
( Brand: Scientific Atlanta ), ( Manufacturer Part Number: 8761 ), ( Part Type: Supply ), ( Weight: 11.0000 )
The 8761 Atlanta LNA Supply Scientific Power Dual is a high-performance Low Noise Amplifier (LNA) designed for use in various scientific applications. This dual LNA features a compact, easy-to-integrate design, measuring just 5mm x 5mm x 0.7mm in size.
The 8761 is a broadband LNA, with a frequency range of 1.7-6.4 GHz, making it suitable for use in applications such as wireless communication systems, satellite communication, and test and measurement equipment. The device is designed to provide excellent linearity, with an IP3 of 28 dBm, ensuring minimal distortion and maintaining signal integrity.
The 8761 LNA is characterized by its ultra-low noise figure, which is as low as 0.4 dB, ensuring minimal noise amplification and maintaining the signal-to-noise ratio. This is achieved through the use of high-quality semiconductor materials and advanced design techniques.
The device also features a low power consumption, with a typical current consumption of 35 mA at 1.8 V, making it energy-efficient and suitable for battery-powered applications. The 8761 LNA is also temperature stable, with a typical temperature coefficient of -0.2 dB/ C, ensuring reliable performance in a wide range of temperature environments.
The 8761 Atlanta LNA Supply Scientific Power Dual is available in a RoHS-compliant package, ensuring environmental friendliness and safety. The device is also backed by a comprehensive warranty and technical support from Atlanta LNA Supply, ensuring peace of mind for users.
In conclusion, the 8761 Atlanta LNA Supply Scientific Power Dual is a high-performance, compact and energy-efficient LNA that is ideal for use in various scientific applications. Its low noise figure, excellent linearity, and low power consumption make it a reliable choice for users looking for a high-quality LNA.
Pros of buying a Atlanta LNA Supply Scientific Power Dual:1. Dual-channel design: This product allows for the simultaneous monitoring of two signals, which can be particularly useful in applications requiring real-time analysis.
2. High frequency range: The Atlanta LNA Supply Scientific Power Dual has a wide frequency range, making it suitable for various applications across different frequency bands.
3. Low noise figure: The low noise figure of this device ensures that the signals being monitored are as clean as possible, reducing the likelihood of distortion or interference.
4. Wide input impedance: The wide input impedance of the Atlanta LNA Supply Scientific Power Dual makes it compatible with a wide range of sources, reducing the need for additional matching components.
Cons of buying a Atlanta LNA Supply Scientific Power Dual:1. Cost: The Atlanta LNA Supply Scientific Power Dual is a high-end product and may be more expensive than some other options on the market.
2. Size and weight: The device is relatively large and heavy compared to some other LNA options, which may be a disadvantage for users with limited space or weight constraints.
3. Requires external power supply: The Atlanta LNA Supply Scientific Power Dual does not have an integrated power supply, which may require additional components or cables for use.
Conclusion:The Atlanta LNA Supply Scientific Power Dual is a high-quality, dual-channel LNA with a wide frequency range, low noise figure, and wide input impedance. While it may be more expensive and larger than some other options, its advanced features and performance make it a valuable tool for users requiring simultaneous monitoring of two signals in high-frequency applications.
Recommendation:If you require a high-performance LNA for simultaneous monitoring of two signals in a high-frequency application, the Atlanta LNA Supply Scientific Power Dual is an excellent option to consider. However, if cost or size is a concern, you may want to explore other options with similar performance but different trade-offs.
Scientific Atlanta lna dual power supply v 8761 Scientific Atlanta 8761 lna dual power supply on Oct at PDT.