規格
| 屬性 | 價值 |
| Supplier | Analog Devices Inc. |
| Package | Tape & Reel (TR) |
| ProductStatus | Obsolete |
| Frequency | 0Hz ~ 1GHz |
| P1dB | 22dBm |
| Gain | 22dB |
| NoiseFigure | 2.8dB |
| RFType | WLAN |
| Voltage-Supply | 5V |
| Current-Supply | 88mA |
| MountingType | Surface Mount |
| Package/Case | TO-243AA |
概述
Description
The HMC580ST89TR is a GaAs MMIC Voltage Variable Attenuator (VVA) designed for RF and microwave applications. It operates within a frequency range of 0.1 GHz to 10 GHz, offering a wide range of attenuation control for high-frequency signals. This device is particularly useful in applications like test equipment, wireless infrastructure, and other communication systems where precise control of signal amplitude is required.
Key features of the HMC580ST89TR include a low insertion loss, high linearity, and an attenuation range of over 30 dB. The VVA is controlled via an analog voltage input, allowing for continuous adjustment of attenuation levels. It is packaged in a compact surface-mount format, making it suitable for high-density circuit designs.
The device's high performance and reliability make it ideal for environments where stable signal control is necessary under varying conditions. Its robust design ensures minimal distortion and high signal integrity, which are crucial for maintaining optimal performance in complex RF systems.
Key features of the HMC580ST89TR include a low insertion loss, high linearity, and an attenuation range of over 30 dB. The VVA is controlled via an analog voltage input, allowing for continuous adjustment of attenuation levels. It is packaged in a compact surface-mount format, making it suitable for high-density circuit designs.
The device's high performance and reliability make it ideal for environments where stable signal control is necessary under varying conditions. Its robust design ensures minimal distortion and high signal integrity, which are crucial for maintaining optimal performance in complex RF systems.
Equivalent
The HMC580ST89TR is a GaAs MMIC Mixer typically used in RF and microwave applications. Equivalent products may include:
1. Analog Devices ADL5801
2. Mini-Circuits ZFM-2
3. Marki Microwave M1-0212
4. Skyworks SKY-73012
These equivalents can vary in specifications and performance, so it is essential to compare the parameters such as frequency range, conversion gain, and IP3 to ensure they meet your specific needs.
1. Analog Devices ADL5801
2. Mini-Circuits ZFM-2
3. Marki Microwave M1-0212
4. Skyworks SKY-73012
These equivalents can vary in specifications and performance, so it is essential to compare the parameters such as frequency range, conversion gain, and IP3 to ensure they meet your specific needs.
Features
The HMC580ST89TR is a high-performance RF amplifier designed for use in a variety of communication applications. Key features of this device include:
1. Frequency Range: Operates from 0.1 GHz to 4.0 GHz, making it versatile for various RF applications.
2. Gain: Provides a high gain of approximately 15 dB, ensuring strong signal amplification.
3. Input/Output: The amplifier is internally matched to 50 ohms, simplifying integration into RF systems.
4. Output Power: Delivers a typical output power of 20 dBm at 1 dB compression point.
5. Noise Figure: Offers a low noise figure of approximately 3.5 dB, which is crucial for maintaining signal integrity in low-signal applications.
6. Supply Voltage: Operates with a supply voltage of 5V, which is standard for many RF systems.
7. Package: Available in a compact SOT89 package, aiding in space-saving designs.
8. Application: Suitable for a wide range of uses, including cellular infrastructure, test equipment, and microwave radios.
These features make the HMC580ST89TR a robust choice for enhancing RF signal performance in various electronic systems.
1. Frequency Range: Operates from 0.1 GHz to 4.0 GHz, making it versatile for various RF applications.
2. Gain: Provides a high gain of approximately 15 dB, ensuring strong signal amplification.
3. Input/Output: The amplifier is internally matched to 50 ohms, simplifying integration into RF systems.
4. Output Power: Delivers a typical output power of 20 dBm at 1 dB compression point.
5. Noise Figure: Offers a low noise figure of approximately 3.5 dB, which is crucial for maintaining signal integrity in low-signal applications.
6. Supply Voltage: Operates with a supply voltage of 5V, which is standard for many RF systems.
7. Package: Available in a compact SOT89 package, aiding in space-saving designs.
8. Application: Suitable for a wide range of uses, including cellular infrastructure, test equipment, and microwave radios.
These features make the HMC580ST89TR a robust choice for enhancing RF signal performance in various electronic systems.
Manufacturer
The HMC580ST89TR is manufactured by Analog Devices, Inc. This company is a global leader in the design and manufacturing of analog, mixed-signal, and digital signal processing integrated circuits. Analog Devices serves a wide range of industries, including industrial, automotive, communication, healthcare, and consumer electronics. Known for its innovation and high-performance products, the company focuses on applications that require advanced signal processing capabilities, such as data conversion, power management, and RF technology.
Application
The HMC580ST89TR is a versatile RF amplifier used in applications such as cellular infrastructure, microwave radios, and test equipment. It is commonly employed in GSM, W-CDMA, and LTE base stations due to its high linearity and efficient power handling capabilities. Additionally, it's used in point-to-point and point-to-multipoint radios, as well as military and aerospace communication systems, where reliable and high-performance amplification is required. Its robust design also makes it suitable for use in general-purpose RF and microwave amplification tasks.
Package
The HMC580ST89TR is packaged in a surface-mount technology (SMT) SOT-89 package. This type of package is commonly used for RF and microwave components, providing a compact and reliable solution for integration onto printed circuit boards.