画像は参考用です
HMC627ALP5E
+BOMIC RF AMP LTE 50MHZ-1GHZ 32QFN
-
メーカーテキサス・インスツルメンツ
-
メーカー品番 #HMC627ALP5E
-
データシート HMC627ALP5E DataSheet
-
パッケージ VFQFN-32
-
在庫状況7839
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Supplier | Analog Devices Inc. |
| Package | Strip |
| ProductStatus | Obsolete |
| Frequency | 50MHz ~ 1GHz |
| P1dB | 20dBm |
| Gain | 17.5dB |
| NoiseFigure | 4.3dB |
| RFType | LTE, WiMax |
| Voltage-Supply | 5V |
| Current-Supply | 90.5mA |
| TestFrequency | 350MHz ~ 1GHz |
| MountingType | Surface Mount |
| Package/Case | 32-VFQFN Exposed Pad |
概要
Description
One of the key advantages of the HMC627ALP5E is its excellent linearity, maintaining low distortion across its operating range. It operates with a control voltage range of 0 to 5V, providing ease of integration into various systems. The attenuator is housed in a compact 5x5 mm QFN package, which is ideal for space-constrained applications.
The device is well-suited for both commercial and military applications due to its robust performance and reliability. Typical use cases include wireless infrastructure, point-to-point radio, and satellite communications. Additionally, its high linearity and broad frequency range make it valuable in automatic test equipment (ATE) and instrumentation scenarios.
Equivalent
1. Analog Devices ADL5240
2. Qorvo QPA9120
3. Skyworks SKY12347-362LF
4. Mini-Circuits VVA-183-DG+
These alternatives share similar features like gain control and frequency range, but it's essential to verify specific requirements such as bandwidth, gain, and power handling to ensure compatibility with your application.
Features
1. Frequency Range: Covers a broad range from DC to 6 GHz, making it versatile for various applications.
2. Gain Control: Offers a 31.5 dB gain control range in 0.5 dB steps, providing precise gain adjustments.
3. Digital Interface: Utilizes a 6-bit serial or parallel control interface for easy integration with digital systems.
4. High Linearity: Exhibits excellent linearity, typically around 40 dBm OIP3, ensuring minimal signal distortion.
5. Low Noise Figure: Maintains a low noise figure, typically around 4-5 dB, which is critical for maintaining signal integrity in sensitive applications.
6. Power Supply: Operates on a single +5V power supply, simplifying power requirements.
7. Package: Provided in a compact 5x5 mm leadless QFN package, suitable for space-constrained designs.
These features make the HMC627ALP5E suitable for applications in wireless infrastructure, test equipment, and other RF systems requiring dynamic gain control.
Pinout
1. Variable Gain Control: It provides a gain control range from -10 dB to +24 dB, allowing precise control over the signal amplitude.
2. Broadband Operation: The amplifier operates over a wide frequency range, typically from 50 MHz to 1 GHz.
3. Low Noise Figure: It maintains a low noise figure, which is advantageous for maintaining signal integrity in communication systems.
4. High Linearity: With high third-order intercept points (IP3), it provides linear amplification suitable for complex modulation schemes.
5. Digital Control Interface: Gain is controlled via a parallel or serial digital control interface, offering flexibility in system design.
These features make the HMC627ALP5E suitable for applications in wireless infrastructure, test and measurement equipment, and other RF/microwave systems. For specific pin functions and configurations, referring to the manufacturer's datasheet is recommended.
Manufacturer
Application
1. Wireless Infrastructure: Used in base stations for cellular and satellite communications to manage signal strength.
2. Test and Measurement Equipment: Provides precise signal control in RF test setups.
3. Microwave Radio: Facilitates signal attenuation in point-to-point and point-to-multipoint communication systems.
4. Military and Aerospace: Employed in radar and communication systems for defense applications.
5. Instrumentation: Utilized in various RF instruments requiring accurate signal control.
These applications benefit from its wide frequency range, low insertion loss, and high linearity.