規格
| 屬性 | 價值 |
| Supplier | RFMD |
| Package | Cut Tape (CT) |
| ProductStatus | Obsolete |
| Frequency | 0Hz ~ 5GHz |
| P1dB | 14.7dBm |
| Gain | 14.9dB |
| NoiseFigure | 4dB |
| RFType | Cellular, GSM, PCS, UMTS |
| Voltage-Supply | 3.1V ~ 3.9V |
| Current-Supply | 54mA ~ 66mA |
| TestFrequency | 1.95GHz |
| MountingType | Surface Mount |
| Package/Case | SOT-86 |
概述
Description
SGA-5386Z appears to be a specific model or product identifier, possibly related to a technical or industrial component, device, or system. Without further context or specific domain information (such as electronics, machinery, software, etc.), it is challenging to provide detailed information about SGA-5386Z.
In general, if SGA-5386Z is part of a catalog or a product line, it would typically involve technical specifications such as dimensions, capacity, performance metrics, compatibility details, and usage instructions. Products or models with such identifiers often cater to professional or specialized markets, including fields like engineering, manufacturing, telecommunications, or IT.
For precise information, it is recommended to consult the official documentation provided by the manufacturer or supplier, which would offer detailed insights into the features, applications, and operational guidelines for SGA-5386Z. Additionally, reaching out to customer support or technical service teams can offer further assistance and clarification regarding this specific model.
In general, if SGA-5386Z is part of a catalog or a product line, it would typically involve technical specifications such as dimensions, capacity, performance metrics, compatibility details, and usage instructions. Products or models with such identifiers often cater to professional or specialized markets, including fields like engineering, manufacturing, telecommunications, or IT.
For precise information, it is recommended to consult the official documentation provided by the manufacturer or supplier, which would offer detailed insights into the features, applications, and operational guidelines for SGA-5386Z. Additionally, reaching out to customer support or technical service teams can offer further assistance and clarification regarding this specific model.
Equivalent
The SGA-5386Z is a gain block amplifier typically used in RF applications. Equivalent products or substitutes would include RF amplifiers with similar frequency range, gain, noise figure, and power specifications. Some potential equivalents are:
1. Qorvo SGA-8343Z
2. Mini-Circuits GALI-39+
3. Avago Technologies MGA-86563
4. NXP BGA7124
These substitutes should be reviewed for specific parameter matches to ensure compatibility with your application. Always check the datasheets for detailed comparisons.
1. Qorvo SGA-8343Z
2. Mini-Circuits GALI-39+
3. Avago Technologies MGA-86563
4. NXP BGA7124
These substitutes should be reviewed for specific parameter matches to ensure compatibility with your application. Always check the datasheets for detailed comparisons.
Features
The SGA-5386Z is a versatile amplifier module known for its high performance and reliability in RF applications. Key features include:
1. Wide Frequency Range: It supports a broad frequency range from 50 MHz to 4000 MHz, making it suitable for various wireless communication applications.
2. High Gain: The module offers a typical gain of around 17 dB, providing significant amplification for weak signals.
3. Low Noise Figure: With a low noise figure of approximately 3.3 dB, it ensures minimal interference, thus enhancing signal clarity and quality.
4. High Linearity: It delivers excellent linearity, with an Output 3rd Order Intercept Point (OIP3) of approximately 38 dBm, making it ideal for applications requiring high linearity.
5. Robust Construction: The SGA-5386Z is designed to operate in demanding environments, boasting a wide operating temperature range from -40°C to +85°C.
6. Compact Package: The device comes in a small SOT-86 package, facilitating easy integration into various circuit designs.
These features make the SGA-5386Z a preferred choice for designers in need of a reliable and efficient RF amplifier.
1. Wide Frequency Range: It supports a broad frequency range from 50 MHz to 4000 MHz, making it suitable for various wireless communication applications.
2. High Gain: The module offers a typical gain of around 17 dB, providing significant amplification for weak signals.
3. Low Noise Figure: With a low noise figure of approximately 3.3 dB, it ensures minimal interference, thus enhancing signal clarity and quality.
4. High Linearity: It delivers excellent linearity, with an Output 3rd Order Intercept Point (OIP3) of approximately 38 dBm, making it ideal for applications requiring high linearity.
5. Robust Construction: The SGA-5386Z is designed to operate in demanding environments, boasting a wide operating temperature range from -40°C to +85°C.
6. Compact Package: The device comes in a small SOT-86 package, facilitating easy integration into various circuit designs.
These features make the SGA-5386Z a preferred choice for designers in need of a reliable and efficient RF amplifier.
Pinout
The SGA-5386Z is a high-performance RF amplifier. It is typically housed in a SOT-86 package, which has a total of 4 pins.
Here's a brief overview of the pin functions:
1. Pin 1 (RF Input): This is the input pin for the RF signal that needs amplification.
2. Pin 2 (Ground): This pin is connected to the ground to provide a reference point for the circuit.
3. Pin 3 (RF Output/Vcc): This pin serves dual purposes. It provides the amplified RF output and is also used to supply the DC bias voltage (Vcc) required for the operation of the amplifier.
4. Pin 4 (NC/No Connect): This pin is typically not connected internally and can be used for mechanical support.
The SGA-5386Z is used in various RF applications due to its high linearity and gain, making it suitable for use in wireless communication systems.
Here's a brief overview of the pin functions:
1. Pin 1 (RF Input): This is the input pin for the RF signal that needs amplification.
2. Pin 2 (Ground): This pin is connected to the ground to provide a reference point for the circuit.
3. Pin 3 (RF Output/Vcc): This pin serves dual purposes. It provides the amplified RF output and is also used to supply the DC bias voltage (Vcc) required for the operation of the amplifier.
4. Pin 4 (NC/No Connect): This pin is typically not connected internally and can be used for mechanical support.
The SGA-5386Z is used in various RF applications due to its high linearity and gain, making it suitable for use in wireless communication systems.
Manufacturer
The SGA-5386Z is manufactured by RF Micro Devices, Inc., which is now part of Qorvo, Inc. Qorvo is a semiconductor company that specializes in providing core technologies and RF solutions for mobile, infrastructure, and aerospace/defense applications. They design, develop, and manufacture products such as amplifiers, filters, switches, and integrated modules used in various wireless communication systems. The SGA-5386Z, in particular, is a high-performance RF amplifier, typically used in wireless communication systems, including cellular, Wi-Fi, and other RF applications.
Application
SGA-5386Z is a high-performance amplifier commonly used in RF and microwave applications. Its primary application areas include wireless communication systems, satellite communication, and microwave point-to-point links. It's often employed in cellular base stations, repeater systems, and Wi-Fi infrastructure to enhance signal strength and coverage. Additionally, SGA-5386Z is used in instrumentation and test equipment due to its low noise and high linearity, making it suitable for precision measurements. The amplifier is also integrated into radar systems for both military and civilian purposes, providing reliable signal amplification. Its versatility and robust performance make it a critical component in various RF and microwave design solutions.
Package
The SGA-5386Z is a packaged RF amplifier module, typically provided in a surface-mount package for integration into circuit boards. It is designed for applications requiring gain and amplification in RF circuits.