PIC7535-Transistor NPN Amplifier Transistor in TO-92 Package by PIC Semiconductor

  • This transistor amplifies electrical signals, enabling efficient control of current in various circuits.
  • Its voltage rating supports stable operation, ensuring consistent performance under typical load conditions.
  • The compact package type reduces board space, allowing for denser and more efficient circuit designs.
  • Ideal for switching applications in power management, it helps optimize energy use in embedded systems.
  • Manufactured under strict quality standards, it delivers dependable operation over extended periods.
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PIC7535-Transistor Overview

The PIC7535-Transistor is a high-performance bipolar junction transistor (BJT) designed for switching and amplification applications in industrial and consumer electronics. Featuring robust electrical characteristics, this transistor provides reliable operation under varied load conditions with stable current gain and breakdown voltage parameters. It supports efficient signal amplification and switching with minimal leakage current, making it ideal for integration in control circuits, power management modules, and signal processing systems. The PIC7535 offers engineers a dependable component that balances performance and durability, suited for demanding environments. For detailed product sourcing and support, visit IC Manufacturer.

PIC7535-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) 1.5 A
Power Dissipation (Ptot) 625 mW
DC Current Gain (hFE) 100 to 300 ?C
Transition Frequency (fT) 100 MHz
Operating Temperature Range -55 to +150 ??C

PIC7535-Transistor Key Features

  • High current gain (hFE): Enables efficient amplification with minimal input current, reducing power consumption in control circuits.
  • Wide voltage tolerance: Supports up to 60 V collector-base voltage, allowing flexible use in various supply voltage conditions.
  • Fast transition frequency (fT): Provides reliable switching at frequencies up to 100 MHz, suitable for high-speed signal processing.
  • Robust thermal performance: Operates safely across a -55??C to +150??C range, ensuring reliability in harsh industrial environments.

Typical Applications

  • Switching devices in industrial automation systems where dependable operation under varying electrical loads is critical for process control.
  • Signal amplification in audio and low-frequency analog circuits requiring consistent current gain and low noise.
  • Power management circuits such as voltage regulation and load switching in embedded systems and consumer electronics.
  • Driver components for relays and motors, providing efficient control with minimal switching losses.

PIC7535-Transistor Advantages vs Typical Alternatives

This transistor delivers superior current gain and voltage handling compared to standard BJTs, enhancing circuit sensitivity and accuracy. Its fast switching capability supports high-frequency applications, outperforming many alternatives in speed and efficiency. The broad operating temperature range and power dissipation capacity improve reliability and integration in industrial environments, making it a preferred choice for engineers seeking a balance of performance and durability.

PIC7535-Transistor Brand Info

The PIC7535 is manufactured by IC Manufacturer, a reputable supplier specializing in high-quality semiconductor components for industrial and commercial applications. Known for rigorous quality control and robust device design, the brand ensures consistent performance and long-term reliability. The PIC7535 product line reflects the company’s commitment to delivering transistors optimized for switching and amplification tasks, supported by comprehensive datasheets and technical support.

FAQ

What maximum voltage can the PIC7535 transistor handle?

The transistor supports a maximum collector-base voltage (VCBO) of 60 V and a collector-emitter voltage (VCEO) of 40 V, ensuring it can operate safely in circuits with moderate voltage requirements.

What is the typical current gain range

Application

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