


Analog Devices Inc.
MAT03EH
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MAT03EH Description
MAT03EH Description
The MAT03EH from Analog Devices Inc. is a high-performance dual PNP bipolar transistor array housed in a TO78-6 package, designed for precision analog applications. With a collector-emitter breakdown voltage (Vce) of 36V and a maximum collector current (Ic) of 20mA, this device is optimized for low-noise, high-speed signal processing. Its transition frequency of 190MHz ensures excellent high-frequency response, making it suitable for RF and amplification circuits. The low Vce saturation voltage (100mV @ 100µA, 1mA) enhances efficiency in switching applications.
MAT03EH Features
- Dual PNP Configuration: Matched transistor pair for differential amplification and signal processing.
- Low Noise & High Speed: Ideal for precision analog circuits with a 190MHz transition frequency.
- Robust Voltage Handling: Supports up to 36V Vce, suitable for industrial and instrumentation applications.
- Low Saturation Voltage: 100mV @ 1mA ensures minimal power loss in switching modes.
- Through-Hole Mounting: TO78-6 package for secure PCB integration in high-reliability systems.
- Obsolete Status: Still valued in legacy designs requiring matched transistor pairs.
MAT03EH Applications
- Differential Amplifiers: Precision signal conditioning in test & measurement equipment.
- RF Circuits: High-frequency amplification due to its 190MHz transition frequency.
- Switching Regulators: Efficient low-power switching with minimal saturation losses.
- Instrumentation: Matched pair performance critical for analog front-end designs.
- Legacy System Maintenance: Reliable replacement for obsolete designs requiring TO78-6 packaging.
Conclusion of MAT03EH
The MAT03EH stands out for its matched dual PNP transistors, high-speed performance, and low-noise characteristics, making it a preferred choice for precision analog and RF applications. While marked as obsolete, its 500mW power handling and 36V voltage tolerance ensure continued relevance in specialized industrial and instrumentation systems. Engineers seeking consistent performance in differential circuits or high-frequency amplification will find this transistor array a robust solution.



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