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TMP86CS44UG Datasheet(PDF) 156 Page - Toshiba Semiconductor |
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TMP86CS44UG Datasheet(HTML) 156 Page - Toshiba Semiconductor |
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156 / 172 page ![]() Page 146 14. 8-Bit DA Converter (DAC) 14.1 Register Configuration TMP86CS44UG 14.1.1 DA Converter Operation An analog voltage reference is DAREF = (AVDD - AVSS). 1. Starting DA conversion operation DA converter operation is activated by setting DACCR<DADRV0> to “1”. The digital value in DACDR is converted into an analog value and is output from the DAO pin. After resetting, DACCR and DACDR are cleared to “0”. The DA converter goes the power down. (DAO analog level is 0 V.) 2. Logical expression for converted value The relation between a digital value and analog output voltage in DACDR can be expressed in the fol- lowing equation. *DAREF = AVDD - AVSS 3. The relation between DA conversion result and Analog output voltage. Figure 14-2 DA conversion result (8-bit digital) vs Analog output voltage Note 1: Analog reference voltage An analog voltage between AVDD and AVSS (= DAREF) is output in 8-bit resolution. Make sure the analog referrence pins (AVDD, AVSS) are used at recomended operating condition. It needs that these reference voltage are supplied from a stable power supply. Note 2: Analog output pin The analog output pin (DAO) is dedicated to analog output to ensure the precision and characteristics of DA conversion. While DA conversion is being performed, do not execute input/output instructions on the adjacent port. Otherwise, the precision of DA conversion may be adversely affected. Also note that DAO is susceptible to noise (especially power supply noise) in some cases. Note 3: Anti-noise measure To ensure the characteristics of DA conversion, place a bypass capacitor between the AVDD and AVSS pins as near to the IC as possible. It is recommended to use a tantalum capacitor (10 μF) and multilayer ceramic capacitor (0.1 μF) in combination. VOA 32 2 0 DAO0 2 1 DAO1 2 2 DAO2 2 3 DAO3 2 4 DAO4 2 5 DAO5 2 6 DAO6 2 7 DAO7 × + × + × + × + × + × + × + × + 304 ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- DAREF × = 01H 02H 03H 00H FDHFEHFFH FCH DAREF AVSS AVDD 304 32 + 254 DAREF 304 32 + 255 DAREF 304 32 + 253 DAREF 304 32 + 252 DAREF 304 32 + 3 DAREF 304 32 + 2 DAREF 304 32 + 1 DAREF 304 32 + 0 Analog output voltage Ideal conversion characteristic |
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