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KA555 データシート(PDF) 10 Page - Fairchild Semiconductor |
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KA555 データシート(HTML) 10 Page - Fairchild Semiconductor |
10 / 14 page KA555 10 Hence, the VC is a linear ramp function as shown in Figure 14. The gradient S of the linear ramp function is defined as follows: Here the Vp-p is the peak-to-peak voltage. If the electric charge amount accumulated in the capacitor is divided by the capacitance, the VC comes out as follows: V=Q/C (15) The above equation divided on both sides by T gives us and may be simplified into the following equation. S=I/C (17) In other words, the gradient of the linear ramp function appearing across the capacitor can be obtained by using the constant current flowing through the capacitor. If the constant current flow through the capacitor is 0.215mA and the capacitance is 0.02uF, the gradient of the ramp function at both ends of the capacitor is S=0.215m/0.022u=9.77V/ms. S V pp – T −−−−−−−−−− = 14 () V T −− QT ⁄ C −−−−−−− = 16 () |
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