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Extra resources for 8-bit AVR Microcontroller with 1К Byte Flash ATtiny15L
Write EEPROM Memory 1100 0000 xxxx xxxx xxbb bbbb iiii iiii Write data i to EEPROM memory at address b. Write Lock Bits 1010 1100 1111 1211 xxxx xxxx xxxx xxxx Write Lock bits. Set bits 1,2 = “0” to program Lock bits. Read Lock Bits 0101 1000 xxxx xxxx xxxx xxxx xxxx x21x Read Lock bits. “0” = programmed, “1” = unprogrammed. Read Signature Bytes 0011 0000 xxxx xxxx 0000 00bb oooo oooo Read signature byte o at address b. Write Fuse Bits 1010 1100 101x xxxx xxxx xxxx 8765 1143 Set bits 8 - 3 = “0” to program, “1” to unprogram.
If ADLAR is set, the result is left-adjusted. If ADLAR is cleared (default), the result is right-adjusted. 0: ADC Conversion Result These bits represent the result from the conversion. For the differential channel, this is the value after gain adjustment, as indicated in Table 20 on page 47. For single-ended conversion, or if ADLAR or SIGN is zero, $000 represents ground and $3FF represents the selected reference voltage minus one LSB. Scanning Multiple Channels Since change of analog channel always is delayed until a conversion is finished, the Free Running mode can be used to scan multiple channels without interrupting the converter.
The ADC can operate in two modes – Single Conversion and Free Running. In Single Conversion mode, each conversion will have to be initiated by the user. In Free Running 42 ATtiny15L 1187F–AVR–06/05 ATtiny15L mode, the ADC is constantly sampling and updating the ADC Data Register. The ADFR bit in ADCSR selects between the two available modes. The ADC is enabled by setting the ADC Enable bit, ADEN in ADCSR. Voltage reference and input channel selections will not go into effect until ADEN is set. The ADC does not consume power when ADEN is cleared, so it is recommended to switch off the ADC before entering Power-saving sleep modes.