BCR129WH6327XTSA1 Overview
The BCR129WH6327XTSA1 is a high-performance silicon NPN transistor designed for general-purpose amplification and switching applications. Featuring robust electrical characteristics and reliable package construction, this device delivers consistent performance in industrial and consumer electronics environments. Its optimized gain and voltage ratings make it suitable for a wide range of circuit designs requiring efficient current amplification and fast switching response. Engineers and sourcing specialists will find this transistor a versatile component, balancing power handling and signal fidelity. For detailed technical and sourcing information, visit IC Manufacturer.
BCR129WH6327XTSA1 Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Silicon Transistor |
| Collector-Emitter Voltage (VCEO) | 40 V |
| Collector Current (IC) | 800 mA |
| Gain Bandwidth Product (fT) | 100 MHz |
| DC Current Gain (hFE) | 100 to 300 |
| Power Dissipation (Ptot) | 625 mW |
| Package Type | SOT-23 |
| Operating Temperature Range | -55 ??C to +150 ??C |
| Transition Frequency | 100 MHz (typical) |
BCR129WH6327XTSA1 Key Features
- High Current Gain: Offers a DC current gain between 100 and 300, enabling efficient signal amplification in low-power circuits.
- Compact SOT-23 Package: Facilitates space-saving PCB designs and easy surface-mount assembly, improving manufacturing efficiency.
- Wide Operating Temperature Range: Supports reliable operation from -55 ??C to +150 ??C, making it suitable for harsh industrial environments.
- Fast Switching Speed: High transition frequency of 100 MHz ensures rapid response in switching applications, optimizing circuit performance.
Typical Applications
- General-purpose amplification in audio, signal conditioning, and low-noise preamplifier circuits where moderate gain and power handling are required.
- Switching applications in driver circuits for relays, LEDs, and small motors where fast response and reliable current control are imperative.
- Voltage regulation and stabilization circuits benefiting from stable gain characteristics and thermal robustness.
- Interface stages between microcontrollers and higher power loads, ensuring signal integrity and efficient load control.
BCR129WH6327XTSA1 Advantages vs Typical Alternatives
This transistor offers a strong balance of gain, voltage rating, and power dissipation in a compact SOT-23 package, providing improved integration over larger discrete components. Its high transition frequency and stable operation across a broad temperature range ensure enhanced reliability and switching efficiency compared to typical general-purpose transistors. These attributes make it an excellent choice for engineers seeking dependable performance in space-constrained industrial and consumer electronics designs.
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BCR129WH6327XTSA1 Brand Info
The BCR129WH6327XTSA1 is manufactured by ON Semiconductor, a leading global supplier of semiconductor solutions. Known for its extensive portfolio of discrete and integrated components, ON Semiconductor provides this transistor as part of its industrial-grade product line optimized for robust performance and high reliability. The company’s commitment to quality and innovation ensures that this transistor meets rigorous industry standards, making it a trusted choice for engineers and sourcing professionals worldwide.
FAQ
What is the maximum collector current rating of this transistor?
The maximum collector current for this device is 800 mA, allowing it to handle moderate load currents in amplification and switching circuits without performance degradation.
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Can this transistor be used in high-frequency switching applications?
Yes, with a typical transition frequency of 100 MHz, the transistor supports high-speed switching, making it suitable for signal processing and fast switching applications.
What package type does this transistor use and how does it affect PCB design?
This transistor comes in a compact SOT-23 surface-mount package, which minimizes PCB space usage and supports automated assembly processes, facilitating efficient manufacturing and high-density layouts.
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What temperature range can this component reliably operate within?
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