PIC7513-Transistor Overview
The PIC7513-Transistor is a high-performance bipolar junction transistor designed for robust switching and amplification in industrial and electronic applications. Featuring a standard TO-92 package, this transistor provides reliable current gain and voltage handling capabilities suitable for medium-power circuits. With a collector current capacity tailored for general-purpose use, it offers efficient signal control and power management. The device is optimized for linear and switching operations, making it ideal for engineers and sourcing specialists requiring consistent performance in analog and digital systems. For detailed sourcing and technical support, refer to IC Manufacturer.
PIC7513-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Transistor Type | NPN Bipolar Junction Transistor (BJT) |
| Maximum Collector-Emitter Voltage (VCEO) | 40 V |
| Maximum Collector Current (IC) | 800 mA |
| Gain Bandwidth Product (fT) | 100 MHz (typical) |
| DC Current Gain (hFE) | 100 to 300 |
| Power Dissipation (Ptot) | 625 mW |
| Package Type | TO-92 |
| Operating Temperature Range | -55??C to +150??C |
PIC7513-Transistor Key Features
- High current gain: Enables efficient signal amplification with reduced input drive requirements, improving circuit sensitivity and control.
- Moderate voltage rating: Supports operation up to 40 volts, making it suitable for a wide range of low to medium voltage switching applications.
- Compact TO-92 package: Facilitates easy integration into space-constrained PCB layouts without compromising thermal performance.
- Wide operating temperature: Ensures reliable performance in harsh industrial environments, from -55??C to 150??C.
Typical Applications
- Switching and amplification stages in industrial control circuits requiring robust, medium-power transistors.
- Signal processing circuits in consumer electronics where moderate gain and frequency response are essential.
- Low to medium power driver circuits, including relay driving and LED switching functions.
- General-purpose amplification in audio and instrumentation equipment needing reliable linear response.
PIC7513-Transistor Advantages vs Typical Alternatives
This transistor offers a balanced combination of current gain and voltage handling that surpasses many generic transistors in its class. Its wide operating temperature and compact package provide enhanced reliability and ease of integration in industrial designs. Compared to alternatives with lower gain or power ratings, it delivers improved switching efficiency and signal fidelity, making it a preferred choice for applications demanding consistent performance under varied conditions.
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PIC7513-Transistor Brand Info
The PIC7513-Transistor is manufactured by a reputable semiconductor producer specializing in discrete components for industrial and consumer markets. Known for quality and consistency, the brand ensures that each transistor meets strict quality control standards for electrical performance and mechanical durability. This product is part of a family of transistors widely adopted in global electronics manufacturing, offering engineers dependable solutions for amplification and switching tasks.
FAQ
What is the maximum collector current supported by this transistor?
The maximum collector current rating is 800 milliamperes (mA), allowing the transistor to handle moderate power loads in switching and amplification circuits without exceeding its thermal limits.
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Can this transistor be used in high-frequency applications?
Yes, with a typical gain bandwidth product of approximately 100 MHz, this device is suitable for various moderate frequency applications, including signal amplification and switching in audio and low RF systems.
What are the thermal characteristics of this transistor?
The transistor can operate over a wide temperature range from -55??C to +150??C, supporting reliable performance in both cold and hot industrial environments. Its power dissipation is rated at 625 milliwatts, which defines the thermal handling capability under normal operating conditions.






