Pic Simulator Ide 5.21

Posted By admin On 07.10.19
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Does someone know about such a compiler? Altho im good at C too, but i like C more C is normally a bad idea to use for small 8/16 bit microcontrollers, because it adds a lot of overheads in execution time and code size compare to C. For PCs and other big hardware systems it doesn't matter that much because you have a lot of speed and storage resources.

But the hardware resources are very limited in 8 bit MCUs. C should only be used for more powerful 32 bit systems like ARM, MIPS etc. For 8 bit MCUs it's normmally much beetter to use C than C. IAR both makes C and EC (Embedded C) compilers for many microcontrollers: Embedded C is a subset of the C programming language which is intended for embedded systems programming. Read more about EC here: I don't know the excact differences between EC and C, because I have never used EC, but only C for MCUs and C for PC.

IAR does not make an EC compiler for PIC and 8051 but only ANSI C compilers. But they do make both C and EC compilers for AVR, probably because the AVR is more powerful than PIC and 8051. You can also get bigger AVRs in terms of program space. The AVR ATmega128 has 128 k Flash and they will soon introduce an ATmega256 with 256 k Flash. You can't get 8051's an PIC's with so much Flash. But as I said, for 8 bit it's best to use C, this will also make it easier to port the code to another compiler and/or MCU architecture.

C is better suited for PCs and big embedded systems, where the codesize is much bigger and there is more hardware resources such as MCU power/speed. Here's a C compiler for PIC, but I would never reccomend using C for PIC, stick with pure C instead. There's a reason why no other companies makes C compilesr for PIC and other 8 bit MCUs. C-Man Wrote For 'standard' 8051 you get 0.833333. MIPS for RD2 8051 you get 1.666. Standard 8051 divide the clock by 12, RD2 8051 by 12 or 6 and there are other derivates around that divide by 4.

Don't forgot DS89C420 The DS89C420 offers a maximum crystal speed of 33MHz, achieving execution rates up to 33 million instructions per second (MIPS). H.p://www.maxim-ic.com/quickview2.cfm?qvpk=2963 SphinX I already mentioned the fast Maxim/Dallas 8051 MCUs in an earlier post.

I also mentioned the even faster Silicon Laboratories 8051 MCUs than can perform up to 100 MIPS. The 12F 16F and the 18F series PICs are all different from each other. So migrating between these families is a bit difficult.

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If u r just going to begin then i will suggest that u start with the 16F series. And go to and learn from the tutorials there. The tutorial uses the PIC16F628 which is a replacement for the obsolete PIC16F84A and the PIC16F876, a PIC with great features in a small package!!!!!! U should also regularly visit the PIClist and see other people's code. U will learn alot by playing with other people's code. Are you going to program it in C or assembly?

An advantage for AVR vs. PIC is that the AVR uses same instuction set for the smallest ATtiny devices as it uses for the biggest ATmega device. Then you only have to learn one instuction set to be able to progam the whole range of AVR from the smallest to the biggest device.

Yes this is the problem:o Differant instructions set for differant family of PIC that's mean,I must learn more than one instructions set to work with PIC but Atmel Only one kind of instructions set i have to learn to work with all Atmel microcontroller family i thin this is big bib big featuer. Ojer25, did you ever think about programming in C?

You will always use the same 'instruction set' as long as you use standard C, the compiler will do the rest I use the same routines for PIC, AVR and 8051. Best regards you are right C is easy for programmer.(advantage) but it take more memory space than Assembly.(disadvantage) we dont have a enough memory space in microcontroller(1,2,or 4kB) when i write my programme with Assembly,it will take slight space comparing with C (price you must pay for using of C ) for example you can write long programe with assembly and another with C and disassemble the C programme, then you will see the differant It my perspective.

Ojer25, did you ever think about programming in C? You will always use the same 'instruction set' as long as you use standard C, the compiler will do the rest I use the same routines for PIC, AVR and 8051. Best regards you are right C is easy for programmer.(advantage) but it take more memory space than Assembly.(disadvantage) we dont have a enough memory space in microcontroller(1,2,or 4kB) when i write my programme with Assembly,it will take slight space comparing with C (price you must pay for using of C ) for example you can write long programe with assembly and another with C and disassemble the C programme, then you will see the differant It my perspective You are right but did you also compare the time needed to develop your program? I was (and am still) a very advanced assembly programmer who took the step to C a few years ago. You would be surprised how much code can be fitted in a small CPU like the PIC for example 16F628 (2K codespace) using an advanced compiler like Hi-Tech PICC. Just my 2 cents best regards. Assalamu a'laikum, Hi, ALL.

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I'm newbie in this forum, BTW- I've tried 8051, AVR, 'N PIC. I use one of them based on my project. For beginner, I suggested to used PIC because it has a free high level language compiler. It's called JAL (Just Another Language). JAL syntax is very user/human friendly. For editing this JAL, u can use JALEdit or JAL suite as a windows based JAL editor.

For Programmer, I suggested to use JDM programmer (Hardware - Fully worked for all 8 BIT PIC) 'N ICPROG (Powerfull Programmer Software W98/ME/2000/NT/XP - Fully worked for all 8 BIT PIC). Both of programmer commponents are Absolutely Free. If anyones whose loved linux very much u can GPASM (if i'm not wrong).

Pic Simulator Ide 5.21 Download

For PIC Simulator, BASIC Compiler 'N Programmer, I use PICSimulator IDE 5.21 but it's not free. I use PIC16F877A/20 (20 MHz Clock) for my Experiments. It's very tough for beginner, embeded PWM, 10 bit ADC, SPI interface, etc. Wassalam, keunteus.