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ADS5562IRGZR

In Stock 470 pcs Reference Price(In US Dollars)
1+
$75.8035
Manufacturer Part Number:
ADS5562IRGZR
Manufacturer / Brand
Texas Instruments
Part of Description:
IC ADC 16BIT PIPELINED 48VQFN
Datasheets:
ADS5562IRGZR.pdf
Lead Free Status / RoHS Status:
ROHS3 Compliant
Stock Condition:
New original, 470 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number ADS5562IRGZR
Manufacturer / Brand Texas Instruments
Stock Quantity 470 pcs Stock
Category Integrated Circuits (ICs) > Data Acquisition - Analog to Digital Converters (ADC)
Description IC ADC 16BIT PIPELINED 48VQFN
Lead Free Status / RoHS Status: ROHS3 Compliant
Voltage - Supply, Digital 3V ~ 3.6V
Voltage - Supply, Analog 3V ~ 3.6V
Supplier Device Package 48-VQFN (7x7)
Series -
Sampling Rate (Per Second) 80M
Reference Type Internal
Ratio - S/H:ADC 1:1
Package / Case 48-VFQFN Exposed Pad
Package Tape & Reel (TR)
Operating Temperature -40°C ~ 85°C
Number of Inputs 1
Number of Bits 16
Number of A/D Converters 1
Mounting Type Surface Mount
Input Type Differential
Features -
Data Interface LVDS - Parallel, Parallel
Configuration S/H-ADC
Base Product Number ADS5562
Architecture Pipelined

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.

QC(Part Testing by IC Components)Quality Warranty

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Shipping Fees reference DHL/FedEx
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2). Use our account for shipment, Shipment charges(Reference DHL/FedEx, Different Countries has different price.)
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
* The price of cost is reference with DHL/FedEx. The detail charges, please contact us. Different country the express charges are different.



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ADS5562IRGZR Product Details:

The ADS5562IRGZR is a high-performance 16-bit pipelined analog-to-digital converter manufactured by Texas Instruments (formerly Luminary Micro) that delivers exceptional signal conversion capabilities for demanding applications. This integrated circuit belongs to the data acquisition category of analog-to-digital converters and addresses critical design challenges in high-speed, high-resolution signal processing where maintaining signal integrity and achieving precise digital representation of analog signals is paramount.

The converter operates at an impressive sampling rate of 80 million samples per second (80 MSPS) while maintaining 16-bit resolution, making it ideal for applications requiring both speed and precision. The device features a pipelined architecture with a sample-and-hold to ADC ratio of 0:55, utilizing an internal reference system that simplifies external component requirements. The converter accepts differential input signals and provides data output through both LVDS parallel and standard parallel interfaces, ensuring flexible integration options for various system architectures.

Housed in a compact 48-pin VQFN package measuring 7x7mm with an exposed pad for enhanced thermal performance, the device operates reliably across an industrial temperature range of -40°C to 85°C. The surface-mount configuration supports automated assembly processes, while the tape and reel packaging facilitates high-volume manufacturing. Power requirements are optimized with both analog and digital supply voltages operating between 3V and 3.6V, making it compatible with modern low-power system designs.

The primary advantages of this ADC include its exceptional dynamic performance, low power consumption, and integrated design that reduces external component count and board space requirements. The LVDS output capability ensures robust signal transmission over longer distances while maintaining signal integrity, particularly valuable in noisy industrial environments. The device's RoHS3 compliance ensures environmental responsibility and regulatory compliance for global markets.

This converter finds extensive application in telecommunications infrastructure, software-defined radio systems, medical imaging equipment, test and measurement instruments, radar systems, and high-speed data acquisition systems where precise analog signal digitization is critical. The combination of high sampling rate and resolution makes it particularly suitable for wideband signal processing applications.

Equivalent and alternative models include the ADS5562IRGZT (different packaging option), ADS5562IPFB (different package format), and competitive alternatives such as the Analog Devices AD9467BCPZ-100 (16-bit, 100 MSPS), Linear Technology LTC2208CUK#PBF (16-bit, 130 MSPS), and Maxim MAX19692ETM+ (16-bit, 65 MSPS). Other comparable options include the ADS5463 series from Texas Instruments offering different speed grades, and the ADS5562EVM evaluation module for development and prototyping purposes. When selecting alternatives, designers should consider factors such as sampling rate requirements, power consumption constraints, package preferences, and specific interface requirements to ensure optimal system performance.

ADS5562IRGZR Key Technical Attributes

The ADS5562IRGZR is a high-performance, 16-bit resolution, pipelined Analog to Digital Converter (ADC) engineered by Texas Instruments under the Luminary Micro brand. It features a sampling rate of up to 80MSPS (Mega Samples Per Second), making it suitable for applications requiring both high resolution and fast throughput. The device operates with differential input configuration, leveraging an internal reference architecture to enhance accuracy and stability. It supports both LVDS-parallel and standard parallel data interface output, ensuring flexibility in data transmission to external systems.

ADS5562IRGZR Packing Size

This ADC is offered in a 48-lead VQFN (Very Thin Quad Flat No-lead) package with dimensions of 7x7mm, utilizing an exposed pad to optimize thermal dissipation. The device is specifically designed for surface mount technology (SMT), and comes packed as tape & reel (TR), which is ideal for automated assembly processes. The pin configuration is optimized for efficient layout and integration in dense circuit designs, facilitating robust electrical connections and minimizing signal interference. The exposed pad enhances thermal performance, which is essential for high-speed ADCs operating at elevated rates and within industrial temperature ranges.

ADS5562IRGZR Application

The ADS5562IRGZR finds wide application in fields such as medical imaging, high-speed data acquisition systems, communications infrastructure, test and measurement equipment, and industrial process controls. Specifically, its 16-bit accuracy and fast 80MSPS sampling make it a prime choice for applications demanding high precision and low-latency analog-to-digital conversion, such as radar, wireless base stations, and advanced instrumentation.

ADS5562IRGZR Features

This ADC incorporates a true 16-bit resolution with ultra-low noise and high linearity, ensuring precise digitization of analog signals. Its pipelined architecture enables fast, continuous sampling together with low latency. With a single differential analog input and internal reference, it simplifies system design by minimizing the need for external components. The digital output is available through both LVDS and parallel interfaces, supporting compatibility with a wide range of FPGA and DSP platforms. It accommodates a flexible power supply range (3V to 3.6V) for both analog and digital domains, increasing versatility in mixed-signal system implementations. Innovative thermal management via the exposed pad design, along with compliance to ROHS3 standards, underscores its suitability for green, high-reliability deployments. The ADC supports sample-and-hold (S/H) functionality for accurate signal capture and optimal signal-to-noise ratio (SNR). Its robust operating temperature of -40°C to 85°C makes it suitable for industrial environments.

ADS5562IRGZR Quality and Safety Features

The ADS5562IRGZR is fully RoHS3 compliant, denoting the absence of hazardous substances, which ensures environmental safety and aligns with global compliance standards. Enhanced ESD protection mechanisms are incorporated to safeguard the IC against electrostatic discharge during assembly and operation. The reliable surface-mount VQFN packaging supports strong board-level connectivity and excellent thermal conductivity, preventing overheating in critical applications. Consistent manufacturing standards by Texas Instruments further guarantee product longevity and reliability in mission-critical systems.

ADS5562IRGZR Compatibility

This ADC is compatible with a wide range of digital processors, FPGAs, and DSPs due to its industry-standard LVDS-parallel and parallel interface options. It is well-suited for integration into modern mixed-signal systems, data acquisition modules, and other embedded platforms that demand high-resolution ADC performance in compact form factors. Its interface and electrical characteristics make it adaptable to various analog front-ends and signal conditioning circuits.

ADS5562IRGZR Datasheet PDF

Our website offers the most authoritative and up-to-date datasheet for the ADS5562IRGZR. We highly recommend all customers download the official datasheet directly from this page to access comprehensive technical information, pin assignments, electrical characteristics, and detailed application guidance that only the manufacturer can provide.

Quality Distributor

IC-Components is proud to be a premium distributor for Luminary Micro and Texas Instruments products. We offer genuine, high-quality ADS5562IRGZR ADCs, backed by extensive inventory and prompt global shipping. For competitive pricing and reliable sourcing, customers are encouraged to request an instant quote on our website and benefit from our dedicated technical support and commitment to customer satisfaction.

Frequently Asked Questions

How should I determine if the Luminary Micro ADS5562IRGZR ADC is suitable for high-speed data acquisition in a synchronous measurement system?
The ADS5562IRGZR supports a sampling rate of up to 80 MSPS with a pipelined architecture, making it suitable for high-speed applications requiring fast digitization. Ensure your system's timing, PCB layout, and analog front-end can handle the 80 MSPS rate, and verify that your data interface (LVDS - Parallel) can accommodate this throughput. Additionally, confirm that your processing electronics can manage the data volume generated at this sampling rate to maintain data integrity.
What are the key considerations when integrating the ADS5562IRGZR into an analog front-end with differential input signals?
The ADS5562IRGZR is designed with differential input capability, which improves noise immunity and signal integrity. When integrating, ensure the analog signals are properly conditioned and matched to the differential input voltage range, and that input impedance is compatible. Additionally, use balanced cabling and proper shielding to minimize noise pickup, and verify common-mode voltage levels are within acceptable limits (based on the specified input range).
Can I operate the ADS5562IRGZR from a single 3.3V power supply, and what are the potential risks or limitations?
Yes, the ADS5562IRGZR supports a supply voltage range of 3V to 3.6V for both analog and digital supplies. Using a 3.3V supply is within these specifications. However, ensure that your power supply is well regulated and free of excessive noise to maintain ADC accuracy and reliability. Be aware that operating at the lower end of the voltage range may marginally affect certain internal parameters like linearity or noise performance.
How does the choice of the internal reference in the ADS5562IRGZR influence system accuracy, and should I consider an external reference?
The ADS5562IRGZR uses an internal reference, simplifying design and reducing external components. However, for applications requiring higher accuracy, tighter calibration, or temperature stability, an external precision reference can improve overall system performance. Evaluate your accuracy, stability, and long-term drift requirements to decide whether to rely on the internal reference or integrate an external one with better specifications.
What are the critical PCB layout considerations for achieving optimal performance with the ADS5562IRGZR at 80 MSPS?
To optimize performance, place the ADC close to the analog input source, use controlled impedance differential traces for the inputs, and maintain proper grounding and shielding. Keep the device's power supply decoupling capacitors close to the VCC pins, and use a solid ground plane to minimize noise coupling. Also, route the LVDS data lines with matched length and impedance to reduce skew and jitter at high speeds.
Is the ADS5562IRGZR suitable for industrial temperature environments, and what precautions are necessary for reliable long-term operation?
Yes, the ADS5562IRGZR operates over the -40°C to 85°C temperature range, making it suitable for industrial applications. For reliable long-term operation, ensure proper PCB thermal management, minimal vibration, and adequate environmental sealing. Use conformal coatings if necessary to protect against humidity or contaminants, and choose a robust power supply design to prevent voltage fluctuations.
How can I replace or upgrade the ADS5562IRGZR with a similar ADC, and what should I consider during migration?
When considering replacement, look for an ADC with comparable sampling rate, resolution, input voltage range, and interface (LVDS - Parallel). Evaluate differences in architecture, linearity, internal reference, and package footprint. Be prepared for potential PCB redesign to accommodate pinout or footprint differences, and assess whether external references or additional filtering are required for the new part to meet your system specifications.
What are the design limitations of the ADS5562IRGZR when used in low-voltage or battery-powered portable systems?
While the ADC operates within 3V to 3.6V supplies, low-voltage systems may face challenges in providing clean, stable power rails at these levels, especially under load. Power consumption and heat dissipation should be considered, as high-speed sampling at 80 MSPS may impact battery life. Use efficient power management techniques and ensure the analog and digital supplies are well filtered to prevent unwanted noise coupling into sensitive measurements.
How does the pipelined architecture of the ADS5562IRGZR affect its linearity and noise performance at high sampling speeds?
The pipelined architecture enables high-speed conversion with rapid throughput, but it can introduce differential and integral nonlinearities if not properly designed or calibrated. To ensure optimal linearity and noise performance, implement proper layout practices, use calibration routines if available, and validate the ADC's performance through detailed testing under real operating conditions.
Is the ADS5562IRGZR compatible with standard digital communication interfaces, or is its LVDS - Parallel interface limited to specific system configurations?
The ADS5562IRGZR uses a parallel LVDS interface suitable for high-speed data transfer directly into FPGA or DSP systems. Compatibility depends on your target device's support for LVDS signals and parallel data inputs. Ensure your data acquisition system has appropriate LVDS receiver circuitry and timing requirements met. For systems without parallel LVDS support, external interface translation or different ADC options may be necessary.

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