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ADL5592ACPZ-R7

In Stock 3110 pcs Reference Price(In US Dollars)
1+
$0.3051
Manufacturer Part Number:
ADL5592ACPZ-R7
Manufacturer / Brand
Analog Devices Inc.
Part of Description:
IC AMP VGA 250-2400MHZ 40LFCSP
Datasheets:
ADL5592ACPZ-R7(1).pdfADL5592ACPZ-R7(2).pdfADL5592ACPZ-R7(3).pdf
Lead Free Status / RoHS Status:
RoHS Compliant
Stock Condition:
New original, 3110 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number ADL5592ACPZ-R7
Manufacturer / Brand Analog Devices Inc.
Stock Quantity 3110 pcs Stock
Category RF and Wireless > RF Amplifiers
Description IC AMP VGA 250-2400MHZ 40LFCSP
Lead Free Status / RoHS Status: RoHS Compliant
Voltage - Supply 4.5V ~ 5.5V
Test Frequency 1.96GHz
Supplier Device Package 40-LFCSP-WQ (6x6)
Series -
RF Type GSM, EDGE
Package / Case 40-WFQFN Exposed Pad, CSP
Package Cut Tape (CT)
P1dB -
Noise Figure 5.7dB
Mounting Type Surface Mount
Gain 8.9dB
Frequency 250MHz ~ 2.4GHz
Current - Supply 255mA

Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

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Shipment charges: (Reference DHL and FedEX)
Weight(KG): 0.00kg-1.00kg Price(USD$) : USD$60.00
Weight(KG): 1.00kg-2.00kg Price(USD$) : USD$80.00
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ADL5592ACPZ-R7 Product Details:

The ADL5592ACPZ-R7 is a sophisticated variable gain amplifier (VGA) integrated circuit manufactured by Analog Devices, Inc., specifically designed for RF and wireless applications operating across a broad frequency spectrum from 250MHz to 2.4GHz. This high-performance RF amplifier addresses critical design challenges in modern wireless communication systems where precise gain control, low noise operation, and wide bandwidth coverage are essential requirements.

This surface-mount device delivers exceptional functionality as a variable gain amplifier, providing engineers with precise control over signal amplification in demanding RF environments. The amplifier achieves a gain of 8.9dB with a noise figure of 5.7dB when tested at 1.96GHz, demonstrating its capability to maintain signal integrity while minimizing unwanted noise contributions. Operating from a single supply voltage ranging from 4.5V to 5.5V and consuming 255mA of current, the device offers efficient power management suitable for battery-powered and portable applications.

The ADL5592ACPZ-R7 comes packaged in a compact 40-LFCSP-WQ (6x6mm) format, which is equivalent to a 40-WFQFN with exposed pad configuration. This chip-scale package (CSP) design addresses space constraints in modern electronic designs while providing excellent thermal performance through the exposed pad structure. The surface-mount configuration facilitates automated assembly processes and enables high-density board layouts critical in contemporary wireless devices.

Key specifications include its impressive frequency range spanning from 250MHz to 2.4GHz, making it particularly well-suited for GSM and EDGE applications. The device's wide bandwidth capability allows it to support multiple wireless standards within a single design, reducing component count and system complexity. The amplifier's performance characteristics are optimized for cellular communication systems where consistent gain and low noise performance across the operating frequency range are paramount.

Primary advantages of this VGA include its exceptional frequency coverage, which eliminates the need for multiple amplifiers in multi-band applications, thereby reducing board space and component costs. The device's low noise figure ensures minimal signal degradation, while its controlled gain characteristics provide predictable performance across varying operating conditions. The compact package size and single supply operation simplify integration into space-constrained designs while maintaining robust electrical performance.

The ADL5592ACPZ-R7 demonstrates broad compatibility with standard PCB manufacturing processes and is supplied in cut tape packaging for convenient handling during production. Its surface-mount design is compatible with standard reflow soldering processes, and the exposed pad configuration enhances thermal management when properly mounted to appropriate PCB thermal vias and ground planes.

Primary application areas for this amplifier include cellular base stations, wireless infrastructure equipment, GSM and EDGE transceivers, software-defined radios, test and measurement equipment, and various wireless communication systems requiring precise gain control across the specified frequency range. The device is particularly valuable in applications where space optimization and power efficiency are critical design considerations.

Regarding equivalent models, the ADL5592 family includes several variants with different packaging options and performance grades. Alternative models that provide similar functionality include the ADL5591 series, which offers comparable performance characteristics but may differ in gain range or frequency response. Other potential alternatives from Analog Devices include the ADL5562, ADL5565, and ADL5566 series, each offering different combinations of gain, bandwidth, and noise performance. Competitive alternatives from other manufacturers include Linear Technology's LTC6409 series, Maxim's MAX2037 family, and various offerings from companies such as Qorvo, Skyworks, and Broadcom, though specific model recommendations would depend on exact application requirements and performance specifications needed for the particular design implementation.

ADL5592ACPZ-R7 Image
ADL5592ACPZ-R7 (1)

ADL5592ACPZ-R7 Key Technical Attributes

Frequency Range: 250MHz to 2.4GHz

Gain: 8.9dB

Noise Figure: 5.7dB at 1.96GHz

ADL5592ACPZ-R7 Packing Size

Type: 40-LFCSP-WQ (6x6mm)

Material: Lead-frame chip-scale package with exposed pad for optimal heat dissipation

Pin Configuration: 40 pins, well-marked pinout for efficient circuit integration

Thermal Characteristics: Exposed pad design provides improved thermal management and reliability in surface mount applications

Electrical Properties: Supply voltage ranges from 4.5V to 5.5V with a typical current consumption of 255mA, ensuring stable operation across various wireless environments

ADL5592ACPZ-R7 Application

The ADL5592ACPZ-R7 is designed for use in RF and wireless infrastructures, particularly in GSM and EDGE communication systems. Its wide frequency support makes it ideal for transmit and receive amplifier stages in base stations, repeaters, and wireless communication terminals, as well as other broadband radio frequency systems requiring variable gain and low noise performance.

ADL5592ACPZ-R7 Features

This IC integrates a variable gain amplifier with linear-in-dB gain control, optimized for operation from 250MHz to 2.4GHz. The design supports precise gain adjustment via a voltage control input, maintaining a highly linear gain response across its broad frequency range. The exposed pad packaging aids in superior thermal conductivity, critical for reliability in high-density mounting configurations. The device offers fast settling times and consistent gain flatness, which are essential for multi-standard RF designs. With its low noise figure of 5.7dB at typical test frequencies, the ADL5592ACPZ-R7 enhances signal-to-noise ratio in receiver paths, contributing to better system sensitivity and overall performance. The compact 40-LFCSP-WQ package ensures minimal board space usage while simplifying PCB layout for high-frequency signal traces.

ADL5592ACPZ-R7 Quality and Safety Features

Manufactured by Analog Devices, Inc.—a reputed leader in RF and wireless components—the ADL5592ACPZ-R7 adheres to rigorous industry quality and reliability standards. The device’s design incorporates ESD protection, robust supply voltage tolerance, and advanced thermal management for dependable use in demanding industrial and telecommunications environments. It is fully RoHS compliant, making it suitable for environmentally conscious designs.

ADL5592ACPZ-R7 Compatibility

The ADL5592ACPZ-R7 is engineered for seamless integration into a wide range of GSM and EDGE infrastructure equipment. The standard 40-LFCSP-WQ footprint aligns with common PCB layouts used in RF modules, supporting easy drop-in replacement or upgrade scenarios. The wide supply voltage and frequency flexibility ensure compatibility with numerous baseband and RF front-end architectures.

ADL5592ACPZ-R7 Datasheet PDF

Our website provides the most authoritative and comprehensive datasheet for the ADL5592ACPZ-R7. We strongly recommend downloading the datasheet directly from this page to access detailed specifications, circuit recommendations, and application guidelines, ensuring optimal design-in and usage.

Quality Distributor

IC-Components is your premium distributor for Analog Devices products, including the ADL5592ACPZ-R7. Take advantage of our extensive inventory, genuine sourcing, and expert support. Request a quote now on our website for unbeatable pricing and fast delivery of authentic ADI components.

Frequently Asked Questions

What are the key considerations for integrating the ADL5592ACPZ-R7 RF amplifier into a GSM/EDGE radio receiver chain to ensure optimal linearity and noise performance?
When integrating the ADL5592ACPZ-R7 into a GSM/EDGE receiver chain, ensure that the power supply voltage remains within the specified 4.5V to 5.5V range to maintain consistent gain and noise figure. Proper impedance matching at the input and output ports is critical to minimize signal reflection and maximize gain. Additionally, implement appropriate filtering and isolation structures to reduce inter-stage interference. Carefully consider the PCB layout to minimize parasitic inductances and capacitances, which can affect high-frequency performance, especially around 1.96GHz. Incorporating ample decoupling capacitors close to the IC’s power pins will improve stability and reduce noise-related issues.
Can the ADL5592ACPZ-R7 handle continuous operation at 2.4GHz in industrial environments, and what reliability factors should be considered?
Yes, the ADL5592ACPZ-R7 is specified for operation up to 2.4GHz and is suitable for industrial applications provided it operates within its recommended voltage range (4.5V to 5.5V) and temperature conditions. For long-term reliability, ensure proper thermal management—use heat sinks or proper PCB copper pours—and select a suitable environmental enclosure to protect against dust and moisture. Verify that the operating temperature range specified by ADI is met, especially for high ambient temperatures common in industrial settings.
What are the practical differences between choosing the ADL5592ACPZ-R7 and similar RF VGA amplifiers from other manufacturers, considering trade-offs like gain, noise figure, and package?
Compared to similar RF VGA amplifiers, the ADL5592ACPZ-R7 offers a gain of approximately 8.9dB and a noise figure of 5.7dB, within a compact 40-LFCSP package ideal for space-constrained designs. Other brands may offer higher gain or lower noise figures but might come in larger packages or require different supply voltages. The 40-LFCSP-WQ package also facilitates surface-mount assembly with good thermal performance. When comparing, consider trade-offs: a device with slightly better noise performance might have higher power consumption or a more complex biasing scheme. Evaluate your system’s power budget, PCB design constraints, and thermal considerations before selecting an alternative.
How does the choice of a 40-LFCSP-WQ package impact the manufacturing process and long-term reliability of products using the ADL5592ACPZ-R7?
The 40-LFCSP-WQ package’s surface-mount design allows for automated assembly, reducing manufacturing costs and variability. However, it requires precise PCB footprint design, including pad size and placement, as well as careful reflow process control to prevent soldering defects like bridges or voids. Long-term reliability benefits from proper handling and PCB design practices, including adequate grounding and thermal management. Exposure of the package’s exposed pad (thermal pad) in operation improves heat dissipation, which enhances the device's lifespan under continuous operation.
What are the critical power supply filtering and decoupling strategies when using the ADL5592ACPZ-R7 in high-frequency applications around 1.96GHz?
To ensure stable operation and minimize power supply noise, place high-quality decoupling capacitors (e.g., 0.1µF ceramic with low ESR) close to the IC’s supply pins. Use a multi-layer PCB with solid ground planes and implement ferrite beads or RC filters to suppress high-frequency power supply ripple. Keep the supply traces short and symmetrical to reduce voltage fluctuations that could impact gain and noise figure. Adequate bulk capacitance (e.g., 10µF tantalum or electrolytic) at the power entry point also helps maintain stable voltage levels during transient loads.
Is the ADL5592ACPZ-R7 suitable for direct replacement or upgrade in existing systems using similar RF amplifiers, and what factors should be considered?
The ADL5592ACPZ-R7 can serve as a direct replacement if the existing system settings—such as supply voltage, impedance matching, and pinout—are compatible. However, consider the gain, noise figure, and power consumption differences to ensure system performance is maintained or improved. Check the PCB layout constraints, as the package may require adaptations. Additionally, review the device’s linearity and biasing requirements to align with your system's current design. If upgrading from a different device, re-evaluate the matching network and validate performance through testing before full deployment.
How does the RF frequency range of 250MHz to 2.4GHz influence the design considerations for achieving optimal performance with the ADL5592ACPZ-R7?
The wide frequency range requires careful PCB layout and impedance matching across the entire spectrum. Use high-quality RF components designed for these frequencies to ensure proper linearity and minimal insertion loss. For optimal performance at specific frequencies like 1.96GHz, tune matching networks accordingly. Pay attention to parasitic inductances and capacitances introduced by PCB traces and component packages, which become more critical at higher frequencies. Implement controlled impedance traces and maintain consistent trace widths to preserve signal integrity across the entire operating bandwidth.
What are the key thermal management practices needed to ensure the ADL5592ACPZ-R7 maintains reliable operation in a compact, surface-mounted design?
Utilize the exposed pad feature in the 40-LFCSP package to facilitate heat dissipation by soldering it directly to a large copper ground plane or thermal pad. Incorporate thermal vias beneath the pad to conduct heat away from the device. Ensure adequate PCB copper area around the IC for heat spreading. Avoid placing heat-sensitive components close to the amplifier. Use appropriate airflow or heat sinking if operating at high power levels or in high-temperature environments. Regularly verify junction temperatures during testing to confirm that thermal limits are not exceeded for long-term reliability.
How does the quiescent current (255mA) of the ADL5592ACPZ-R7 impact power supply design in portable or battery-powered applications?
The 255mA supply current necessitates a stable, efficient power supply capable of providing consistent voltage and current without introducing excessive ripple or noise that could degrade RF performance. For portable applications, consider the impact on battery life; higher current consumption results in shorter operational time. Design the power supply with low-ESR decoupling capacitors and filtering to maintain signal integrity. Evaluate whether the device’s performance benefits outweigh the power consumption, or if alternative solutions with lower current draw are appropriate for your application.
What are the limitations of using the ADL5592ACPZ-R7 in multi-band, multi-standard RF systems, and how can they be addressed?
The ADL5592ACPZ-R7 is optimized for operation within 250MHz to 2.4GHz and may not support frequencies outside this range effectively. In multi-band systems, it’s essential to ensure that the amplifier’s gain, linearity, and noise figure meet the requirements for each band. Use band-specific matching networks to optimize performance at each frequency band. If the system requires support beyond 2.4GHz, consider selecting an alternative RF amplifier designed specifically for higher frequencies. Proper isolation and filtering are also necessary to prevent inter-band interference and ensure compliance with spectral masks and regulations.

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