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M41T83RM6F 데이터시트(PDF) 31 Page - STMicroelectronics |
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M41T83RM6F 데이터시트(HTML) 31 Page - STMicroelectronics |
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31 / 64 page ![]() DocID012578 Rev 19 31/64 M41T82, M41T83 Clock operation 3.4.2 Analog calibration (programmable load capacitance) A second method of calibration employs the use of programmable internal load capacitors to adjust (or trim) the oscillator frequency. As discussed in Section 3.4.1, the 512 Hz frequency test output can be used to determine the amount of frequency error in the oscillator. Changes in the analog calibration value will affect the frequency test output, thus the user can immediately see the effects of these changes (see Section 3.14 on page 44 for more information on enabling the FT output). By design, the oscillator is intended to be 0 ppm (± crystal accuracy) at room temperature (25 °C, see Figure 18 on page 32) when a 12.5 pF crystal is connected. Referring to Figure 19 on page 34 , the device has two load capacitors, CXI and CXO, connected from the XI and XO pins to ground. These are nominally 25 pF each. The effective load capacitance is the series equivalent of these two: For the nominal case of CXI = CXO = 25 pF, Thus, the nominal effective load capacitance matches the crystal specification of 12.5 pF. The analog calibration register can be digitally adjusted, up or down, in increments of 0.25 pF, to change the capacitance of CXI and CXO. The default value is 25 pF. The maximum is 34.75 pF, to slow the clock, and the minimum is 7 pF, to speed up the clock. The analog calibration value is in sign-magnitude format with the most significant bit the sign bit. The table below shows the approximate weighting for each of the bits. While the 7 bits plus sign suggest a total adjustment range of ±31.75 pF, the logic inside the device limits this to the range +9.75 pF / –18 pF. The table below summarizes the nominal, upper and lower limits of the load capacitance and the expected effect on the operating frequency of the oscillator. The asymmetrical nature of the adjustment range (+9.75 pF / –18 pF) is due to the nature of the frequency versus temperature curve (Figure 18) of 32.768 kHz watch crystals. The oscillator will slow down at temperatures both above and below room level (~25 °C). Hence, it usually needs to be sped up, so more adjustment range is provided to remove capacitance than to increase it. b7 b6 b5 b4 b3 b2 b1 b0 sign 16 8 4 2 1 0.5 0.25 pF CLOAD (pF) CXI, CXO (pF) ACAL (Addr 0x12) Oscillator frequency 12.5 25 (default) 0x00 0 ppm 17.4 34.75 (+9.75) 0x27 –15 ppm (slow) 3.5 7 (–18) 0xC8 +95 ppm (fast) C LOAD C XI C XO • C XI C XO + --------------------------- = C LOAD 25 25 • 25 25 + ------------------- 12.5pF = = |
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