NXP ADC1613D125HN/C1,5

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  • Part Number:

    ADC1613D125HN/C1,5

  • Manufacturer:

    NXP

  • Category:

    Analog to Digital Converters (ADC)

  • RoHs:

    rohs RoHS Compliant

  • Datasheet:

    pdf ADC1613D125HN/C1,5_Datesheet

  • Description:

    IC ADC 16BIT PIPELINED 56HVQFN

  • In stock 0
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Specifications
Type
Paramete
Type
Paramete
Number of A/D Converters
2
Configuration
S/H-ADC
Supplier Device Package
56-HVQFN (8x8)
Data Interface
JESD204A
Reference Type
External, Internal
Number of Bits
16
Ratio - S/H:ADC
1:1
Number of Inputs
2
Qualification
-
Grade
-
Voltage - Supply, Analog
2.85V ~ 3.4V
Input Type
Differential, Single Ended
Operating Temperature
-40°C ~ 85°C
Features
Simultaneous Sampling
Sampling Rate (Per Second)
125M
Architecture
Pipelined
Package / Case
56-VFQFN Exposed Pad
Mounting Type
Surface Mount
Voltage - Supply, Digital
1.65V ~ 1.95V
Overview

DESCRIPTION

· The ADC1613D is a dual-channel 16-bit ADC optimized for high dynamic performance and low power, supporting sample rates up to 125 Msps.
· It features a pipelined architecture with output error correction, ensuring zero missing codes across its operating range.
· Powered by 3.3 V for analog and 1.8 V for the output driver, it includes two JESD204A-compliant serial outputs.
· Configuration is facilitated via an integrated SPI and binary level control pins.
· Offers a programmable full-scale SPI for a flexible input voltage range of 1 V to 2 V (peak-to-peak).



FEATURES

· Dual 16-bit ADC with sample rates of 65 Msps, 80 Msps, 105 Msps, or 125 Msps.
· SNR of 72.5 dBFS and SFDR of 88 dBc.
· Input bandwidth of 600 MHz and power dissipation of 995 mW at 80 Msps.
· Includes a Duty Cycle Stabilizer (DCS) and supports flexible input voltage ranges.
· Compliant with JESD204A standard, featuring power-down and sleep modes.
· Pin compatible with ADC1413D, ADC1213D, and ADC1113D125 series, packaged in HVQFN56.



APPLICATIONS

· Ideal for communications, imaging, and medical applications due to its excellent dynamic performance up to 170 MHz input frequencies.

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