The TPS65381-Q1 power management chip provides power to the chip. It has its own watchdog timer and it can reset microcontroller if error signal received from the microcontroller. This would be driven by the comparison hardware for the two lock step micros.

The DRV3201-Q1 motor driver chip is designed for safety-critical applications. It support three phase, brushless DC (BLDC) motors via six N-channel MOSTFET transistors. The chip can handle gate charges of 250 nC. The drivers are programmable allowing for easy slope adjustment. A boost converter is integrated with the FETs and it provides overdrive voltage for better control a the power-stages even. It run on voltages down to 4.75 V.


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IIRC pinball fantasies, as a couple of other games from that era, maxes out all volume controls on the SBPro mixer chip if you start the game. The SB1 and SB2 drivers shouldn't do that, because those cards don't have a mixer chip. It's quite plausible that maxed out volume settings can cause clipping if the PCM sound data are near to full scale. You could try going down to 60-80% volume and using the SB2 driver to test this theory. If you started the game once with the SBPro driver, the volume contols keep to be at the maximum level until another program pulls them down again.

The PVC 4 chip from Paradise was a single-chip video controller which integrated a 6845 CRTC and other logic, greatly reducing chip count on CGA, Plantronics COLORPLUS, Hercules graphics, MDA and AT&T 6300 video implementations.

This SVGA chipset from Paradise was a multi-mode VGA video controller with hardware and BIOS level compatibility. This means it provided 100% IBM VGA, EGA, CGA, MDA and Hercules graphics compatibility.

The page linked below has more interesting details about the differences between the fake and the real deal. They have even done a teardown of the chips, stripped off the metal layers and have a few comments on the chip technologies used. Apparently, the chip designs are completely different and the fake version is probably a mask programmed micro controller of some sort:

4WD Driver Platform V1.0 (No Intel Edison chip included) is a motor driver board which support 4-wheel driving with bidirectional and full control to each motor. The most important features of this drive board is it expandability achieved by grove interfaces which can enable your project more versatile. It also get detailed and simple SDK (software development kit) which will make you development process quicker and easier. With Edison installed, you can build a powerful system to satisfy your different needs.

The difference between a display controller, a graphics accelerator, and a video compression/decompression IC is huge, but, since all of this logic is usually found on the chip of a graphics processing unit and is usually not available separately to the end-customer, there is often much confusion about these very different functional blocks.

That said, it is not completely clear when a "video chip" is a "video display controller" and when it is a "video display processor". For example, the TMS9918 is sometimes called a "video display controller" and sometimes a "video display processor". In general however a "video display processor" has some power to "process" the contents of the video RAM (filling an area of RAM for example), while a "video display controller" only controls the timing of the video synchronization signals and the access to the video RAM.

Note that many early home computers did not use a VDP chip, but built the whole video display controller from a lot of discrete logic chips, (examples are the Apple II, PET, and TRS-80). Because these methods are very flexible, video display generators could be very capable (or extremely primitive, depending on the quality of the design), but also needed a lot of components.

Previously, graphic cards were also called graphic adapters, and the chips used on these ISA/EISA cards consisted solely of a display controller, as this was the only functionality required to connect a computer to a display. Later cards included ICs to perform calculations related to 2D rendering in parallel with the CPU; these cards were referred to as graphics accelerator cards. Similarly, ICs for 3D rendering eventually followed. Such cards were available with VLB, PCI, and AGP interfaces; modern cards typically use the PCI Express bus, as they require much greater bandwidth then the ISA bus can deliver.

From memory, some modbus Lib's have have a couple of functions called preTransmission and postTransmission which you use to control the direction of flow of the data for your chosen RS485 line driver chip.

Using MicroPython is a great way to get the most of your ESP32 board. Andvice versa, the ESP32 chip is a great platform for using MicroPython. Thistutorial will guide you through setting up MicroPython, getting a prompt, usingWebREPL, connecting to the network and communicating with the Internet, usingthe hardware peripherals, and controlling some external components.

It is based on a matrix with a total of 1.3 million micro-mirror elements on a surface illuminated by 3 high current LED chips. Each of the small mirror elements can be controlled electronically individually. The matrix generated in this way is uniformly illuminated by high-current LEDs and projected onto the street within milliseconds by means of a multi-level lens system in the form of images.

Each mirror thus generates a pixel of the projected image and can turn on, off or dim the pixel by its flip-over movement.

ESP32 is a series of low-cost, low-power system on a chip microcontrollers with integrated Wi-Fi and Bluetooth. ESP32 integrates an antenna switch, RF balun, power amplifier, low-noise receive amplifier, filters, and power management modules.

The SAS controller chips are also present on many newAMD/Opteron based systems, like the Sun 4100. Note that thiscontroller can drive both SAS and SATA drives or a mix of them atthe same time. The Integrated RAID Mirroring available for thesecontrollers is poorly supported at best.

The sis(4) driver supports Silicon Integrated Systems SiS 900 andSiS 7016 based Fast Ethernet adapters and embedded controllers, aswell as Fast Ethernet adapters based on the National SemiconductorDP83815 (MacPhyter) and DP83816 chips. Supported adaptersinclude:

Both were intended to be pretty much single-chip solutions. You'd need clock, power-supply, and external RAM, but both included things like the CRT controller, so you didn't need to add much there. They also included DRAM/VRAM controllers, so you didn't need much glue logic to talk to the memory either. 2351a5e196

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