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QPC8019QTR13
+BOM-
ManufacturerQorvo
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Mfr. Part #QPC8019QTR13
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In Stock6860
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Specifications
| Attribute | Value |
| MinimumOperatingTemperature | - 40 C |
| MaximumOperatingTemperature | + 105 C |
| Series | QPC8019Q |
| Packaging | Reel |
| Brand | Qorvo |
| ProductType | RF Switch ICs |
| FactoryPackQuantity:FactoryPackQuantity | 10000 |
| Subcategory | Wireless & RF Integrated Circuits |
| MountingStyle | SMD/SMT |
| SwitchConfiguration | SPDT |
| MinimumFrequency | 617 MHz |
| MaximumFrequency | 8 GHz |
| InsertionLoss | 0.6 dB |
| HighControlVoltage | 1.8 V |
| MoistureSensitive | Yes |
| NumberofSwitches | Dual |
| OperatingSupplyCurrent | 35 uA |
| SupplyVoltage-Max | 3.1 V |
| SupplyVoltage-Min | 1.65 V |
| Part#Aliases | QPC8019Q |
| OperatingFrequency | 617 MHz to 8 GHz |
Overview
Description
This amplifier provides high linearity and efficiency, which are critical for maximizing performance in demanding scenarios. It typically features a compact package, allowing for easy integration into space-constrained designs. The QPC8019QTR13 generally includes features such as high gain, low distortion, and the ability to operate from a single power supply.
Additionally, its thermal resistance characteristics enable reliable performance in diverse environmental conditions. Users appreciate its robustness and versatility in both commercial and industrial applications. For detailed specifications and operational guidelines, consulting the manufacturer's datasheet is recommended.
Equivalent
1. Skyworks SKY65017-11 - RF amplifier with similar frequency and power characteristics.
2. Analog Devices ADL5602 - RF amplifier suitable for similar applications.
3. Infineon BGA280 - Offers comparable performance metrics for RF amplification.
Always verify specifications for exact compatibility.
Features
1. Frequency Range: Operates effectively within the 2.4 GHz ISM band, suitable for various wireless applications.
2. High Gain: Provides a substantial gain of approximately 30 dB, ensuring robust signal amplification.
3. Power Output: Delivers an output power of around 1 W (30 dBm), making it ideal for applications requiring significant transmit power.
4. Efficiency: Exhibits high power efficiency, reducing heat generation and improving overall performance.
5. Compact Package: Offered in a convenient surface-mount package, facilitating easy integration into various circuit designs.
6. Temperature Range: Operates effectively over a wide temperature range, ensuring reliability in diverse environments.
7. Low Distortion: Designed for low intermodulation distortion, maintaining signal integrity in multi-channel applications.
These attributes make the QPC8019QTR13 suitable for use in wireless communication systems, including Wi-Fi and Bluetooth devices.
Pinout
1. Non-inverting Input (V+) - Pin 1
2. Inverting Input (V-) - Pin 2
3. Output (OUT) - Pin 3
4. Negative Power Supply (V-) - Pin 4
5. Positive Power Supply (V+) - Pin 5
6. Non-inverting Input (V+) for the second op-amp - Pin 6
7. Inverting Input (V-) for the second op-amp - Pin 7
8. Output (OUT) for the second op-amp - Pin 8
The QPC8019QTR13 is designed for high-speed applications, featuring low input noise and high gain bandwidth. It operates on a dual power supply and is used in various applications including signal conditioning and filtering. For specific details regarding the exact functionality and electrical characteristics, it is advisable to consult the manufacturer's datasheet.
Manufacturer
Qorvo is recognized for its innovative technologies that support advanced wireless communication and connectivity. The company is committed to developing solutions that enhance performance and efficiency in wireless systems, making it a key player in the semiconductor industry. Their products are widely used in smartphones, tablets, and other wireless devices, contributing to the evolution of mobile technology and communication networks. With a focus on R&D, Qorvo continues to advance the capabilities of RF technologies, positioning itself as a leader in this specialized sector.
Application
1. Wireless Infrastructure: Used in base stations for 4G/5G communications.
2. Satellite Communications: Enhances signal transmission in satellite systems.
3. Military and Aerospace: Provides robust performance in radar and communication systems.
4. Test and Measurement Equipment: Utilized in RF testing setups for accuracy.
5. Industrial Applications: Employed in equipment requiring high-efficiency power amplification.
Its compact size and efficiency make it suitable for both commercial and defense applications.