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SFH 9206
+Lista de MateriaisOptical Switches, Reflective, Phototransistor Output Reflective Sensor
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Fabricanteams OSRAM
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Peça do Fabricante #SFH 9206
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Ficha Técnica SFH 9206 DataSheet
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Especificações
| Atributo | Valor |
| Packaging | MouseReel |
| Standard Pack Qty | 1000 |
Visão Geral
Description
To provide a meaningful introduction, it's essential to have contextual information about the area it covers. For example, if it is a course related to science, technology, engineering, or humanities, each would have its distinct focus and objectives.
For a comprehensive introduction, you would typically include:
1. Course/Topic Overview: Briefly describe the focus of SFH 9206.
2. Objectives: Highlight the learning goals or outcomes.
3. Structure: Outline the main modules or components.
4. Relevance: Explain the importance or application of the course/topic.
If you have specific details about SFH 9206, such as the institution offering it or its subject matter, please provide more information for a tailored response.
Equivalent
Features
1. Photoplethysmography (PPG): Utilizes reflected light to measure heart rate by detecting blood volume changes in the microvascular bed of tissue.
2. High Sensitivity: Offers precise measurements even at low signal levels, making it effective in various lighting conditions.
3. Low Power Consumption: Designed to be energy-efficient, ideal for battery-powered devices.
4. Versatile Application: Suitable for wristbands, smartwatches, fitness trackers, and other health monitoring devices.
5. Integration: Easy to integrate with microcontrollers and other digital systems due to its digital output interface.
6. Compact Size: Enables use in small and lightweight wearable devices, enhancing user comfort.
These features make the SFH 9206 a reliable component for developers focusing on health and fitness applications.
Pinout
1. Anode (A): This pin is connected to the positive side of the power supply to allow current to flow through the infrared LED within the sensor.
2. Cathode (K): This is the negative side of the infrared LED, connected to the ground to complete the circuit.
3. Collector (C): This pin is part of the phototransistor within the sensor. It is usually connected to a voltage supply via a pull-up resistor. When the LED light is interrupted, the transistor stops conducting, causing a change in the output signal.
4. Emitter (E): This is the output pin of the phototransistor. It connects to the ground and completes the circuit when the phototransistor is conducting.
Overall, the SFH 9206 is designed for detecting the presence or absence of an object by sensing the interruption of the light beam between the LED and the phototransistor.