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MIC2871 Datasheet(PDF) 13 Page - Micrel Semiconductor |
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MIC2871 Datasheet(HTML) 13 Page - Micrel Semiconductor |
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13 / 24 page ![]() Micrel, Inc. MIC2871 May 29, 2013 13 052913-1.0 (while in progress) Revision 1.0 (final document) Figure 3. Data Word Pulse Timing A pulse is delimited by the signal first going below VL and then above VH within the latch timeout TLAT. During this transition, minimum on (TON) and off (TOFF) periods are observed to improve tolerance to glitches. Each rising edge increments the internal data register. Data is automatically latched into internal shadow address and data registers after an inactivity period of >TLAT. To send register write commands, the address and data are entered in series as two data words using the above pattern, with the second word starting after the first latch period has expired. After the second word is entered, the IDLE command should be issued by leaving the DC pins high for ≥ T END. After receiving the stop sequence, the internal registers decode and update cycle is started, with the shadow register values being transferred to the decoder. Figure 4 shows an example of entering a write of data 5 to address 3. Figure 4. Communication Timing Example of Entering Write for Data 5 to Address 3 Only correctly formatted address/data combination will be treated as a valid frame and processed by the MIC2871. Any other input, such as a single data word followed by TEND, or three successive data words will be discarded by the target hardware as an erroneous entry. Additionally, any register write to either an invalid register or with invalid register data will also be discarded. MIC2871 Registers The MIC2871 supports five writeable registers for controlling the torch and the flash modes of operation as shown in Table 2. Note that register addressing starts at 1. Writing any value above the maximum value shown for each registers will cause an invalid data error and the frame will be discarded. Table 2. Five Writable Registers of MIC2871 Address Name Max. Value Description 1 FEN/FCUR 31 Flash Enable/Current 2 TEN/TCUR 31 Torch Enable/Current 3 STDUR 7 Safety Timer Duration 4 LB_TH 9 Low Battery Voltage Detection Threshold 5 ST_TH 5 Safety Timer Threshold Flash Current Register (FEN/FCUR: default 0) The flash current register enables and sets the flash mode current level. Valid values are 0 to 31; values 0 − 15 will set the flash current without enabling the flash (such that it can be triggered externally), values 16 − 31 will set the flash current and enable the flash. The flash current register maps into the internal FEN and FCUR registers as shown in the table below. Table 3 describes the relationship between the flash current as a percentage of maximum current, and the FCUR register setting. |
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