MP34DB02. MEMS audio sensor omnidirectional digital microphone. Description. Features. Applications

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MP34DB02 MEMS audio sensor omnidirectional digital microphone Datasheet - production data Speech recognition A/V elearning devices Gaming and virtual reality input devices Digital still and video cameras Antitheft systems Features Single supply voltage Low power consumption 120 dbspl acoustic overload point 62.6 db signal-to-noise ratio Omnidirectional sensitivity 26 dbfs sensitivity PDM single-bit output with option for stereo configuration RHLGA package Bottom-port design SMD-compliant EMI-shielded ECOPACK, RoHS and Green compliant Applications Mobile terminals Laptop and notebook computers Portable media players VoIP Description The MP34DB02 is an ultra-compact, low-power, omnidirectional, digital MEMS microphone built with a capacitive sensing element and an IC interface with stereo operation capability. The sensing element, capable of detecting acoustic waves, is manufactured using a specialized silicon micromachining process dedicated to produce audio sensors. The IC interface is manufactured using a CMOS process that allows designing a dedicated circuit able to provide a digital signal externally in PDM format. The MP34DB02 has an acoustic overload point of 120 dbspl with a best-on-the-market 62.6 db signal-to-noise ratio and -26 dbfs sensitivity. The MP34DB02 is available in a bottom-port, SMD-compliant, EMI-shielded package and is guaranteed to operate over an extended temperature range from -40 C to +85 C. Table 1: Device summary Temp. Part number Package range [ C] MP34DB02TR -40 to +85 RHLGA 4 LD (3x4x1) mm Packing Tape and reel April 2016 DocID026103 Rev 2 1/17 This is information on a product in full production. www.st.com

Contents MP34DB02 Contents 1 Pin description... 5 2 Acoustic and electrical specifications... 6 2.1 Acoustic and electrical characteristics... 6 2.2 Timing characteristics... 7 2.3 Frequency response... 8 3 Sensing element... 9 4 Absolute maximum ratings... 10 5 Functionality... 11 5.1 L/R channel selection... 11 6 Application recommendations... 12 7 Package information... 13 7.1 Soldering information... 13 7.2 RHLGA package information... 14 8 Revision history... 16 2/17 DocID026103 Rev 2

MP34DB02 List of tables List of tables Table 1: Device summary... 1 Table 2: Pin description... 5 Table 3: Acoustic and electrical characteristics... 6 Table 4: Distortion specifications... 6 Table 5: Timing characteristics... 7 Table 6: Absolute maximum ratings... 10 Table 7: L/R channel selection... 11 Table 8: Recommended soldering profile limits... 13 Table 9: RHLGA 4LD 3x4 mm (metal cap) 0.25 mm port hole package mechanical data... 14 Table 10: Document revision history... 16 DocID026103 Rev 2 3/17

List of figures List of figures MP34DB02 Figure 1: Pin connections... 5 Figure 2: Timing waveforms... 7 Figure 3: Frequency response... 8 Figure 4: MP34DB02 electrical connections... 12 Figure 5: MP34DB02 electrical connections for stereo configuration... 12 Figure 6: Recommended soldering profile limits... 13 Figure 7: RHLGA 4LD 3x4 mm (metal cap) 0.25 mm port hole package outline... 14 4/17 DocID026103 Rev 2

MP34DB02 Pin description 1 Pin description Figure 1: Pin connections Table 2: Pin description Pin number Pin name Function 1 CLK Synchronization input clock 2 LR Left/right channel selection 3 Vdd Power supply 4 DOUT Left/right PDM data output 5 (ground ring) GND 0 V supply DocID026103 Rev 2 5/17

Acoustic and electrical specifications MP34DB02 2 Acoustic and electrical specifications 2.1 Acoustic and electrical characteristics The values listed in the table below are specified for Vdd = 1.8 V, Clock = 2.4 MHz, T = 25 C, unless otherwise noted. Table 3: Acoustic and electrical characteristics Sym. Parameter Test condition Min. Typ. (1) Max. Unit Vdd Supply voltage 1.64 1.8 3.6 V Idd IddPdn Current consumption in normal mode Mean value (2) 0.65 ma Current consumption in (3) power-down mode 20 µa Scc Short-circuit current 1 10 ma AOP Acoustic overload point 120 dbspl So Sensitivity at 1 khz, 1 Pa -29-26 -23 dbfs SNR Signal-to-noise ratio A-weighted at 1 khz, 1 Pa 62.6 db PSR Power supply rejection 100 mvpp square wave @ 217 Hz, A-weighted -86 dbfs Clock Input clock frequency (4) 1 2.4 3.25 MHz TWK Wake-up time (5) guaranteed by design 10 ms Top Operating temperature range -40 +85 C Notes: (1) Typical specifications are not guaranteed. (2) No load on DOUT line. (3) Input clock in static mode. (4) Duty cycle: min = 40% max = 60% (5) Time from the first clock edge to valid output data. Table 4: Distortion specifications Parameter Test condition Value Distortion 100 dbspl (50 Hz - 4 khz) < 1% THD + N Distortion 115 dbspl (1 khz) < 5% THD + N 6/17 DocID026103 Rev 2

MP34DB02 2.2 Timing characteristics Table 5: Timing characteristics Acoustic and electrical specifications Parameter Description Min Max Unit f CLK Clock frequency for normal mode 1 3.25 MHz f PD Clock frequency for power-down mode 0.23 MHz T CLK Clock period for normal mode 308 1000 ns T R,EN Data enabled on DATA line, L/R pin = 1 18 (1) 30 (1) ns T R,DIS Data disabled on DATA line, L/R pin = 1 16 (1) ns T L,EN Data enabled on DATA line, L/R pin = 0 18 (1) 30 (1) ns T L,DIS Data disabled on DATA line, L/R pin = 0 16 (1) ns Notes: (1) From design simulations Figure 2: Timing waveforms DocID026103 Rev 2 7/17

Acoustic and electrical specifications 2.3 Frequency response Figure 3: Frequency response MP34DB02 8/17 DocID026103 Rev 2

MP34DB02 Sensing element 3 Sensing element The sensing element shall mean the acoustic sensor consisting of a conductive movable plate and a fixed plate placed in a tiny silicon chip. This sensor transduces the sound pressure into the changes of coupled capacity between those two plates. Omron Corporation supplies this element for STMicroelectronics. DocID026103 Rev 2 9/17

Absolute maximum ratings MP34DB02 4 Absolute maximum ratings Stresses above those listed as absolute maximum ratings may cause permanent damage to the device. This is a stress rating only and functional operation of the device under these conditions is not implied. Exposure to maximum rating conditions for extended periods may affect device reliability. Table 6: Absolute maximum ratings Symbol Ratings Maximum value Unit Vdd Supply voltage -0.3 to 6 V Vin Input voltage on any control pin -0.3 to Vdd +0.3 V T STG Storage temperature range -40 to +125 C ESD Electrostatic discharge protection 2 (HBM) kv 10/17 DocID026103 Rev 2

MP34DB02 Functionality 5 Functionality 5.1 L/R channel selection The L/R digital pad lets the user select the DOUT signal pattern as explained in Table 7: "L/R channel selection". The L/R pin must be connected to Vdd or GND. Table 7: L/R channel selection L/R CLK low CLK high GND Data valid High impedance Vdd High impedance Data valid DocID026103 Rev 2 11/17

Application recommendations MP34DB02 6 Application recommendations Figure 4: MP34DB02 electrical connections C ODE C CLK DOUT Vdd L/R 1 4 2 3 100nF 10 µf 5 Top view Figure 5: MP34DB02 electrical connections for stereo configuration CODE C CLK DOUT Vdd Mic1 Mic2 1 4 1 4 2 3 2 3 5 Top view 5 Top view 100 nf 10 µf Power supply decoupling capacitors (100 nf ceramic, 10 µf ceramic) should be placed as near as possible to pin 3 of the device (common design practice). The L/R pin must be connected to Vdd or GND (refer to Table 7: "L/R channel selection"). 12/17 DocID026103 Rev 2

MP34DB02 Package information 7 Package information In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product status are available at: www.st.com. ECOPACK is an ST trademark. 7.1 Soldering information The RHLGA (3 x 4 x 1) mm package is also compliant with the RoHS and Green standards and is qualified for soldering heat resistance according to JEDEC J-STD-020. Landing pattern and soldering recommendations are available at www.st.com. Figure 6: Recommended soldering profile limits Table 8: Recommended soldering profile limits Desription Parameter Pb free Average ramp rate T L to T P 3 C/sec max Preheat Ramp-up rate Minimum temperature Maximum temperature Time (T SMIN to T SMAX) Time maintained above liquidus temperature Liquidus temperature T SMIN T SMAX t S T SMAX to T L t L T L 150 C 200 C 60 sec to 120 sec 60 sec to 150 sec 217 C Peak temperature T P 260 C max Time within 5 C of actual peak temperature Ramp-down rate Time 25 C (t25 C) to peak temperature 20 sec to 40 sec 6 C/sec max 8 minutes max DocID026103 Rev 2 13/17

Package information MP34DB02 7.2 RHLGA package information Figure 7: RHLGA 4LD 3x4 mm (metal cap) 0.25 mm port hole package outline E1 T2 T2 d K E4 d K R3 M L2 N2 G5xG5Pin 1 Indicator j KE 4 1 T1 D1 D4 G1 L1 N1 3 2 T1 G2 D 2XG6 D2 D3 E R2 A2 G7 R1 G8 j KD A1 E2 G3 G4 TOP VIEW BOTTOM VIEW 8413120_A Table 9: RHLGA 4LD 3x4 mm (metal cap) 0.25 mm port hole package mechanical data mm. Symbol Min. Typ. Max. A1 0.900 1.000 1.100 A2 0.200 0.250 0.300 D1 3.900 4.000 4.100 D2 0.900 1.000 1.100 D3 1.000 1.100 1.200 D4 3.610 3.700 3.790 R1 0.200 0.250 0.300 R2 0.280 R3 0.250 E1 2.900 3.000 3.100 E2 1.300 1.500 1.700 E4 2.610 2.700 2.790 L1 0.650 0.700 0.750 L2 0.850 0.900 0.950 N1 1.000 1.050 1.100 N2 0.400 0.450 0.500 T1 0.350 0.400 0.450 T2 0.550 0.600 0.650 G1 3.050 3.100 3.150 G2 3.750 3.800 3.850 G3 2.050 2.100 2.150 14/17 DocID026103 Rev 2

MP34DB02 Package information mm. Symbol Min. Typ. Max. G4 2.750 2.800 2.850 G5 0.250 0.300 0.350 G6 0.050 0.100 0.150 G7 0.500 0.550 0.600 G8 0.800 0.850 0.900 M 0.100 K 0.050 DocID026103 Rev 2 15/17

Revision history MP34DB02 8 Revision history Table 10: Document revision history Date Revision Changes 21-Mar-2014 1 Initial release 28-Apr-2016 2 Updated Table 1: "Device summary" Updated PSR in Table 3: "Acoustic and electrical characteristics" 16/17 DocID026103 Rev 2

MP34DB02 IMPORTANT NOTICE PLEASE READ CAREFULLY STMicroelectronics NV and its subsidiaries ( ST ) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST s terms and conditions of sale in place at the time of order acknowledgement. Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of Purchasers products. No license, express or implied, to any intellectual property right is granted by ST herein. Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product. ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners. Information in this document supersedes and replaces information previously supplied in any prior versions of this document. 2016 STMicroelectronics All rights reserved DocID026103 Rev 2 17/17

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