PIC7511-Transistor NPN Amplifier Transistor in TO-92 Package ?C PIC7511-Transistor

  • This transistor amplifies electrical signals, enabling efficient control of current in electronic circuits.
  • Its switching speed supports responsive operation, crucial for timing-sensitive applications.
  • The compact CBZ package reduces board space, facilitating denser circuit layouts.
  • Ideal for use in power regulation within embedded systems, enhancing energy management.
  • Manufactured to meet industry standards, ensuring consistent performance and durability.
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PIC7511-Transistor Overview

The PIC7511 is a high-performance bipolar junction transistor designed for switching and amplification applications in industrial electronics. Optimized for robust operation, it offers reliable current handling and fast switching speeds suitable for demanding environments. This transistor provides engineers with a compact, efficient solution for signal control, power regulation, and interface circuits. Its construction ensures stable performance under various temperature and load conditions, making it a versatile component in modern electronic designs. For detailed technical support and sourcing, visit the IC Manufacturer website.

PIC7511-Transistor Technical Specifications

Parameter Value Unit
Collector-Emitter Voltage (VCEO) 40 V
Collector-Base Voltage (VCBO) 60 V
Emitter-Base Voltage (VEBO) 5 V
Collector Current (IC) 150 mA
DC Current Gain (hFE) 100?C300 ??
Transition Frequency (fT) 100 MHz
Power Dissipation (Ptot) 300 mW
Operating Temperature Range -55 to +150 ??C

PIC7511-Transistor Key Features

  • High DC current gain: Enables efficient amplification with minimal input current, reducing overall power consumption in control circuits.
  • Wide voltage rating: Supports up to 60 V collector-base voltage, allowing use in moderately high-voltage switching applications.
  • Fast switching speeds: With a transition frequency of 100 MHz, the device is suitable for high-frequency signal processing and rapid switching tasks.
  • Robust power dissipation: Capable of handling up to 300 mW, it enhances reliability in continuous operation under varying load conditions.

Typical Applications

  • General-purpose switching: Ideal for controlling relays, LEDs, and small motors in industrial automation and instrumentation systems.
  • Signal amplification: Suitable for low-noise amplification stages in sensor interfaces and audio preamplifiers.
  • Voltage level shifting: Assists in interfacing different logic levels within multi-voltage system architectures.
  • Driver stages: Used in driving small loads and intermediate stages in power management circuits.

PIC7511-Transistor Advantages vs Typical Alternatives

This transistor offers a balanced combination of voltage handling, current gain, and switching speed compared to common alternatives. Its high gain reduces input drive requirements, improving power efficiency. The moderate voltage ratings make it versatile for industrial control without the complexity or cost of high-voltage transistors. Additionally, its robust power dissipation rating supports reliable long-term operation, making it a dependable choice for engineers prioritizing durability and consistent electrical performance.

PIC7511-Transistor Brand Info

The PIC7511 transistor is manufactured by a reputable semiconductor producer known for delivering reliable bipolar junction transistors and discrete components tailored to industrial and consumer electronics. This product line emphasizes quality, stringent testing, and compliance with international standards, ensuring consistent performance across various applications. The brand supports comprehensive datasheets and technical resources, facilitating engineers?? integration and design validation processes with confidence.

FAQ

What is the maximum collector current the PIC7511 transistor can handle?

The maximum collector current rating for this transistor is 150 mA, which allows it to manage moderate load currents typical in switching and amplification applications without compromising device integrity.

Can the transistor operate at high frequencies for signal amplification?

Yes, with a transition frequency of 100 MHz, it supports high-frequency operation suitable for signal amplification

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