BCR162E6327HTSA1 Overview
The BCR162E6327HTSA1 is a high-performance bipolar junction transistor (BJT) designed for industrial and power switching applications. Featuring a robust collector current rating and optimized gain characteristics, it offers reliable operation in demanding environments. Engineered for efficient switching and amplification, this device supports a range of electronic circuits requiring stable, high-current handling with low saturation voltage. Its compact SOT-223 package ensures ease of integration while maintaining thermal efficiency. Designed to meet stringent quality and manufacturing standards, the BCR162E6327HTSA1 is an ideal choice for engineers and sourcing specialists seeking dependable transistor solutions. For detailed technical data and sourcing, visit IC Manufacturer.
BCR162E6327HTSA1 Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Bipolar Junction Transistor |
| Collector-Emitter Voltage (Vceo) | 80 V |
| Collector Current (Ic) | 3 A |
| Gain (hFE) at Ic=1A | 40 min |
| Power Dissipation (Pd) | 2 W (at 25??C) |
| Saturation Voltage (Vce(sat)) | 1.2 V (typical at Ic=3A) |
| Transition Frequency (fT) | 50 MHz |
| Package | SOT-223 Surface Mount |
| Operating Temperature Range | -55??C to +150??C |
BCR162E6327HTSA1 Key Features
- High collector current capacity: Supports up to 3 A, enabling robust power switching in industrial circuits.
- Low saturation voltage: Minimizes power loss during conduction, improving circuit efficiency.
- Compact SOT-223 package: Facilitates easy PCB integration with effective thermal dissipation.
- Wide operating temperature range: Ensures reliable performance under harsh environmental conditions.
- Stable gain characteristics: Provides consistent amplification for precision signal processing.
Typical Applications
- Power switching in industrial automation: Ideal for controlling motors, relays, and solenoids where high current and voltage ratings are essential.
- Audio amplifier output stages requiring stable gain and low distortion.
- General-purpose amplification in signal conditioning circuits for industrial sensors and instrumentation.
- Load driving in embedded systems and power management modules needing reliable switching transistors.
BCR162E6327HTSA1 Advantages vs Typical Alternatives
This transistor offers an excellent balance of high collector current and low saturation voltage compared to typical alternatives. Its robust gain and thermal characteristics enhance reliability in power switching and amplification tasks. The surface-mount SOT-223 package supports efficient PCB layout and heat dissipation, making it well-suited for compact industrial applications. These features together provide improved power efficiency, greater integration flexibility, and dependable performance in demanding environments.
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BCR162E6327HTSA1 Brand Info
The BCR162E6327HTSA1 is manufactured by ON Semiconductor, a leading global supplier of semiconductor solutions for industrial, automotive, and consumer applications. ON Semiconductor is recognized for delivering high-quality discrete devices, including BJTs, MOSFETs, and integrated circuits, engineered to meet stringent industry standards. This transistor reflects the company??s commitment to providing reliable, high-performance components designed to optimize power management and signal amplification in industrial electronics.
FAQ
What is the maximum collector current rating of this transistor?
The maximum collector current is rated at 3 amperes, allowing the device to handle significant load currents in power switching and amplification applications without compromising reliability.
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Which package type does the transistor come in, and why is it beneficial?
This transistor is housed in a SOT-223 surface-mount package, which offers a compact footprint for space-saving PCB designs and provides efficient heat dissipation critical for maintaining performance under high power conditions.
What voltage levels can this device safely operate at?
The maximum collector-emitter voltage is 80 volts, making it suitable for various industrial circuits that require moderate to high voltage handling capabilities.
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How does the low saturation voltage impact circuit efficiency?
A low saturation





