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AD9653BCPZ-125

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AD9653BCPZ-125

Part NumberAD9653BCPZ-125
ManufacturerAnalog Devices Inc. (ADI)
CategoryIntegrated Circuits (ICs) > Data Acquisition – Analog to Digital Converters (ADC)
DescriptionHigh-performance, quad 16-bit, 125 MSPS Analog-to-Digital Converter (ADC) featuring ultra-low power consumption and serial LVDS outputs, optimized for MRI, medical imaging, and military radar multi-channel data acquisition.
Stock StatusIn Stock
OriginOriginal Factory

Product Overview

The AD9653BCPZ-125 is an elite, high-performance monolithic quad (4-channel), 16-bit Analog-to-Digital Converter (ADC) designed by Analog Devices Inc. Running at a conversion clock speed up to 125 MSPS (Mega Samples Per Second), this high-speed ADC is purpose-built for low-power, high-density system topologies demanding exceptional dynamic range, high signal fidelity, and absolute channel-to-channel matching. The device incorporates a multi-stage differential pipelined core architecture with integrated output error correction logic to preserve absolute quantization accuracy across its full operational bandwidth. Each channel features an independent sample-and-hold circuit, feeding into serialized Low-Voltage Differential Signaling (LVDS) outputs that minimize multi-lane PCB layout routing congestion and suppress digital cross-talk noise. Housed in a space-saving, thermally enhanced LFCSP-48 package, the stands as a premier data conversion engine for magnetic resonance imaging (MRI) receivers, multi-antenna phased-array radar systems, software-defined radios (SDR), and high-density industrial data acquisition hardware blocks.

Core Advantages

Industry-Leading 16-Bit Dynamic Performance

Delivers an exceptional Signal-to-Noise Ratio (SNR) of 76.5 dBFS and an outstanding Spurious-Free Dynamic Range (SFDR) of 90 dBc at a 70 MHz analog input frequency, allowing accurate detection of faint, low-amplitude signals.

Ultra-Low Multi-Channel Power Profile

Consumes an exceptionally low 164 mW per channel at 125 MSPS under standard operating parameters, significantly minimizing core heat dissipation and extending runtime limits in portable or completely sealed systems.

Simplified Board Layout via Serial LVDS

Streams digital sample outputs through interleaved high-speed serial LVDS pairs, cutting interconnect lane requirements down drastically, easing PCB track length matching routines, and dampening high-frequency EMI noise.

Advanced On-Chip Phase and Alignment Tuning

Equipped with an autonomous clock duty cycle stabilizer and a flexible serial port interface (SPI) register array, enabling engineering teams to easily fine-tune internal phase states, adjust digital test patterns, and power down individual channels.

Key Specifications

BrandAnalog Devices Inc. (ADI)
RoHS StatusRoHS Compliant / Lead-Free Standard
EDA/CAD Model3D Model & PCB Footprint Available upon request
Warranty1-Year Standard Factory Warranty
Package / CaseLFCSP-48 (7×7 mm)
Mounting TypeSurface Mount Technology (SMD/SMT)
Surface Marking / SilkscreenAD9653BCPZ-125 Marking
Number of ADC Channels4 Independent Analog Inputs (Quad Matrix Block)
Resolution16-Bit Maximum Quantization Depth
Maximum Sampling Rate125 MSPS (Mega Samples Per Second) Continuous Converters Clock
Analog Input TypeDifferential Input Circuitry (2 V p-p Full-Scale Selection Range)
Digital Output InterfaceSerial LVDS (Supports ANSI-644 Signalling Matrix Standard)
Analog Supply Voltage (AVDD)1.8 V DC Nominal Supply Rail
Digital Output Supply (DRVDD)1.8 V DC Interface Supply Bias Window
Full-Power Bandwidth (FPBW)650 MHz Large-Signal Analog Input Bandwidth Range
Operating Temperature Range-40°C to +85°C (Industrial System Operational Grade Envelope)

Typical Applications

  • Medical Ultrasound Equipment and Multi-Channel Magnetic Resonance Imaging (MRI) Receivers
  • Military Defense Systems, Phased-Array Radars, Smart Sonar Arrays, and Electronic Warfare (EW) Hubs
  • High-Density Communication Receivers, Mainstream Cellular Base Stations, and Software-Defined Radios (SDR)
  • Multi-Channel Industrial Data Acquisition Networks, Automated Testing Equipment (ATE), and Oscilloscopes
  • Advanced High-Speed Machine Vision Clusters, Scientific Spectrometry, and Particle Telemetry Systems

Order & Shipping Info

Minimum Order Quantity (MOQ)1 Piece
Shipping TimeShipped within 1-2 business days
Delivery Time3-7 working days worldwide
Shipping MethodsDHL, UPS, FedEx, EMS
Payment MethodsT/T (Bank Transfer), PayPal, Credit Card, Western Union

Technical Support

For datasheet, sample requests, stock check, or bulk pricing, please use the Quick Inquiry form. We will reply within 24 hours.

Frequently Asked Questions

Q1: Is your current stock inventory of the AD9653BCPZ-125 completely factory-original?

A: Yes, we guarantee that all AD9653BCPZ-125 components in our stock are 100% brand-new, factory-original products from Analog Devices Inc., kept and handled under strict anti-static ESD shielding and dry-pack moisture-control guidelines.

Q2: What is the main design advantage of the serial LVDS interface on the AD9653?

A: For a 4-channel 16-bit high-speed ADC, a traditional parallel output interface would require nearly 70 physical pins and signal traces, creating layout complications and severe board space constraints. High-speed serial LVDS condenses data lines down to a few high-speed differential pairs, clearing up layout density and eliminating high-frequency EMI noise.

Q3: How does the on-chip Clock Duty Cycle Stabilizer benefit high-frequency sampling?

A: Pipelined ADCs depend heavily on a perfectly symmetrical clock signal for stable conversions. The built-in stabilizer conditions incoming clock pulses automatically. Even if the primary system clock experiences duty cycle symmetry distortions, the internal circuit maintains a consistent 50/50 clock balance, ensuring optimal ADC conversion accuracy.

Q4: How can our technical group download complete system architecture manuals, register configuration spreadsheets, or check volume tier pricing?

A: Please complete our Quick Inquiry web form on this page with details about your processing parameters. Our application support desk will process your inquiry and dispatch the available technical documentation package within 24 hours.

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