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MSP430F4783IPZ Datasheet(PDF) 47 Page - Texas Instruments |
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MSP430F4783IPZ Datasheet(HTML) 47 Page - Texas Instruments |
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47 / 79 page ![]() MSP430F47x3, MSP430F47x4 MIXED SIGNAL MICROCONTROLLER SLAS545C − MAY 2007 − REVISED MARCH 2011 47 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended operating free-air temperature (unless otherwise noted) (continued) SD16_A, power supply and recommended operating conditions PARAMETER TEST CONDITIONS VCC MIN TYP MAX UNIT AVCC Analog supply voltage AVCC = DVCC AVSS = DVSS = 0V 2.5 3.6 V SD16LP = 0, GAIN: 1, 2 3 V 730 1050 Analog supply t1 ti SD16LP = 0, fSD16 = 1 MHz, GAIN: 4, 8, 16 3 V 810 1150 ISD16 current: 1 active SD16 A channel fSD16 1 MHz, SD16OSR = 256 GAIN: 32 3 V 1160 1700 μA ISD16 SD16_A channel including internal reference SD16LP = 1, f 0 5 MHz GAIN: 1 3 V 720 1030 μA reference fSD16 = 0.5 MHz, SD16OSR = 256 GAIN: 32 3 V 810 1150 f Analog front-end input clock SD16LP = 0 (Low power mode disabled) 3 V 0.03 1 1.1 MHz fSD16 input clock frequency SD16LP = 1 (Low power mode enabled) 3 V 0.03 0.5 MHz SD16_A, input range (see Note 1) PARAMETER TEST CONDITIONS VCC MIN TYP MAX UNIT V Differential full scale Bipolar mode, SD16UNI = 0 −VREF/2GAIN +VREF/2GAIN mV VID, FSR Differential full scale input voltage range Unipolar mode, SD16UNI = 1 0 +VREF/2GAIN mV SD16GAINx = 1 ±500 Differential input SD16GAINx = 2 ±250 V Differential input voltage range for specified SD16REFON 1 SD16GAINx = 4 ±125 mV VID specified performance SD16REFON = 1 SD16GAINx = 8 ±62 mV performance (see Note 2) SD16GAINx = 16 ±31 (see Note 2) SD16GAINx = 32 ±15 Z Input impedance (one input pin to f 1 MHz SD16GAINx = 1 3 V 200 k Ω ZI (one input pin to AVSS) fSD16 = 1 MHz SD16GAINx = 32 3 V 75 k Ω Z Differential input impedance f 1 MHz SD16GAINx = 1 3 V 300 400 k Ω ZID impedance (IN+ to IN−) fSD16 = 1 MHz SD16GAINx = 32 3 V 100 150 k Ω VI Absolute input voltage range AVSS -1V AVCC V VIC Common-mode input voltage range AVSS -1V AVCC V NOTES: 1. All parameters pertain to each SD16_A channel. 2. The analog input range depends on the reference voltage applied to VREF. If VREF is sourced externally, the full-scale range is defined by VFSR+ = +(VREF/2)/GAIN and VFSR− = −(VREF/2)/GAIN. The analog input range should not exceed 80% of VFSR+ or VFSR−. |
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