사양
| 속성 | 가치 |
| Supplier | Broadcom Limited |
| Package / Case | Tape & Reel (TR) |
| Part Status | Obsolete |
| Frequency | 6GHz ~ 20GHz |
| P1d B | 14.8dBm |
| Gain | 17.5dB |
| Noise Figure | 5.1dB |
| RF Type | General Purpose |
| Voltage - Supply | 5V |
| Supply Current | 95mA |
| Test Frequency | 18GHz |
| Mounting Type | Surface Mount |
개요
Description
"Introduction to AMMP-5620-TR1G" likely refers to an introductory overview of a specific course, module, or technical subject related to AMMP-5620-TR1G. Given the alphanumeric code, AMMP-5620-TR1G could be associated with a specialized topic, possibly within engineering, electronics, or a similar field.
Typically, an introduction would outline the key objectives, scope, and expected outcomes of the subject. It would provide an overview of the core concepts, tools, and methodologies to be covered, as well as any relevant applications or industry contexts.
The introduction might also specify the prerequisites for understanding the content, such as foundational knowledge in certain technical areas. Additionally, it could highlight the relevance and importance of the topic in modern technological or industrial landscapes.
Without specific context, this is a general interpretation. If AMMP-5620-TR1G is related to a company, product, or another specific area, the introduction would focus on its purpose, functionality, and significance in its respective domain.
Typically, an introduction would outline the key objectives, scope, and expected outcomes of the subject. It would provide an overview of the core concepts, tools, and methodologies to be covered, as well as any relevant applications or industry contexts.
The introduction might also specify the prerequisites for understanding the content, such as foundational knowledge in certain technical areas. Additionally, it could highlight the relevance and importance of the topic in modern technological or industrial landscapes.
Without specific context, this is a general interpretation. If AMMP-5620-TR1G is related to a company, product, or another specific area, the introduction would focus on its purpose, functionality, and significance in its respective domain.
Equivalent
The AMMP-5620-TR1G is a millimeter-wave amplifier chip designed by Avago Technologies. To find equivalent products, you should look for similar millimeter-wave amplifiers with comparable frequency range, gain, noise figure, and output power. Some manufacturers to consider include Analog Devices, Qorvo, and MACOM. Specific models can vary, so it's important to compare datasheets and specifications to ensure compatibility with your application.
Features
The AMMP-5620-TR1G is a monolithic microwave integrated circuit (MMIC) that is designed for high-frequency applications. Key features include:
1. Frequency Range: It operates over a broad frequency range, typically in the millimeter-wave spectrum, ideal for applications like radar, communications, and sensing.
2. High Gain: The device offers considerable gain, allowing for effective signal amplification, which is crucial for maintaining signal integrity over long distances.
3. Low Noise Figure: It provides a low noise figure, enhancing signal clarity by minimizing noise interference, essential for high-fidelity applications.
4. Output Power: The MMIC delivers a substantial output power, making it suitable for driving subsequent stages in a signal chain.
5. Efficiency: It is designed for high efficiency, reducing power consumption and heat generation, which is beneficial for portable and compact systems.
6. Package: The AMMP-5620-TR1G is typically housed in a compact package, facilitating easy integration into various systems.
These features make it a robust choice for demanding RF and microwave applications.
1. Frequency Range: It operates over a broad frequency range, typically in the millimeter-wave spectrum, ideal for applications like radar, communications, and sensing.
2. High Gain: The device offers considerable gain, allowing for effective signal amplification, which is crucial for maintaining signal integrity over long distances.
3. Low Noise Figure: It provides a low noise figure, enhancing signal clarity by minimizing noise interference, essential for high-fidelity applications.
4. Output Power: The MMIC delivers a substantial output power, making it suitable for driving subsequent stages in a signal chain.
5. Efficiency: It is designed for high efficiency, reducing power consumption and heat generation, which is beneficial for portable and compact systems.
6. Package: The AMMP-5620-TR1G is typically housed in a compact package, facilitating easy integration into various systems.
These features make it a robust choice for demanding RF and microwave applications.
Pinout
The AMMP-5620-TR1G is a MMIC (Monolithic Microwave Integrated Circuit) power amplifier designed for use in microwave applications. It typically comes in a 5-pin package. The pin functions are:
1. RF Input: This pin receives the radio frequency (RF) signal that needs to be amplified.
2. RF Output: This pin outputs the amplified RF signal.
3. Vdd: This pin is for the supply voltage required to power the amplifier.
4. Ground (GND): This pin is connected to the ground.
5. Vgg: This pin is used for controlling the gate voltage.
These pins facilitate the integration of the device into RF circuits, enabling it to amplify signals effectively. Always refer to the manufacturer's datasheet for precise and detailed information.
1. RF Input: This pin receives the radio frequency (RF) signal that needs to be amplified.
2. RF Output: This pin outputs the amplified RF signal.
3. Vdd: This pin is for the supply voltage required to power the amplifier.
4. Ground (GND): This pin is connected to the ground.
5. Vgg: This pin is used for controlling the gate voltage.
These pins facilitate the integration of the device into RF circuits, enabling it to amplify signals effectively. Always refer to the manufacturer's datasheet for precise and detailed information.
Manufacturer
The AMMP-5620-TR1G is manufactured by Broadcom Inc. Broadcom is a global technology company that designs, develops, and supplies a broad range of semiconductor and infrastructure software solutions. The company’s products primarily serve the data center, networking, software, broadband, wireless, and storage markets. Broadcom is well-known for its innovative solutions and plays a significant role in the development of various technologies across different industries.
Application
The AMMP-5620-TR1G is primarily used in wireless communication systems, particularly for applications requiring gain blocks or driver amplifiers. Its key application areas include:
1. Cellular Infrastructure: Enhancing signal strength in base stations and repeaters.
2. Wireless Networks: Used in WLAN, WiMAX, and LTE networks for improved connectivity.
3. Radar Systems: Assisting in signal amplification for better radar performance and reliability.
4. Satellite Communications: Providing signal amplification for both uplink and downlink.
5. Microwave Radio: Enhancing transmitter and receiver performance in point-to-point and point-to-multipoint systems.
Overall, the AMMP-5620-TR1G is used in systems that require efficient RF amplification across a wide frequency range.
1. Cellular Infrastructure: Enhancing signal strength in base stations and repeaters.
2. Wireless Networks: Used in WLAN, WiMAX, and LTE networks for improved connectivity.
3. Radar Systems: Assisting in signal amplification for better radar performance and reliability.
4. Satellite Communications: Providing signal amplification for both uplink and downlink.
5. Microwave Radio: Enhancing transmitter and receiver performance in point-to-point and point-to-multipoint systems.
Overall, the AMMP-5620-TR1G is used in systems that require efficient RF amplification across a wide frequency range.
Package
The AMMP-5620-TR1G is typically available in a surface-mount package, specifically designed for high-frequency applications. This package type is often compact, suitable for integration into circuit boards where space is limited, ensuring efficient performance in microwave and RF systems.