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ADS5424-SP Datasheet(PDF) 3 Page - Texas Instruments |
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ADS5424-SP Datasheet(HTML) 3 Page - Texas Instruments |
3 / 24 page 3 ADS5424-SP www.ti.com SLWS194D – MAY 2008 – REVISED SEPTEMBER 2013 Product Folder Links: ADS5424-SP Submit Documentation Feedback Copyright © 2008–2013, Texas Instruments Incorporated 4.2 RECOMMENDED OPERATING CONDITIONS MIN NOM MAX UNIT SUPPLIES AVDD Analog supply voltage 4.75 5 5.25 V DRVDD Output driver supply voltage 3 3.3 3.6 V ANALOG INPUT Differential input range 2.2 VPP VCM Input common mode voltage 2.4 V DIGITAL OUTPUT Maximum output load 10 pF CLOCK INPUT ADCLK input sample rate (sine wave) 30 105 MSPS Clock amplitude, differential sine wave 3 VPP Clock duty cycle 50% TC Open case temperature range –55 125 °C 4.3 ELECTRICAL CHARACTERISTICS (Unchanged after 100 kRad) Typical values at TC = 25°C, Over full temperature range is TC,MIN = –55°C to TC,MAX = 125°C, sampling rate = 105 MSPS, 50% clock duty cycle, AVDD = 5 V, DRVDD = 3.3 V, –1 dBFS differential input, and 3-VPP sinusoidal clock (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Resolution 14 Bits ANALOG INPUTS Differential input range 2.2 Vpp Differential input resistance See Figure 11 1 k Ω Differential input capacitance See Figure 11 1.5 pF Analog input bandwidth 570 MHz INTERNAL REFERENCE VOLTAGES VREF Reference voltage 2.38 2.4 2.41 V DYNAMIC ACCURACY No missing codes Tested DNL Differential linearity error fIN = 10 MHz –0.98 ±0.5 1.5 LSB INL Integral linearity error fIN = 10 MHz TC= 25°C and TC,MAX –5.0 ±3.0 +5.0 LSB fIN = 10 MHz TC= TC,MIN –-6.9 +6.9 LSB Offset error –1.5 0 1.5 %FS Offset temperature coefficient 0.0007 %FS/°C Gain error –5 0.9 5 %FS Gain temperature coefficient 0.006 %FS/°C POWER SUPPLY IAVDD Analog supply current VIN = full scale, fIN = 70 MHz FS = 105 MSPS 355 410 mA IDRVDD Output buffer supply current VIN = full scale, fIN = 70 MHz FS = 105 MSPS 47 55 mA Power dissipation Total power with 10-pF load on each digital output to ground, fIN = 70 MHz FS = 105 MSPS 1.9 2.3 W Power-up time FS = 105 MSPS 20 ms |
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