PIC7503-Transistor NPN Amplifier Transistor in TO-92 Package – High Gain Switching

  • This transistor controls current flow efficiently, enabling precise switching in various electronic circuits.
  • It operates within a voltage range suitable for reliable performance under typical electrical loads.
  • The compact package design reduces board space, facilitating integration into dense circuit assemblies.
  • Ideal for use in signal amplification and switching applications, improving overall device responsiveness.
  • Manufactured with quality standards ensuring consistent operation and long-term stability in diverse conditions.
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PIC7503-Transistor Overview

The PIC7503-Transistor is a high-performance bipolar junction transistor designed for efficient switching and amplification in diverse industrial applications. It features robust electrical characteristics optimized for medium power handling with low saturation voltage and high current gain. This component ensures reliable operation in demanding environments, making it suitable for precision control circuits, power management, and signal amplification. Sourced from a reputable IC Manufacturer, the PIC7503-Transistor stands out for its balance of power efficiency, thermal stability, and integration flexibility within compact circuit designs.

PIC7503-Transistor Technical Specifications

Parameter Specification Unit
Collector-Emitter Voltage (VCEO) 60 V
Collector Current (IC) 3 A
Power Dissipation (Ptot) 800 mW
Current Gain (hFE) 100?C300 ?C
Transition Frequency (fT) 100 MHz
Base-Emitter Voltage (VBE) 1.2 V (max)
Operating Junction Temperature (Tj) -55 to +150 ??C
Package Type TO-92 ?C

PIC7503-Transistor Key Features

  • High current gain enables efficient signal amplification with minimal input drive requirements, reducing power consumption in control circuits.
  • Low collector-emitter saturation voltage minimizes power loss during switching, enhancing overall energy efficiency in power management systems.
  • Wide operating temperature range ensures reliable performance in harsh industrial environments, supporting durable and stable operation.
  • Compact TO-92 package facilitates easy PCB integration and cost-effective assembly in space-constrained designs.

Typical Applications

  • Used in switching regulators and power supply circuits where efficient current control and low loss switching are critical for stable voltage regulation.
  • Signal amplification in audio preamplifiers and sensor interface circuits requiring linear performance and high gain.
  • Industrial automation control circuits requiring reliable transistor switching under varying load conditions.
  • General-purpose switching in relay drivers and low-power motor control applications for enhanced system responsiveness.

PIC7503-Transistor Advantages vs Typical Alternatives

This transistor offers superior current gain and low saturation voltage compared to typical alternatives, resulting in better switching efficiency and reduced thermal dissipation. Its robust electrical parameters and wide operating temperature range provide enhanced reliability and stable performance in industrial settings. The compact package supports flexible integration, making it an optimal choice for engineers seeking a cost-effective and durable transistor solution.

PIC7503-Transistor Brand Info

The PIC7503-Transistor is manufactured by a leading semiconductor company specializing in discrete components optimized for industrial applications. The brand is recognized for delivering reliable, high-quality transistors with consistent performance, backed by comprehensive datasheet support and application engineering resources. This transistor model aligns with the brand??s commitment to combining efficiency, robustness, and ease of integration for demanding electronic designs.

FAQ

What is the maximum collector current rating for this transistor?

The maximum collector current rating is 3 amperes, allowing it to handle moderate power loads effectively in switching and amplification applications without compromise in reliability.

How does the low saturation voltage benefit circuit performance?

A low collector-emitter saturation voltage reduces power loss and heat generation during transistor switching, improving overall energy efficiency and extending device longevity in power management circuits.

What temperature range can this transistor safely operate within?

The device operates reliably over a wide junction temperature range from –

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