AD9653 Alternatives: Complete 16-Bit 4-Channel 125 MSPS ADC Comparison Guide
Published: September 9, 2026 · Updated: September 9, 2026 · Category: High-Speed ADCs · Reading time: ~10 min
The Analog Devices AD9653 is a widely deployed 16-bit, 4-channel, 125 MSPS analog-to-digital converter used in communications, instrumentation, medical imaging, and radar systems. Its quad-channel simultaneous sampling architecture, LVDS serial interface, and compact 48-lead LFCSP package make it ideal for phase-coherent multi-channel acquisition. However, supply constraints continue to affect this part, with lead times through authorized distributors routinely exceeding 6 months.
This guide provides a comprehensive comparison of all major AD9653 alternatives, including the JXA031 from Shenxin Tech as a pin-to-pin compatible option, and functional alternatives from Analog Devices and Texas Instruments for new designs where PCB redesign is acceptable.
What Are the Best AD9653 Alternatives?
The table below summarizes all major alternatives. Detailed comparisons follow in subsequent sections.
| Part Number | Manufacturer | Resolution | Sample Rate | Channels | Interface | Key Advantage | Lead Time |
|---|---|---|---|---|---|---|---|
| JXA031 | Shenxin Tech | 16-bit | 125 MSPS | 4 | LVDS | Pin-to-pin, 6-week lead time | ~6 weeks |
| AD9653 | Analog Devices | 16-bit | 125 MSPS | 4 | LVDS | Mature ecosystem, DNL ±0.7 | 6+ months |
| AD9656 | Analog Devices | 16-bit | 125 MSPS | 4 | JESD204B | Higher SNR, serial interface | 12+ weeks |
| ADS52J60 | Texas Instruments | 16-bit | 125 MSPS | 4 | JESD204B | Lowest power (82 mW/ch) | 12+ weeks |
| AD9253 | Analog Devices | 14-bit | 125 MSPS | 4 | LVDS | Pin-to-pin with AD9653, 14-bit | 12+ weeks |
Which AD9653 Alternatives Are True Pin-to-Pin Drop-In Replacements?
For teams with existing AD9653 PCB designs, the JXA031 from Shenxin Tech offers a pin-to-pin compatible alternative. It matches the AD9653's QFN48 (48-lead LFCSP, 7×7mm) package, LVDS data interface, and 1.8V supply, enabling direct drop-in replacement without PCB redesign.
JXA031 vs AD9653: Detailed Specification Comparison
| Parameter | JXA031 | AD9653 |
|---|---|---|
| Resolution | 16-bit | 16-bit |
| Sample Rate | 125 MSPS | 125 MSPS |
| Channels | 4 (simultaneous) | 4 (simultaneous) |
| Interface | LVDS (serial) | LVDS (serial, ANSI-644) |
| SFDR | ≥93 dBFS | 90 dBc (to Nyquist); 93 dBc @ 15 MHz |
| SNR | ≥76.5 dBFS | 76.5 dBFS @ 70 MHz (min); 78 dBFS @ 9.7 MHz |
| ENOB | 12.4 bits | 12.4 bits @ 70 MHz; 12.7 bits @ 9.7 MHz |
| Power Consumption | ≤150 mW/ch | 163 mW/ch (incl. output drivers) |
| Package | QFN48 (48-lead LFCSP, 7×7mm) | 48-lead LFCSP (7×7mm) |
| Supply Voltage | 1.8V | 1.8V (AVDD, DRVDD) |
| Operating Temperature | -40°C to +85°C | -40°C to +85°C |
| Input Voltage Range | 2 V p-p | 2 V p-p |
| Analog Input Bandwidth | 650 MHz (full power) | 650 MHz (full power) |
| Pin Assignment | Identical | — |
| SPI Register-Compatible | Yes | — |
| Lead Time | ~6 weeks | 6+ months (typical) |
| FAE Support | Direct, local | Through distributor |
Migration Path: From AD9653 to JXA031
How Do AD9653 Alternatives Compare in Performance?
The JXA031 matches the AD9653's 16-bit resolution, 4-channel architecture, and 125 MSPS sampling rate, delivering ≥93 dBFS SFDR, ≥76.5 dBFS SNR, and ≤150 mW/ch power. The AD9656 offers 79.9 dBFS SNR at higher 197 mW/ch, while the TI ADS52J60 provides the lowest power at 82 mW/ch with integrated I/Q demodulation.
Typical performance per datasheet. Values represent typical operating conditions at specified frequencies.
SFDR Comparison (dBFS/dBc, to Nyquist)
SNR Comparison (dBFS, typical at specified frequency)
Power Consumption per Channel (mW, at 125 MSPS)
What Applications Are Best Suited for AD9653 Alternatives?
Scenario 1: Software Defined Radio (SDR) Receivers
Multi-channel SDR receivers require phase-coherent simultaneous sampling for I/Q demodulation and beamforming. The JXA031's 4-channel architecture with 16-bit resolution at 125 MSPS supports wideband digitization up to 62.5 MHz instantaneous bandwidth per channel, with phase-aligned sampling across all four channels.
Recommended circuit configuration: RF front-end (LNA + bandpass filter) → differential ADC driver → JXA031 (4 channels) → FPGA with LVDS interface for data capture and DDC (digital down-conversion). SPI for channel enable/disable, test pattern generation, and output clock alignment.
Scenario 2: Medical Imaging (Ultrasound, CT)
Ultrasound and CT scanner receiver chains require multiple channels of 16-bit data acquired simultaneously for image reconstruction. The JXA031's quad-channel simultaneous sampling eliminates channel-to-channel skew, critical for beamforming image quality. Low power (≤150 mW/ch) is essential for portable and battery-powered ultrasound systems.
Recommended circuit configuration: Transducer array → TGC (time gain compensation) amplifier → anti-alias filter → JXA031 (multiple devices for 16+ channels) → beamforming FPGA. Multi-chip sync via frame clock and sync signals for coherent sampling across devices.
Scenario 3: Test & Measurement (Oscilloscopes, DAQ)
Digital storage oscilloscopes and high-speed data acquisition systems benefit from the JXA031's 16-bit resolution (far greater dynamic range than typical 8-bit scope ADCs) and 4-channel simultaneous architecture. The 125 MSPS rate supports 62.5 MHz analog bandwidth per channel with Nyquist-rate anti-alias filtering.
Recommended circuit configuration: Input attenuator/amplifier → anti-alias filter → ADC driver → JXA031 → FPGA for data processing and waveform display. LVDS interface provides high-speed data transfer with DDR clocking support up to 500 MHz DCO frequency.
EVB and FAE Support
Shenxin Tech provides comprehensive evaluation and design support for the JXA031:
• Evaluation boards available with 4-channel LVDS FPGA interface and reference clock input
• Reference designs including schematics, BOM, and layout files for LFCSP-48 footprint
• Direct FAE support for schematic review, FPGA LVDS interface integration, and side-by-side qualification testing
• Samples available — contact felix@shenxinic.com or call +86 13823613186
Selection Recommendation Table
| Application | Recommended Part | Key Reason |
|---|---|---|
| Existing AD9653 PCB, need second source | JXA031 | Pin-to-pin, LFCSP-48, 6-week lead time |
| New design, need JESD204B interface | AD9656 | 16-bit, JESD204B, higher SNR |
| New design, lowest power per channel | ADS52J60 | 82 mW/ch, JESD204B, digital features |
| 14-bit sufficient, pin-to-pin with AD9653 | AD9253 | Same package, lower cost, lower power |
What Functional Alternatives Exist for New AD9653 Designs?
If you're starting a new design or planning a board revision, functional alternatives offer different performance trade-offs. These are not pin-to-pin compatible with the AD9653 and require PCB redesign, but may offer advantages in specific areas.
AD9656 — Analog Devices (JESD204B Interface)
The AD9656 is a 16-bit, 4-channel, 125 MSPS ADC from the same ADI family as the AD9653, but with a JESD204B serial data interface replacing the LVDS interface. It offers higher SNR (79.9 dBFS @ 16 MHz) and a flexible 1/2/4-lane JESD204B configuration supporting up to 6.4 Gbps per lane. The on-chip PLL allows users to provide a single ADC sampling clock, simplifying system clock distribution.
| Parameter | AD9656 | AD9653 |
|---|---|---|
| Resolution | 16-bit | 16-bit |
| Sample Rate | 125 MSPS | 125 MSPS |
| Channels | 4 | 4 |
| Interface | JESD204B | LVDS |
| SNR | 79.9 dBFS @ 16 MHz | 76.5 dBFS @ 70 MHz |
| SFDR | 86 dBc | 90 dBc |
| Power | 197 mW/ch | 163 mW/ch |
| Package | 56-lead LFCSP (8×8mm) | 48-lead LFCSP (7×7mm) |
| Supply Voltage | 1.8V | 1.8V |
| DNL / INL | ±0.6 LSB / ±4.5 LSB | ±0.7 LSB |
| Pin-to-Pin with AD9653 | No | — |
| Key Advantage | JESD204B, higher SNR | LVDS, smaller package |
Best for: New designs requiring JESD204B serial interface for simplified PCB routing and higher SNR, where the larger package and higher power are acceptable.
ADS52J60 — Texas Instruments (Lowest Power)
The TI ADS52J60 (part of the ADS52J6x family) is a 16-bit, 4-channel, 125 MSPS ADC with a JESD204B interface. Its standout feature is the extremely low power consumption of just 82 mW per channel — the lowest in this comparison. It also includes advanced digital features such as automatic DC offset correction, digital averaging, and a digital I/Q demodulator with fractional decimation filters.
| Parameter | ADS52J60 | AD9653 |
|---|---|---|
| Resolution | 16-bit | 16-bit |
| Sample Rate | 125 MSPS | 125 MSPS |
| Channels | 4 | 4 |
| Interface | JESD204B (up to 10 Gbps) | LVDS |
| SNR | 78 dBFS @ 10 MHz | 76.5 dBFS @ 70 MHz |
| SFDR | 85 dBc @ 10 MHz | 90 dBc |
| Power | 82 mW/ch | 163 mW/ch |
| Package | 64-pin (9×9mm) | 48-lead LFCSP (7×7mm) |
| Supply Voltage | 1.8V | 1.8V |
| Analog Input Bandwidth | 250 MHz (-3dB) | 650 MHz |
| Pin-to-Pin with AD9653 | No | — |
| Key Advantage | Lowest power, digital I/Q demod | Wider bandwidth, LVDS |
Best for: Portable and battery-powered applications where minimum power consumption is the top priority, and where the integrated digital I/Q demodulator can offload FPGA processing.
AD9253 — Analog Devices (14-Bit, Pin-to-Pin)
The AD9253 is a 14-bit, 4-channel, 125 MSPS ADC that is pin-to-pin compatible with the AD9653 — same 48-lead LFCSP package, same pinout. It offers lower resolution (14-bit vs 16-bit) but also lower power (110 mW/ch vs 163 mW/ch). For applications where 14-bit resolution is sufficient, it provides a cost-optimized alternative that drops directly into an AD9653 PCB.
| Parameter | AD9253 | AD9653 |
|---|---|---|
| Resolution | 14-bit | 16-bit |
| Sample Rate | 125 MSPS | 125 MSPS |
| Channels | 4 | 4 |
| Interface | LVDS | LVDS |
| SNR | 74.2 dBFS @ 70 MHz | 76.5 dBFS @ 70 MHz |
| SFDR | 90 dBc | 90 dBc |
| Power | 110 mW/ch | 163 mW/ch |
| Package | 48-lead LFCSP (7×7mm) | 48-lead LFCSP (7×7mm) |
| Pin-to-Pin with AD9653 | Yes | — |
| DNL / INL | ±0.75 LSB / ±2.0 LSB | ±0.7 LSB |
| Key Advantage | Pin-to-pin, lower power, lower cost | 16-bit resolution |
Best for: Applications where 14-bit resolution provides adequate dynamic range and the pin-to-pin compatibility with AD9653 allows an easy resolution downgrade without PCB changes.
How Do All AD9653 Alternatives Compare Side by Side?
| Parameter | JXA031 | AD9653 | AD9656 | ADS52J60 | AD9253 |
|---|---|---|---|---|---|
| Manufacturer | Shenxin Tech | Analog Devices | Analog Devices | Texas Instruments | Analog Devices |
| Resolution | 16-bit | 16-bit | 16-bit | 16-bit | 14-bit |
| Sample Rate | 125 MSPS | 125 MSPS | 125 MSPS | 125 MSPS | 125 MSPS |
| Channels | 4 | 4 | 4 | 4 | 4 |
| Interface | LVDS | LVDS | JESD204B | JESD204B | LVDS |
| SFDR (typ) | ≥93 dBFS | 90 dBc | 86 dBc | 85 dBc | 90 dBc |
| SNR (typ) | ≥76.5 dBFS | 76.5 dBFS | 78.1 dBFS | 78 dBFS | 74.2 dBFS |
| ENOB | 12.4 bits | 12.4 bits | — | — | — |
| Power/ch | ≤150 mW | 163 mW | 197 mW | 82 mW | 110 mW |
| Package | QFN48 (7×7mm) | LFCSP-48 (7×7mm) | LFCSP-56 (8×8mm) | 64-pin (9×9mm) | LFCSP-48 (7×7mm) |
| Supply | 1.8V | 1.8V | 1.8V | 1.8V | 1.8V |
| Temperature | -40 to 85°C | -40 to 85°C | -40 to 85°C | -40 to 85°C | -40 to 85°C |
| Input Bandwidth | 650 MHz | 650 MHz | 650 MHz | 250 MHz | 650 MHz |
| Pin-to-Pin with AD9653 | Yes | — | No | No | Yes |
| Lead Time | ~6 weeks | 6+ months | 12+ weeks | 12+ weeks | 12+ weeks |
| FAE Support | Direct, local | Via distributor | Via distributor | Via distributor | Via distributor |
Frequently Asked Questions
The JXA031 by Shenxin Tech is a pin-to-pin compatible alternative. Same 48-lead LFCSP (7×7mm) package, identical pin assignments, LVDS interface, and 1.8V supply. It matches the AD9653's 16-bit, 4-channel, 125 MSPS architecture with SFDR ≥93 dBFS, SNR ≥76.5 dBFS, ENOB 12.4 bits, and ≤150 mW/ch. Standard lead time is 6 weeks.
Yes. The JXA031 by Shenxin Tech is a China-based pin-to-pin equivalent offering the same 16-bit resolution, 4-channel simultaneous sampling, 125 MSPS rate, LVDS interface, and 48-lead LFCSP package with direct FAE support and 6-week lead times.
For new designs: AD9656 (16-bit, JESD204B, higher SNR), TI ADS52J60 (16-bit, JESD204B, lowest power at 82 mW/ch), and AD9253 (14-bit, pin-to-pin with AD9653, lower power). Each requires PCB redesign except the AD9253.
No. The AD9656 uses a JESD204B interface and 56-lead LFCSP (8×8mm) package, while the AD9653 uses LVDS and 48-lead LFCSP (7×7mm). They require PCB redesign. The AD9656 offers higher SNR (79.9 dBFS) but at higher power (197 mW/ch). Choose the JXA031 for a true drop-in replacement without board changes.
The JXA031 offers ~6 weeks standard lead time, compared to 6+ months for the AD9653 through distributors. Other alternatives (AD9656, ADS52J60) also face extended lead times of 12+ weeks.