圖片僅供參考
規格
| 屬性 | 價值 |
| Manufacturer | JLCPCB Assembly |
| Package | SMD-6.0*5.0 |
概述
Equivalent
The RD07MUS2B is a Schottky barrier diode. Equivalent products include:
- RB521CS-30 (ROHM)
- BAT54S (ON Semiconductor)
- SS14 (Vishay/Others)
- 1N5819 (Generic Schottky diode)
These alternatives offer similar characteristics (low Vf, fast switching). Verify specs (voltage/current ratings) for exact compatibility.
- RB521CS-30 (ROHM)
- BAT54S (ON Semiconductor)
- SS14 (Vishay/Others)
- 1N5819 (Generic Schottky diode)
These alternatives offer similar characteristics (low Vf, fast switching). Verify specs (voltage/current ratings) for exact compatibility.
Features
The RD07MUS2B is a high-performance RF LDMOS transistor designed for UHF (470-860 MHz) applications, commonly used in TV broadcast transmitters. Key features include:
- Frequency Range: 470-860 MHz
- Output Power: Up to 120W (typical)
- High Gain: 17.5 dB (typical)
- High Efficiency: 30% (typical)
- Supply Voltage: 32V
- Robust Design: Suitable for Class AB operation
- Package: SOT-502A (BLF861A)
- Applications: Digital TV (DVB-T/T2), analog TV, and RF amplification
It offers high linearity, thermal stability, and low distortion, making it ideal for broadcast systems. Requires proper heat sinking for optimal performance.
- Frequency Range: 470-860 MHz
- Output Power: Up to 120W (typical)
- High Gain: 17.5 dB (typical)
- High Efficiency: 30% (typical)
- Supply Voltage: 32V
- Robust Design: Suitable for Class AB operation
- Package: SOT-502A (BLF861A)
- Applications: Digital TV (DVB-T/T2), analog TV, and RF amplification
It offers high linearity, thermal stability, and low distortion, making it ideal for broadcast systems. Requires proper heat sinking for optimal performance.
Package
The RD07MUS2B is a Schottky barrier diode (SBD) typically packaged in SOD-123FL, a small surface-mount plastic package with two leads. It's designed for high-speed switching, low forward voltage, and compact PCB applications. The SOD-123FL package measures approximately 2.7mm x 1.6mm x 1.1mm, making it suitable for space-constrained designs.