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ADC14C080 датащи(PDF) 8 Page - Texas Instruments |
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ADC14C080 датащи(HTML) 8 Page - Texas Instruments |
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8 / 32 page ![]() ADC14C080 SNAS375C – SEPTEMBER 2006 – REVISED APRIL 2013 www.ti.com ADC14C080 Logic and Power Supply Electrical Characteristics Unless otherwise specified, the following specifications apply: AGND = DRGND = 0V, VA = +3.0V, VDR = +2.5V, Internal VREF = +1.2V, fCLK = 80 MHz, 50% Duty Cycle, DCS Disabled, VCM = VCMO, CL = 5 pF/pin. Typical values are for TA = 25°C. Boldface limits apply for TMIN ≤ TA ≤ TMAX. All other limits apply for TA = 25°C (1) (2) Units Parameter Test Conditions Typical(3) Limits (Limits) DIGITAL INPUT CHARACTERISTICS (CLK, PD) VIN(1) Logical “1” Input Voltage VD = 3.6V 2.0 V (min) VIN(0) Logical “0” Input Voltage VD = 3.0V 0.8 V (max) IIN(1) Logical “1” Input Current VIN = 3.3V 10 µA IIN(0) Logical “0” Input Current VIN = 0V −10 µA CIN Digital Input Capacitance 5 pF DIGITAL OUTPUT CHARACTERISTICS (D0–D13, DRDY) VOUT(1) Logical “1” Output Voltage IOUT = −0.5 mA , VDR = 2.4V 2.0 V (min) VOUT(0) Logical “0” Output Voltage IOUT = 1.6 mA, VDR = 2.4V 0.4 V (max) +ISC Output Short Circuit Source Current VOUT = 0V −10 mA −ISC Output Short Circuit Sink Current VOUT = VDR 10 mA COUT Digital Output Capacitance 5 pF POWER SUPPLY CHARACTERISTICS IA Analog Supply Current Full Operation 100 123 mA (max) IDR Digital Output Supply Current Full Operation(4) 14 mA Power Consumption Excludes IDR (4) 300 369 mW (max) Power Down Power Consumption Clock disabled 7 mW (1) The inputs are protected as shown below. Input voltage magnitudes above VA 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 2. (2) With a full scale differential input of 2VP-P , the 14-bit LSB is 122.1 µV. (3) Typical figures are at TA = 25°C and represent most likely parametric norms at the time of product characterization. The typical specifications are not ensured. (4) IDR is the current consumed by the switching of the output drivers and is primarily determined by load capacitance on the output pins, the supply voltage, VDR, and the rate at which the outputs are switching (which is signal dependent). IDR=VDR(C0 x f0 + C1 x f1 +....C13 x f13) where VDR is the output driver power supply voltage, Cn is total capacitance on the output pin, and fn is the average frequency at which that pin is toggling. 8 Submit Documentation Feedback Copyright © 2006–2013, Texas Instruments Incorporated Product Folder Links: ADC14C080 |
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