BCR166E6433HTMA1 Overview
The BCR166E6433HTMA1 is a high-reliability, low-power transistor array designed for industrial and automotive applications. This device integrates multiple bipolar junction transistors (BJTs) in a compact package, providing efficient switching and amplification capabilities. Engineered for robust performance, it supports enhanced thermal management and electrical stability under demanding conditions. Its precise current gain and low saturation voltage optimize power efficiency, making it suitable for driving loads and signal amplification. Available from IC Manufacturer, this transistor array is an ideal solution for engineers requiring consistent performance and ease of integration in complex electronics systems.
BCR166E6433HTMA1 Technical Specifications
| Parameter | Specification |
|---|---|
| Number of Transistors | 4 Bipolar NPN |
| Package Type | HTSSOP-14 |
| Collector-Emitter Voltage (Vce) | 60 V |
| Collector Current (Ic) | 100 mA per transistor |
| Power Dissipation (Pd) | 320 mW per transistor |
| Current Gain (hFE) | Minimum 100 at Ic = 2 mA |
| Transition Frequency (fT) | 100 MHz typical |
| Operating Temperature Range | -40??C to +125??C |
| Input Resistance | High input impedance |
| Saturation Voltage (Vce(sat)) | 0.25 V typical at Ic=10 mA |
BCR166E6433HTMA1 Key Features
- Quad NPN Transistor Array: Integrates four NPN transistors in a single package, reducing board space and simplifying design complexity.
- High Current Gain: Offers a minimum current gain of 100, ensuring efficient signal amplification and switching performance for precise control.
- Low Saturation Voltage: Minimizes power losses during switching, enhancing overall energy efficiency and thermal management in circuits.
- Wide Operating Temperature Range: Supports operation from -40??C to +125??C, providing reliability in harsh industrial and automotive environments.
- Compact HTSSOP-14 Package: Enables high-density PCB layouts and easy integration into space-constrained applications.
- High Transition Frequency (100 MHz): Suitable for high-speed switching applications, improving response times and system performance.
- Robust Electrical Characteristics: Ensures stable operation under variable load and voltage conditions, increasing device longevity.
Typical Applications
- Driver stages in industrial automation systems where multiple transistor outputs are required for controlling relays, solenoids, or motors reliably.
- Signal amplification in communication equipment due to its high current gain and fast switching capabilities.
- Automotive electronic modules demanding rugged transistor arrays capable of operating in extended temperature ranges and harsh environments.
- General-purpose switching and amplification in embedded systems, offering compact integration and consistent performance across multiple channels.
BCR166E6433HTMA1 Advantages vs Typical Alternatives
This transistor array provides a superior combination of high gain, low saturation voltage, and compact packaging compared to discrete transistor solutions. Its integrated four-transistor layout reduces PCB footprint and assembly complexity. The wide operating temperature range and robust electrical parameters enhance reliability, making it a preferred choice over alternatives for industrial and automotive applications where efficiency, precision, and durability are critical.
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BCR166E6433HTMA1 Brand Info
The BCR166E6433HTMA1 is a product offered by ON Semiconductor, a leading global supplier of semiconductor components known for their innovation and quality in industrial and automotive electronics. ON Semiconductor specializes in providing reliable transistor arrays and integrated circuits optimized for power efficiency and ruggedness. This device reflects the brand??s commitment to delivering components that meet stringent performance standards and facilitate simplified system design.
FAQ
What is the maximum collector current rating for this transistor array?
The maximum collector current per transistor in this array is 100 mA, allowing it to drive moderate loads typical in industrial and automotive switching applications without compromising device reliability.
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Can this device operate reliably in automotive temperature conditions?
Yes,





