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LPS27HHWTR
+Lista de MateriaisCONSUMER MEMS
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FabricanteSTMicroeletrônica
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Peça do Fabricante #LPS27HHWTR
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Ficha Técnica LPS27HHWTR DataSheet
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Pacote CERAMIC CCLGA
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Em Estoque3561
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| Applications | Board Mount |
| PressureType | Absolute |
| OperatingPressure | 3.77PSI ~ 18.27PSI (26kPa ~ 126kPa) |
| OutputType | I²C, SPI |
| Output | 24 b |
| Accuracy | ±0.015PSI (±0.1kPa) |
| Voltage-Supply | 1.7V ~ 3.6V |
| PortStyle | No Port |
| Features | Temperature Compensated |
| TerminationStyle | SMD (SMT) Tab |
| MaximumPressure | 145.04PSI (1000kPa) |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 10-CLGA |
Visão Geral
Description
This barometer operates within a pressure range of 260 to 1260 hPa and includes both a temperature sensor and a pressure sensor, providing compensation and calibration capabilities. The LPS27HHWTR communicates via I²C and SPI interfaces, facilitating integration into a variety of systems. Additionally, it boasts a water-resistant design, enhancing its durability in challenging environments.
Key features include a high-resolution output, low noise levels, and a compact package, ideal for space-constrained applications. The LPS27HHWTR is commonly used in applications such as weather monitoring, altimeters, and indoor navigation to improve user experience by providing accurate environmental data. Its versatility and robust performance make it a reliable component for engineers and developers working on advanced sensor applications.
Equivalent
1. Bosch BMP388 - High precision MEMS pressure sensor.
2. TE Connectivity MS5803-07BA - Ultra-compact, high-resolution pressure sensor.
3. Infineon DPS310 - High precision digital barometric pressure sensor.
4. Honeywell HSC Series - Digital pressure sensors with similar functionalities.
These alternatives offer similar functionalities in terms of pressure sensing and environmental monitoring. Always verify specifications for compatibility with your specific application.
Features
1. Pressure Range: It operates within a pressure range of 260 to 1260 hPa, making it suitable for altitude and weather-related applications.
2. Accuracy: The sensor boasts high accuracy and stability, with a typical pressure accuracy of ±0.5 hPa.
3. Low Power Consumption: It is optimized for low power consumption, essential for battery-operated devices.
4. Digital Output: The LPS27HHWTR provides a digital output, with I²C and SPI interfaces, enabling easy integration with microcontrollers.
5. Embedded Temperature Sensor: It includes an embedded temperature sensor for compensation and additional environmental data.
6. Water Resistance: The sensor is water-resistant, which makes it ideal for outdoor use and in harsh environments.
7. Compact Design: It features a small form factor, facilitating integration into compact devices.
8. FIFO Buffer: The sensor includes a FIFO buffer for efficient data management.
These features make the LPS27HHWTR suitable for various applications, including smartphones, tablets, GPS devices, and fitness trackers.
Pinout
The LPS27HHWTR comes in a 10-lead, plastic land grid array (LGA) package. The pin configuration typically includes connections for power supply, ground, communication interfaces, and other functionalities:
1. VDD - Power supply voltage.
2. GND - Ground.
3. SDA - I²C serial data or SPI data input/output.
4. SCL/SPC - I²C serial clock or SPI clock.
5. CS - Chip select for SPI interface.
6. INT - Interrupt signal output.
7. VDDIO - I/O pins supply voltage.
8. DRDY - Data Ready signal.
9. SDO - SPI data output.
These pins facilitate communication via I²C or SPI protocols and handle other functions like interrupts and data readiness, essential for integrating the sensor into various electronic systems. Always refer to the specific datasheet for precise pin configurations and functions, as they can vary slightly by version or manufacturer updates.
Manufacturer
Application
1. Weather Stations: Monitoring atmospheric pressure for weather forecasting.
2. Altimetry and Barometry: Used in smartphones, wearables, and navigation devices for altitude measurement and elevation data.
3. Indoor Navigation: Enhancing location accuracy in complex environments like malls and airports.
4. Drones and UAVs: Assisting in altitude stabilization and flight control.
5. Sports and Fitness: Tracking elevation changes in outdoor activities.
6. Industrial Applications: Pressure sensing for process control and environmental monitoring.
7. Appliances: Used in smart appliances for environmental sensing.
These applications benefit from the sensor's accuracy, low power consumption, and small size.