The CP210x USB to UART Bridge Virtual COM Port (VCP) drivers are required for device operation as a Virtual COM Port to facilitate host communication with CP210x products. These devices can also interface to a host using the direct access driver.

The CP210x Manufacturing DLL and Runtime DLL have been updated and must be used with v 6.0 and later of the CP210x Windows VCP Driver. Application Note Software downloads affected are AN144SW.zip, AN205SW.zip and AN223SW.zip. If you are using a 5.x driver and need support you can download Legacy OS Software.


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The Driver's License Access and Privacy Act, commonly called the "Green Light law," was enacted on June 17, 2019, and takes effect on December 16, 2019. It allows all New Yorkers age 16 and older to apply for a standard, not for federal purpose, non-commercial driver license or learner permit regardless of their citizenship or lawful status in the United States. See information on how to apply for a learner permit and driver license under New York State's Green Light Law.

Driver Booster will quickly spot broken and outdated drivers and finds the exact up-to-date match for the system and devices. The driver database supports more than 6.5 million devices & drivers from 1200+ major brands. Besides, driver sources are all officially from the original hardware manufacturers and have passed the Microsoft WHQL test and IObit test.

Driver Booster provides a safe and stable display driver uninstaller to completely uninstall AMD/NVIDIA/INTEL graphics card drivers, and remove all traces of display driver leftovers. If you want entirely new driver installation, delete drivers that are causing issues, or upgrade GPU from AMD to Nvidia, this driver removal is a must-have.

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Starting July 1, 2023 eligible residents in Massachusetts can obtain a Standard (Class D or M) driver's license, regardless of immigration status, under the Work and Family Mobility Act. For more information, visit www.mass.gov/wfma.

If you renew your driver's license before your 21st birthday, you will receive a vertical license with the words "Under 21" printed on it. That license will be good for 5 years. However, if you renew your license on or after your 21st birthday, you will receive a standard horizontal license without "Under 21" printed on it.

ATTENTION VETERANS OR ACTIVE DUTY SERVICE MEMBERS: Active duty military members, honorably discharged veterans, and veterans with a permanent 100% service-connected disability rating are exempt from certain driver's license fees. In order to have those fees waived, you must renew your license in-person and provide the appropriate documentation. View waiver eligibility requirements to see if you qualify. If you are an honorably discharged veteran or disabled veteran who has already submitted the appropriate documentation in-person, your fees will automatically be waived when you renew online.

  To get your REAL ID gold star, you will need to visit us in person and bring additional documents with you.   If you choose not to get a REAL ID, you will receive a driver's license or identification card that reads, "NOT FOR REAL ID ACT PURPOSES".  Find out more about Real ID.  

Before a driver license testing applicant will be permitted to begin the testing process there are particular documents and records the applicant will be required to have ready for inspection by the testing examiner: The checklists below can help you take exactly what you need with you to the Driver Testing Site!!!:

Please check the following websites to see if you must complete the ELDT requirements. If you are subject to ELDT training, please check the TPR website for a training provider near you:  -drivers-license/entry-level-driver-training-eldt and  

In computing, a device driver is a computer program that operates or controls a particular type of device that is attached to a computer or automaton.[1] A driver provides a software interface to hardware devices, enabling operating systems and other computer programs to access hardware functions without needing to know precise details about the hardware being used.

A driver communicates with the device through the computer bus or communications subsystem to which the hardware connects. When a calling program invokes a routine in the driver, the driver issues commands to the device (drives it). Once the device sends data back to the driver, the driver may invoke routines in the original calling program.

The main purpose of device drivers is to provide abstraction by acting as a translator between a hardware device and the applications or operating systems that use it.[1] Programmers can write higher-level application code independently of whatever specific hardware the end-user is using.For example, a high-level application for interacting with a serial port may simply have two functions for "send data" and "receive data". At a lower level, a device driver implementing these functions would communicate to the particular serial port controller installed on a user's computer. The commands needed to control a 16550 UART are much different from the commands needed to control an FTDI serial port converter, but each hardware-specific device driver abstracts these details into the same (or similar) software interface.

Writing a device driver requires an in-depth understanding of how the hardware and the software works for a given platform function. Because drivers require low-level access to hardware functions in order to operate, drivers typically operate in a highly privileged environment and can cause system operational issues if something goes wrong. In contrast, most user-level software on modern operating systems can be stopped without greatly affecting the rest of the system. Even drivers executing in user mode can crash a system if the device is erroneously programmed. These factors make it more difficult and dangerous to diagnose problems.[3]

The task of writing drivers thus usually falls to software engineers or computer engineers who work for hardware-development companies. This is because they have better information than most outsiders about the design of their hardware. Moreover, it was traditionally considered in the hardware manufacturer's interest to guarantee that their clients can use their hardware in an optimum way. Typically, the Logical Device Driver (LDD) is written by the operating system vendor, while the Physical Device Driver (PDD) is implemented by the device vendor. However, in recent years, non-vendors have written numerous device drivers for proprietary devices, mainly for use with free and open source operating systems. In such cases, it is important that the hardware manufacturer provide information on how the device communicates. Although this information can instead be learned by reverse engineering, this is much more difficult with hardware than it is with software.

In Linux environments, programmers can build device drivers as parts of the kernel, separately as loadable modules, or as user-mode drivers (for certain types of devices where kernel interfaces exist, such as for USB devices). Makedev includes a list of the devices in Linux, including ttyS (terminal), lp (parallel port), hd (disk), loop, and sound (these include mixer, sequencer, dsp, and audio).[4]

Microsoft Windows .sys files and Linux .ko files can contain loadable device drivers. The advantage of loadable device drivers is that they can be loaded only when necessary and then unloaded, thus saving kernel memory. 0852c4b9a8

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