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Which arcade motherboard to choose?

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2024-02-17 09:09:08615browse

php editor Xinyi brings you a guide on selecting arcade motherboards. When choosing an arcade motherboard, we need to consider multiple factors, including price, compatibility, scalability, etc. There are many different motherboard brands and models available on the market, such as Pandora's Box, Raspberry Pi, etc. These motherboards have their own characteristics and scope of application. Next, we will introduce you to several common arcade motherboards and analyze their advantages and disadvantages to help you make an informed decision when purchasing.

Which arcade motherboard to choose?

Which arcade motherboard should I choose?

Of course it is the x86 base board. x86 is a standard numbering abbreviation for Intel's general-purpose computer series. It also identifies a set of general computer instructions. X has nothing to do with the processor. It is a simple wildcard definition for all *86 systems.

Intel started with 8086, 286, 386, 486, 586, P1, P2, P3, and P4 all use the same CPU architecture, collectively called X86.

The best arcade motherboard currently?

Of course it’s the x86 baseboard. You see, so many fishing machines use D425 motherboards and don’t even have network ports. Pandora Box 6 is more suitable for fighting games. Now, although 3D Pandora is made in China, it is indeed Best performance.

Pandora's Box host has thousands of programs, 100 3D games, 2900 2D games, a total of 3000 in one motherboard, 12 core cpu, 4G memory, 32 HDMI high-definition output, resolution 1280-720p, pause function, archive function, I’ll put it aside and continue playing next time. How much does a motherboard for an arcade/game console (such as a BMW) that supports wireless and wired controllers cost?

It depends on the model. It doesn’t mean that any kind of machine can be installed and used. Generally, if it is universal, it will cost around 1200, and if it is not universal, it will range from 4000-8000.

Arcade machine What is a gaming board?

Their original functions are only for playing their corresponding optical disc games and listening to music CDs, so other manufacturers have made dedicated VCD cards for PS and SS, and inserted them into PS, On the expansion port of SS, PS and SS can be transformed into VCD discs. This VCD card is the BIOS that allows PS and SS to be upgraded into VCD players.

There is also a BIOS in the computer motherboard. For example, by flashing the BIOS on the computer motherboard to the latest version, you can make your old version of the computer motherboard support new devices (I used to love doing this kind of thing, and ended up crashing a lot of computers in the school computer room, hehe, It’s a lot of money, but I still pretended to be stupid before being discovered: Teacher, the computer can’t be started)

As for the BIOS of the arcade simulator, it is convenient for the simulator to simulate different arcade baseboards to the maximum extent. Improve the simulation level of the simulator and add functional application expansion. Various BIOS are the data in the base board used by the corresponding games on the original arcade. The base board must have data corresponding to a certain game to run the game, so if If you want to change the game in an arcade machine, you must rewrite the data of the baseboard or replace the baseboard. The function of the arcade template is to simulate the functions of the game console and the base board. If you want to simulate a certain game, the simulator must integrate the base board data (BIOS) required by the game so that the arcade game can run normally. If not, The game just won't run.

Among arcade simulators, MAME can simulate the most games, so it also has the most BIOS. The latest one seems to have 40? If there are too many, compatibility problems will arise, so its simulation speed and graphics are relatively @#¥, and the computer configuration requirements are also higher

In easy-to-understand terms, BIOS is a function expansion card. Have you ever played the home game console PS or SS? Their original functions were only for playing their corresponding optical disc games and listening to music CDs, so other manufacturers made dedicated VCD cards for PS and SS and inserted them into the expansion ports of PS and SS, so PS and SS have been transformed and can play VCD discs. This VCD card is the BIOS that allows PS and SS to be upgraded into VCD players.

There is also a BIOS in the computer motherboard. For example, by flashing the BIOS on the computer motherboard to the latest version, you can make your old version of the computer motherboard support new devices (I used to love doing this kind of thing, and ended up crashing a lot of computers in the school computer room, hehe, It’s a lot of money, but I still pretended to be stupid before being discovered: Teacher, the computer can’t be started)

As for the BIOS of the arcade simulator, it is convenient for the simulator to simulate different arcade baseboards to the maximum extent. Improve the simulation level of the simulator and add functional application expansion. Various BIOS are the data in the base board used by the corresponding games on the original arcade. The base board must have data corresponding to a certain game to run the game, so if If you want to change the game in an arcade machine, you must rewrite the data of the baseboard or replace the baseboard. The function of the arcade template is to simulate the functions of the game console and the base board. If you want to simulate a certain game, the simulator must integrate the base board data (BIOS) required by the game so that the arcade game can run normally. If not, The game just won't run.

If there are too many, compatibility problems will arise, so its simulation speed and graphics are relatively @#¥, and the computer configuration requirements are also higher

How to wire the arcade motherboard?

How to wire the arcade motherboard

Connect the various lines on the motherboard to the corresponding hardware devices to make the computer work properly. The following are some common motherboard circuit connections:

1. Power circuit: Connect the 24-pin or 20-pin power connector on the motherboard to the power supply.

2. CPU power supply line: Connect the 4-pin or 8-pin CPU power supply interface on the motherboard to the power supply.

3. Memory power supply line: Connect the memory power supply interface on the motherboard to the power supply.

4. Graphics card power supply line: Connect the PCI-E power supply interface on the motherboard to the power supply.

5. Front panel wiring: Connect the power button, restart button, hard disk light, power light and other interfaces on the motherboard to the front panel.

6. USB line: Connect the USB interface on the motherboard to the front panel or rear panel of the chassis.

7. SATA line: Connect the SATA interface on the motherboard to the hard disk, optical drive and other devices.

8. Audio line: Connect the audio interface on the motherboard to speakers, headphones and other devices.

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