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TSAL4400
+Lista de MateriaisEMITTER IR 940NM 100MA RADIAL
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FabricanteVishay Semiconductor Opto Division
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Peça do Fabricante #TSAL4400
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Ficha Técnica TSAL4400 DataSheet
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Especificações
| Atributo | Valor |
| Part Status | Active |
| Base Product Number | TSAL4400 |
| Type | Infrared (IR) |
| Current - DC Forward (If) (Max) | 100mA |
| Radiant Intensity (Ie) Min @ If | 16mW/sr @ 100mA |
| Wavelength | 940nm |
| Voltage - Forward (Vf) (Typ) | 1.35V |
| Viewing Angle | 50° |
| Orientation | Top View |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Mounting Type | Through Hole |
| Package / Case | Radial, 3mm Dia (T-1) |
| Packaging | Bulk |
Visão Geral
Description
In general, an introductory course description might include:
1. Course Overview: An outline of the core themes and areas that will be covered. This might include theoretical foundations, practical applications, or interdisciplinary connections.
2. Learning Objectives: A list of skills and knowledge students are expected to gain by the end of the course. This might range from understanding specific concepts to developing problem-solving abilities or conducting research.
3. Prerequisites: Any prior knowledge or courses that are recommended or required to ensure student success in the course.
4. Methodology: An overview of the teaching methods employed, such as lectures, seminars, lab work, or project-based learning.
5. Assessment: Information on how students will be evaluated, which could include exams, assignments, projects, or participation.
For a precise description, additional context about the course's discipline or the institution offering it would be helpful.
Equivalent
1. Vishay TSAL6200: Similar infrared LED with slightly different specifications.
2. Everlight IR204: Another IR LED option used for remote control applications.
3. Kingbright L-53F3C: General-purpose IR LED.
4. Lite-On LTE-4206: IR LED suitable for similar applications.
Always verify the specifications to ensure compatibility with your design requirements.
Features
1. Wavelength: It operates at a peak wavelength of 940 nm, suitable for remote control and IR data transmission.
2. High Radiant Intensity: Provides a strong output for effective long-distance transmission, ensuring reliable performance in various environments.
3. Narrow Half Angle: Features a narrow emission angle, usually around ±10 degrees, which helps focus the IR beam for targeted communication.
4. High Speed: Capable of fast modulation, making it suitable for high-speed data transmission.
5. Package Type: Typically comes in a standard 5mm (T-1 3/4) package, making it easy to integrate into existing systems.
6. Low Forward Voltage: Operates efficiently with a low forward voltage, contributing to low power consumption.
7. Temperature Range: Designed to function reliably over a wide temperature range, suitable for various operating conditions.
These features make the TSAL4400 an ideal choice for remote control systems and other applications requiring efficient infrared transmission.
Pinout
1. Anode (A): This is the positive terminal. When connected to a positive voltage supply, it allows current to pass through the diode and emit infrared light.
2. Cathode (K): This is the negative terminal. It is connected to the ground or negative side of the power supply.
The TSAL4400 emits infrared light with a peak wavelength of 940 nm, making it suitable for use in IR remote control systems. It is designed to provide high radiant intensity and is typically used in combination with an IR receiver to form a complete remote control solution. The diode's compact size and efficient performance make it ideal for various electronic applications requiring IR transmission.
Manufacturer
Application
1. Remote Controls: Ideal for TV remotes and other consumer electronics requiring infrared communication.
2. Optical Sensors: Utilized in light barriers, proximity sensors, and reflective sensors for automation and industrial applications.
3. Infrared Data Transmission: Employed in wireless data transfer systems, like IrDA communication.
4. Security Systems: Used in infrared-based surveillance and alarm systems.
5. Gesture Recognition: Integrates into systems for detecting and interpreting user gestures.
6. Medical Devices: Part of non-invasive diagnostic and monitoring equipment.
These applications leverage the diode's high efficiency, narrow emission spectrum, and long-range capabilities.