DDTC114GUA-7-F Overview
The DDTC114GUA-7-F is a dual transistor array optimized for high-speed switching and amplification in industrial electronics. Designed with tight parameter matching and low noise characteristics, this device supports efficient signal processing in compact applications. Its rugged construction and enhanced frequency response make it ideal for precision analog circuits and switching operations. Available in a compact SOT-363 package, it facilitates easy PCB integration, reducing board space without compromising performance. For sourcing and detailed product information, visit IC 製造商.
DDTC114GUA-7-F Technical Specifications
參數 | 規格 |
---|---|
電晶體類型 | NPN Dual Transistor |
包裝 | SOT-363 (6-pin) |
集電極-發射器電壓 (V執行長) | 40 V |
集電極電流 (IC) | 150 mA |
功率耗散 (P總計) | 310 mW |
轉換頻率 (fT) | 300 MHz |
直流電流增益 (hFE) | 100 to 320 |
操作溫度範圍 | -55 ??C to +150 ??C |
DDTC114GUA-7-F Key Features
- Matched Dual Transistors: Ensures consistent gain and switching characteristics, improving circuit balance and performance in differential amplifier designs.
- High Transition Frequency (300 MHz): Supports high-speed switching applications, beneficial for RF and signal processing circuits requiring fast response times.
- Compact SOT-363 Package: Saves PCB space while maintaining thermal reliability, ideal for miniaturized industrial electronics.
- 寬工作溫度範圍: Supports robust operation in harsh environments, assuring reliability in industrial automation systems.
DDTC114GUA-7-F Advantages vs Typical Alternatives
This dual transistor array stands out with its excellent gain matching and high-frequency performance, providing superior signal integrity compared to typical discrete transistor pairs. Its low noise and compact packaging enhance integration and reliability, reducing design complexity and improving overall power efficiency in demanding industrial applications.
暢銷產品
典型應用
- Precision analog signal amplification and switching in industrial control circuits, where matched transistor characteristics are critical for accuracy and stability.
- High-frequency switching circuits requiring fast transistor response and minimal signal distortion.
- Compact electronic modules where PCB real estate is limited and component miniaturization is essential.
- Industrial automation systems operating across wide temperature ranges, ensuring dependable performance under varying environmental conditions.
DDTC114GUA-7-F Brand Info
The DDTC114GUA-7-F is a product offered by a leading semiconductor manufacturer specializing in reliable discrete components optimized for industrial and commercial electronics. This dual transistor array reflects the brand??s commitment to precision, durability, and high-performance solutions tailored for demanding environments and applications. Designed and tested to meet stringent quality standards, it supports engineers in developing innovative, efficient electronic systems.
常見問題
What is the maximum collector current for this transistor array?
The maximum collector current for each transistor in the array is 150 mA, allowing it to handle moderate load currents typical in signal amplification and switching applications.
精選產品
Can this device operate reliably in high-temperature environments?
Yes, the device supports an operating temperature range from -55 ??C up to +150 ??C, making it suitable for harsh industrial environments that experience wide temperature fluctuations.
What packaging does this dual transistor array use and why is it beneficial?
It uses the SOT-363 6-pin package, which is compact and saves PCB space while maintaining good thermal characteristics, an advantage in dense circuit designs.
聯絡我們
What is the significance of the matched transistor pair in this device?
The matched transistor pair ensures consistent electrical characteristics, which is essential in differential circuits and precision amplification, improving overall circuit stability and accuracy.
How does the transition frequency affect the device??s performance?
The transition frequency of 300 MHz indicates the device??s ability to operate efficiently at high switching speeds, making it suitable for RF and fast signal processing tasks.