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70-544 TS: Ms Virtual Earth 6.0, Application Development

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70-544 exam Dumps Source : TS: Ms Virtual Earth 6.0, Application Development

Test Code : 70-544
Test designation : TS: Ms Virtual Earth 6.0, Application Development
Vendor designation : Microsoft
braindumps : 134 real Questions

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Microsoft TS: Ms Virtual Earth

Aches & Pains Map suggests the position It Hurts: Yahoo-Microsoft and Google | killexams.com real Questions and Pass4sure dumps

achespainsmap.jpg

The record of search engines is shrinking. Yahoo-Microsoft? The most well-liked topic.

Search engine market share? The fulcrum of the antagonistic MS-Yahoo bid — and one of the crucial time-honored searches in Google, Yahoo, MSN, and Ask.

On super Tuesday, they discovered a routine to celebrate Presidential primaries on a search engine: a mashup of Google Earth and twitter / twittervision, with a Google device and iGoogle thrown in for decent measure. nonetheless, key phrase Meta Tag, meta tags, and meta key words stay their stock in exchange here at Search Engine Watch.

So when Gary cost, Ask.com director of online tips supplies and editor, ResourceShelf and DocuTicker, pinged us with a climate Channel-MSN virtual Earth mashup, they couldn’t face up to presenting a fresh perspective on the Microsoft-Yahoo antagonistic bid.

The Aches and Pains Map on weather.com indicates Google emotion no twinge from the MicroHoo hoo-hah.

Yahoo investors and employees — within the yellow area – don’t appear to be suffering in Silicon Valley.

In distinction, Microsoft – rebuffed by using Yahoo – appears to plagued by exorbitant stages of aches and pains. The Microsoft virtual Earth map of aches and pains (a Google Earth competitor) shows Redmond essentially in the red zone.

The Aches and Pains Index map graphically depicts areas of better or reduce stages of weather-related ache. places in the orange regions can prognosticate above ordinary ranges of aches and pains. Areas shaded in yellow will fill ordinary tiers, and gray regions could be under commonplace.

So if you don’t enjoy the climate, wait unless tomorrow. It’ll exchange, identical to Google’s partake of searches – and there’s nevertheless nothing you can consequence about it.

wish to dwell on accurate of the newest search tendencies? Get excellent insights and word from their search specialists.

need to dwell on birthright of the latest search developments? Get properly insights and information from their search experts. connected reading

Gillette's “The ideal a person can be” advert sparked a lot of insurance. The precise query is, "What fill an impact on did that video fill on search site visitors?" The tendencies due to the fact that.

four predictions on the SERP of the next day from the VP of industry Insights at Yext. What they can expect, and what to consequence nowadays to Put together.

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How did the 2018 SERP adjustments fill an consequence on organic listings? more importantly, how if you betide to react? The year of updates in evaluate, and suggestions to reply to every.


MSN goes back to the future: novel look, Bing apps are now MSN apps | killexams.com real Questions and Pass4sure dumps

What comes around, goes round.

Plus ça metamorphosis, plus c’est la même chose.

All Of This Has came about before and may occur again.

Microsoft has simply introduced a brand novel appear and a bit of of a brand novel path for MSN, and a minute of a rebranding for some of its most widely wide-spread apps. the brand novel MSN, attainable now as a preview and rolling out over the next few weeks, points a completely responsive web site, tighter integration with Microsoft services enjoy Outlook.com, OneDrive, and Skype, legal degree integration with fb and Twitter, and a bolt to content material curation with some one thousand partners on board. Microsoft might be longer be creating its personal content material for MSN, but should be rebranding the Bing apps (food and drink, trip, climate, etc) over to MSN.

090814-0753-MSNgoesback1  word

if you be watchful the entire routine lower back to 2005, MSN became Microsoft’s main buyer brand. There become MSN Search, MSN cash, MSN digital Earth (an early 3D version of what grew to become Bing Maps), and even MSN Soapbox, Microsoft’s failed application at a “YouTube killer”. Of course there were MSN Hotmail and MSN Messenger, too, and MSN in some elements of the world was very nearly a verb. that bar null changed with the rebrand to home windows reside (neatly, it didn’t *all* exchange, as some capabilities, together with the MSN.com website, stayed as MSN. yes, it become perplexing), and MSN Search became are living Search grew to be home windows live Search grew to be Bing, and Steve Ballmer tried to trade MSN to Yahoo! in recur for its search company, unless Marissa Mayer pulled the plug on that.

Anyway, now we’re returned to rectangular one once again, and it’s no longer a completely wicked element. the novel MSN isn’t mainly creative (it shares the equal “infocard” look to be and the frequent photo sliders common on many modern web sites), nevertheless it’s fully responsive, and Microsoft is hoping that you’ll are looking to partake your services across your instruments and MSN.com. gawk up a recipe in foods and drinks or a stock in money, and that information will comply with you throughout not most effectual the entire devices you utilize, however on MSN.com, too.

Bing is featured entrance and core, it’s lucid that the quest undergo isn’t being rebranded, just the apps, and whereas it’s a minute bit jarring to fill the search box open up in the event you Go to get employ of it, you fetch a full on domestic web page picture and a few trending searches when it does:

090814-0753-MSNgoesback2  word

For the longest time, Microsoft has acted enjoy it just doesn’t fairly be watchful of what to consequence with MSN, primarily under Steve Ballmer. novel CEO Satya Nadella, who ran the online features industry for a time, seems to at least be taking the bull through the horns and actually stirring ahead with MSN. Will this be the final rebrand for MSN and Microsoft’s on-line carrier? probably now not, we’ve viewed bar null this before, however anyway this time it appears to bar null get slightly extra feel.

What consequence you consider? Will you omit Bing-branded apps? Will you pay more attention to MSN.com? Or is that this bar null too a superior deal déjà vu, in bar null places again?


Microsoft’s novel Bing—The ‘choice Engine’ | killexams.com real Questions and Pass4sure dumps

Microsoft’s novel Bing—The ‘choice Engine’ via Greg R. NotessPosted On June 8, 2009

After beginning with MSN Search as a designation and then stirring to the absolutely panned are living Search identify, Microsoft is making yet an additional try to garner a enhanced partake of the search (and connected promoting) market. it's relaunching its search engine below the novel designation of Bing (www.bing.com) and calling it a "choice engine." constructing upon an dreadful lot know-how from the ancient reside Search, Bing has added a pair of novel aspects to its web search and connected databases.

Stefan Weitz, a director on the Microsoft Search group, describes the development system: "[W]e cherish that americans narrate us 4 issues that any engine has to must be significant: its relevance, its pace, its previews, its multi-media. ... They stronger their indexing capabilities. They more desirable their crawling capabilities. They basically better performance to get the thing very, very quick. They truly invested an dreadful lot in precisely getting the core of the engine to be particularly crucial out of the gate." So let's fill a gawk at some of what's novel and different.

web Search facets

On the main Bing search page, lots of the historic, advanced live Search aspects are nonetheless accessible, and firstly look, the quest consequences can gawk very akin to reside Search. The introductory disclose has a brand novel picture day by day with various Hot spots that link into information in regards to the photograph's theme by the employ of quite a few Bing searches. novel within the backside-right corner is an arrow to scroll returned via outdated days' photographs of the day.

Bing's search consequences pages fill the most novel facets: the explore Pane, internet companies, and Previews. the most obtrusive is the brand novel explore Pane on the left-hand aspect of the hunt consequences. The Microsoft press liberate calls this "a dynamically significant set of navigation and search equipment." reckoning on the hunt, Bing's ascertain Pane can encompass internet groups for limiting, extra databases, related searches, and a session search heritage. the search tradition suggests probably the most fresh searches for that browser session "with a optimum session time of forty eight hours" in keeping with the Bing assist files. tradition can furthermore be grew to become off as well, or, the employ of Silverlight, Bing's retailer & partake lets searchers maintain their histories to their bills and partake the searches by means of e-mail, fb, home windows reside, and Microsoft's free online storage device, SkyDrive.

The internet groups limits display up at the accurate of the explore Pane for certain common topic matters, and they deliver a few circumscribe alternate options for the bigger outcomes set. as an instance, a search on british library (www.bing.com/search?q=british+library) suggests net organizations for Jobs, shop, Coupons, Tickets, and tours. not only are the internet groups shown within the explore Pane but the actual search results are broken out with the aid of these net organizations. After the primary five commonplace net outcomes on the page comes an orange internet neighborhood heading for "British Library Jobs," adopted by route of three jobs links; then, a heading for "British Library store" is listed, adopted by three store links, and so on, with each and every net group getting a heading and three hyperlinks. hence, even with out increasing the default number of search results to more than 10, for queries which fill web companies, extra consequences are displayed and Bing categorizes the effects. besides web groups, Bing links to outcomes in different databases similar to photographs or movies.

On the correct-hand side of the effects monitor, Bing adds extra novel tips. Hover the cursor over a list and appear to the appropriate. A small vertical line with an orange dot within the middle appears. Hover immediate that icon, and Bing shows a more in-depth extract, emphasizing information pulled from the web page itself. other search engines enjoy google and yahoo comparable to inquire of disclose graphic screen pictures on a mouseover, however Bing as an alternative makes a speciality of textual content material. As Danny Sullivan writes (http://searchengineland.com/meet-bing-microsofts-new-search-engine-20093), "or not it's a nice feature that confidently will fetch used, though it's handy to omit. it could actually can assist you more advantageous near to a conclusion in case you necessity to click via and avoid wasting time." These hover previews can even consist of profound hyperlinks that consequence not demonstrate up within the measure results checklist.

Deep links, Microsoft's identify for subsite links that display up beneath a homepage effect, were improved to display up to eight. (Google calls these website links while Yahoo! calls them short links.) in line with Weitz, "Deep hyperlinks are one of the crucial properly drivers of user satisfaction on the quest web page, and they invested a lot to multiply the best and number of websites that fill profound hyperlinks."

For some websites, Bing can display additional info. A search on nyt brings up The spacious apple times' web page as the superior effect, with eight profound links plus the client carrier cell number and a "Search within nytimes.com" search box. while Google often suggests the quest within field, the disclose of a customer carrier cellphone quantity is an addition no longer yet purchasable elsewhere.

one more novel function is the gold measure in shape, which highlights some No. 1 search consequences. For years search engines fill positioned the evident reply for many navigation queries at the rectify of the outcomes, but Bing's most excellent in shape goes a bit of extra. In some situations, the foremost sound is followed by route of the leisure of the search consequences. In others, such as nyt, only 1 consequence is displayed as most advantageous match together with a hyperlink to "seek different outcomes containing" the question.

other Databases

Bing additionally emphasizes different databases past the basic web search. partially, these extra databases are what Microsoft is establishing to assist with the "resolution engine" a partake of Bing. Weitz describes how they "appeared at the four very typical units of tasks-browsing and local, trip and fitness-and these are assignment areas which fill ... very penniless satisfaction nowadays with engines enjoy google." So the Go back and forth section makes employ of Microsoft's Farecast technology whereas local integrates records from numerous sources. in keeping with Weitz, opinion-rating technology is used in each the Go back and forth and shopping sections to summarize and categorize stories into professionals and cons.

fitness isn't a separately identified database, however the fitness search effects are caused with the aid of browsing medical topic matters similar to edema. The web groups that are caused by route of fitness searches embrace themes such as Articles, indicators, medication, and Care. The Articles community brings up longer content material from sources such because the Mayo health center, Medline Plus, MD consult, and other vetted sources.

different databases proceed to embrace wonderful or at least useful options to an identical offerings at Google and Yahoo!. reside Maps, furthermore called virtual Earth, is now just Bing Maps. It continues to present fowl's-eye imagery, a conclusion partway between Google's highway-stage view and aerial/satellite imagery. Bing photograph Search has the helpful proceed-scroll the are living image Search provided. And the video search content material, even if built-in into a daily net search or direct on the Video Search vertical, has embedded videos that a mouseover will start enjoying.

Will It Work?

whereas neither Google nor Yahoo! can credit score their success solely on their slightly goofy sounding names, a search engine wants a transparent company. And for the primary time, Microsoft may furthermore fill found one with Bing. with the aid of combining the novel brand with novel features, a focus on endured growth, and a brand novel advertising crusade, Bing can furthermore as a minimum start to raise market partake and advertising bucks. In its first week, one internet statistics company, StatCounter (http://gs.statcounter.com/#search_engine-US-each day-20090529-20090604), found that on June 4, Bing surpassed Yahoo! site visitors. despite the fact, in a more targeted analysis gathering information from several sources, Greg Sterling notes that "Bing has got a probably spacious site visitors bump compared to live Search/MSN given that launch and rollout of the marketing push on tv and on-line. youngsters Bing has (to date) now not surpassed Yahoo for the number two spot" (http://searchengineland.com/did-bing-leapfrog-yahoo-no longer-precisely-20566).

one more analyst, Charlene Li, blogs (http://blog.altimetergroup.com/2009/05/microsoft-bings-center of attention-on-selections-is-wise----however-no longer-a-google-killer.html) that Bing does neatly "in particular in 4 key classes-searching, travel, local, and health. ... Why these categories? neatly, they are those that generate probably the most focused revenues from advertising, those the position americans deserve to get complex, multi-step choices every day." She emphasizes Bing as a election engine. Li continues, "Microsoft does not are looking to beat Google in terms of displacing it from [its] lofty 70% predominant partake of US searches. somewhat, Microsoft is out to win more users in the most profitable classes the position advertisers necessity to influence resolution making. here is a focused strategy, and a smart one for (far-off) #3 player Microsoft to pursue. ..."

Microsoft has handiest been operating its personal search engine with its own database for the understanding that February 2005. Now on its third designation in only a minute longer than 4 years, Bing is eventually starting to proffer a greater compelling intent to employ a Microsoft search engine.


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Global PDB File Layout | killexams.com real questions and Pass4sure dumps

In my Windows 2000 engage [2], detailed information about the extraction of public symbols is found, along with plenty of reusable source code. In this article, I will cover the more common task of parsing a PDB file and dissecting it into its parts without regarding the contents of its various streams. The sample application presented here is a simple Win32 console mode program that expects the path of a PDB file, and stores its constituents in part files. Depending on the option switches specified on the command line, the following information can be extracted:

  • The PDB file header, containing common information about the file

  • The allocation bit table, which specifies what parts of the file are in use

  • The root stream, containing specific information about bar null data streams

  • All data streams listed in the root stream

  • The most basic structural property of a PDB file is its subdivision into pages of equal size. The most frequently used page size is 1KB (1,024 bytes), but my research has revealed that 2K and 4K pages are legal as well. (You can verify this by examining how Microsoft's dbghelp.dll processes PDB files.) A PDB stream is a sequence of file pages that contains coherent information. The most essential property of a stream is that its pages can be located anywhere in the file in whimsical order.

    When a stream is read or written, a stream directory is amenable for telling the application which pages necessity to be accessed in which order. This directory is itself stored in a stream called the root stream. Additionally, an embedded Allocation Bit Table keeps track of used and unused pages. This table is necessary as soon as "holes" appear in the PDB file due to the rearrangement of streams. If a stream is rewritten to the finish of the PDB file, releasing the pages it occupied before, the allocation bit table reflects that the previous pages are free while the novel pages are in use. This scheme is borrowed from simple operating systems such as MS-DOS with its fleshy file system, in which a similar table specifies which disk sectors are allocated to files.

    Figure 1 shows the typical basic layouts of a PDB file in 1-KB, 2-KB, and 4-KB mode. Which page size should be used depends on the data to be stored in the streams. If the page size increases, the allocation bit table and the root stream become smaller. On the other hand, a larger page size results in more page overhang; that is, more file bytes are wasted if the stream size isn't an exact multiple of the page size. The same problem occurs in file systems, in which the disk sector size must be chosen properly to avoid exorbitant sector overhang. Most PDB files, such as the Windows 2000 symbol files and the debugging information generated by Microsoft Visual C/C++ 6.0, employ the 1-KB scheme, as depicted on the left side of design 1.

    Figure 1 Typical PDB file layouts.

    In 1-KB page mode, a maximum of 64MB can be stored in the PDB file, which simply results from multiplying the number of allocation bits by the page size. As I will display in a moment, PDB page numbers are stored as zero-based, 16-bit quantities. Therefore, the allocation bit table will never comprise more than 0[ts]10000 bits (8KB).

    The PDB header always occupies the first file page, and is followed by one or more pages containing the allocation bits. The structural definition of the header is shown in Listing 1. The first 44 bytes get up the ID string PDB_SIGNATURE_200, specifying the file type and version. At the time of this writing, the most recent version is 2.00, and this is the version used by the Windows 2000 symbol files and the Visual C/C++ debugging information. The dPageSize member indicates the page size applying to bar null pages in the file, and wStartPage is the zero-based page number of the first data page following the allocation bits. The size of the allocation bit table can always be computed by subtracting 1 from wStartPage (for the header page), and multiplying the result by dPageSize. The wFilePages member specifies the number of pages stored in the PDB file, and should always match the file size in bytes divided by the page size.

    Listing 1PDB File Header #define PDB_SIGNATURE_200 "Microsoft C/C++ program database 2.00\r\n\x1AJG\0" #define PDB_SIGNATURE_ 44 // size of signature (bytes) // ----------------------------------------------------------------- typedef struct _PDB_HEADER { BYTE abSignature [PDB_SIGNATURE_]; // PDB_SIGNATURE_200 DWORD dPageSize; // 0x0400, 0x0800, 0x1000 WORD wStartPage; // 0x0009, 0x0005, 0x0002 WORD wFilePages; // file size / dPageSize PDB_STREAM RootStream; // stream directory WORD awRootPages []; // pages containing PDB_ROOT } PDB_HEADER, *PPDB_HEADER, **PPPDB_HEADER;

    The RootStream member is another undocumented structure of type PDB_STREAM, as defined in Listing 2. This structure appears wherever a stream is defined. Here, it refers to the root stream that contains the sizes and locations of the data streams within the file. In a moment, they will revisit it when walking down the list of data streams in the root stream. Only the dStreamSize member of the PDB_STREAM structures is of interest when dealing with a PDB file on disk. The pwStreamPages member can obviously be used as a scratch pad by PDB read/write utilities that handle PDB information in virtual memory. Simply ignore this value because it might be a bogus address that was convincing once upon a time.

    The RootStream structure is immediately followed by an array of 16-bit page numbers used by the root stream. Most PDB root streams I fill seen so far don't exceed one page, so the awRootPages[] array usually contains a sole entry only. One exception is the extraordinary big symbol file of ntoskrnl.exe, which has root stream that spans two pages.

    Listing 2 The Basic PDB Stream Structure typedef struct _PDB_STREAM { DWORD dStreamSize; // in bytes, -1 = free stream PWORD pwStreamPages; // array of page numbers } PDB_STREAM, *PPDB_STREAM, **PPPDB_STREAM;

    The allocation bits don't require much explanation. Each bit is associated with an individual page, and a value of 1 means that the corresponding page is currently available. The bits within a byte are ordered from least-significant to most-significant. That is, bit #0 of byte #0 refers to page #0, bit #1 of byte #0 to page #1, and so on. Note that the allocation bits of an on-disk PDB image consequence not necessarily reflect the status of the stored data stream pages. If you examine a pair of Windows 2000 symbol files, you will find out quickly that some data stream pages are located in pages that are marked free, and some pages marked in-use are not partake of any stream. So, the allocation table is probably rebuilt by PDB readers/writers from the data in the root stream, and has meaningful content only while loaded into virtual memory.


    M series Frequently Asked Questions | killexams.com real questions and Pass4sure dumps

    The following are the most frequently asked questions about National Instruments M series data acquisition devices.

    Content

    1.   General

    Q: What are the features of NI M series devices?Q: What makes an M series “multifunction”?Q: What different M series devices are available and what are their specifications?Q: How consequence M series devices compare with legacy E series devices?Q: Can M series devices be used as drop-in replacements for existing E series devices?Q: For which platforms and buses are M series available?

    2.    Performance

    Q: What is the NI-STC 2 system timing controller?Q: Why are there six DMA channels on M series devices?Q: What is the RTSI bus and how does it work?Q: What is a angle lock loop (PLL) and how does it work?Q: What is NI signal streaming?

    3.     Analog Input

    Q: How is calibration performed on M series devices?Q: What is the NI-PGIA 2 amplifier?Q: What is temperature-drift?Q: What are programmable low-pass filters and how consequence they work?Q: What is isolation?Q: What signal conditioning devices are compatible with M series devices for sensor measurements?

    4.     Analog Output

    Q: How consequence multiple analog output ranges ameliorate accuracy?Q: What are programmable DC offsets for analog outputs?

    5.     Digital I/O and Counter/Timers

    Q: What is correlated digital  I/O and how does it work?Q: What is industrial digital I/O?Q: What are programmable power-up states?Q: What is the inequity between software-timed and hardware-timed digital I/O?Q: What is the benefit of an onboard 80 MHz clock?Q: How consequence 32-bit counters compare to lower resolution counters?Q: Why is filtering Important on counter/timer input lines?

    6.      Software

    Q: What application software is provided with M series devices?Q: What driver software is provided with M series devices?Q: What operating systems travail with M Series?Q: Which application development environments travail with M Series?Q: consequence I necessity to get changes to my code if I supplant an E series device with an M series device?Q: Which real-time tools travail with M Series?

    7.      Service and Support

    Q: How consequence I fetch technical advocate for M series devices?Q: What training is available for M series devices?Q: What options are available for OEM customers?Q: What warranty is provided with M series devices?

    General 

    Q: What are the features of NI M series devices?A: National Instruments M series multifunction data acquisition (DAQ) combines analog input, analog output, digital I/O, and counter/timers on a sole device. With new, innovative analog and digital designs, M series devices set a novel measure for performance, I/O capability, safety, and value. NI-MCal technology ensures accurate analog measurements at bar null signal ranges by compensating for nonlinearity error during self-calibration. The NI-PGIA 2 custom instrumentation class amplifier provides legal 16-bit resolution at 1 MS/s scan rates and low settling times. The NI-STC 2 system timing controller implements timing and synchronization between onboard subsystems and other devices in the same system. And, with novel high-speed digital isolators, industrial M series devices proffer increased accuracy and safety by removing ground loops and rejecting high common-mode voltages.

    * For information about the novel timing controller and NI-STC 2 mention to the analog input section.* For information about the novel calibration scheme mention to the analog input section.* For information about the improved accuracy mention to the analog output section.

    Q:What makes an M series “multifunction”?A: A sole M series DAQ device can provide the functionality of up to six different instruments: Digital multimeter (DMM), oscilloscope, whimsical waveform generator, high-speed digital I/O device, and counter/timer device for frequency measurements.  M series fill up to 18-bit analog inputs that provide more than 5.5 digits of resolution for DC measurements. For dynamic measurements, M series devices can sample at 1.25 million samples per second at 16-bit resolution (1 MS/s when scanning multiple channels). Digital signals can be clocked in and out with an onboard or external clock at up to 10 MHz, eliminating the necessity for a dedicated high-speed digital I/O device. Correlated DIO enables digital and analog functions to be synchronized with hardware-timed precision. With up to six DMA channels (PCI/PXI) and up to 4 NI signal streaming channels (USB), bar null of these functions can be performed simultaneously.  If a system requires additional functionality, an M series device can be synchronized with other PCI or PXI instruments.

    Q:What different M series devices are available and what are their specifications?

    A: M series includes 5 families of devices: low-cost, high-performance, high-accuracy and industrial.  bar null M series devices embrace 32-bit counters which operate at 80 MHz.  Table 1 outlines family specific information.

     

    Family

    Analog Input

    Analog Output

    Digital I/O

    Platforms

    Signal Conditioning

    Speed

    Resolution

    Speed

    Resolution

    Low-Cost

    Up to 250 kS/s

    16-bit

    833 kS/s

    16-bit

    1MHz, TTL, CMOS

    USB, PCI, PXI

    N/A

    Bus-Powered

    Up to 400 KS/s

    16-bit

    250 KS/s

    16-bit

    Static, TTL, CMOS

    USB

    N/A**

    High-Speed

    Up to 1.25 MS/s

    16-bit (1MS/s scanning)

    2.8 MS/s

    16-bit

    10 MHz*, TTL, CMOS

    USB, PCI, PXI

    N/A

    High-Accuracy

    Up to 625 kS/s

    18-bit (500 kS/s scanning)

    2.8 MS/s

    18-bit

    10 MHz*, TTL, CMOS

    PCI, PXI

    Low-pass filter

    Industrial

    Up to 250 kS/s

    16-bit

    Up to 250 kS/s

    16-bit

    TTL, CMOS, 24V

    PCI, PXI

    Isolation

                                                           Table 1. M series Device Families

    *USB devices fill a maximum digital I/O rate of 1 MHz.*Please behold the analog input section for compatible signal conditioning platforms

    Q: How consequence M series devices compare with legacy E series devices?

    A: The following table itemizes the differences and improvements between E series and M series DAQ devices:

     

    Feature

    M Series

    E Series

    Analog Input

    Analog Input Channels

    8, 16, 32, 80

    16 or 64

    Sampling Rate

    Up to 1.25 MS/s (16-bit)

    Up to 1.25 MS/s (12-bit)

    Input Resolution

    16 or 18-bit

    12 or 16-bit

    Input Signal Type

    Current or Voltage

    Voltage

    Calibration Method

    NI-MCal (all ranges)

    Linear, 2-point (single range)

    Calibration Interval

    1 or 2 years

    1 year

    Programmable Low-pass Input Filters

    Yes1

    No

    Analog Output

    Analog Outputs Channels

    0, 2 or 4

    0 or 2

    Analog Output Rate

    up to 2.8 MS/s, 16-bit

    up to 333 kS/s, 16-bit

    Analog Output Resolution

    16-bit

    12 or 16-bit

    Analog Output Ranges

    Programmable per channel1

    ±10 V, 0-10 V

    Analog Output Offset

    Programmable per channel1

    0 V

    Digital I/O

    Digital I/O Lines

    24 or 48

    8 or 32

    Digital I/O Rate

    Software timed or up to 10MHz

    software-timed

    Digital Levels

    TTL/CMOS or 24V2

    TTL/CMOS

    Correlated DIO

    Yes

    No

    Digital Line Protection

    Improved over/under voltage (±20 V), over current protection

    -

    Counter

    Counter/Timers

    2, 32-bit

    2, 24-bit

    Counter Timebase

    80 MHz

    20 MHz

    Quadrature Encoder Inputs

    Yes

    No

    Counter Debouncing Filters

    Programmable per line

    None

    System

    Clock Synchronization

    PLL, RTSI

    RTSI

    DMA Channels

    63

    1 or 3

    Connector Type

    VHDCI (high density) or 37- pin DSUB

    SCSI II

    Isolation

    60 VDC continuous bank isolation, 1,400 Vrms/1,950 VDC channel-to-bus isolation, withstand for 5 seconds2

    -

                             Table 2. Functional Differences Between M series and E series DAQ Devices

    1Available on high Accuracy M series devices2 Available on Industrial M series devices3 M series USB devices fill Signal Streaming technology.  tickle behold the performance section for more information on signal streaming technology.

    Q: Can M series devices be used as drop-in replacements for existing E series devices?

    A: M series devices maintain backward compatibility with the E series accessories and terminal blocks by retaining the same 68-pin format. The connectors on M series devices are different than those on E series devices, but the pin import and pin mapping are similar, so you can employ M series devices without rewiring or refixturing your existing test system. NI offers low-cost cables to directly connect M series devices to existing terminal obstruct and signal conditioning accessories. For applications using legacy E series DAQ devices, an M series device can be used with existing accessories to upgrade the speed and accuracy of the system.  Cables designed for M series devices furthermore provide better shielding than E series cables.

    * For information about software compatibility, mention to the software section of this document.

    Q: For which platforms and buses are M series available?

    A: M series devices are available in 32-bit, 33 MHz universal PCI, PCIe, PXI, PXIe, CompactPCI , USB 1.1 and USB 2.0*. Universal PCI devices can operate in any motherboard topology:

  • 5 V 33 MHz PCI (traditional PCI bus)
  • 3.3 V 33 MHz PCI
  • 3.3 V PCI 66 MHz
  • 3.3 V PCI-X 66 MHz
  • 3.3 V PCI-X 100 MHz
  • 3.3 V PCI-X 133 MHz
  • Other DAQ devices (non-M Series) are available for PCMCIA, and IEEE 1394 (FireWire).

    * USB 2.0 M series devices will fulfill at slower USB 1.1 transfer rates when connected to a USB 1.1 host or hub.

    Performance 

    Q: What is the NI-STC 2 system timing controller?

    A: The NI-STC 2 is a custom-designed application-specific integrated circuit (ASIC) that controls interboard and intraboard synchronization and timing for multifunction DAQ operations.  The NI-STC 2 provides  

  • 6 DMA channels – dedicated scatter-gather DMA controllers for each function
  • Clocked digital I/O lines (up to 10 MHz)
  • 32-bit counter/timers with encoder compatibility
  • Generation and routing of the RTSI signals for multi-device synchronization
  • Generation and routing of internal and external timing signals
  • PLL for clock synchronization
  • Q:Why are there six DMA channels on M series devices?

    A: Many plug-in DAQ devices are limited not by their acquisition or update rates, but by the rate at which they can transfer data to PC memory. M series devices fill up to six DMA channels so a sole device can fulfill analog input, analog output, digital input, digital output, and two counter/timer operations simultaneously while leaving the PC processor free to execute other operations. Many legacy DAQ devices fill a sole DMA channel, requiring two or more operations executing simultaneously to interrupt the computer processor to control the data transfer.  This causes inefficiencies by blocking other operations from being processed by the PC. As data transfer rates multiply and as more operations are simultaneously performed, these interrupts initiate to monopolize PC processor time, causing system slowdown and eventually generating errors. M series DAQ devices with the NI-STC 2 can execute up to six operations simultaneously at high rates while minimizing the potential for errors due to data loss or buffer overflows.

    Figure 1. The NI STC 2 has six DMA channels for dramatically improved data throughput.

    * This benchmark was performed with a PCI-6229 M series device with DMA channels programmatically disabled to obtain data using 1 and 3 DMA channels. The test was performed on a 2 GHz Dell Dimension Desktop PC with Windows XP, 512 MB RAM and 30 GB arduous drive.

    Q: What is the RTSI bus and how does it work?

    A: bar null plug in M series devices embrace the RTSI bus, which uses a ribbon cable, or the PXI bus to route timing and trigger signals between two or more devices in the same system. With the RTSI bus, you can synchronize analog input, analog output, digital input/output, and counter/timer operations. For example, with the RTSI bus, three analog input devices can simultaneously capture data and be synchronized to a sole master clock on one of the devices.

    The RTSI bus is available on M Series, E Series, and other DAQ devices, in addition to IMAQ and CAN hardware.Q: What is a angle lock loop (PLL) and how does it work?

    A: With the angle lock loop (PLL) functionality available on plug-in M series devices, you can generate an 80 MHz signal that is synchronized (phase locked) to a 10 MHz signal routed from another device. This enables multiple devices in a sole system to partake a master timebase while running at 80 MHz.  With the PLL, PXI M series devices can furthermore synchronize to the PXI CLK 10 clock source.

    Q:What is NI signal streaming?A: NI signal streaming technology was created to maximize USB performance and sustain multiple bidirectional high-speed data streams.  This technology furthermore adds device-side intelligence, custom data management hardware, and streamlined data control, thereby improving single-point performance by up to 1,600 percent for analog input and up to 250 percent for analog output.

     

    Figure 2. Single-Point Analog Input and Analog Output Performance Chart

    For more information about Signal Streaming, tickle consult Dev Zone Tutorial: NI Signal Streaming: Sustaining High-Speed Data Streams on USB. 

    Analog Input  

    Q: How is calibration performed on M series devices?

    A: Electronic components such as ADCs are characterized by nonlinearities and drift due to time and temperature. Compensating for these inherent sources of error requires device self-calibration. Legacy data acquisition devices employ an onboard precision voltage reference to fulfill a two-point calibration for a sole measurement range. This routine fails to protect against localized component nonlinearities, diminishing the measurement accuracy of the device. Additionally, because this routine calibrates only a sole input range, measurements that scan multiple channels at varying input ranges are limited in accuracy by the tolerance of a resistor network.

    M series devices incorporate NI-MCal technology, a custom-designed linearization and calibration engine that employ a highly stable reference to characterize gain, offset, and linearity errors at bar null ranges, providing range-specific calibration coefficients that are applied in software to provide accurate readings. The implementation of NI-MCal technology improves measurement accuracy by up to five times when compared to legacy DAQ devices. Additionally, an improved precision reference lowers the maintenance cost of the device by increasing the recommended calibration interval from one year to two years on devices in the high-speed and high-accuracy M series families.

    Q: What is the NI-PGIA 2 amplifier?

    A: NI-PGIA 2 custom designed technology improves accuracy by minimizing settling time, which is a faultfinding specification for multiplexed DAQ applications.  More precisely, settling time is the amount of time required for a signal that is being amplified to compass a specified even of accuracy.  If an amplifier does not fill sufficient settling time, the measured signal will be digitized inaccurately. Settling time is specified by the amount of error after a given time. For any given even of resolution (or accuracy), shorter settling times are desired because they allow faster sampling rates without sacrificing accuracy.  Off-the-shelf programmable gain instrumentation amplifiers (PGIAs) are not optimized for scanning multiple channels at varying voltage levels on a sole device.

    The following chart shows the settling time error of the high speed NI-PGIA 2 compared to a legacy NI-PGIA, and an off-the-shelf PGIA following a 20 V step.

    Figure 3. NI-PGIA 2 technology provides faster settling times than legacy and off-the-shelf PGIA technologies.

    Q: What is temperature-drift?A: The accuracy of your DAQ device changes with the temperature of the device. M series devices employ several technologies to minimize error due to temperature drift, including the following:

  • An onboard temperature sensor readable through software to monitor changing device temperatures
  • Components with consistent values over a wide temperature range
  • Compensating components that rectify for error
  • Q:What are programmable low-pass filters and how consequence they work?

    A: A low-pass filter attenuates signals with frequencies above the cut-off frequency while passing signals below the cut-off frequency. The cut-off frequency is defined as the frequency at which the output amplitude has decreased by 3 dB. Low-pass filters attenuate uproar and reduce aliasing of signals beyond the Nyquist frequency (defined as ½ the sampling frequency).

    Generally, analog input signals measured with plug-in DAQ devices require external signal conditioning to filter high-frequency noise. high Accuracy M series devices fill an onboard programmable filter, eliminating the necessity for external hardware to provide this filtering capability. This low-pass filter can be programmatically engaged or disengaged with a cutoff frequency of 40 kHz. 

    Q:What is isolation?

    A: Isolation electrically and physically separates sensor signals, which can be exposed to high voltage transients and noise,from the measurement system’s low-voltage backplane.  Isolation offers many benefits including:

  • Protection for expensive equipment, the user, and data from fugitive voltages
  • Improved uproar immunity
  • Ground loop removal
  • Increased common-mode voltage rejection
  • Isolated measurement devices provide part ground planes for the analog and/or digital front end(s) and the device backplane to part the sensor measurements from the repose of the system. The ground connection of the isolated front finish is a floating pin that can operate at a different potential from the earth ground.  Any common-mode voltage that exists between the ground and the measurement system ground is rejected (within the devices working voltage specification).  Isolation furthermore prevents ground loops from forming, helping reduce uproar in the measurement signals.

    Figure 4. Bank Isolated Analog Input Circuitry

    Industrial M Seriesdata acquisition devices employ Analog Devices iCoupler digital isolators to provide 60 VDC continuous isolation and 1,400 Vrms/1,900 VDC channel-to-bus isolation withstand for 5 s on multiple analog and digital channels and advocate sampling rates up to 250 kS/s.

    For more information on isolation, tickle mention to DevZone Tutorial: Isolation Technologies for reliable Industrial Measurements.

    Q:What signal conditioning devices are compatible with M series devices for sensor measurements?

    A: bar null plug-in M series devices travail with both SCC and SCXI signal conditioning.  68-pin USB M series devices furthermore works with SCC signal conditioning. Both SCC and SCXI ameliorate measurement accuracy by providing additional amplification of low-level sensor signals and with low-pass filters to eradicate uproar sources, including 50/60 Hz uproar from power lines. Additionally, SCC and SCXI provide sensor-specific signal conditioning such as CJC for thermocouples, and provide excitation power for sensors such as strain gages and RTDs.

    * For more information on signal conditioning tickle behold this link. 

    Analog Output

    Q: How consequence multiple analog output ranges ameliorate accuracy?

    A: Multifunction DAQ devices fill traditionally offered two analog output ranges, either bipolar (±10 V) or unipolar (0 to 10 V). With this limitation, the bits of resolution of the digital-to-analog converter (DAC) are distributed equally across the entire range. For a 16-bit DAC with 65,536 codes of resolution (216), the minimum output step for a ±10 V scope is 305 µV (20 V 65,536). It is impossible for the DAC to output voltage changes smaller than 305 µV.

    High Accuracy M series DAQ devices feature programmable output ranges that distribute the number of bits over a much smaller voltage range. For example, with a ±1 V scope and 16-bit DAC resolution, the device can output 31 µV changes.

    Q: What are programmable DC offsets for analog outputs?A: Some applications require small changes in analog output even around a fixed DC offset. For example, to model 5 V power supply uproar requires analog outputs that can simulate a small amount of uproar (submillivolts) on a 5 VDC signal. With a traditional multifunction DAQ device that has a sole output scope without offsets, the scope would fill to be set at 0 to 10 V. Even with 16-bit resolution, the digital-to-analog converter (DAC) could only picture 153 µV changes.

    High Accuracy M series devices fill programmable analog output offsets which enable much finer resolution around a specified offset value. When used in conjunction with the programmable scope feature, the programmable offset enables an M series board to model 5 V power supply uproar by using bar null 16-bits of resolution on a 4 to 6 V scope (5 V offset with a ±1 V range). This improves the minimum code width to 31 µV. 

    Digital I/O and Counter/Timers 

    Q: What is correlated digital I/O and how does it work?

    A: Correlated I/O enables synchronization of onboard digital I/O lines to a clock reference.

  • Internal or External Clocks
  • Multiple digital lines on the same device can be synchronized to a common clock which enables multibit pattern detection.  It furthermore enables clocked digital waveform generation or acquisition at rates up to 10 MHz.

  • Analog I/O and counter/timers
  • M series enables you to time-correlate different operations with analog I/O, digital I/O and counter/timers.  For example, you can synchronize digital and analog samples in time by sharing your AI clock as the source of your digital I/O clock. To sample a digital signal independent of an AI, AO, or consequence operation, you can configure a counter to generate the desired DI clock or employ an external signal as the source of the clock.

    Q: What is industrial digital I/O?A:Industrial applications often involve requirements beyond the capabilities of a typical measurement device. For example, many industrial sensors and actuators require 24 V logic levels and may operate at different voltage potentials that can understanding ground loops. Safety for the measurement or control system and safety for the user or operator are equally important. With voltage levels up to 30 V, high current drive, and isolation, NI M series devices can connect directly to a wide array of industrial pumps, valves, motors, and other sensors/actuators while providing a high degree of safety and reliability.Q: What are programmable power-up states?

    A: When a computer is powered on, various components initiate their own power-up routines to ensure that they compass a functional and expected state. If digital outputs are used inside the computer to control machinery or an industrial process, it is Important that the digital outputs are furthermore initialized to a known state. Changing the outputs typically requires that an application is running, but the module may be on for several minutes before the application can start.

    Using programmable power-up states, you can configure the initial digital output states in software to ensure glitch-free operation when connected to industrial actuators such as pumps, valves, motors, and relays.  An Industrial M series device holds these output states after receiving power, so your computer can boot and your software application can initiate running. Programmable power-up states are glitch-free, signification the outputs never Go through an incorrect status during power up. You can configure each individual digital line as high-output or low output. Each Industrial M series device stores the settings in onboard non volatile remembrance and implements the power-up states instantaneously after power is applied to the device.

    Q: What is the inequity between software-timed and hardware-timed digital I/O?

    A: Software-timed digital I/O is system dependent, and speeds vary based on the processing power of the host PC. This is furthermore referred to as “static” DIO. Clocked digital I/O is hardware-timed, signification the update or sampling rate is governed by a stable clock source. This clock is independent of the system used.  M series devices can employ an onboard clock source or an external signal as the digital timebase.

    Q: What is the benefit of an onboard 80 MHz clock?

    A: The 80 MHz timebase can be used as the source input to the 32-bit general-purpose counter/timers. It improves the accuracy of frequency measurements and generation versus the 20 MHz timebase on E series DAQ devices. A faster timebase improves pulse width and epoch measurement accuracy and enables faster pulse train signal generation.

    Figure 5. sole Point Frequency Measurement

    Q: How consequence 32-bit counters compare to lower resolution counters?

    A: A counter is specified by the number of events it can import before resetting. For example, a 32-bit counter can import 232, or over 4 billion events. This is over 65 thousand times more register capacity than the 16-bit counter/timers found on other DAQ devices. If a counter/timer exceeds its maximum import capacity during an operation, the register resets and data is lost.

    Q: Why is filtering Important on counter/timer input lines?

    A: In process control applications involving frequency sensors and in relay monitoring applications, the sensors often exhibit bouncing, especially if a mechanical relay drives the output of the sensor. With input filters enabled on the counter/timer lines on M series device, it samples the input on each rising edge of a filter clock. When the filter clock has sampled the signal high on N consecutive edges, the low to high transition is propagated to the repose of the circuit. The value of N depends on the filter setting. In design 6, the value of N is set to 5.

    Figure 6. Filtered Counter/Timer Line 

    Software  

    Q: What application software is provided with M series devices?

    A: LabVIEW SignalExpress LE is included with bar null M series devices.  National Instruments LabVIEW SignalExpress is interactive, measurement software for quickly acquiring, analyzing, and presenting data from hundreds of data acquisition devices and instruments, with no programming required.  To learn more about LabVIEW SignalExpress LE, visit http://www.ni.com/labview/signalexpress/.

    Q: What driver software is provided with M series devices?

    A: Many DAQ devices near with just a basic DAQ device driver. Some devices require the part purchase of driver software even for basic functionality. bar null M series devices embrace NI-DAQmx measurement services and driver software.

    NI-DAQmx measurement services software controls every aspect of your DAQ system: configuration, programming, and low-level operating system device control. With NI-DAQmx software, you can quickly configure and acquire measurements. NI-DAQmx features virtual channels that automatically scale raw data into engineering units.  NI-DAQmx furthermore features the DAQ Assistant, a utility that configures DAQ applications with zero programming and automatically generates code.

    NI-DAQmx software goes far beyond a basic DAQ driver to deliver increased productivity and performance. deem the following software criteria when you purchase your DAQ system.

     

     

    Measurement Services Features

    NI-DAQmx Measurement Services

    Basic DAQ Driver

    Productivity

    Automatic code generation

    *

    Configuration management

    *

    Analog, digital, and counter test panels

    *

    o

    Scaling to real-world units

    *

    Single API for bar null hardware and I/O types

    *

    Measurement examples

    >3000

    <20

    Pin-point error diagnostics

    *

    Performance

    Optimized multithreaded I/O performance

    *

    Optimized single-point loops

    *

    o

    Real-time capabilities

    *

    Advanced calibration

    *

    Table 3. Comparison Between NI-DAQmx and Basic DAQ Driver Software

    Key: * Best o superior — Not Provided

    For more information on the DAQmx driver, tickle behold Transition from Traditional NI-DAQ to NI-DAQmx in LabVIEW

    Q:What operating systems travail with M Series?

    A:

  • Windows 2000/XP/Vista x86/Vista x64
  • Windows 98/ME/NT2
  • Windows Mobile 5, Pocket PC 20031
  • Real Time OS, RTX1
  • Mac OS X1
  • Mandrakelinux 10.1 Official3
  • Mandriva Linux 20062
  • SUSE LINUX Professional 9.2 and 9.33
  • Red Hat Enterprise Linux WS 33
  • Red Hat Enterprise Linux WS 41
  • 1 NI-DAQmx groundwork driver required for this operating system.  tickle behold the specific driver’s readme file for a list of supported devices and supported features.2 These operating system are supported under an older version of the DAQmx driver. tickle behold the specific driver’s readme file for a list of supported devices.3 These operating system can be used with an older version of the DAQmx driver or a current version of the DAQmx groundwork driver. tickle behold the specific driver’s readme file for a list of supported devices.

    Please visit http://www.ni.com/downloads/ to find specific drivers and readme files mentioned above.

    Q:Which application development environments travail with M Series?

    A: M series DAQ devices travail with every development environment compatible with NI-DAQmx, including:

  • LabVIEW 7.x or later
  • LabVIEW Real-Time 7.1 or later*
  • LabVIEW SignalExpress LE or higher
  • LabWindows/CVI 7.x or later
  • Measurement Studio 7.x or later
  • ANSI C/C++
  • C#
  • Visual Basic .NET
  • Visual Basic 6.0
  • *Not compatible with USB devices

    Q:Do I necessity to get changes to my code if I supplant an E series device with an M series device?

    A: Existing NI-DAQmx applications written for an E series device dash unchanged on an M series device. You may necessity to fulfill additional programming to purchase edge of the advanced timing and synchronization features of M Series.

    The Traditional NI-DAQ Compatibility VIs get it practicable to port most existing applications written with Traditional NI-DAQ to operate under NI-DAQmx with M Series. However, you will not gain the NI-DAQmx benefits of multithreaded I/O speed, automatic trigger routing, and DAQ assistant code generation. Additionally, the Compatibility VIs consequence not travail with SCXI signal conditioning. At a low-level, the Compatibility VIs redirect software calls to NI-DAQmx VIs. These VIs handle most, but not bar null functionality. Depending on the complexity of your application, you may necessity to rewrite your application using NI-DAQmx. The Traditional NI-DAQ Compatibility VIs are only available for LabVIEW. You can download the Traditional NI-DAQ Compatibility VIs from http://joule.ni.com/nidu/cds/view/p/id/822/lang/en.

    Q: Which real-time tools travail with M Series?

    A: bar null PCI and PXI M series devices can be used with LabVIEW Real-Time and NI-DAQmx to build reliable, deterministic, stand-alone applications with no user interaction required. The NI-DAQmx API is optimized for easier implementation and faster development of real-time applications than traditional real-time operating systems.

    USB M series devices are not compatible with LabVIEW Real-Time.

    Service and Support

    Q:How consequence I fetch technical advocate for M series devices?

    A: NI offers extensive advocate options through www.ni.com/support. You can call, e-mail, or troubleshoot problems online with NI engineers. In addition, ni.com provides a wealth of resources for customers--from user getting started with M series to DAQ experts looking for tips from the designers. Online resources include:

  • Downloadable drivers and updates for NI-DAQmx and other measurement products
  • Over 3,000 KnowledgeBase entries
  • Online product manuals (downloadable assist files and PDFs)
  • Over 3,000 specimen programs
  • Tutorials and application notes
  • Q:What training is available for M series devices?

    A: The concepts of DAQ are taught in regional seminars and customer education courses. You can fetch a free hands-on tutorial through one of their regularly scheduled training seminars, offered by your local field engineer. To find a free seminar in your area, visit www.ni.com/events.

    National Instruments furthermore offers a 3-day DAQ course that covers the theory of DAQ and includes hands-on travail with multifunction DAQ, signal conditioning, and NI-DAQmx software. To learn more or to enroll in a course, visit ni.com/training.

    Q:What options are available for OEM customers?

    A: In addition to supplying free 7-day evaluation kits and world-class technical support, NI offers pricing discounts for qualified OEM applications. Several devices are designed for employ in such applications. M series leads the market in MIO channel density, lowering your cost and space requirements. M series devices proffer up to 80 analog input, 4 analog output, and 48 digital I/O lines. In addition, 32-bit counter/timers can generate or measuring long pulses without the necessity to cascade multiple channels. With NI-DAQmx software you can quickly implement and test your design iterations, greatly reducing your development time and cost.

    For more information on hardware and software customization, visit www.ni.com/oem or contact your local NI representative.Q:What warranty is provided with M series devices?

    A: bar null M series devices fill a 1-year warranty that covers against defects in workmanship and material from the date of shipment of the product. Extended warranty options are available that can assist you to fix your maintenance costs over 2 or more years. Contact your National Instruments sales representative for more information.


    Musk Confirms Record Tesla Sales, Provides Exec Updates | killexams.com real questions and Pass4sure dumps

    In a wide-ranging congratulatory email sent to Tesla employees, CEO Elon Musk confirmed record sales for Tesla and provided a rundown of executive changes underway.

    But really, the main point here is the sales ramp, not only of the Model 3, but the S and X, too. Of which, Musk previously Tweeted:

    Company Update

    September 7, 2018

    The following email was just sent to Tesla employees:

    First, I’d enjoy to thank you for your incredible efforts and contribution as they enter the final few weeks of this quarter. This is a very exciting time for Tesla, to proclaim the least, and you are the understanding for the tremendous progress we’ve made in a relatively short epoch of time. It is easy to forget that their company was almost unknown 10 years ago and didn’t even exist until after the start of the 21st century!

    We are about to fill the most fabulous quarter in their history, pile and delivering more than twice as many cars as they did final quarter. For a while, there will be a lot of fuss and uproar in the media. Just ignore them. Results are what matter and they are creating the most mind-blowing growth in the history of the automotive industry. Even the Ford Model T, which held the world record for the fastest growing car in history, didn’t grow as snappily in sales or production as the Model 3.

    Moreover, they furthermore fill the most exciting novel product lineup of any company in the world. There is the Model Y, the Tesla (pickup) Truck, the Semi and the novel Roadster. Then there is the Solar Roof, which is spooling up in production, and continued advancements in Powerwall and Powerpack. And that’s just what people know about …

    To assist achieve their goals, after discussing this in-depth with the Tesla board of directors and executive staff over the past several weeks, I am excited to proclaim a number of management changes:

    Jerome Guillen has been promoted to President, Automotive, reporting directly to me. In his novel role, Jerome will oversee bar null automotive operations and program management, as well as coordinate their extensive automotive supply chain. Jerome has made major contributions and acquired profound information of Tesla’s operations over the past eight years at their company, from being the first Model S Program Manager to managing bar null vehicle programs, then bar null vehicle engineering and worldwide sales & service. Recently, Jerome played a faultfinding role in ramping Model 3 production, leading what almost bar null thought was impossible: creation of an entire high-volume common Assembly line for Model 3 in a matter of weeks. Before coming to Tesla, Jerome was amenable for creating and running the most successful semi truck program in history at Daimler’s Freightliner division.

    Kevin Kassekert has been promoted to VP of People and Places, with responsibility for Human Resources, Facilities, Construction, and Infrastructure Development. Kevin has been with Tesla for 6 years and was previously VP, Infrastructure Development. Kevin led the construction and development of their Gigafactory in Nevada, turning what was a pile of rocks in the Sierra Nevada mountains into a factory employing 12 thousand people with greater output than the entire repose of the world’s battery factories combined, in roughly three years. That is insanely badass. Prior to joining Tesla, Kevin engineered and built multi-billion dollar production plants in the semiconductor industry. As many of you know, Tesla’s Chief People Officer Gaby Toledano has been on leave for a few months to expend more time with her family and has decided to continue doing so for personal reasons. She’s been fabulous and I’m very grateful for everything she’s done for Tesla.

    Chris Lister joined Tesla final year and was key to solving their production problems at the Gigafactory and ramping Model 3 production. He is being promoted to VP, Gigafactory Operations. In this role, he leads their production and manufacturing engineering at Giga. Before Tesla, Chris ran several ultra high volume factories at PepsiCo.

    Felicia Mayo, Sr. HR Director and head of their Diversity and Inclusion program, has been promoted to VP, reporting to both Kevin and me. Felicia has done worthy travail promoting the flash of having one of the most diverse workforces in the world and ensuring fairness across hundreds of roles and Tesla operations in over 50 countries. She previously worked in senior HR roles at PwC and Oracle, and, most recently was Vice President, Global Talent Acquisition and Diversity for Juniper Networks.

    Laurie Shelby, Tesla’s VP, Environmental, Health and Safety (EHS) will furthermore report directly to me. Your safety and just generally making certain that you love coming to travail is extremely important, which is why EHS will report directly to me. They are working hardcore on having the safest (and most fun) travail environment in the automotive industry by far. Laurie came to Tesla final year after a 25+ year career at Alcoa, where she made tremendous progress in workplace safety. Since joining, she has already overseen a reduction in their employee injury rate, as well as major improvements in their EHS program.

    Cindy Nicola, VP of Global Recruiting, will report to both Kevin and me. Cindy has overseen the company’s global recruiting efforts since 2015, bringing on tens of thousands of highly talented people. Prior to Tesla, Cindy led worldwide Corporate Recruiting at Apple, and before that was VP, Global Talent Acquisition at Electronic Arts.

    Finally, Dave Arnold has been promoted to Sr. Director, Global Communications, overseeing Tesla’s communications team. Dave was previously Director of Corporate Communications at Virgin America.

    Thanks again for your incredible travail in making Tesla successful. What you are doing is vital to achieving an fabulous and sustainable energy future for bar null of humanity and life on Earth.

    Elon



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