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SPU0410LR5H-QB产品简介:
ICGOO电子元器件商城为您提供SPU0410LR5H-QB由Knowles Acoustics设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 提供SPU0410LR5H-QB价格参考¥3.78-¥6.40以及Knowles AcousticsSPU0410LR5H-QB封装/规格参数等产品信息。 你可以下载SPU0410LR5H-QB参考资料、Datasheet数据手册功能说明书, 资料中有SPU0410LR5H-QB详细功能的应用电路图电压和使用方法及教程。
| 参数 | 数值 |
| 产品目录 | |
| 描述 | MIC MEMS ANALOG OMNI -38DBMEMS麦克风 MIC MEMS ANALOG OMNI -38DB |
| 产品分类 | |
| 品牌 | Knowles |
| 产品手册 | |
| 产品图片 |
|
| rohs | 符合RoHS无铅 / 符合限制有害物质指令(RoHS)规范要求 |
| 产品系列 | MEMS麦克风,Knowles SPU0410LR5H-QBSiSonic™ |
| 数据手册 | |
| 产品型号 | SPU0410LR5H-QB |
| 产品目录绘图 |
|
| 产品种类 | MEMS麦克风 |
| 信噪比 | 63dB |
| 其它名称 | 423-1139-6 |
| 包装 | Digi-Reel® |
| 商标 | Knowles |
| 商标名 | SiSonic |
| 大小/尺寸 | 3.76mm 长 x 3.00mm 宽 |
| 安装风格 | SMD/SMT |
| 宽度 | 3 mm |
| 密封等级 | 无 |
| 封装 | Reel |
| 工作电压 | 1.5 V to 3.6 V |
| 工厂包装数量 | 1200 |
| 应用说明 | |
| 形状 | 矩形 |
| 方向 | 全向 |
| 方向性 | Omnidirectional |
| 标准包装 | 1 |
| 深度 | 1.23 mm |
| 灵敏度 | -38dB ±3dB @ 94dB SPL |
| 特色产品 | http://www.digikey.cn/product-highlights/zh/sisonic-mems-microphones/51052 |
| 电压-额定 | 1.5 ~ 3.6V |
| 电流-电源 | 160µA |
| 电流额定值 | 160 uA |
| 端口位置 | 底部 |
| 端接 | 表面贴装型 |
| 端接类型 | SMD/SMT |
| 类型 | MEMS(硅) |
| 系列 | SiSonic |
| 输出类型 | 模拟 |
| 配用 | /product-detail/zh/KAS-33100-001/423-1181-ND/3868187 |
| 长度 | 3.76 mm |
| 阻抗 | 400 欧姆 |
| 频率 | 100 Hz to 10 kHz |
| 频率范围 | 100Hz ~ 10kHz |
| 高度(最大值) | 1.23mm |
SPU0410LR5H-1 TM Zero-Height Precision SiSonic Microphone The SPU0410LR5H-1 is a miniature, high- Features: performance, low power, bottom port Matched Sensitivity silicon microphone. Using Knowles’ proven Flat Frequency Response high performance SiSonicTM MEMS Low Current technology, the SPU0410LR5H-1 consists of Small package an acoustic sensor, a low noise input buffer, MaxRF protection and an output amplifier. These devices are Zero-Height MicTM suitable for applications such as cellphones, Ultra-Stable Performance smart phones, laptop computers, sensors, Standard SMD Reflow digital still cameras, portable music Omnidirectional recorders, and other portable electronic devices where excellent wideband audio performance and RF immunity are required. Revision: D 1/26/2014 Sheet 1 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 1. ABSOLUTE MAXIMUM RATINGS Parameter Absolute Maximum Rating Units V to Ground -0.5, +5.0 V DD OUT to Ground -0.3, V + 0.3 V DD Input Current to Any Pin ±5 mA Temperature Range -40 to +100 °C Stresses exceeding these “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only. Functional operation at these or any other conditions beyond those indicated under “Acoustic & Electrical Specifications” is not implied. Exposure beyond those indicated under “Acoustic & Electrical Specifications” for extended periods may affect device reliability. 2. ACOUSTIC & ELECTRICAL SPECIFICATIONS TEST CONDITIONS: 23 ±2°C, 55±20% R.H., V (min) < V < V (max), no load, unless otherwise indicated DD DD DD Parameter Symbol Conditions Min Typ Max Units Supply Voltage1 V 1.5 - 3.6 V DD Supply Current1,2 I - 120 160 µA DD Sensitivity1 S 94 dB SPL @ 1 kHz -39 -38 -37 dBV/Pa Signal to Noise Ratio SNR 94 dB SPL @ 1 kHz, A-weighted - 63 - dB(A) Total Harmonic 94 dB SPL @ 1 kHz, THD - 0.15 0.2 % Distortion S = Typ, R > 3 k load Acoustic Overload 10% THD @ 1 kHz, AOP 116 118 - dB SPL Point S = Typ, V = 3.6V, R > 3 k DD load DC Output V = 1.5V - 0.73 - V DD Output Impedance Z @ 1 kHz - - 400 OUT Directivity Omnidirectional Polarity Increasing sound pressure Increasing output voltage 1 100% tested. 2 Maximum specifications are measured at maximum V . Typical specifications are measured at V = 1.8V. DD DD Revision: D 1/26/2014 Sheet 2 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 3. FREQUENCY RESPONSE CURVE Typical Free Field Response Normalized to 1kHz 20 18 16 14 12 10 8 ) 6 B d 4 ( y 2 t vi 0 ti -2 si n -4 e S -6 -8 -10 -12 -14 -16 -18 -20 100 1,000 10,000 Frequency (Hz) Revision: D 1/26/2014 Sheet 3 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 4. INTERFACE CIRCUIT V DD .1f R F V DD OUTPUT R S GROUND V REF External Gain = -R /R F S (Set By User) Dotted Section Represents SiSonicTM Microphone Note: All Ground pins must be connected to ground. Capacitors near the microphone should not contain Class 2 dielectrics. Detailed information on acoustic, mechanical, and system integration can be found in the latest SiSonicTM Design Guide application note. Revision: D 1/26/2014 Sheet 4 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 5. MECHANICAL SPECIFICATIONS Item Dimension Tolerance Length (L) 3.76 ±0.10 Width (W) 3.00 ±0.10 Height (H) 1.10 ±0.10 Acoustic Port (AP) Ø0.25 ±0.08 Pin # Pin Name Type Description 1 OUTPUT Signal Output Signal 2 GROUND Power Ground 3 GROUND Power Ground 4 V Power Power Supply DD 5 GROUND Power Ground 6 GROUND Power Ground Notes: Pick Area only extends to 0.25 mm of any edge or hole unless otherwise specified. Dimensions are in millimeters unless otherwise specified. Tolerance is ±0.15mm unless otherwise specified Revision: D 1/26/2014 Sheet 5 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 6. EXAMPLE LAND PATTERN 7. EXAMPLE SOLDER STENCIL PATTERN Notes: Dimensions are in millimeters unless otherwise specified. Detailed information on AP size considerations can be found in the latest SiSonicTM Design Guide application note. Further optimizations based on application should be performed. Revision: D 1/26/2014 Sheet 6 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 8. PACKAGING & MARKING DETAIL Model Number Suffix Reel Diameter Quantity Per Reel SPU0410LR5H-1 -7 13” 5,700 Pin 1 Alpha Character A: “S”: Knowles SiSonicTM Production “E”: Knowles Engineering Samples “P”: Knowles Prototype Samples “JIN NUMBER”: Unique Job Identification Number for product traceability Notes: Dimensions are in millimeters unless otherwise specified. Vacuum pickup only in the pick area indicated in Mechanical Specifications. Tape & reel per EIA-481. Labels applied directly to reel and external package. Revision: D 1/26/2014 Sheet 7 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 9. RECOMMENDED REFLOW PROFILE t T P P Ramp-up T L e r atu T tL r SMAX e p m e t Preheat T S Ramp-down T SMIN 25°C Time Time 25°C to Peak Profile Feature Pb-Free Average Ramp-up rate (T to T ) 3°C/second max. SMAX P Preheat Temperature Min (T ) 150°C SMIN Temperature Max (T ) 200°C SMAX Time (T to T ) (t ) 60-180 seconds SMIN SMAX S Time maintained above: Temperature (T ) 217°C L Time (t ) 60-150 seconds L Peak Temperature (T ) 260°C P Time within 5°C of actual Peak Temperature (t ) 20-40 seconds P Ramp-down rate (T to T ) 6°C/second max P SMAX Time 25°C to Peak Temperature 8 minutes max Notes: Based on IPC/JDEC J-STD-020 Revision C. All temperatures refer to topside of the package, measured on the package body surface. Revision: D 1/26/2014 Sheet 8 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 10. ADDITIONAL NOTES (A) Shelf life: Twelve (12) months when devices are to be stored in factory supplied, unopened ESD moisture sensitive bag under maximum environmental conditions of 30°C, 70% R.H. (B) MSL (moisture sensitivity level) Class 1. (C) Maximum of 3 reflow cycles is recommended. (D) In order to minimize device damage: Do not board wash or clean after the reflow process. Do not brush board with or without solvents after the reflow process. Do not directly expose to ultrasonic processing, welding, or cleaning. Do not insert any object in port hole of device at any time. Do not apply over 30 psi of air pressure into the port hole. Do not pull a vacuum over port hole of the microphone. Do not apply a vacuum when repacking into sealed bags at a rate faster than 0.5 atm/sec. 11. MATERIALS STATEMENT Meets the requirements of the European RoHS directive 2011/65/EC as amended. Meets the requirements of the industry standard IEC 61249-2-21:2003 for halogenated substances and Knowles Green Materials Standards Policy section on Halogen-Free. Ozone depleting substances are not used in the product or the processes used to make the product, including compounds listed in Annex A, B, and C of the “Montreal Protocol on Substances That Deplete the Ozone Layer.” Revision: D 1/26/2014 Sheet 9 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 12. RELIABILITY SPECIFICATIONS Test Description 100 cycles air-to-air thermal shock from -40oC to +125oC with 15 Thermal Shock minute soaks. (IEC 68-2-4) High Temperature Storage 1,000 hours at +105oC environment (IEC 68-2-2 Test Ba) Low Temperature Storage 1,000 hours at -40oC environment (IEC 68-2-2 Test Aa) High Temperature Bias 1,000 hours at +105oC under bias (IEC 68-2-2 Test Ba) Low Temperature Bias 1,000 hours at -40oC under bias (IEC 68-2-2 Test Aa) Temperature / Humidity Bias 1,000 hours at +85oC/85% R.H. under bias. (JESD22-A101A-B) 4 cycles of 20 to 2,000 Hz sinusoidal sweep with 20 G peak Vibration acceleration lasting 12 minutes in X, Y, and Z directions. (Mil-Std-883E, method 2007.2 A) ESD-HBM 3 discharges of ±2 kV direct contact to I/O pins. (ESD STM5.2) 3 discharges of ±8 kV direct contact to lid while unit is grounded. ESD-LID/GND (IEC 61000-4-2) 3 discharges of ±2 kV direct contact to I/O pins. ESD-MM (MIL 883E, Method 3015.7) Reflow 5 reflow cycles with peak temperature of +260oC Mechanical Shock 3 pulses of 10,000 G in the X, Y, and Z direction (IEC 68-2-27, Test Ea) Note: After reliability tests are performed, the sensitivity of the microphones shall not deviate more than 3 dB from its initial value. After 3 reflow cycles, the sensitivity of the microphone shall not deviate more than 1dB from its initial value. Revision: D 1/26/2014 Sheet 10 of 11 ©2014 Knowles Electronics
SPU0410LR5H-1 13. SPECIFICATION REVISIONS Revision Specification Changes Date A Initial Release 9/11/12 B New JIN designation; new RoHS statement (C10114438) 12/17/12 Updated humidity conditions, ESD descriptions, AP and Pin 1 designation C 3/27/13 (C10114466); fixed typos in Reliability Section 12 (C10114690) D Add +/-1 dB tolerance after 3 reflows (C10115609) 1/26/14 Information contained herein is subject to change without notice. It may be used by a party at their own discretion and risk. We do not guarantee any results or assume any liability in connection with its use. This publication is not to be taken as a license to operate under any existing patents. Revision: D 1/26/2014 Sheet 11 of 11 ©2014 Knowles Electronics
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