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DSPIC33FJ64GP706 датащи(PDF) 20 Page - Microchip Technology |
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DSPIC33FJ64GP706 датащи(HTML) 20 Page - Microchip Technology |
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20 / 322 page ![]() dsPIC33FJXXXGPX06/X08/X10 DS70286C-page 18 © 2009 Microchip Technology Inc. FIGURE 2-1: RECOMMENDED MINIMUM CONNECTION 2.2.1 TANK CAPACITORS On boards with power traces running longer than six inches in length, it is suggested to use a tank capacitor for integrated circuits including DSCs to supply a local power source. The value of the tank capacitor should be determined based on the trace resistance that con- nects the power supply source to the device, and the maximum current drawn by the device in the applica- tion. In other words, select the tank capacitor so that it meets the acceptable voltage sag at the device. Typical values range from 4.7 µF to 47 µF. 2.3 Capacitor on Internal Voltage Regulator (VCAP/VDDCORE) A low-ESR (< 5 Ohms) capacitor is required on the VCAP/VDDCORE pin, which is used to stabilize the voltage regulator output voltage. The VCAP/VDDCORE pin must not be connected to VDD, and must have a capacitor between 4.7 µF and 10 µF, 16V connected to ground. The type can be ceramic or tantalum. Refer to Section 25.0 “Electrical Characteristics” for additional information. The placement of this capacitor should be close to the VCAP/VDDCORE. It is recommended that the trace length not exceed one-quarter inch (6 mm). Refer to Section 22.2 “On-Chip Voltage Regulator” for details. 2.4 Master Clear (MCLR) Pin The MCLR pin provides for two specific device functions: • Device Reset • Device programming and debugging During device programming and debugging, the resistance and capacitance that can be added to the pin must be considered. Device programmers and debuggers drive the MCLR pin. Consequently, specific voltage levels (VIH and VIL) and fast signal transitions must not be adversely affected. Therefore, specific values of R and C will need to be adjusted based on the application and PCB requirements. For example, as shown in Figure 2-2, it is recommended that the capacitor C, be isolated from the MCLR pin during programming and debugging operations. Place the components shown in Figure 2-2 within one-quarter inch (6 mm) from the MCLR pin. FIGURE 2-2: EXAMPLE OF MCLR PIN CONNECTIONS dsPIC33F VDD VSS VSS VDD 0.1 µF Ceramic 0.1 µF Ceramic 0.1 µF Ceramic 0.1 µF Ceramic C R VDD MCLR 0.1 µF Ceramic 10 Ω R1 Note 1: R ≤ 10 kΩ is recommended. A suggested starting value is 10 k Ω. Ensure that the MCLR pin VIH and VIL specifications are met. 2: R1 ≤ 470Ω will limit any current flowing into MCLR from the external capacitor C, in the event of MCLR pin breakdown, due to Electrostatic Discharge (ESD) or Electrical Overstress (EOS). Ensure that the MCLR pin VIH and VIL specifications are met. C R1 R VDD MCLR dsPIC33F JP |
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