Deutsch; Français; Windows; Mac; iOS. Play the world's first fantasy poker game for free. Submit a problem report for Governor of Poker Download. Download Governor of Poker now from Softonic. Download Safe download Governor of Poker free download. Always available from the Softonic servers. Governor of Poker - Download. Governor of poker should have actually been presented to the public under the title of & quot; garbage poker& quot; instead of its current name. I honestly do not know who the creator of this software is? But if I am not mistaken, he or she most likely has not gone beyond six grade elementary school. Poker is a game of skills, based on odds, and percentages. But since this game is electronically played, one should play it strictly based on the odds, and percentages. Otherwise, not much of a skills needed against an emoji opponent. Otherwise pure chance. Makers of a game like this need to make sure that it is truly up to chance, and odds, and not favoritism. Otherwise not slanted in anyone's favor, including the live players and their own player who are acting as a live participants. Bing said that, the makers also need to do an extensive research to get an idea of rules, and basic protocol of the Texas- Hold- Them. Then become 1. 00% sure of their calculated odds, that the game is made to be played fair and square without any hints of favoritism. SINCE NOTHING WILL SINK A GAME FASTER THAN PLAYERS FEELING CHEATED. Unfortunately, the odds in this & quot; Garbage& quot; pretending to be a Texas- hold- them game, the odds are stacked against the live players. The makers of this game have no clue about something called statistic, probability.. No matter as a live player what you do, or how you paly, the emoji's created by the maker of this game, end up the winner. I departed with my hard earned $1. Try Governor of Poker 3 for free and. Play the most exciting Texas Holdem poker game NOW. Press the button and download Governor of Poker 3. And indeed I feel stupid. I played this game for 7. And I was shocked at what I discovered at the end. Here are the odds: 1- Participating in the game with an unsuited 2/3 pocket cards.*Global odds to make a small straight is 0. In Governor of Poker, yours as a live player, 2. Emoji's)3. 4%!!! You lose. Pocket unsuited 2/3, to make flush, and win. Global odds: 0. 0. In Governor of poker: For the live player: 3. Governor of Poker 2. Download Free Trial or Buy Now Just $19.99 or Play UNLIMITED. Ratings & Reviews. Having technical issues with a game? Contact our support team. Governor of Poker, Download kostenlos. Deutsch Betriebssystem:: Windows XP; Windows Vista; Windows 7; Windows 8; Neueste Version: 2 Downloads vergangener Monat: 13. Opponents(Emoji's)7. Pocket suited 2/3 cards, making a small straight flush: Global odds: 0. Governor of Poker. For you as a live player: odds are, . For your opponents(Emoji's) 1. Pocket suited or unsuited 2/3 cards to make four of a kind. Global odds: 0. 0. Governor of poker. For you as a live player: 1. For the opponents(Emoji's) 1. Again you lose. 5- Down to your last chips (obligated to go in due to big blind) Winning in order to stay in the game. Global odds: 0. 0. Governor of Poker: For you as a live player, 0. For opponents(Emoji's)9. Again you lose. Of course I can go on and on and give you all the odds. But I do not find it time consuming and maybe boring to some of you. Therefore I am going to stop it at this juncture. Bottom line. The creators of this game are either psychopath or have no clue about the game of poker. For the life of me, since as a player one does not need to purchase further chips, I do not understand as to why the maker of this game have been so keen to see their emoji's constantly win at any cost. With no logical decent hands, such as you as a player having pocket aces and going all in, and then see yourself being challenged by an emoji's holding an unsuited 2/7 making it a nice straight!!! Basically this is the obsession that the maker of this garbage have been hanging their hats on. Well the rest is up to you folks. By the way I am a mathematician.
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Creating a new CDC Device Application using HALCoGen. HALCoGen GUI can be used to create the required descriptors & configurations for USBD CDC Application. The Linux Kernel Module Programming Guide is a free book; you may reproduce and/or modify it under the terms of the Open Software License, version 1.1. On Linux, given: a device, for example /dev/sda, and its major and minor numbers, for example 8, 0, how can I know which module / driver is 'driving' it? Can I. Writing a Linux device driver module for kernels 2. This is a short tutorial for a sample character device module aimed at Linux kernels 2. I thought might as well produce my own tutorial, after finding that most of the ones floating around the net are either lacking in terms of features, or not as up to date as could be with regards to the latest kernel advancements. Some of the features demonstrated with this sample are: creation of a character device as a moduleuse of udev, for the device instantiationuse of a kernel FIFO, for data queuinguse of a mutex, to prevent concurrent access to the same deviceuse of sysfs, as a means to add data to the queuedetection of access mode on open, to ensure read- only accessprovision of module options during insmod, to enable debug output. Not bad for a short sample, eh? Of course, this example is just there to help get you started, and does not replace a proper guide to Linux driver development, such as the freely available and strongly recommended "Linux Device Drivers - Third Edition" from O'Reilly. What's the deal with udev? If you have some basic knowledge of device drivers on UNIX systems, you probably are already aware that devices are instantiated into the dev/ directory through the use of a (major, minor) pair of integers. UNIX veterans will no doubt recall how they used to call on mknod to create their devices, and some UNIX systems still require that. Well into the 2. 6 kernels, Linux was also more or less using the statically allocated major/minor approach, through its devfs implementation. At one stage however, kernel developers got slightly annoyed about having to coordinate the allocation of major/minor numbers, not being able to keep /dev as clean and as abstracted as they liked and also feared that Linux would run out of numbers to assign. Because of that, they developed a new approach to device instantiation called udev, which led them to eventually ditch devfs altogether in kernel 2. For more information about udev vs devfs, you may want to read Greg Kroah- Hartman's The final word from December 2. How this matters to you as a driver writer is that a lot of existing tutorials you will find rely on devfs or static allocation of a major and minor number, which doesn't apply to recent kernels. Thus, you want a tutorial that demonstrates how to use udev, such as the one provided here. For the record, this sample driver was tested with kernel 3. Device description. The origin of this device driver sample mostly stems from wanting to craft a virtual device to simulate an HDMI- CEC enabled TV, in order to facilitate the development of libcec/cecd. Basically, with such a driver, a libcec application can connect to a virtual device that plays a pre- recorder set of data, which avoids the need to have an actual HDMI- CEC device plugged in or even a development platform that has an HDMI port. Since the driver above is fairly straightforward to write, it is a good candidate to serve as a base for a sample. In order to turn it into something that is generic enough for a tutorial, we did remove anything that was HDMI- CEC related and turned the driver into one that can store sequences of character data and then repeat them in the order they were received, pretty much as a FIFO for text string. Given this feature description, it makes a lot of sense to call our little device 'parrot'. For this 'parrot' device then, what we need first is a buffer to store data. The smart approach here, rather than reinvent the wheel is to use a Kernel FIFO, as this is a feature provided by the kernel and specifically aimed at device drivers. This will greatly simplify our design and of course, if you use this sample as a base for a driver that does actual hardware I/O, knowing how to use a Kernel FIFO will no doubt come handy. Now, while we obviously are going to use read accesses to the actual device (cat /dev/parrot) to read FIFO messages, we are not going to use write accesses to the device to fill the FIFO. Instead we will use sysfs, and make our device read- only. This may sound counter- intuitive, aside from wanting to demonstrate the use of sysfs, but the reason is, in a typical virtual repeater device scenario, you would use separate FIFOs for read and write, or a FIFO for read and a sink for write, since you don't want data written by your application to the device to interfere the pre- defined scenario you have for readout. Of course, if you want to add a device write endpoint to our sample device, it is a simple matter of copy/pasting the read procedures, and modify them for write access. Finally, because this is a sample, we will add some debug output which we will toggle using a module parameter on insmod as it is a good example to demonstrate how driver load options can be handled. Source Walkthrough. The open()/close() calls should be fairly straightforward. The open() call demonstrates how one can use the struct file f_flags attribute to find out whether the caller is trying to use the device for read- only, write- only or read/write access. As indicated, we forcibly prevent write access, and return an error if the device is open write- only or read/write. Then we use the non- blocking mutex_trylock() and mutex_unlock(), along with a global device mutex, to prevent more than one process from accessing the device at any one time. This way, we won't have to worry about concurrent read accesses to our Kernel FIFO. The device_read() call uses the kfifo_to_user() to copy data from the Kernel FIFO into userspace. One thing you must be mindful of, when writing device drivers, is that kernelspace and userspace are segregated so you can't just pass a kernel buffer pointer to a user application and expect it to work. Data must be duplicated to or from userspace. Hence the _to_user call. Now, because we store multiple messages in a flat FIFO, and don't use specific message terminators such as NUL, we need a table to tell us the length of each message. This is what the parrot_msg_len[] (circular) table provides. For this to work, we also need 2 indexes into it: one to point to the length of the next message to be read (parrot_msg_idx_rd), and one to point to the next available length entry for a write operation (parrot_msg_idx_wr). We could also have used _enqueue and _dequeue for the suffixes, as this is what you will generally find in a driver source. The one_shot and message_read variables are used to alleviate a problem you will face if you use cat to read from the device. The problem with cat is that it will continue to issue read requests, until the device indicates that there is no more data to be read (with a read size of zero). Thus, if left unchecked, cat will deplete the whole FIFO, rather than return a single message. To avoid that, and because we know that cat will issue an open() call before attempting to read the device, we use the boolean message_read to tell us if this is our first read request since open or not. If it isn't the first request, and the one_shot module parameter is enabled (which is the default), we just return zero for all subsequent read attempts. This way, each time you issue a cat, you will at most read one message only. With our open(), close() and read() calls properly defined, we can set the file operations structure up, which we do in the static struct file_operations fops. For more on the file operations which you can use for character devices, please see Chapter 3 of the Linux Device Drivers guide. All the above takes care of our basic driver workhorse. Yet we still haven't provided any means for the user to populate the FIFO. This is done through the next subroutine called sys_add_to_fifo(). The first thing we do there is check for overflows on either the FIFO or the message length table. Then, we use kfifo_in() to copy the data provided by the user to the sysfs endpoint (see below). Note that, in this case, the sysfs mechanisms have already copied the data provided by the user into kernelspace, therefore using kfifo_in() just works, and there is not need to call kfifo_from_user(), as we would have had to do if we were writing a regular driver write procedure. The other sysfs endpoint we provide is a FIFO reset facility, implemented in sys_reset, which is very straightforward. With our sysfs functions defined, we can use the DEVICE_ATTR() macros to define the structure which we'll have to pass to the system during the module initialization. Writing a Linux PCI Device Driver, A Tutorial with a QEMU Virtual Device. Windows device driver information for UMAX Astra 2000P. These are drivers for a UMAX Astra 2000P scanner. The device is connected to the PC through a parallel port. This article explains the creation process of a Linux kernel device driver for an undocumented USB device. After having reverse-engineered the USB communication. Example 2: Find hardware IDs by using a pattern. To find the hardware IDs of a particular device, enter the hardware ID or pattern, the compatible ID or pattern, the. The S_IWUSR parameter indicates that we want users to have write access to these endpoints. Now, we come to the last part of our driver implementation, with the actual module initialization and destruction. In module_init() the first thing we do, and this is the part where we rely on udev, is to dynamically allocate a major, through register_chrdev(). This call takes 3 parameters: The first one is either a specific major number, or 0 if you want the system to allocate one for you (our case), the second is a string identifier (which can be different from the name you will use in /dev) and the last parameter is a pointer to a file operations structure. Next, we have a choice of creating a device associated with a class or a bus. For a simple sample such as ours, and given that our device is not tied to any hardware or protocol, creating a bus would be an overkill, so we will go with a class. For laymen, the difference between using a bus and a class is that you will get your devices listed in /sys/devices/< classname> in sysfs, instead of /sys/devices/virtual, and you will also have them under < classname> in /dev (though it is possible to achieve the same if you add a "/" in your device name when calling device_create()). With a class established, we can then call device_create() which performs the actual instantiation of our device. The description of the device_create() parameters can be found here. We use the MKDEV() macro to create a dev_t out of the major we previously obtained, using 0 as the minor as we only have one device. Device Console (Dev. Con. exe) Examples - Windows 1. This section provides examples of the following Device Console (Dev. Con. exe) commands: Dev. Con Hw. IDs. Example 1: Find all hardware IDs. Example 2: Find hardware IDs by using a pattern. Example 3: Find hardware IDs by using a class. Dev. Con Classes. Example 4: List classes on the local computer. Example 5: List classes on the remote computer. Dev. Con List. Class. Example 6: List the devices in a device setup class. Example 7: List the devices in multiple classes on a remote computer. Dev. Con Driver. Files. Example 8: List all driver files. Example 9: List the driver files of a particular device. Dev. Con Driver. Nodes. Example 1. 0: List driver packages by hardware ID pattern. Example 1. 1: List driver packages by device instance ID pattern. Dev. Con Resources. Example 1. 2: List resources of a class of devices. Example 1. 3: List resources of device on a remote computer by IDDev. Con Stack. Example 1. Display the driver stack for storage devices. Example 1. 5: Find the setup class of a device. Example 1. 6: Display the stack for related devices on a remote computer. Dev. Con Status. Example 1. Display the status of all devices on the local computer. Example 1. 8: Display the status of a device by device instance IDExample 1. Display the status of related devices on a remote computer. Dev. Con Find. Example 2. Find devices by hardware ID pattern. Example 2. 1: Find devices by device instance ID or class. Dev. Con Find. All. Example 2. 2: Find (and find all) devices in a setup class. Dev. Con Class. Filter. Example 2. 3: Display the filter drivers for a setup class. Example 2. 4: Add a filter driver to a setup class. Example 2. 5: Insert a filter driver in the class list. Example 2. 6: Replace a filter driver. Example 2. 7: Change the order of filter drivers. Dev. Con Enable. Example 2. Enable a particular device. Example 2. 9: Enable devices by class. Dev. Con Disable. Example 3. 0: Disable devices by an ID pattern. Example 3. 1: Disable devices by device instance IDDev. Con Update and Update. NIExample 3. 2: Update the driver for communication ports. Example 4. 4: Forcibly update the HALDev. Con Install. Example 3. Install a device. Example 3. 4: Install a device using unattended setup. Dev. Con Remove. Example 3. Remove devices by device instance ID pattern. Example 3. 6: Remove a particular network device. Dev. Con Rescan. Example 3. Scan the computer for new devices. Dev. Con Restart. Example 3. 8: Restart a device. Dev. Con Status. Example 3. Reboot the local computer. Dev. Con Set. Hw. IDExample 4. 0: Assign a hardware ID to a legacy device. Example 4. 1: Add a hardware ID to all legacy devices on a remote computer. Example 4. 2: Delete a hardware ID from all legacy devices on a remote computer. Example 4. 3: Add, delete, and replace hardware IDs. Example 4. 4: Forcibly update the HALDev. Con dp_add, dp_deleted, dp_enum. Example 4. 5: Add and Remove Driver Packages. Example 1: Find all hardware IDs. Because Dev. Con operations use IDs and ID patterns to identify devices, a common first step in using Dev. Con is to create a hardware ID reference file for devices on the computer. The following command uses the Dev. Con Hw. IDs operation, which returns the IDs and the device description. It uses the wildcard character (*) to represent all devices on the local computer. Because the output is lengthy and used repeatedly, save the output in a text file for reference. The following command uses the wildcard character (*) to represent all devices on the computer. It uses the redirection character (> ) to save the command output in the hwids. The following command finds the hardware IDs of devices on a remote computer, Server. It uses the /m parameter to specify the name of the remote computer. The command redirects the output to the server. Note. В В This command fails unless the user has the required permissions on the remote computer. To run Dev. Con commands on a remote computer, the Group Policy setting must allow the Plug and Play service to run on the remote computer. On computers that run Windows Vista and Windows 7, the Group Policy disables remote access to the service by default. On computers that run Windows Driver Kit (WDK)В 8. Windows Driver Kit (WDK)В 8, the remote access is unavailable. В. devcon /m: \\server. Example 2: Find hardware IDs by using a pattern. To find the hardware IDs of a particular device, enter the hardware ID or pattern, the compatible ID or pattern, the device instance ID or pattern, or the name of the device setup class. The following command uses the Dev. Con Hw. IDs operation and a pattern to find the hardware IDs of the floppy disk drive on the computer. The user assumes that the pattern appears in one of the device identifiers.) The command uses the wildcard character (*) to represent all characters that might precede or follow the word "floppy" in any of the IDs. In response, Dev. Con displays the device instance ID, hardware ID, and compatible ID of the floppy disk drive on the computer. You can use these IDs in subsequent Dev. Con commands. FDC\GENERIC_FLOPPY_DRIVE\5& 3. F6. D& 0& 0. Name: Floppy disk drive. Hardware ID's. FDC\GENERIC_FLOPPY_DRIVE. Compatible ID's. Gen. Floppy. Disk. 1 matching device(s) found. In this case, the phrase "floppy" occurs in the hardware ID or compatible ID of only one device on the computer. If it occurs in the ID of more than one device, all devices with "floppy" in their IDs appear in the output. Example 3: Find hardware IDs by using a class. The following command uses the Dev. Con Hw. IDs operation and a device setup class to find the hardware IDs of all devices in the Ports device setup class. The equal sign (=) preceding the class name indicates that it is a class, not an ID. In response, Dev. Con displays the hardware IDs and compatible IDs of the three devices in the Ports setup class. ACPI\PNP0. 40. 1\4& B4. F4& 0. Name: ECP Printer Port (LPT1). Hardware ID's. ACPI\PNP0. PNP0. 40. 1. Name: Communications Port (COM1). Hardware ID's. ACPI\PNP0. PNP0. 50. 1. Name: Communications Port (COM2). Hardware ID's. ACPI\PNP0. PNP0. 50. 1. 3 matching device(s) found. Example 4: List classes on the local computer. Because Dev. Con operations can use the device setup class to identify devices, it is useful to create a reference file of the device setup classes of devices on the computer. The following command uses the Dev. Con Classes operation, which returns a list and description of all classes on the computer. Because the output is lengthy and used repeatedly, save the output in a text file for reference. The following command displays all device classes on the computer. It uses the redirection character (> ) to save the command output in the classes. Example 5: List classes on the remote computer. The following command uses the Dev. Con Classes operation to list the device setup classes on a remote computer, Server. Because the output is lengthy and used repeatedly, save the output in a text file for reference. The following command uses the redirection character (> ) to save the command output in the server. Example 6: List the devices in a device setup class. The following command uses the Dev. Con List. Class operation to list the devices in Net, the device setup class for network adapters. In response, Dev. Con displays the device instance ID and description of each device in the Net setup class. Listing 6 device(s) for setup class "Net" (Network adapters). PCI\VEN_1. 0B7& DEV_9. SUBSYS_0. 0BE1. 02. REV_7. 8\4& BB7. B4. AE& 0& 6. F0: 3. Com 3. C9. Integrated Fast Ethernet Controller (3. C9. 05. C- TX Compatible). ROOT\MS_L2. TPMINIPORT\0. WAN Miniport (L2. TP). ROOT\MS_NDISWANIP\0. WAN Miniport (IP). ROOT\MS_PPPOEMINIPORT\0. WAN Miniport (PPPOE). ROOT\MS_PPTPMINIPORT\0. WAN Miniport (PPTP). ROOT\MS_PTIMINIPORT\0. Direct Parallel. This display, although interesting, does not provide the hardware IDs of the devices in the Net setup class. The following command uses the Dev. Con Hw. IDs operation to list the devices in the Net setup class. In a Dev. Con Hw. IDs command, the class name is preceded by an equal sign (=) to indicate that it is a class, not an ID. The resulting display lists the devices in the Net class and includes the device instance ID, hardware IDs, and compatible IDs of devices in the class. PCI\VEN_1. 0B7& DEV_9. SUBSYS_0. 0BE1. 02. REV_7. 8\4& BB7. B4. AE& 0& 6. F0. Name: 3. Com 3. C9. 20 Integrated Fast Ethernet Controller (3. C9. 05. C- TX Compatible). Hardware ID's. PCI\VEN_1. B7& DEV_9. 20. SUBSYS_0. 0BE1. 02. REV_7. 8. PCI\VEN_1. B7& DEV_9. 20. SUBSYS_0. 0BE1. 02. PCI\VEN_1. 0B7& DEV_9. CC_0. 20. 00. 0. PCI\VEN_1. B7& DEV_9. 20. CC_0. 20. 0. Compatible ID's. PCI\VEN_1. 0B7& DEV_9. REV_7. 8. PCI\VEN_1. B7& DEV_9. 20. PCI\VEN_1. 0B7& CC_0. PCI\VEN_1. 0B7& CC_0. PCI\CC_0. 20. 00. ROOT\MS_L2. TPMINIPORT\0. Name: WAN Miniport (L2. TP). Hardware ID's. ROOT\MS_NDISWANIP\0. Name: WAN Miniport (IP). Hardware ID's. ms_ndiswanip. ROOT\MS_PPPOEMINIPORT\0. Name: WAN Miniport (PPPOE). Hardware ID's. ms_pppoeminiport. ROOT\MS_PPTPMINIPORT\0. Name: WAN Miniport (PPTP). Hardware ID's. ms_pptpminiport. ROOT\MS_PTIMINIPORT\0. 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Surround sound is supported where formats and decoders allow. Winamp supports many types of streaming media: Internet radio, Internet telelvision, XM Satellite Radio, AOL video, Singingfish content, podcasts, and RSS media feeds. It also has extendable support for portable media players, and users can access their media libraries anywhere via internet connections. You can extend Winamp's functionality through the use of plug- ins, which are available on the Winamp site. To find out how skins can improve your user experience, check out our guide to installing skins for Winamp. Lions Stalk a Leopard Busy Killing an Impala. A female leopard has mastered killing impalas that come to drink at this waterhole. An unsuspecting impala came down to drink and this leopard was in for the. Download locations for Winamp 5 Full 5.666 Build 3516, Downloads: 11023, Size: 16.64 MB. Premier digital audio player for Windows. Latest trending topics being covered on ZDNet including Reviews, Tech Industry, Security, Hardware, Apple, and Windows. Winamp for Mac is a free multimedia player made by Nullsoft. It supports numerous audio and video formats. It also plays streamed video and audio content, both live and recorded, authored worldwide. Winamp supports playback of.Winamp News Winamp Discussion The free customizable Winamp media player that plays mp3 + other audio files, syncs your iPod, subscribes to Podcasts and more. Get Notified. Leave us your email & we will tell you everything about Winamp’s future very soon. Winamp plugins karaoke, Karaoke 5 40.33, Karaoke 5 40.36, BASS_SFX 2.4.1.5. Fast downloads of the latest free software!***. Winamp is a skinnable, multi-format media player. Winamp supports a wide variety of contemporary and specialized music file formats, including MIDI, MOD, MPEG-1 audio layers 1. Samsung Expands Gear Portfolio with Android Wear. Samsung Gear Live™ powered by Android Wear, connects users to the world simply and efficiently. San Francisco, California – June 2. Samsung Electronics Co., Ltd., today unveiled the Samsung Gear Live, powered by Android Wear. The Samsung Gear Live is a new Android wearable that gives you useful information when you need it most.“Samsung has been a pioneer in the quickly- evolving wearable market, and the launch of Gear Live furthers our efforts to deliver a simple and intuitive wearable experience to consumers,” said JK Shin, CEO and President of IT & Mobile Division, Samsung Electronics. Through our long- term close collaboration with Google, we have successfully incorporated the capabilities of Android Wear into the Gear Live, in a way that only Samsung can do. I am confident that Samsung and Google together, we will grow the smart wearable market to positively impact consumers’ life.”"Watches powered by Android Wear aim to help people get access to useful information the moment you need it, at a glance," said Sundar Pichai, SVP, Android, Chrome & Apps. It's exciting to be working closely with Samsung on the launch of the Gear Live- with it's all- day battery and vibrant display- to bring more smart wearables to the market."Advanced hardware technology. The Samsung Gear Live offers a powerful mobile experience, heralded design aesthetics and innovative features that users expect from Samsung. The new Android Wear device features Samsung’s signature Super AMOLED display for incredible color and screen clarity. Occupation and activity. Driver (person), a person engaged in driving Chauffeur, a person who drives an automobile as a job; Motorman, an electric vehicle driver. File name: SAMSUNG_USB_Driver_for_Mobile_Phones_v1.5.25.0-retail.exe: Alternative file name: SAMSUNG USB Driver for Mobile Phones v1.5.25.0 retail: File size. Study-aids.co.uk has the best sample Business Dissertations available on the Internet - Management Dissertations, MBA Dissertation Topics we can help you. It also offers easy customization of the clock face and utilizes simple one- touch device wakeup for instant access. The Gear Live meets IP6. Finally, the sleek watch allows users to better manage their health and fitness with a built- in heart rate monitor that works seamlessly with multiple fitness apps.
Samsung project report 1. Dissertation On “Analysis of market potential forSamsung CDMA Mobile in Mumbai Region.Simple and intuitive Android Wear experience. Allowing information to move with the user, the Gear Live, powered by Android Wear shows targeted information and suggestions in real- time. The wide variety of Android applications compatible with the Gear Live means users can seamlessly receive the latest posts and updates from social apps, chats from preferred messaging apps, and regular notifications from shopping, news or even photography apps. The new device also offers intuitive voice commands; just say “Ok Google” to ask questions like what time your flight leaves or the score of the game, or to get stuff done, like calling a taxi, sending a text, making a restaurant reservation or setting an alarm. The Gear Live can be paired with any Android device running Android 4. The Gear Live will be offered in Black and Wine Red with interchangeable strap options. It will be available to order from June 2. Google Play Store (play. Samsung Retail Stores. For additional product information, please visit www. Gear Live Product Specifications. Display. 1. 6. 3" Super AMOLED (3. OSAndroid Wear. Processor. GHz Processor. Google Services. Google Now, Google Voice, Google Maps & Navigation, Gmail, Hangouts. Additional. Features. Notification (SMS, E- mail, etc.)Heart Rate Monitor. IP6. 7 Dust and Water Resistant. Changeable Strap, Color Options: Black and Wine Red. Connectivity. Bluetooth® v. LESensor. Accelerometer, Gyroscope, Compass, Heart Rate. Memory. RAM: 5. 12. MBStorage: 4. GB Internal Memory. Dimension /Weight. Battery. Standard Battery, Li- ion 3. Ah* The availability of services and features listed above may vary by region. All functionality, features, services, applications, specifications, and other product information provided in this document including, but not limited to, the benefits, design, pricing, components, performance, availability, and capabilities of the product are subject to change without notice or obligation. About Samsung Electronics Co., Ltd. Samsung Electronics Co., Ltd. Through relentless innovation and discovery, we are transforming the worlds of TVs, smartphones, tablets, PCs, cameras, home appliances, printers, LTE systems, medical devices, semiconductors and LED solutions. We employ 2. 86,0. US$2. 16. 7 billion. To discover more, please visit www. How to uninstall / completely remove Oracle 1. Assuming a Windows installation, do please refer to this: http: //www. Manual. Oracle. Uninstall. Uninstall all Oracle components using the Oracle Universal Installer (OUI). Run regedit. exe and delete the HKEY_LOCAL_MACHINE\SOFTWARE\ORACLE key. This contains registry entires for all Oracle products. Malwarebytes Anti-Rootkit BETA 1.09.1.1004 www.malwarebytes.org Database version: main: v2015.02.27.06 rootkit: v2015.02.25.01 Windows 7 Service Pack 1 x64 NTFS Internet Explorer 11.0.9600.17633 Rob :: ROB-PC [administrator] 2. Hi, I am looking for information on how to install the microsoft odbc for oracle driver. We need to run the 32 bit ODBC on Windows 7. I've located the program here - %WINDIR%/SysWOW64\odbcad32.exe. Welcome to Windows 7 Forums. Our forum is dedicated to helping you find support and solutions for any problems regarding your Windows 7 PC be it Dell, HP, Acer, Asus or a custom build. We also provide an extensive Windows 7. Note: Some drivers install into a directory that is specific to the version of Tableau you are using. Drivers marked for all versions are installed outside of the versioned directories so they can be used for all versions of. Delete any references to Oracle services left behind in the following part of the registry. HKEY_LOCAL_MACHINE\SYSTEM\Current. Control. Set\Services\Ora* It should. Oracle. Reboot your machine. Delete the "C: \Oracle" directory, or whatever directory is your ORACLE_BASE. Delete the "C: \Program Files\Oracle" directory. Empty the contents of your "C: \temp" directory. Empty your recycle bin. Calling additional attention to some great comments that were left here: Be careful when following anything listed here (above or below), as doing so may remove or damage any other Oracle- installed products. For 6. 4- bit Windows (x. HKEY_LOCAL_MACHINE\SOFTWARE\Wow. Node\ORACLE key from the registry. Hello Jeff, The solution to installing the USB to Serial converter on Windows 7 is in the article above. The driver is also available via link in the article above in step two titled Download New PL-2303 Drivers. If you have a. This is a well written article, but I do not see the driver appearing in my odbc datasources. I am using a windows 7 x64 pro system. I followed all of the procedures in your article, and had no problem. I even downloaded the. I was about to give up trying to get my ASP running on my windows 8 desktop. Until I found the above information that is.. It worked. - 1:Open Command prompt (Run as administrator) Run As Administrator 2: copy and paste. Clean- up by removing any related shortcuts that were installed to the Start Menu. Clean- up environment variables. Consider removing %ORACLE_HOME%. Remove any paths no longer needed from %PATH%. This set of instructions happens to match an almost identical process that I had reverse- engineered myself over the years after a few messed- up Oracle installs, and has almost always met the need. Note that even if the OUI is no longer available or doesn't work, simply following the remaining steps should still be sufficient. From: http: //msdn. VS. 8. 5). aspx. Important This feature will be removed in a future version of Windows. Avoid using this feature in new development work, and plan to modify applications that currently use this feature. Instead, use the ODBC driver provided by Oracle.> > - the latest driver Microsoft ODBC driver that i can found is here: I just installed the latest MDAC on a test Win. I have. Still no Oracle ODBC drivers.. Slow Windows 7 Computer - Am I infected? What do I do? Mini. Tool. Box by Farbar Version: 3. Ran by Rob (administrator) on 2. Running from "C: \Users\Rob\Desktop"Microsoft Windows 7 Professional Service Pack 1 (X6. Boot Mode: Normal***************************************************************************========================= IE Proxy Settings: ==============================Proxy is not enabled. No Proxy Server is set.========================= FF Proxy Settings: ======================================================= Hosts content: ========================================================== IP Configuration: ================================Intel® Dual Band Wireless- AC 7. Wireless Network Connection (Connected)Intel® Ethernet Connection I2. LM = Local Area Connection (Hardware not present)Bluetooth Device (Personal Area Network) = Bluetooth Network Connection (Media disconnected)Microsoft Virtual Wi. Fi Miniport Adapter = Wireless Network Connection 2 (Media disconnected)Microsoft Virtual Wi. Fi Miniport Adapter = Wireless Network Connection 3 (Media disconnected)# - -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -# IPv. Configuration# - -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -pushd interface ipv. End of IPv. 4 configuration. Windows IP Configuration Host Name . Rob- PCPrimary Dns Suffix . Node Type . . . . Hybrid. IP Routing Enabled. No. WINS Proxy Enabled. No. DNS Suffix Search List. Wireless LAN adapter Wireless Network Connection 3: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft Virtual Wi. Fi Miniport Adapter #2. Physical Address. FA- 1. 6- 5. 4- 9. D3- B4. DHCP Enabled. Yes. Autoconfiguration Enabled . Yes. Wireless LAN adapter Wireless Network Connection 2: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft Virtual Wi. Fi Miniport Adapter. Physical Address. FA- 1. 6- 5. 4- 9. D3- B3. DHCP Enabled. Yes. Autoconfiguration Enabled . Yes. Wireless LAN adapter Wireless Network Connection: Connection- specific DNS Suffix . Description . . . Intel® Dual Band Wireless- AC 7. Physical Address. F8- 1. 6- 5. 4- 9. D3- B3. DHCP Enabled. Yes. Autoconfiguration Enabled . Yes. Link- local IPv. Address . . . . . Preferred)IPv. 4 Address. Preferred)Subnet Mask . Lease Obtained. . Friday, February 2. AMLease Expires . Saturday, February 2. AMDefault Gateway . DHCP Server . . . DHCPv. 6 IAID . . DHCPv. 6 Client DUID. B- 8. F- 0. 7- D0- EC- F4- BB- 6. E- 2. 4DNS Servers . Net. BIOS over Tcpip. Enabled. Ethernet adapter Bluetooth Network Connection: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Bluetooth Device (Personal Area Network)Physical Address. F8- 1. 6- 5. 4- 9. D3- B7. DHCP Enabled. Yes. Autoconfiguration Enabled . Yes. Tunnel adapter isatap. Media State . . . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft ISATAP Adapter. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. Tunnel adapter Local Area Connection* 1. Media State . . . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft 6to. 4 Adapter. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. Tunnel adapter Teredo Tunneling Pseudo- Interface: Connection- specific DNS Suffix . Description . . . Teredo Tunneling Pseudo- Interface. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. IPv. 6 Address. Preferred)Link- local IPv. Address . . . . . Preferred)Default Gateway . Net. BIOS over Tcpip. Disabled. Tunnel adapter isatap.{4. F5. 22- 5. 48. 7- 4. FBA- A0. B3- D9. FC9. B0. 7E6. C}: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft ISATAP Adapter #2. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. Tunnel adapter isatap.{CCB7. EE6. 4- D8. 4F- 4. E- AF9. 5- 5. 09. CD0}: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft ISATAP Adapter #3. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. Tunnel adapter isatap.{D1. FBEED- 7. B5. B- 4. C4. 1- 8. 3B8- DC7. C3. 2AB4. 98. 7}: Media State . Media disconnected. Connection- specific DNS Suffix . Description . . . Microsoft ISATAP Adapter #4. Physical Address. E0. DHCP Enabled. No. Autoconfiguration Enabled . Yes. Server: ip. Address: 6. 8. 1. Name: google. com. Addresses: 2. 60. Pinging google. com [7. Reply from 7. 4. 1. TTL=5. 1Reply from 7. TTL=5. 1Ping statistics for 7. Packets: Sent = 2, Received = 2, Lost = 0 (0% loss),Approximate round trip times in milli- seconds: Minimum = 8. Maximum = 8. 3ms, Average = 8. Server: ip. 68- 1. Address: 6. 8. 1. Name: yahoo. com. Addresses: 2. 06. Pinging yahoo. com [9. Reply from 9. 8. 1. TTL=5. 2Reply from 9. TTL=5. 2Ping statistics for 9. Packets: Sent = 2, Received = 2, Lost = 0 (0% loss),Approximate round trip times in milli- seconds: Minimum = 1. Maximum = 1. 26ms, Average = 1. Pinging 1. 27. 0. Reply from 1. 27. TTL=1. 28. Reply from 1. TTL=1. 28. Ping statistics for 1. Packets: Sent = 2, Received = 2, Lost = 0 (0% loss),Approximate round trip times in milli- seconds: Minimum = 0ms, Maximum = 0ms, Average = 0ms===========================================================================Interface List. Microsoft Virtual Wi. Fi Miniport Adapter #2. Microsoft Virtual Wi. Fi Miniport Adapter. Intel® Dual Band Wireless- AC 7. Bluetooth Device (Personal Area Network)1.............. Software Loopback Interface 1. Microsoft ISATAP Adapter. Microsoft 6to. 4 Adapter. Teredo Tunneling Pseudo- Interface. Microsoft ISATAP Adapter #2. Microsoft ISATAP Adapter #3. Microsoft ISATAP Adapter #4===========================================================================IPv. Route Table===========================================================================Active Routes: Network Destination Netmask Gateway Interface Metric. On- link 1. On- link 1. On- link 1. On- link 1. 92. On- link 1. 92. On- link 1. 92. On- link 1. On- link 1. 92. On- link 1. On- link 1. 92. Persistent Routes: None. IPv. 6 Route Table===========================================================================Active Routes: If Metric Network Destination Gateway. On- link. 1 3. On- link. 15 5. On- link. 15 3. On- link. 20 2. On- link. 15 3. On- link. 15 3. On- link. 20 2. On- link. 1 3. On- link. 15 3. On- link. 20 2. On- link===========================================================================Persistent Routes: None========================= Winsock entries =====================================Catalog. C: \Windows\Sys. WOW6. NLAapi. dll [5. 22. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)Catalog. C: \Windows\Sys. WOW6. Microsoft Corporation)x. Catalog. 5 0. 1 C: \Windows\System. NLAapi. dll [7. 06. Microsoft Corporation)x. Catalog. 5 0. 2 C: \Windows\System. Microsoft Corporation)x. Catalog. 5 0. 3 C: \Windows\System. Microsoft Corporation)x. Catalog. 5 0. 4 C: \Windows\System. Microsoft Corporation)x. Catalog. 5 0. 5 C: \Windows\System. Microsoft Corporation)x. Catalog. 5 0. 6 C: \Windows\System. Microsoft Corporation)x. Catalog. 5 0. 7 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 1 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 2 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 3 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 4 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 5 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 6 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 7 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 8 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 0. 9 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 1. 0 C: \Windows\System. Microsoft Corporation)x. Catalog. 9 1. 1 C: \Windows\System. Microsoft Corporation)========================= Event log errors: ===============================Application errors: ==================Error: (0. AM) (Source: Application Error) (User: )Description: Faulting application name: SBAMTray. Faulting module name: SBAMTray. Exception code: 0xc. Fault offset: 0x. Faulting process id: 0x. Faulting application start time: 0x. SBAMTray. exe. 0Faulting application path: SBAMTray. Faulting module path: SBAMTray. Report Id: SBAMTray. Error: (0. 2/2. 7/2. AM) (Source: Win. Mgmt) (User: )Description: //./root/CIMV2. SELECT * FROM __Instance. Modification. Event WITHIN 6. WHERE Target. Instance ISA "Win. Processor" AND Target. Instance. Load. Percentage > 9. Error: (0. 2/2. 6/2. AM) (Source: VIPRE Internet Security) (User: )Description: ERROR 5. T0. 7: 1. 5: 4. 0. Social. Watch. Authentication. Facebook. Provider Social. Watch. Scanner. Providers. Facebook. Facebook. Provider.< Authenticate. And. Scan> b__1: System. Invalid. Operation. Exception: Unable to connect to Facebook to verify access token. Internet connection not avaialble. Social. Watch. Authentication. Facebook. Provider. Validate. Access. Token(Boolean perform. Full. Check)at Social. Watch. Authentication. Facebook. Provider. Authenticate(Boolean require. Credentials)at Social. Watch. Scanner. Providers. Facebook. Facebook. Provider.< > c__Display. Class. 5.< Authenticate. Microcontrollers (MCUs)Proven, Innovative Microcontroller Technologies with Low Power and High Performance. Atmel® microcontrollers (MCUs) deliver a rich blend of efficient integrated designs, proven technology, and groundbreaking innovation that is ideal for today's smart, connected products. In this era of the Internet of Things (Io. T), microcontrollers comprise a key technology that fuels machine- to- machine (M2. M) communications. Building on decades of experience and industry leadership, Atmel offers proven architectures that are optimized for low power, high- speed connectivity, optimal data bandwidth, and rich interface support. By using our wide variety of configuration options, developers can devise complete system solutions for all kinds of applications. Atmel microcontrollers can also support seamless integration of capacitive touch technology to implement buttons, sliders, and wheels (BSW). In addition, Atmel MCUs deliver wireless and security support. No matter what your market or device, Atmel offers a compelling solution that is tailored to your needs—today and tomorrow. Atmel AVR 8- and 3. Microcontrollers —. Atmel AVR® 8- and 3. Title: Last Update # Downloads # Description: Download Link: GQ GMC-320 Plus V4 Soft Geiger Counter Re4.0: Feb-2015: 5984: GQ GMC-320 Plus Soft Geiger Counter is a. Atmel® microcontrollers (MCUs) deliver a rich blend of efficient integrated designs, proven technology, and groundbreaking innovation that is ideal for today's smart. A supplier for all electronics instruments,power supply, rework station,EPROM USB universal programmer products. All products are cost for value, such as Atmel, AVR. Atmel USB DFU Programmer download. Atmel USB DFU Programmer 2015-02-04 23:14:20 free download. Atmel USB DFU Programmer A command-line programmer for Atmel. MCUs deliver a unique combination of performance, power efficiency, and design flexibility. Optimized to speed time to market—and easily adapt to new ones - they are based on the industry's most code- efficient architecture for C and assembly programming. The extensive AVR portfolio, combined with the seamlessly- integrated Atmel Studio development platform, makes it easy to reuse knowledge when improving your products and expanding to new markets. Atmel® | SMART ARM Processor Based Microcontrollers —. In addition to a wide range of industry- leading ARM9. ARM7™ and ARM® Cortex®- M0+, M3 and M4—based Flash MCUs, Atmel offers Atmel® | SMART ARM Cortex- A5- based MPU solutions. This broad portfolio of 3. ARM- based solutions can meet the needs of virtually any device or marketplace. Flexible and highly integrated, Atmel | SMART ARM processor based solutions are designed to optimize system control, wired and wireless connectivity, user interface management, low power, and ease of use. Architecture Microcontrollers —. The rich Atmel portfolio of MCUs based on the 8. Developers can choose from 8- bit microcontrollers based on the powerful, low- power single- cycle AT8. LP core, as well as MCS- 5. Flash memory technologies. Building on a Long Tradition of Innovation. Atmel is a global industry leader in the design and manufacture of microcontrollers and related system solutions, including capacitive touch solutions, advanced logic, mixed- signal, nonvolatile memory, and radio frequency (RF) components. About The Programmer USBasp is a USB in-circuit programmer for Atmel AVR controllers. It simply consists of an ATMega48 and ATMega88 an ATMega8 and a couple of.
Leveraging one of the industry's broadest intellectual property technology portfolios and backed by a comprehensive ecosystem, Atmel MCU products enable designers to develop complete solutions for industrial, consumer, security, communications, computing, and automotive markets. Developers have the option of combining Atmel microcontrollers with industry- leading Atmel touch technology. Atmel technology for touchscreens and fixed- function buttons, sliders and wheels provides a rich user experience with unparalleled performance, while minimizing power consumption. The Atmel QTouch® Suite provides tools for implementing Atmel buttons, sliders and wheels technology into a variety of applications. You can also combine your microcontroller designs with Atmel Crypto. Authentication™ devices for an added level of security against hackers and cloners. Applications for Atmel Microcontrollers. |
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