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ADC16V130 Datasheet(PDF) 7 Page - Texas Instruments |
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ADC16V130 Datasheet(HTML) 7 Page - Texas Instruments |
7 / 31 page ADC16V130 www.ti.com SNAS458E – NOVEMBER 2008 – REVISED MARCH 2013 Dynamic Converter Electrical Characteristics Unless otherwise specified, the following specifications apply: VA3.0 = +3.0V, VA1.8 = VAD1.8 = VDR = +1.8V, fCLK = 130 MSPS, AIN = -1dBFS, LVDS Rterm = 100 Ω, CL = 5 pF. Typical values are for TA = 25°C. Boldface limits apply for TMIN ≤ TA ≤ TMAX. All other limits apply for TA = 25°C, unless otherwise noted. (1) Symbol Parameter Conditions Typ Limits Units Resolution with no missing codes 16 Bits DR Dynamic Range 0V analog input is applied 79 dBFS Fin = 10 MHz 78.5 dBFS Fin = 40 MHz 78.2 dBFS SNR Signal-to-Noise Ratio(2) Fin = 70 MHz 77.8 dBFS Fin = 160 MHz 76.7 75.5 dBFS Fin = 240 MHz 75.6 dBFS Fin = 10 MHz 95.5 dBFS Fin = 40 MHz 91 dBFS Single-tone Spurious Free Dynamic SFDR Fin = 70 MHz 92 dBFS Range(2) Fin = 160 MHz 90.6 87 dBFS Fin = 240 MHz 85.3 dBFS Fin = 10 MHz -91.5 dBFS Fin = 40 MHz -88.4 dBFS THD Total Harmonic Distortion(2) Fin = 70 MHz -89.4 dBFS Fin = 160 MHz -87.1 -81 dBFS Fin = 240 MHz -82.8 dBFS Fin = 10 MHz -95.5 dBFS Fin = 40 MHz -104.1 dBFS H2 Second-order Harmonic(2) Fin = 70 MHz -95.6 dBFS Fin = 160 MHz -91.5 -88 dBFS Fin = 240 MHz -85.3 dBFS Fin = 10 MHz -98.3 dBFS Fin = 40 MHz -89.4 dBFS H3 Third-order Harmonic(2) Fin = 70 MHz -92 dBFS Fin = 160 MHz -90.6 -87 dBFS Fin = 240 MHz -87.8 dBFS Fin = 10 MHz 106 dBFS Fin = 40 MHz 103.2 dBFS Worst Harmonic or Spurious Tone Spur-H2/3 Fin = 70 MHz 104.1 dBFS excluding H2 and H3(2) Fin = 160 MHz 101.5 94 dBFS Fin = 240 MHz 98.4 dBFS Fin = 10 MHz 78.3 dBFS Fin = 40 MHz 77.8 dBFS SINAD Signal-to-Noise and Distortion Ratio(2) Fin = 70 MHz 77.5 dBFS Fin = 160 MHz 76.3 dBFS Fin = 240 MHz 74.8 dBFS Fin = 10 MHz 12.7 Bits Fin = 40 MHz 12.6 Bits ENOB Effective Number of Bits Fin = 70 MHz 12.6 Bits Fin = 160 MHz 12.4 Bits Fin = 240 MHz 12.1 Bits (1) The inputs are protected as shown below. Input voltage magnitudes above VA3.0 or below GND will not damage this device, provided current is limited per Note 4 of the Absolute Maximum Ratings table. However, errors in the A/D conversion can occur if the input goes above 2.6V or below GND as described in the Operating Ratings section see Figure 1. (2) This parameter is specified in units of dBFS – indicating the equivalent value that would be attained with a full-scale input signal. Copyright © 2008–2013, Texas Instruments Incorporated Submit Documentation Feedback 7 Product Folder Links: ADC16V130 |
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