Ayuda con Circuito PIC
1:47
Pulsadores momentáneos 2 pines (THT)
| Part Name | Manufacturer | MPN | Datasheet |
|---|---|---|---|
| 6x6mm micro tactile switch | – | – | – |
| Push Button | – | – | Datasheet |
| Push Button B3FS-1050P | OMRON | B3FS-1050P | Datasheet |
Resistencias 10 kΩ 1/4 W ±5% (Axial, THT)
| Part Name | Manufacturer | MPN | Datasheet |
|---|---|---|---|
| CFR-25JT-52-10K | Yageo | CFR-25JT-52-10K | Datasheet |
| CFR-25JB-52-10K | Yageo | CFR-25JB-52-10K | Datasheet |
| MFR50SFTE52-10K | YAGEO | MFR50SFTE52-10K | 2304140030_YAGEO-MFR50SFTE52-10K_C173139.pdf |
Ready.
Mermaid
graph TD A["PIC16F877A-I/P\n(Microchip Technology)"] A -->|Pin 1| B[~MCLR~/VPP] A -->|Pin 2| C[RA0/AN0] A -->|Pin 3| D[RA1/AN1] A -->|Pin 4| E[RA2/AN2/VREF-/CVREF] A -->|Pin 5| F[RA3/AN3/VREF+] A -->|Pin 6| G[RA4/T0CKI/C1OUT] A -->|Pin 7| H[RA5/AN4/~SS~/C2OUT] A -->|Pin 8| I[RE0/~RD~/AN5] A -->|Pin 9| J[RE1/~WR~/AN6] A -->|Pin 10| K[RE2/~CS~/AN7] A -->|Pin 11| L[VDD_1] A -->|Pin 12| M[VSS_1] A -->|Pin 13| N[OSC1/CLKI] A -->|Pin 14| O[OSC2/CLKO] A -->|Pin 15| P[RC0/T1OSO/T1CKI] A -->|Pin 16| Q[RC1/T1OSI/CCP2] A -->|Pin 17| R[RC2/CCP1] A -->|Pin 18| S[RC3/SCK/SCL] A -->|Pin 19| T[RD0/PSP0] A -->|Pin 20| U[RD1/PSP1] A -->|Pin 21| V[RD2/PSP2] A -->|Pin 22| W[RD3/PSP3] A -->|Pin 23| X[RC4/SDI/SDA] A -->|Pin 24| Y[RC5/SDO] A -->|Pin 25| Z[RC6/TX/CK] A -->|Pin 26| AA[RC7/RX/DT] A -->|Pin 27| AB[RD4/PSP4] A -->|Pin 28| AC[RD5/PSP5] A -->|Pin 29| AD[RD6/PSP6] A -->|Pin 30| AE[RD7/PSP7] A -->|Pin 31| AF[VSS_2] A -->|Pin 32| AG[VDD_2] A -->|Pin 33| AH[RB0/INT] A -->|Pin 34| AI[RB1] A -->|Pin 35| AJ[RB2] A -->|Pin 36| AK[RB3/PGM] A -->|Pin 37| AL[RB4] A -->|Pin 38| AM[RB5] A -->|Pin 39| AN[RB6/PGC] A -->|Pin 40| AO[RB7/PGD]
Mermaid
graph TB A($$Power Supply$$) --> B($$Microchip Technology\\nPIC16F877A-I/P$$) B --> C($$Analog Inputs$$) B --> D($$Digital I/O$$) B --> E($$USART Interface$$) B --> F($$PWM Outputs$$) C --> G($$RA0/AN0$$) C --> H($$RA1/AN1$$) C --> I($$RA2/AN2/VREF-$$) C --> J($$RA3/AN3/VREF+$$) C --> K($$RA5/AN4/~SS~/C2OUT$$) C --> L($$RE0/~RD~/AN5$$) C --> M($$RE1/~WR~/AN6$$) C --> N($$RE2/~CS~/AN7$$) D --> O($$RB0/INT$$) D --> P($$RB1$$) D --> Q($$RB2$$) D --> R($$RB3/PGM$$) D --> S($$RB4$$) D --> T($$RB5$$) D --> U($$RB6/PGC$$) D --> V($$RB7/PGD$$) E --> W($$RC7/RX/DT$$) E --> X($$RC6/TX/CK$$) F --> Y($$RC2/CCP1$$) F --> Z($$RC1/T1OSI/CCP2$$) classDef default fill:#f9f,stroke:#333,stroke-width:2px;
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id=FP_DIP1550W56P254L5219H483Q40N
id=3D_PIC16F877A-I_P
id=image-removebg-preview (1)
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saucrak
copilot
MCLR/VPP (Pin 1) a +5V a través de una resistencia de 10kΩlcd.c. Normalmente, esto puede variar, pero una configuración típica podría ser:lcd.csi no están definidos.lcd.cpara las conexiones correctas. Con esto en mente, puedes simular y probar el programa utilizando un entorno que soporte el compilador del Microchip y simulación de hardware, como MPLAB X y Proteus.lcd.c, por favor házmelo saber para que pueda asistirte más.