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Sockets. Select this option to create and connect the virtual machine's serial port to a socket of the physical computer. Socket is able to work in two modes: as a server or as a client.
System for synchronization of content between open applications. Remote access server (RAS) provides remote desktop to a mobile device. The mobile device has a remote access client component and communicates with the RAS and with an authorization component. First computer with a host application is connected to the RAS. Second computer is connected to the RAS and has a native application or a VM with a guest application. Authentication component authenticates the mobile device and the computers. The RAS synchronizes data between the mobile device and the computers, and provides a remote desktop for the mobile device via a remote access client component. The remote desktop includes the host application. Data entered in the host application for the first computer on the mobile device appears in the remote desktop via the RAS, and is synchronized with the guest application on the second computer.
Given that you have a desktop PC, a huge point in favor of the Surface Pro is that you can use the same software (and enjoy seamless file-sharing, etc.). If I were in your situation, I think the Surface Pro 3 would be a non-brainer! (Heck, you can always just use a different keyboard.)
The drivers for various sound cards have been reorganized;device sound is the generic sounddriver, and device snd_* aredevice-specific sound drivers now. The midi driver, which supports serial port andseveral sound cards, has been removed. More details can be found inthe related manual pages: sound(4), snd_ad1816(4), snd_als4000(4), snd_cmi(4), snd_cs4281(4), snd_csa(4), snd_ds1(4), snd_emu10k1(4), snd_es137x(4), snd_gusc(4), snd_maestro3(4), snd_sbc(4), snd_solo(4), and snd_uaudio(4).
Note: If you are using the older GNOME desktop itself (x11/gnome2),simply upgrading it from the FreeBSD Ports Collection with portupgrade(1) (sysutils/portupgrade)will cause serious problems. If you are a GNOME desktop user, please read the instructionscarefully at , anduse the gnome_upgrade.sh script toproperly upgrade to GNOME 2.6.
The 6 Series MSO comes with a standard removable SSD that contains a closed embedded operating system that will boot as a dedicated scope with no ability to run or install other programs. An optional SSD with Windows 10 operating system is available that will boot to an open Windows 10 configuration, so you can minimize the oscilloscope application and access a Windows desktop where you can install and run additional applications on the oscilloscope or you can connect additional monitors and extend your desktop. Simply swap the drives as needed through an access panel on the bottom of the instrument.
With up to a1 Gpoint record length, you can capture many events of interest, even thousands of serial packets in a single acquisition, providing high-resolution to zoom in on fine signal details and record reliable measurements.
During debugging, it can be invaluable to trace the flow of activity through a system by observing the traffic on one or more serial buses. It could take many minutes to manually decode a single serial packet, much less the thousands of packets that may be present in a long acquisition.
And if you know the event of interest that you are attempting to capture occurs when a particular command is sent across a serial bus, wouldn't it be nice if you could trigger on that event? Unfortunately, it's not as easy as simply specifying an edge or a pulse width trigger.
The6 Series MSO offers a robust set of tools for working with the most common serial buses found in embedded design including I2C, SPI, eSPI, I3C, RS-232/422/485/UART, SPMI, CAN, CAN FD, LIN, FlexRay, SENT, PSI5, CXPI, Automotive Ethernet,MIPI C-PHY,MIPI D-PHY, USB LS/FS/HS, eUSB2.0, Ethernet 10/100, Audio (I2S/LJ/RJ/TDM), MIL-STD-1553, ARINC 429, Spacewire, 8B/10B, NRZ, Manchester, SVID, 1-Wire, and MDIO.
The tools described for serial buses also work on parallel buses. Support for parallel buses is standard in the6 Series MSO. Parallel buses can be up to64 bitswide and can include a combination of analog and digital channels.
Option6-DJA adds additional jitter analysis capability to better characterize your device's performance. The 31 additional measurements provide comprehensive jitter and eye-diagram analysis and jitter decomposition algorithms, enabling the discovery of signal integrity issues and their related sources in today's high-speed serial, digital, and communication system designs. Option6-DJA also provides eye diagram mask testing for automated pass/fail testing.
The compliance test specifications for high speed serial standards like USB, Ethernet, Memory, Display and MIPI are developed by the respective consortiums, or governing bodies. Working closely with these consortiums, Tektronix has developed oscilloscope-based compliance applications that not only focus on providing pass/fail results but also provide deeper insight into any failures by providing relevant measurement tools such as jitter and timing analysis to debug failing designs.
Starter bundle offers the most common serial bus decoding, protocol analysis, and hardware enhancing options bundled together.Pro bundles are application-specific (Serial trigger and decode, Power Integrity, Signal Integrity, Automotive, Automated Compliance Test, Military Government Aerospace) and include all options from the Starter bundle.Ultimate bundle includes all options from the Starter bundle in addition to the all options from all Pro bundles.
Third-party applications are available that provide serial bus decode and analysis capabilities for use on the 6 Series B MSO. Use of the third-party applications require a Windows 10 SSD (option 6-WIN).
Serial busThird party contact information Embedded Multi-media Controller (eMMC) memoryProdigy Technovations ( ) Quad Serial Peripheral Interface (QSPI) - 2 enhanced IO lines for SPISecure Digital Input Output (SDIO) Step 6Add optional serial bus compliance testingChoose the serial compliance testing packages you need today by choosing from these options. You can upgrade later by purchasing an upgrade kit. All options in the table below require option6-WIN (SSD with Microsoft Windows 10 operating system).
The value of the MrGrid parallel approach is that it offers considerable timesavings, such that potential solutions can be tested relatively quickly. In this particular case, performing the MR calculations allowed all 7 potential solutions to be tested in a standard refinement procedure in a matter of hours. In contrast, this would most likely have taken significantly longer (e.g. days-weeks) using a serial approach, with the sole solution perhaps only being identified by chance after a significant period of time.
Wine was once widely considered a very important piece of software for the success of Linux on the desktop. The theory being that if users could run Windows applications more or less flawlessly on Linux, it would encourage people to switch. Assuming an application runs under Wine, it would even have advantages over Windows because one could leverage the strong points of Unix/Linux with a popular Windows application. That hasn't quite worked out as planned, though. Wine has been a useful tool for many users, but its adoption and influence on the spread of Linux has been fairly limited.
White acknowledges that virtualization has an advantage in that it works "in a predictable fashion", and says users have "a really hard time accepting and working within" Wine's limitations. The other factor working against Wine is the sheer ubiquity of virtualization and the fact that today's desktop and laptop computers can comfortably run two or three OSes without a significant performance cost.
Though Wine doesn't seem to be the Holy Grail to pave the way for widespread desktop usage of Linux, it still plays an important role for quite a few users. Given the continually shifting and changing Windows platform that the Wine Project has had to target, the current state of Wine is very impressive. It will probably never achieve 100% compatibility, but it does many things very well and means that many users need not pay Microsoft for Windows licenses they don't want in order to use a few Windows-only applications.
This package contains the Linux kernel image for version 4.4.0 on ARM (hard float) SMP. . Supports Generic LPAE processors. . Geared toward desktop and server systems. . You likely do not want to install this package directly. Instead, install the linux-generic-lpae meta-package, which will ensure that upgrades work correctly, and that supporting packages are also installed.
This package contains the Linux kernel image for version 4.4.0 on 32-bit PowerPC SMP. . Supports 32-bit PowerPC SMP processors. . Geared toward desktop or server systems. . You likely do not want to install this package directly. Instead, install the linux-powerpc-smp meta-package, which will ensure that upgrades work correctly, and that supporting packages are also installed.
This package contains the Linux kernel image for version 4.4.0 on 64-bit PowerPC SMP Book3E. . Supports 64-bit PowerPC SMP Book3E processors. . Geared toward desktop or server systems. . You likely do not want to install this package directly. Instead, install the linux-powerpc64-emb meta-package, which will ensure that upgrades work correctly, and that supporting packages are also installed.
This package contains the Linux kernel image for version 4.4.0 on 64-bit PowerPC SMP. . Supports 64-bit PowerPC SMP processors. . Geared toward desktop or server systems. . You likely do not want to install this package directly. Instead, install the linux-powerpc64-smp meta-package, which will ensure that upgrades work correctly, and that supporting packages are also installed. 2b1af7f3a8