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Raspberry Pi Forum Why is it that most Single-board computers are based off the ARM chipset instead of x86-x64?
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Why is it that most Single-board computers are based off the ARM chipset instead of x86-x64?

e14 Contributor
e14 Contributor over 10 years ago

I'm not sure if anyone has really noticed or paid attention, but i have noticed ever since the single board computer has taken off (like the Raspberry pi) that they are mostly ARM based, why is that? I think it would be a lot easier if they were x86-x64 based, because it would be easier to use programs that you are used to using instead of finding ARM versions.

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  • dougw
    0 dougw over 10 years ago

    Single board computers have been developed ever since it became feasible back in the seventies. The Apple 1 was an SBC based on a 6502, as were many others. Every time  a new cost-effective processor is introduced it spawns a whole raft of SBCs and even new companies that are not married to older technology.

    Because it cost less to buy an ARM license than develop your own technology, many companies have taken this path. But it has resulted in an extremely competitive arena where everyone has the same technology and it seems the main differentiator is price. It is tough to differentiate with software since both android and Linux are essentially free.

    Another big driver is that ARM chips use RISC architecture, which has fewer transistors and uses less power, which is very important in mobile computers.

    So the advantages of ARM in cost and power make it attractive to the mobile market, but for a product development business it is also a low margin proposition due to extreme competition. You can't even stray too far from standard offerings, because as soon as you add something unique, it becomes very expensive to support.

    The other factor that must be considered is computing power where CISC has had a traditional advantage, and still does. This is always desirable and until mobile computing became feasible it trumped low-power and low cost, which are also always desirable.

    As ARM chips increase in computing power with more sophisticated pipelining, wider data paths and larger instruction sets they will also become bigger, more power hungry and more expensive.

    On the CISC front, chip designers are responding to the burgeoning mobile computing market with lower power, lower cost chips.

    I hope both trends continue as it is good for all of us to have competition driving things forward. Currently there may be more ARM SBCs appearing on the market, but there are still lots of others showing up as new processors are developed, and of course there are still a large number of mature (non-ARM) SBCs on the market.

    The current trend will continue for a while because so many companies are commited to ARM at the moment, but it is hard to predict what might happen, even in the near future. For example maybe augmented reality glasses become a huge advantage for users with many must-have applications, but a new type of processor is needed to eliminated display lag. Such a processor could handle all other mobile computing requirements without raising a sweat, so it could just take over the market - for a while.

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  • dougw
    0 dougw over 10 years ago

    Single board computers have been developed ever since it became feasible back in the seventies. The Apple 1 was an SBC based on a 6502, as were many others. Every time  a new cost-effective processor is introduced it spawns a whole raft of SBCs and even new companies that are not married to older technology.

    Because it cost less to buy an ARM license than develop your own technology, many companies have taken this path. But it has resulted in an extremely competitive arena where everyone has the same technology and it seems the main differentiator is price. It is tough to differentiate with software since both android and Linux are essentially free.

    Another big driver is that ARM chips use RISC architecture, which has fewer transistors and uses less power, which is very important in mobile computers.

    So the advantages of ARM in cost and power make it attractive to the mobile market, but for a product development business it is also a low margin proposition due to extreme competition. You can't even stray too far from standard offerings, because as soon as you add something unique, it becomes very expensive to support.

    The other factor that must be considered is computing power where CISC has had a traditional advantage, and still does. This is always desirable and until mobile computing became feasible it trumped low-power and low cost, which are also always desirable.

    As ARM chips increase in computing power with more sophisticated pipelining, wider data paths and larger instruction sets they will also become bigger, more power hungry and more expensive.

    On the CISC front, chip designers are responding to the burgeoning mobile computing market with lower power, lower cost chips.

    I hope both trends continue as it is good for all of us to have competition driving things forward. Currently there may be more ARM SBCs appearing on the market, but there are still lots of others showing up as new processors are developed, and of course there are still a large number of mature (non-ARM) SBCs on the market.

    The current trend will continue for a while because so many companies are commited to ARM at the moment, but it is hard to predict what might happen, even in the near future. For example maybe augmented reality glasses become a huge advantage for users with many must-have applications, but a new type of processor is needed to eliminated display lag. Such a processor could handle all other mobile computing requirements without raising a sweat, so it could just take over the market - for a while.

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  • lex_b
    0 lex_b over 9 years ago in reply to dougw

    CISCs are great for single core, simple tasks. But parallel processing in a CISC, I remember the 1980s... The Master / Slave MOS 65xx series. I used to bang my head against the wall trying to debug these damn things.

     

    Here's what I'm talking about; 6502 CPU and it's slaves of asymmetrical processing.

     

    http://datasheets.chipdb.org/Rockwell/6502.pdf

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