2C5038 ON Semiconductor NPN 晶体管 - 高增益,TO-92 封装

  • The 2C5038 performs precise signal processing, enhancing system accuracy and control responsiveness.
  • It operates within specified voltage ranges to ensure stable and consistent circuit performance.
  • Its compact package design allows for efficient board space utilization in dense electronic assemblies.
  • Ideal for industrial automation, it supports reliable operation under varying environmental conditions.
  • Manufactured with stringent quality controls, it offers dependable long-term functionality in critical applications.
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2C5038 Overview

The 2C5038 is a high-performance silicon transistor designed for reliable switching and amplification in electronic circuits. Its robust electrical characteristics and consistent gain make it suitable for industrial control, signal processing, and power management applications. Engineered to deliver stable operation under varying environmental conditions, this device provides engineers and sourcing specialists with a dependable component for precision circuit design. For procurement and detailed technical data, visit 集成电路制造商.

2C5038 Key Features

  • High Current Gain (hFE): Enables efficient amplification, reducing the need for additional gain stages and improving circuit simplicity.
  • Low Collector-Emitter Saturation Voltage: Minimizes power loss during switching, enhancing overall energy efficiency in power management applications.
  • 宽工作电压范围: Supports flexible design choices across diverse industrial environments, ensuring reliability under fluctuating supply conditions.
  • Robust Thermal Stability: Maintains performance consistency over a broad temperature spectrum, critical for harsh or variable operating environments.

2C5038 Technical Specifications

参数 规格
晶体管类型 NPN Silicon
Collector-Emitter Voltage (Vceo) 30 V
Collector Current (Ic) 800 毫安
功率耗散 (Ptot) 625 毫瓦
电流增益 (hFE) 40 to 300
转换频率 (fT) 100 兆赫
Collector-Emitter Saturation Voltage (Vce(sat)) 0.3 V (typical)
工作温度范围 -55°C 至 +150°C

2C5038 Advantages vs Typical Alternatives

This transistor stands out with its superior current gain and low saturation voltage, which together improve circuit efficiency and reduce thermal stress. Compared to typical alternatives, it offers enhanced frequency response and reliable operation over a wider temperature range, making it an excellent choice for demanding industrial electronics applications requiring both precision and durability.

典型应用

  • Signal amplification in industrial control systems, ensuring accurate and stable signal processing in automated machinery and instrumentation.
  • Switching elements in power supply circuits where low saturation voltage reduces power losses and improves overall efficiency.
  • Driver stages for relays and solenoids, providing reliable current control to mechanical actuators in complex systems.
  • General-purpose amplification in audio and communication equipment, supporting consistent performance across varied signal conditions.

2C5038 Brand Info

The 2C5038 is a trusted component within the semiconductor portfolio of IC Manufacturer, recognized for delivering high-quality, reliable transistors suitable for industrial and commercial electronics. This product is engineered with stringent quality controls to meet the rigorous demands of professional engineers and sourcing specialists worldwide. The brand’s commitment to precision and durability ensures that the 2C5038 is a dependable choice for robust circuit design and long-term operational stability.

常见问题

该晶体管的最大集电极额定电流是多少?

The maximum collector current for this transistor is rated at 800 mA, making it suitable for medium-power applications requiring reliable current handling capability without compromising device integrity.

Can the device operate in high-frequency circuits?

Yes, with a transition frequency (fT) of approximately 100 MHz, this transistor supports high-frequency operation, which is beneficial for RF amplification and fast switching applications.

What are the thermal operating limits of the device?

The transistor can operate safely within a temperature range from -55??C to +150??C, ensuring stable performance in harsh industrial environments and temperature-variable conditions.

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How does the low saturation voltage benefit circuit design?

A low collector-emitter saturation voltage reduces power dissipation during switching, improving overall circuit efficiency and minimizing heat generation, which extends component and system longevity.

Is this transistor suitable for switching and amplification purposes?

Indeed, the device??s electrical characteristics such as high current gain and robust voltage ratings make it well-suited for both switching and amplification tasks in various electronic systems.

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