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PDTA123YU115
+NomenclaturePDTA123Y SERIES - PNP RESISTOR-E
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FabricantNexperia USA Inc.
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Pièce fabricant #PDTA123YU115
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Fiche technique PDTA123YU115 DataSheet
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En stock4794
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Spécifications
| Attribut | Valeur |
| Package / Case | Bulk |
| Part Status | Active |
Présentation
Description
1. Overview: The course would typically provide a foundational understanding of the subject matter, introducing key concepts and terminology.
2. Objectives: Students will learn the main goals, skills, or competencies they are expected to achieve by the end of the course.
3. Structure: An outline of how the course is organized, including topics covered, the format of lectures, labs, or discussions, and the schedule.
4. Assessment: Information on the types of assessments used to evaluate student understanding, such as quizzes, assignments, exams, or projects.
5. Resources: A list of required and recommended textbooks, articles, or online materials.
6. Relevance: Explanation of how the course fits into a larger program or field of study and its practical applications.
For specific details, please refer to the course syllabus or contact the academic institution offering the course.
Equivalent
Features
1. Type: Usually a transistor (possibly an NPN or PNP type) or a diode.
2. Package: Often in a small, surface-mount package for compact circuit board applications.
3. Voltage Rating: Maximum voltage it can withstand (e.g., 30V, 60V, etc.).
4. Current Rating: Maximum current capacity (e.g., 100mA, 1A).
5. Power Dissipation: Maximum power the component can dissipate (e.g., 250mW, 500mW).
6. Gain (for transistors): Current gain value (hFE).
7. Applications: Suitable for switching, amplification, or rectification in electronics.
8. Temperature Range: Operating temperature range (e.g., -55°C to 150°C).
For precise information, consulting the manufacturer's datasheet is recommended.
Pinout
- Pin Count: 3 pins
- Function: This transistor is designed for use in switching and amplification applications. It comes with built-in resistors, which eliminate the need for external resistor components in its configuration. The internal resistors are used for biasing purposes, making it convenient for simplifying circuit designs.
The most common pin configuration for such transistors is as follows:
1. Pin 1: Base
2. Pin 2: Emitter
3. Pin 3: Collector
It is advisable to consult the datasheet for the specific device to confirm the pin configuration and additional details as variations may exist based on the manufacturer or specific product series.
Manufacturer
Application
1. Motor Control: Used in variable speed drives and soft starters for controlling AC motors.
2. Power Regulation: Employed in circuits for adjusting power levels, such as light dimmers and heaters.
3. Rectifiers: Utilized in controlled rectifiers for converting AC to DC while allowing control over output voltage.
4. Inverters: Part of inverter circuits for DC to AC conversion.
5. Battery Charging: Used in battery chargers to manage charging cycles with controlled current flow.
These applications benefit from the SCR's ability to handle high voltages and currents with precise control.