SiSonic™ Consumer MEMS Microphones

High-performance processing on power-constrained devices

With over 20 billion units shipped to date, we are the world leader in MEMS microphones across the Mobile, Ear, and IoT markets. Our broad lineup of analog and digital microphones are available in ever-smaller sizes and lower profiles, while our high-SNR MEMS microphones pave the way to the latest AI voice applications.

MEMS Microphone Portfolio

P/N Applications Interface Port Location SNR (dB) AOP (dB SPL) Sensitivity (dBFS(D), dBV/Pa(A)) LFRO (Hz) Dimensions (mm) Typical Current (µA) Supply Voltage (V)
⬇ Hyperion SPK18R1LM4H-1
  • Smart speaker
  • Smart TV
  • Headset
Digital PDM Bottom 70.5 128 -36 ±1 21 4.00 x 3.00 x 1.20 LP 180 / NP 500 1.8
⬇ Hyperion-C SPK11R1LM4H-1
  • Smart speaker
  • Smart TV
  • Computing
Digital PDM Bottom 70.5 122 -26 ±1 21 4.00 x 3.00 x 1.20 LP 180 / NP 500 1.8
⬇ Titan SPH18R1LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 68 129 -37 ±1 30 3.50 x 2.65 x 1.00 LP 180 / NP 500 1.8
⬇ Titan 1.2 SPH88R1LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 68 128 -37 ±1 32 3.50 x 2.65 x 0.98 LP 180 / NP 500 1.8
⬇ Everest SPH0690LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 68 130 -35±1 30 3.50 x 2.65 x 0.98 LP 260 / NP 1000 1.8
⬇ Everest-C SPH8690LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 68 121 -26±1 30 3.50 x 2.65 x 0.98 LP 260 / NP 1000 1.8
⬇ Cameron SPW0690LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 66.5 135 -41±1 40 3.10 x 2.50 x 0.85 LP 260 / NP 1000 1.8
⬇ Cornell 2 SPH0655LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
Digital PDM Bottom 66 132.5 -37 ±1 25 3.50 x 2.65 x 0.98 LP 260 / NP 1000 1.8
⬇ Cornell 2C SPH51R3LM4H-1
  • Smart speaker
  • Smart TV
  • Mobile
  • Headset
  • Computing
Digital PDM Bottom 66 121 -26 ±1 25 3.50 x 2.65 x 0.98 LP 260 / NP 1000 1.8
⬇ Maira SPH01R9LM4H-1
  • Headsets
  • Mobile
Digital PDM Bottom 65.5 132.5 -37 ±1 35 3.5 x 2.65 x 0.80 LP 250 / NP 650 1.8
⬇ Marina SPC18P8LM4H-1
  • Notebook
  • Tablet
Digital PDM Bottom 65 122 -26 ±1 25 3.50 x 2.00 x 1.00 LP 260 / NP 865 1.8
⬇ Helix SPS11R1LM4H
  • Headsets
  • Mobile
Digital PDM Bottom 64.5 132 -37 ±1 33 3.25 x 2.25 x 0.8 700 1.8
⬇ More SPH0641LU4H-1
  • Industrial
Digital PDM Bottom 64 120 -26 ±1 45 3.50 x 2.65 x 0.98 LP 235 / NP 620 1.8
⬇ Mario SPK1638LM4H-1
  • Mobile
  • Computing
  • Tablet
Digital PDM Bottom 64 121 -26 ±1 25 4.00 x 3.00 x 1.00 620 1.8
⬇ Luiso SPH0141LM4H-1
  • Smart speaker
  • Smart TV
  • Headset
Digital PDM Bottom 64 120 -26 ±1 45 3.50 x 2.65 x 0.98 LP 235 / NP 620 1.8
⬇ Gaudi SPG01R8HT4H-1
  • Notebook
  • Tablet
Digital PDM Top 67.5 120 -26 ±1 47 4.00 x 2.00 x 1.10 LP 250 / NP 900 1.8
⬇ Baracus SPG08P4HM4H-1
  • Notebook
  • Tablet
Digital PDM Top 64.5 120 -26 ±1 30 4.00 x 2.00 x 1.10 LP 290 / NP 715 1.8
⬇ Ramis SPK0641HT4H-1
  • Notebook
  • Tablet
  • Smart TV
Digital PDM Top 64.5 120 -26 ±1 35 4.00 x 3.00 x 1.00 LP 230 / NP 630 1.8
⬇ Ramis-B SPK0838HT4H-1
  • Notebook
  • Tablet
Digital PDM Top 64.5 120 -26 ±1 35 4.00 x 3.00 x 1.00 LP 230 / NP 630 1.8
⬇ Raptor SPK01A0LR5H-1
  • Smart speaker
  • Headset
Analog Bottom 72 130 -38 +/- 1 (SE) 17 4.00 x 3.00 x 1.20 175 2.75
⬇ WinfreyPro SPM0192LR5H-1
  • Smart speaker
  • Headset
Analog Bottom 69.5 130 -40.7 +/- 1 (SE) -34.7 +/- 1 (Diff.) 13 4.72 x 3.76 x 1.15 250 2.75
⬇ Falcon SPH11C3LR5H-1
  • Headset
  • Smart Speaker
  • Mobile
Analog Bottom 68.5 134 -38 +/- 1 (Diff.) 32 3.50 x 2.65 x 1.00 LP 67/NM 200 1.8/2.75
⬇ Falcon FB SPH21C3LR5H-1
  • Headset
  • Smart Speaker
Analog Bottom 68.5 134 -38 +/- 1 (Diff.) 18 3.50 x 2.65 x 1.00 LP 67/NM 200 1.8/2.75
⬇ Astrid SPVA1A0LR5H-1
  • Headsets
  • Mobile
Analog Bottom 68 130 -40±1 22 2.75 x 1.85 x 1.15 175 2.75
⬇ Lovato SPH8878LR5H-1
  • Smart Speaker
  • Headset
Analog Bottom 67 134 -44 +/- 1 (SE) -38 +/- 1 (Diff.) 7 3.50 x 2.65 x 1.26 LP 100/NM 250 1.8/2.75
⬇ Robin SPV61A0LR5H-1
  • Mobile
  • Headset
  • Smart Speaker
Analog Bottom 66 132 -40 ±1 35 2.75 x 1.85 x 0.90 180 2.75
⬇ Jamila SPV01C8LR5H-1
  • Headsets
  • Mobile
  • Computing
Analog Bottom 65 133 -38±1 85 2.75 x 1.85 x 0.90 175 1.8
⬇ Tochi2 SPV21A0LR5H-1
  • Mobile
  • Headset
  • Smart Speaker
Analog Bottom 64.5 134 -42 ±1 35 2.75 x 1.85 x 0.90 180 2.7
⬇ Quartz SPV1142LR5H-1
  • Headset
Analog Bottom 63 123 -38 ±1 25 2.75 x 1.85 x 0.90 135 1.8
⬇ Ford2 SPV0142LR5H-1
  • Mobile
  • Headset
Analog Bottom 62.5 124 -38 ±1 85 2.75 x 1.85 x 0.90 145 2.7
⬇ SPU-Top2 SPU01C4HR5H-1
  • Smart Speaker
Analog Top 62.5 128 -42 ±1 - 3.76 x 2.95 x 1.10 140 1.8
⬇Sky SPD01R9LM4H1
  • Smart Glasses
  • Headset
  • Wearables
  • Mobile
Digital PDM Bottom 66 132 -37 ±1 19 3.0 x 2.3 x 1.0 LP 240/NM 650 1.8

Choosing the Right Microphones

DIGITAL (PDM) OR ANALOG MICROPHONES?

PDM microphones have an integrated ADC and return oversampled PDM data at the supplied clock frequency. Advantages of PDM microphones include superior noise immunity, simpler PCB layout, typically better system SNR and lower overall power consumption. PDM microphones can greatly simplify system design if the processor or CODEC supports a PDM port.

ULTRASONIC APPLICATIONS

MEMS microphones inherently have a very usable ultrasonic response from 20kHz to 80kHz or more. The output of the u/s signal must be processed by an amp, CODEC, or ADC that can extract the needed frequencies, usually by using a higher sample rate and/or lower decimation rate.

SENSITIVITY OF PDM MICROPHONES

Sensitivity of microphones is the reference output for 94dBSPL sound. Higher sensitivity implies more signal for a given sound. In PDM microphones, higher sensitivity does not imply higher performance because gain can simply be applied in the digital domain by multiplying the output code. Dynamic range is a better indicator of microphone performance.

SIGNAL TO NOISE RATIO

For far field applications like smart speakers, high SNR microphones result in superior audio pickup. ANC and transparency mode features in TWS need high SNR microphones for better user experience. When comparing analog to PDM microphones, reduce the analog SNR by ~1.5dB to account for the external ADC’s noise contribution.

PORT LOCATION

Bottom port microphones typically have better noise performance than an equivalent top port microphone. For this reason, bottom port microphones are preferred unless mechanical constraints dictate a top port microphone.

LOW FREQUENCY ROLL-OFF (LFRO)

The LFRO is the -3dB point of the frequency response with respect to the sensitivity at 1kHz. A low LFRO is advantageous for bass frequency pickup and ANC, but it is more sensitive to wind noise and low frequency overload in a feedback ANC system.

ACOUSTIC OVERLOAD POINT (AOP)

The AOP is the sound pressure level at 1kHz at which the total harmonic distortion is 10%. At this point, audio is heavily clipped and sounds very distorted. Microphones require a high AOP spec if they are subject to high sound levels (eg. close to loudspeakers, in-ear microphones in earbuds, outdoor applications exposed to wind noise).

MEMS VS. ELECTRET CONDENSER (ECM) MICROPHONES

MEMS microphones are reflow capable SMT devices with stable performance under extreme conditions. They are resistant to power supply noise, humidity, and mechanical shock and vibration . Compared to ECMs, MEMS microphones have wide operating temperature and supply voltage ranges where sensitivity does not drift.

Evaluation Kits

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Test Flex PCBs

Syntiant utilizes flex PCBs when testing microphones. We have a common size and interface such that flexes from any microphone can be used in various test fixtures. The only difference between the test boards of different microphones is the pinout and pad configuration.

Once microphones are mounted on flex circuits or coupons, it is much easier to access the microphone signals. Testing a larger sample size of devices is facilitated if the flexes and coupons are inserted into an 8 position 0.5mm Kyocera connector (MPN 046288008000846).

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Flex-To-Coupon Adapter

Syntiant uses an adapter to be able to use flex circuits with a 2×3 Sullins connector (MPN EBM03DSEN-S243) or for convenient connection with flying wires.

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Evaluation Board “Muskie”

The Muskie microphone evaluation kit allows for simple and easy evaluation of Syntiant SiSonic™ MEMS microphones. Muskie implements dual 6-pin Sullins connectors for stereo pairs of Analog/Differential microphones, Digital microphones, or I2S microphones.

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