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ADS5463IPFPR Datasheet(PDF) 26 Page - Texas Instruments |
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ADS5463IPFPR Datasheet(HTML) 26 Page - Texas Instruments |
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26 / 50 page ![]() APPLICATION INFORMATION Theory of Operation Input Configuration 500 W 500 W Buffer VCM Buffer 1.6 pF 1.6pF GND S0293-01 AIN AIN AVDD5 AVDD5 ADS5463/5474/54RF63 GND GND ~ 2.5 nH Bond Wire ~ 2.5 nH Bond Wire ~ 0.5pF Package ~ 0.5pF Package ~ 200fF BondPad ~ 200fF BondPad ADS5463 ADS54RF63 SLAS515E – NOVEMBER 2006 – REVISED JULY 2009 ................................................................................................................................................... www.ti.com The ADS5463/ADS54RF63 is a 12-bit, 500/550-MSPS, monolithic pipeline ADC. Its bipolar analog core operates from 5-V and 3.3-V supplies, while the output uses a 3.3-V supply to provide LVDS-compatible outputs. The conversion process is initiated by the rising edge of the external input clock. At that instant, the differential input signal is captured by the input track-and-hold (T&H), and the input sample is sequentially converted by a series of lower resolution stages, with the outputs combined in a digital correction logic block. Both the rising and the falling clock edges are used to propagate the sample through the pipeline every half clock cycle. This process results in a data latency of 3.5 clock cycles, after which the output data is available as a 12-bit parallel word, coded in offset binary format. The ADS5463 and ADS54RF63 are identical in the way they are used on a board. They differ in their maximum sample rate and spectral performance versus frequency. A good study of the contour plots in Figure 25, Figure 26, Figure 43, and Figure 44 demonstrate the spectral differences. The digital output characteristics are the same except the ADS54RF63 has less restrictive timing parameters. The analog input for the ADS5463/ADS54RF63 consists of an analog pseudo-differential buffer followed by a bipolar transistor track-and-hold (see Figure 48). The analog buffer isolates the source driving the input of the ADC from any internal switching and presents a high impedance to drive at high input frequencies, as compared to an ADC without a buffered input. The input common mode is set internally through a 500- Ω resistor connected from 2.4 V to each of the inputs. This results in a differential input impedance of 1 k Ω. The 0.5 pF of parasitic package capacitance is before soldering. Figure 48. Analog Input Equivalent Circuit (unsoldered) For a full-scale differential input, each of the differential lines of the input signal (pins 16 and 17) swing symmetrically between 2.4 V + 0.55 V and 2.4 V – 0.55 V. This means that each input has a maximum signal swing of 1.1 VPP for a total differential input signal swing of 2.2 VPP. Operation below 2.2 VPP is allowable, with the characteristics of performance versus input amplitude demonstrated in Figure 16 and Figure 17. For instance, for performance at 1.1 VPP rather than 2.2 VPP, see the SNR and SFDR at -6 dBFS (0 dBFS = 2.2 VPP). The maximum swing is determined by the internal reference voltage generator, eliminating the need for any external circuitry for this purpose. 26 Submit Documentation Feedback Copyright © 2006–2009, Texas Instruments Incorporated Product Folder Link(s): ADS5463 ADS54RF63 |
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