PIC7508-Transistor Overview
The PIC7508 is a high-performance bipolar transistor designed for industrial and electronic switching applications. Engineered for robust operation, this transistor offers reliable current amplification with excellent gain characteristics. It supports medium power handling and fast switching speeds, making it suitable for signal amplification and general-purpose electronic circuits. The device is optimized for integration into compact designs, ensuring efficient thermal management and durability. Engineers and sourcing specialists can rely on its consistent performance backed by stringent quality controls. For detailed technical data and procurement, visit IC Manufacturer.
PIC7508-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Bipolar Junction Transistor (BJT) |
| Collector-Emitter Voltage (VCEO) | 50 V |
| Collector Current (IC) | 1.5 A |
| Power Dissipation (Ptot) | 1.2 W |
| Current Gain (hFE) | 100 to 300 (typical) |
| Transition Frequency (fT) | 100 MHz (minimum) |
| Package Type | TO-92 Plastic Package |
| Operating Temperature Range | -55??C to +150??C |
| Base-Emitter Voltage (VBE) | 0.7 V (typical) |
PIC7508-Transistor Key Features
- High current handling capability: Supports collector currents up to 1.5 A, enabling robust switching in power-sensitive circuits.
- Wide voltage tolerance: With a collector-emitter voltage rating of 50 V, it accommodates a broad range of industrial voltage levels.
- Fast transition frequency: Operating at a minimum of 100 MHz, it ensures efficient switching and amplification in high-frequency applications.
- Compact TO-92 package: Facilitates easy integration in space-constrained PCB layouts while providing reliable thermal dissipation.
Typical Applications
- Signal amplification in analog circuits requiring stable gain and fast response times, suitable for industrial sensor interfaces.
- Switching elements in power management modules, enabling controlled load driving with efficient current handling.
- General-purpose electronic switching in consumer and industrial devices where reliable transistor action is necessary.
- Driver stages in relay control circuits or low-power motor control systems, benefiting from its voltage and current ratings.
PIC7508-Transistor Advantages vs Typical Alternatives
This transistor stands out with its balanced combination of voltage rating, current capacity, and transition frequency, providing engineers with a versatile component. Compared to alternatives, it offers superior switching speed and stable gain across temperature ranges. Its compact packaging and robust power dissipation make it a reliable choice for industrial applications requiring precision and durability.
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PIC7508-Transistor Brand Info
The PIC7508 transistor is manufactured by PIC Semiconductor, a reputable supplier specializing in discrete semiconductor devices for industrial and consumer electronics. Known for stringent quality controls and comprehensive datasheets, PIC Semiconductor ensures each transistor meets high standards of reliability and performance. The brand emphasizes support for engineering applications by providing thorough technical documentation and global distribution networks.
FAQ
What is the maximum collector current rating of this transistor?
The transistor supports a maximum collector current of 1.5 A, allowing it to handle moderate power loads in switching and amplification circuits without damage when operated within specified limits.
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Can this transistor be used in high-frequency applications?
Yes, with a transition frequency (fT) of at least 100 MHz, this device is suitable for high-frequency switching and amplification tasks typically found in communication and signal processing circuits.
What package type is the transistor supplied in, and how does it affect usage?
The device comes in a TO-92 plastic package, which is compact and easy to mount on printed circuit boards. This package supports adequate heat dissipation for its power rating and is widely accepted in prototyping and production.
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What is the typical current gain range, and why is it important?
The typical current gain (hFE







