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MSP430F6433IPZ Datasheet(PDF) 47 Page - Texas Instruments |
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MSP430F6433IPZ Datasheet(HTML) 47 Page - Texas Instruments |
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47 / 128 page ![]() 8.44 REF, Built-In Reference over recommended ranges of supply voltage and operating free-air temperature (unless otherwise noted)(1) PARAMETER TEST CONDITIONS VCC MIN TYP MAX UNIT VREF+ Positive built-in reference voltage output REFVSEL = {2} for 2.5 V, REFON = REFOUT = 1 , IVREF+ = 0 A 3 V 2.5 ±1% V REFVSEL = {1} for 2 V, REFON = REFOUT = 1, IVREF+ = 0 A 3 V 2.0 ±1% REFVSEL = {0} for 1.5 V, REFON = REFOUT = 1, IVREF+ = 0 A 2.2 V, 3 V 1.5 ±1% AVCC(min) AVCC minimum voltage, Positive built-in reference active REFVSEL = {0} for 1.5 V 2.2 V REFVSEL = {1} for 2 V 2.3 REFVSEL = {2} for 2.5 V 2.8 IREF+ Operating supply current into AVCC terminal (2) (7) ADC12SR = 1(8), REFON = 1, REFOUT = 0, REFBURST = 0 3 V 70 100 µA ADC12SR = 1(8), REFON = 1, REFOUT = 1, REFBURST = 0 0.45 0.75 mA ADC12SR = 0(8), REFON = 1, REFOUT = 0, REFBURST = 0 210 310 µA ADC12SR = 0(8), REFON = 1, REFOUT = 1, REFBURST = 0 0.95 1.7 mA IL(VREF+) Load-current regulation, VREF+ terminal(3) REFVSEL = {0, 1, 2}, IVREF+ = +10 µA , –1000 µA, AVCC = AVCC(min) for each reference level, REFVSEL = {0, 1, 2}, REFON = REFOUT = 1 1500 2500 µV/mA CVREF+ Capacitance at VREF+ terminal REFON = REFOUT = 1(6), 0 mA ≤ IVREF+ ≤ IVREF+(max) 2.2 V, 3 V 20 100 pF TCREF+ Temperature coefficient of built-in reference(4) IVREF+ is a constant in the range of 0 mA ≤ IVREF+ ≤ –1 mA REFOUT = 0 2.2 V, 3 V 20 ppm/ °C TCREF+ Temperature coefficient of built-in reference(4) IVREF+ is a constant in the range of 0 mA ≤ IVREF+ ≤ –1 mA REFOUT = 1 2.2 V, 3 V 20 50 ppm/ °C PSRR_DC Power supply rejection ratio (DC) AVCC = AVCC(min) to AVCC(max), TA = 25°C, REFVSEL = {0, 1, 2}, REFON = 1, REFOUT = 0 or 1 120 300 µV/V PSRR_AC Power supply rejection ratio (AC) AVCC = AVCC(min) to AVCC(max), TA = 25°C, REFVSEL = {0, 1, 2}, REFON = 1, REFOUT = 0 or 1 1 mV/V tSETTLE Settling time of reference voltage(5) AVCC = AVCC(min) to AVCC(max), REFVSEL = {0, 1, 2}, REFOUT = 0, REFON = 0 → 1 75 µs AVCC = AVCC(min) to AVCC(max), CVREF = CVREF(max), REFVSEL = {0, 1, 2}, REFOUT = 1, REFON = 0 → 1 75 (1) The reference is supplied to the ADC by the REF module and is buffered locally inside the ADC. The ADC uses two internal buffers, one smaller and one larger for driving the VREF+ terminal. When REFOUT = 1, the reference is available at the VREF+ terminal, as well as, used as the reference for the conversion and uses the larger buffer. When REFOUT = 0, the reference is only used as the reference for the conversion and uses the smaller buffer. (2) The internal reference current is supplied by the AVCC terminal. Consumption is independent of the ADC12ON control bit, unless a conversion is active. REFOUT = 0 represents the current contribution of the smaller buffer. REFOUT = 1 represents the current contribution of the larger buffer without external load. (3) Contribution only due to the reference and buffer including package. This does not include resistance due to PCB traces or other external factors. (4) Calculated using the box method: (MAX(–40°C to +85°C) – MIN(–40°C to +85°C)) / MIN(–40°C to +85°C)/(85°C – (–40°C)). (5) The condition is that the error in a conversion started after tREFON is less than ±0.5 LSB. The settling time depends on the external capacitive load when REFOUT = 1. (6) Connect two decoupling capacitors, 10 µF and 100 nF, to VREF to decouple the dynamic current required for an external reference source if it is used for the ADC12_A. Also see the MSP430F5xx and MSP430F6xx Family User's Guide. www.ti.com MSP430F6438, MSP430F6436, MSP430F6435, MSP430F6433 SLAS720F – AUGUST 2010 – REVISED SEPTEMBER 2020 Copyright © 2020 Texas Instruments Incorporated Submit Document Feedback 47 Product Folder Links: MSP430F6438 MSP430F6436 MSP430F6435 MSP430F6433 |
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