Model No: AD9689BBPZ-2600
Analog Devices Inc. AD9689BBPZ-2600
Manufacturer: Analog Devices Inc.
SEMICON NO.: AD9689BBPZ-2600
Package: 196-LBGA
Stock: In stock
Description: Analog-to-Digital Converter 14bit 2 Channels
SEMICON NO.: AD9689BBPZ-2600
Package: 196-LBGA
Stock: In stock
Description: Analog-to-Digital Converter 14bit 2 Channels
Quantity :
| Mfr | Analog Devices Inc. |
| Device Type | Dual, 14-Bit, 2.6 GSPS (ADC) |
| Number of Bits (Resolution) | 14-bit |
| Sample Rate (Max) | 2.6 GSPS |
| Number of Channels | 2 (Dual) |
| Architecture | Pipelined |
| Signal-to-Noise Ratio (SNR) | 62.5 dBFS |
| Spurious-Free Dynamic Range (SFDR) | > 80 dBFS |
| Analog Input Bandwidth (-3dB) | 2.5 GHz |
| Channel Isolation (Crosstalk) | 78 dBFS |
| Input Type | Differential |
| Input Voltage Range | 1.6 Vpp |
| Output Data Format | 14-bit parallel |
| Supply Voltage | 0.975 V |
| Operating Temperature | -10°C to +70°C |
| Package | 196-LBGA |
| Mounting Type | Surface Mount |
| Compliance | RoHS Compliant |
AD9689BBPZ-2600 14-bit ADC Analog-to-digital converter
The AD9689BBPZ-2600 from Analog Devices is a dual-channel, 14-bit analog-to-digital converter (ADC) capable of an ultra-high sampling rate of 2.6 GSPS, designed for direct RF sampling in the most demanding communication and defense systems. Housed in a compact 196-ball BGA package (12mm x 12mm), this device leverages a pipelined architecture with JESD204B serial outputs to handle wideband signals with exceptional fidelity. It features a remarkable 9 GHz full-power input bandwidth, enabling it to digitize signals well into the L- and S-bands and beyond without the need for an intermediate frequency (IF) stage. Operating from multiple supply rails (0.975V, 1.9V, 2.5V) over an industrial temperature range (-40°C to +85°C), it integrates advanced digital signal processing blocks, including digital downconverters (DDCs) and numerically controlled oscillators (NCOs), making it a complete data capture solution in a single IC.
The AD9689BBPZ-2600 is the cornerstone of high-performance 4G/LTE and 5G wireless infrastructure, including massive MIMO base stations and multi-band digital receivers where wide instantaneous bandwidth is critical. It is equally vital in aerospace and defense systems, such as phased-array radar, electronic warfare (EW) jammers, and signal intelligence (SIGINT) platforms. Furthermore, it is extensively used in high-end test and measurement equipment like wideband oscilloscopes and spectrum analyzers, as well as in cable infrastructure (DOCSIS 3.0 CMTS) for broadband data reception.
Alternative ADCs
● AD9695-1300 (Analog Devices): A dual-channel 14-bit ADC running at 1.3 GSPS, offering a lower-power and lower-bandwidth alternative for cost-sensitive or less demanding applications.
● AD9208-3000 (Analog Devices): A pin-compatible dual 14-bit ADC with a higher 3.0 GSPS sample rate, suitable for designs requiring maximum Nyquist bandwidth.
● TI ADC12DJ5200RF (Texas Instruments): A 12-bit, 5.2 GSPS RF-sampling ADC that offers higher sample rates but trades off two bits of resolution for wider bandwidth coverage.
● MAX11913A (ADI/Maxim): A dual 14-bit, 1.6 GSPS ADC with JESD204B outputs, positioned as a high-dynamic-range solution for medical imaging and defense.
The AD9689BBPZ-2600 from Analog Devices is a dual-channel, 14-bit analog-to-digital converter (ADC) capable of an ultra-high sampling rate of 2.6 GSPS, designed for direct RF sampling in the most demanding communication and defense systems. Housed in a compact 196-ball BGA package (12mm x 12mm), this device leverages a pipelined architecture with JESD204B serial outputs to handle wideband signals with exceptional fidelity. It features a remarkable 9 GHz full-power input bandwidth, enabling it to digitize signals well into the L- and S-bands and beyond without the need for an intermediate frequency (IF) stage. Operating from multiple supply rails (0.975V, 1.9V, 2.5V) over an industrial temperature range (-40°C to +85°C), it integrates advanced digital signal processing blocks, including digital downconverters (DDCs) and numerically controlled oscillators (NCOs), making it a complete data capture solution in a single IC.
The AD9689BBPZ-2600 is the cornerstone of high-performance 4G/LTE and 5G wireless infrastructure, including massive MIMO base stations and multi-band digital receivers where wide instantaneous bandwidth is critical. It is equally vital in aerospace and defense systems, such as phased-array radar, electronic warfare (EW) jammers, and signal intelligence (SIGINT) platforms. Furthermore, it is extensively used in high-end test and measurement equipment like wideband oscilloscopes and spectrum analyzers, as well as in cable infrastructure (DOCSIS 3.0 CMTS) for broadband data reception.
Alternative ADCs
● AD9695-1300 (Analog Devices): A dual-channel 14-bit ADC running at 1.3 GSPS, offering a lower-power and lower-bandwidth alternative for cost-sensitive or less demanding applications.
● AD9208-3000 (Analog Devices): A pin-compatible dual 14-bit ADC with a higher 3.0 GSPS sample rate, suitable for designs requiring maximum Nyquist bandwidth.
● TI ADC12DJ5200RF (Texas Instruments): A 12-bit, 5.2 GSPS RF-sampling ADC that offers higher sample rates but trades off two bits of resolution for wider bandwidth coverage.
● MAX11913A (ADI/Maxim): A dual 14-bit, 1.6 GSPS ADC with JESD204B outputs, positioned as a high-dynamic-range solution for medical imaging and defense.