EXSHINE Part Number: | EX-INMP411ACEZ-R7 |
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Manufacturer Part Number: | INMP411ACEZ-R7 |
Manufacturer / Brand: | InvenSense |
Brief Description: | MIC MEMS ANALOG OMNI -46DB |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Condition: | 1 |
Datasheet Download: | INMP411 Datasheet |
Application: | - |
Weight: | - |
Alternative Replacement: | - |
Voltage Range | 1.5 ~ 3.63V |
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Voltage - Rated | - |
Type | MEMS (Silicon) |
Termination | Solder Pads |
Size / Dimension | 0.186" L x 0.148" W (4.72mm x 3.76mm) |
Shape | Rectangular |
Series | INMP411 |
Sensitivity | -46dB ±2dB @ 94dB SPL |
Seal Rating | None |
S/N Ratio | 62dB |
Port Location | Bottom |
Packaging | Tape & Reel (TR) |
Output Type | Analog |
Other Names | 1428-1021-2 ADMP411ACEZ-RL7 ADMP411ACEZ-RL7TR ADMP411ACEZ-RL7TR-ND INMP411ACEZ-RL7 Q8135508 |
Moisture Sensitivity Level (MSL) | 1 (Unlimited) |
Manufacturer Part Number | INMP411ACEZ-R7 |
Impedance | 200 Ohm |
Height (Max) | 0.043" (1.10mm) |
Frequency Range | 28Hz ~ 20kHz |
Expanded Description | 28Hz ~ 20kHz Analog Microphone MEMS (Silicon) Omnidirectional (-46dB ±2dB @ 94dB SPL) Solder Pads |
Direction | Omnidirectional |
Description | MIC MEMS ANALOG OMNI -46DB |
Current - Supply | 250µA |
Other Names | 1428-1021-2 ADMP411ACEZ-RL7 ADMP411ACEZ-RL7TR ADMP411ACEZ-RL7TR-ND INMP411ACEZ-RL7 Q8135508 |
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Standard Package | 1,000 |
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T/T (Bank Transfer) Receiving: 1-4 days. |
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Paypal Receiving: immediately. |
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Western Union Receiving: 1-2 hours. |
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MoneyGram Receiving: 1-2 hours. |
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Alipay Receiving: immediately. |
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DHL EXPRESS Delivery time: 1-3 days. |
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FEDEX EXPRESS Delivery time: 1-3 days. |
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UPS EXPRESS Delivery time: 2-4 days. |
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TNT EXPRESS Delivery time: 3-6 days. |
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EMS EXPRESS Delivery time: 7-10 days. |
- InvenSense® is the pioneer and global market leader in MEMS System on Chip (SOC) solutions. Our single-chip MotionTracking™ solutions combine micro-electromechanical system, or MEMS, based motion sensors, such as accelerometers and gyroscopes, with mixed-signal integrated circuits (ICs) to improve performance, accuracy, and intuitive motion- and gesture-based interfaces.