a high SNR (low self-noise), and low distortion (high AOP). The high signal-to-noise ratio (SNR) of 68dB(A) enables far-field and low-volume audio pick-up. The flat frequency response and tight manufacturing tolerance improve the performance of Active Noise Cancellation (ANC) and multi-microphone array applications.

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IM70A135

Infineon’s XENSIV MEMS analog microphone IM70A135 is a compact, high-performance microphone with a very high acoustic overload point of 135dBSPL and a size of only 3.50mm x 2.65mm x 1.00mm3. This microphone is based on Infineon’s Sealed Dual Membrane MEMS technology, which delivers high ingress protection (IP57) at a microphone level. The small size makes this microphone especially suited for TWS earbud applications.

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IM72D128V01

The IM72D128V01 is an ultra-high-performance digital microphone designed for applications that require a very high SNR (low self-noise) and low distortions (high AOP). This microphone is based on Infineon's Sealed Dual Membrane MEMS technology, which delivers high ingress protection (IP57) at a microphone level. The flat frequency response (20Hz low-frequency roll-off) and tight manufacturing tolerance improve the performance of multi-microphone (array) applications. Different power modes can be selected to suit specific clock frequencies and current consumption requirements.

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IM69D127

IM69D127 is a digital high-performance MEMS microphone based on Infineon's Sealed Dual Membrane MEMS technology, which delivers high ingress protection (IP57) at a microphone level. Its small size of only 3.60mm x 2.50mm x 1.00mm3 makes it a perfect match for compact audio devices, like TWS earbuds.

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IM73A135

Infineon’s XENSIV MEMS analog microphone IM73A135 features a signal-to-noise ratio (SNR) of 73dB and a high acoustic overload point of 135dBSPL to enable clear audio pick-up of the quietest and the loudest sounds. The IM73A135 allows designers to reach a level of high audio performance that was previously only achievable by ECMs while at the same time reaping the benefits inherent in MEMS technology.

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Audiohub Nano

The Infineon Audiohub Nano Analogs EVAL AHNB ANALOGV01 enables the evaluation of Infineon analog XENSIV  MEMS microphones. The kit includes an Infineon Audiohub Nano and four analog microphones on a flex board. Up to two Infineon analog XENSIV MEMS microphones can be connected to the mono or stereo output evaluation board. The evaluation board provides a USB audio interface to stream audio data from the microphone with any audio recording and editing software.

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Diagrama de bloques - Infineon Technologies Micrófonos MEMS XENSIV™
Publicado: 2018-01-17 | Actualizado: 2023-09-07