AD9680BCPZ-1250 - Dual 14-Bit 1.25 GSPS ADC JESD204B | Analog Devices
MPN: AD9680BCPZ-1250 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $1050 | $1,050.00 |
| 10 | $997.5 | $9,975.00 |
| 100 | $945 | $94,500.00 |
| 500 | $892.5 | $446,250.00 |
| 1,000 | $840 | $840,000.00 |
Drop-in alternatives for AD9680BCPZ-1250 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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AD9680BCPZ-1000
β Drop-Inπ Reference alternative (not in catalog)
AD9680BCPZ-820
β Drop-In β οΈ εζ°εΎ ιͺθ―π Reference alternative (not in catalog)
AD9680BCPZ-500
β Drop-Inβ In Stock
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View Datasheet βAD9680BCPZRL7-1000
β Drop-In β οΈ εζ°εΎ ιͺθ―β In Stock
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View Datasheet βAD9680BCPZRL7-820
β Drop-Inπ Reference alternative (not in catalog)
AD9680BCPZ-1250 Maximum Ratings & Electrical Characteristics
| Resolution | 14 bit |
| Number of Channels | 2 |
| Sampling Rate (Max) | 1.25 GSPS |
| Architecture | Pipelined |
| Analog Input Bandwidth | Up to 2 GHz |
| Interface Type | JESD204B serial output |
| Input Buffer | On-chip buffer and sample-and-hold |
| Package | 64-LFCSP (9 mm x 9 mm) |
| Mounting Type | Surface Mount |
| Family Speed Grades | 500 MSPS / 820 MSPS / 1 GSPS / 1.25 GSPS |
| Analog Input Type | Differential |
| RoHS Status | RoHS Compliant (per distributor listings) |
AD9680BCPZ-1250 64-lfcsp (9 mm x 9 mm) Pin Configuration Guide
Complete pinout information for AD9680BCPZ-1250 (64-lfcsp (9 mm x 9 mm) package). This analog component features input, output, and power supply pins. Refer to the manufacturer datasheet for offset null, compensation, and enable pin configurations. Ideal for signal conditioning and amplifier circuits.
No detailed pinout data available for AD9680BCPZ-1250.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
AD9680BCPZ-1250 is suitable for 6 applications: 5G Base Station Receiver, Digital Pre-Distortion Observation Receiver, Software-Defined Radio, Test and Measurement Instrumentation, Phased Array Radar and Electronic Warfare, Industrial Wideband Data Acquisition.
5G Base Station Receiver
The AD9680BCPZ-1250 fits 5G massive-MIMO and macro-cell receivers because its 1.25 GSPS sampling rate delivers roughly 625 MHz of Nyquist bandwidth, enough to capture wide 5G NR carrier aggregations directly at IF or RF, while the 2 GHz analog input bandwidth supports high IF architectures that eliminate mixer stages. The dual 14-bit channels let a single device digitize two antennas or a main-plus-observation path, halving converter count. Data exits over JESD204B serial lanes that connect directly to FPGA transceivers, providing the deterministic latency and multi-chip synchronization those beamforming systems require. Engineers should budget power and thermal margin in the 64-LFCSP package at full 1.25 GSPS clock rates.
Recommended
Digital Pre-Distortion Observation Receiver
In DPD observation loops, the AD9680BCPZ-1250 digitizes the feedback path of a power amplifier so DSP algorithms can linearize wideband, multi-carrier transmit signals. Its 1.25 GSPS rate captures PA output distortion products across hundreds of MHz of occupied bandwidth, and the 2 GHz analog input handles the high LO-derived IFs typical of feedback couplers. The on-chip buffer and sample-and-hold ease interfacing to passive feedback networks per Analog Devices design guidance, and the JESD204B link moves samples to the baseband FPGA at low pin count. Since observation paths run continuously, many designs use the lower-cost AD9680BCPZ-1000 grade when bandwidth analysis permits, trading 20% sample rate for power and cost savings on the same footprint.
Recommended
Software-Defined Radio
Wideband SDR platforms benefit from the AD9680BCPZ-1250's direct-RF sampling capability: sampling at 1.25 GSPS with a 2 GHz analog input bandwidth allows digitization of HF-through-S-band signals without multiple mixer stages, simplifying the RF front end and improving flexibility across waveforms. The dual channels support diversity reception or simultaneous main/monitor paths, and JESD204B output integrates cleanly with the FPGA-centric architecture of modern SDR. Designers should place attention on clock phase noise, because GSPS-class sampling converts clock jitter directly into SNR degradation at high input frequencies; a low-jitter clock source and careful analog input matching preserve the 14-bit dynamic range the converter offers.
Recommended
Test and Measurement Instrumentation
Oscilloscope front ends, spectrum analyzers, and recorders use the AD9680BCPZ-1250 where GHz-class acquisition bandwidth and 14-bit resolution are both required. The 1.25 GSPS dual cores enable interleaved or dual-channel capture of fast edges and wideband modulations, while the integrated buffer and sample-and-hold per Analog Devices simplify driving from high-bandwidth attenuator/amplifier chains. The JESD204B serial output keeps the digital interface compact inside dense instruments and supports the deterministic trigger-to-data latency these products specify. Instrument makers should implement the recommended power-supply filtering and ground scheme for the 64-LFCSP exposed pad, since spurious performance in interleaved architectures depends heavily on supply and clock cleanliness.
Recommended
Phased Array Radar and Electronic Warfare
Multi-channel radar and EW receivers pair the AD9680BCPZ-1250 with the ADAR1000 X/Ku-band beamformer: the ADC's 1.25 GSPS sampling and 2 GHz input bandwidth digitize wideband chirp and threat waveforms directly at IF, while JESD204B multi-chip synchronization keeps dozens of channels coherent across the array. The dual channels reduce converter count per element pair, important where aperture channel density dominates board area. The shared 64-LFCSP footprint across AD9680 speed grades lets one receiver design scale from 500 MSPS trainer units to 1.25 GSPS operational units without PCB respin. Designers must validate the die-revision PCN 16_0107 implications for long-production military programs.
Recommended
Industrial Wideband Data Acquisition
High-end industrial systems - RF impairment test sets, coherent optical modulation analyzers, and wideband vibration/acoustic array systems - use the AD9680BCPZ-1250 when conventional 1-GSPS-class converters lack bandwidth. The dual 14-bit channels provide simultaneous correlated acquisition, the on-chip buffer relaxes analog drive design in modular instruments, and the JESD204B output plugs into standard FPGA development platforms built around Intel MAX 10 and Cyclone 10 devices. For cost-optimized industrial variants where 250 MHz Nyquist bandwidth suffices, the pin-compatible AD9680BCPZ-500 (stocked on XAIPART) drops system power and cost while preserving the PCB layout. Verify operating temperature requirements against the datasheet for conduction-cooled industrial enclosures.
Recommended
Recommended Products Summary
Engineering reference data for AD9680BCPZ-1250 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | AD9680BCPZ-1000 | AD9680BCPZ-820 | AD9680BCPZ-500 | AD9680BCPZRL7-820 |
|---|---|---|---|---|---|
| Package | 64-LFCSP (9x9 mm) | 64-LFCSP (9x9 mm) - same | 64-LFCSP (9x9 mm) - same | 64-LFCSP (9x9 mm) - same | 64-LFCSP (9x9 mm) - same |
| Brand | Analog Devices | Analog Devices | Analog Devices | Analog Devices | Analog Devices |
| Resolution | 14 bit | 14 bit | 14 bit | 14 bit | 14 bit |
| Max Sampling Rate | 1.25 GSPS | 1 GSPS | 820 MSPS | 500 MSPS | 820 MSPS |
| Channels | 2 | 2 | 2 | 2 | 2 |
| Interface | JESD204B | JESD204B | JESD204B | JESD204B | JESD204B |
| Analog Input Bandwidth | Up to 2 GHz | Up to 2 GHz | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
| Lifecycle Status | Production (per ADI) | Production (per ADI) | Production (per ADI) | [DATA_NEEDED] | [DATA_NEEDED] |
Key Differentiators
- Fastest speed grade in the AD9680 family (vs AD9680BCPZ-1000)
- Dual 14-bit cores with JESD204B output in a compact 9x9 mm footprint (vs AD9680BCPZ-820)
- Lower-power substitution path on identical footprint (vs AD9680BCPZ-500)
Design Notes
At 1.25 GSPS, aperture and clock jitter dominate SNR at high analog input frequencies. Estimated: total jitter contributions from the encode clock should be kept in the sub-100 fs region for wideband inputs near 1 GHz, since SNR_jitter β -20*log10(2*pi*fin*tjitter). Use a low-phase-noise clock source and differential clock distribution per the Analog Devices AD9680 datasheet clocking recommendations, and keep clock and analog input return paths separated on the PCB.
The 64-LFCSP (9x9 mm) package has an exposed die-attach pad that must be soldered to a continuous ground plane with a via array for thermal and electrical performance. Place the JESD204B lanes as controlled-impedance differential pairs with length matching per the JESD204B standard timing budget, and follow the ADI reference design land pattern exactly. Decouple all supply domains with low-ESR ceramics placed directly at the pins; the datasheet power-supply architecture table specifies per-domain decoupling values.
Power dissipation scales strongly with sample rate across the AD9680 family. Estimated: if the -1250 grade dissipates P watts at 1.25 GSPS, the -500 grade on the same footprint runs proportionally lower, so systems whose Nyquist requirement is 250 MHz can cut converter power materially by selecting AD9680BCPZ-500 without respinning the board. Always compute junction temperature from the datasheet theta-JA for your airflow condition before finalizing the thermal design; exact typical power figures were not in the source data for this page and should be read from the current datasheet revision (note PCN 16_0107 die change).
Verify the die revision on incoming lots: Analog Devices PCN 16_0107 (Dec 9, 2016) implemented a die revision and data sheet change for the AD9680-500/820/1000/1250 grades. Systems qualified against pre-PCN datasheet revisions or specific date codes must re-validate. Also confirm JESD204B lane mapping and sync (SYSREF) implementation against the current datasheet rather than copied designs, and do not assume cross-brand 'equivalent' GSPS ADCs are drop-in - package and JESD204B lane order generally differ.
Compliance Information
RoHS compliance per DigiKey/Mouser distributor listings for AD9680BCPZ-1250. No AEC-Q100 qualification indicated. REACH and halogen-free status not stated in provided data.