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APM32F103T8U6-R 数据表(PDF) 33 Page - Geehy Semiconductor Co., Ltd. |
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APM32F103T8U6-R 数据表(HTML) 33 Page - Geehy Semiconductor Co., Ltd. |
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33 / 78 page ![]() w w w. g e e h y. c o m P a g e 32 5.5 Clock 5.5.1 Characteristics of external clock source 5.5.1.1 A high-speed external clock generated crystal/ceramic resonator A high-speed external clock (HSECLK) can be generated using a 4~16MHz crystal/ceramic resonator. The following table shows the information of evaluated external devices. In the applications, the resonator and load capacitor must be as close to the oscillator pins as possible to reduce distortion and stable time of startup. For detailed parameters (frequency, package, precision, etc.) of crystal resonator, please consult the corresponding manufacturer. Table19 HSECLK4~16MHz Oscillator Characteristics (1) (2) Symbol Parameter Condition Minimum value Typical value Maximum value Unit fOSC_IN Oscillator frequency - 4 8 16 MHz RF Feedback resistance - - 400 - kΩ CL1& CL2(3) Recommended load capacitance and corresponding crystal serial impedance (RS) (4) RS = 30kΩ - 30 - pF i2 HSECLK drive current VDD=3.3V,VIN=VSS 30pF load - - 1.1 mA gm Transconductance of oscillator Start 25 - - mA/V tSU(HSECLK)(5) Start Time VDD is stable - 1.33 - ms 1. The characteristic parameters of the resonator are given by the manufacturer of crystal/ceramic resonator. 2. The above is obtained through comprehensive evaluation. 3. It is recommended that high-quality ceramic capacitors between 5pF and 25pF (typical value) designed for high frequency applications should be used for CL1 and CL2, and the capacitance value selected should meet the requirements of crystals or resonators. Typically, CL1 and CL2 have the same parameters. The load capacitance parameters usually given by crystal manufacturers are the serial combination values of CL1 and CL2. When selecting CL1 and CL2, the capacitive reactance of PCB and MCU pins shall be considered (usually the capacitance is estimated at 10pF). 4. Relatively low RF resistance value should be adopted when it is used in wet environment. However, if the MCU is used in a harsh humid environment, attention should be paid to protection during design. 5. tSU(HSECLK) is the startup time, which defines the time when HSECLK is enabled by software to the time when stable oscillation at 8MHz is obtained. This value is measured using a standard crystal resonator, which may vary greatly due to different crystal manufacturers. |
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