{"component": "clause", "props": {"groups": [{"samples": [{"hash": "6o9VNLeozGu", "uri": "/contracts/6o9VNLeozGu#technology-description", "label": "Grant Agreement", "score": 30.8873710632, "published": true}], "size": 1, "snippet_links": [{"key": "the-technology", "type": "clause", "offset": [17, 31]}, {"key": "the-challenge", "type": "definition", "offset": [80, 93]}, {"key": "invest-in", "type": "clause", "offset": [536, 545]}, {"key": "based-on", "type": "definition", "offset": [640, 648]}, {"key": "scientific-findings", "type": "clause", "offset": [649, 668]}, {"key": "new-technology", "type": "clause", "offset": [785, 799]}, {"key": "open-up", "type": "clause", "offset": [821, 828]}, {"key": "new-market", "type": "definition", "offset": [831, 841]}, {"key": "status-quo", "type": "definition", "offset": [868, 878]}, {"key": "new-infrastructure", "type": "clause", "offset": [953, 971]}, {"key": "the-risks", "type": "clause", "offset": [1167, 1176]}, {"key": "very-high", "type": "definition", "offset": [1223, 1232]}, {"key": "required-time", "type": "definition", "offset": [1241, 1254]}, {"key": "type-of", "type": "definition", "offset": [1465, 1472]}, {"key": "the-majority", "type": "clause", "offset": [1522, 1534]}, {"key": "the-company-will", "type": "clause", "offset": [1556, 1572]}, {"key": "development-of-the", "type": "clause", "offset": [1599, 1617]}, {"key": "milestones-and-deliverables", "type": "clause", "offset": [1657, 1684]}, {"key": "very-important", "type": "definition", "offset": [1732, 1746]}, {"key": "potential-investors", "type": "definition", "offset": [1751, 1770]}, {"key": "use-of-\u2587", "type": "clause", "offset": [1819, 1827]}, {"key": "a-and-b", "type": "definition", "offset": [1970, 1977]}, {"key": "development-plan", "type": "definition", "offset": [2011, 2027]}, {"key": "mitigation-measures", "type": "definition", "offset": [2243, 2262]}, {"key": "the-proposed", "type": "clause", "offset": [2475, 2487]}, {"key": "having-a", "type": "definition", "offset": [2629, 2637]}, {"key": "your-product", "type": "definition", "offset": [2710, 2722]}, {"key": "to-determine", "type": "clause", "offset": [2735, 2747]}, {"key": "investments-in", "type": "clause", "offset": [2843, 2857]}, {"key": "a-year", "type": "definition", "offset": [2935, 2941]}, {"key": "to-apply", "type": "clause", "offset": [3184, 3192]}, {"key": "for-example", "type": "clause", "offset": [3277, 3288]}, {"key": "very-complex", "type": "definition", "offset": [3423, 3435]}, {"key": "the-requirement", "type": "clause", "offset": [3437, 3452]}, {"key": "protection-mechanisms", "type": "clause", "offset": [3792, 3813]}, {"key": "your-company", "type": "definition", "offset": [3872, 3884]}, {"key": "most-important", "type": "clause", "offset": [3908, 3922]}, {"key": "an-investor", "type": "definition", "offset": [3933, 3944]}, {"key": "revenue-stream", "type": "clause", "offset": [4025, 4039]}, {"key": "to-pay", "type": "clause", "offset": [4058, 4064]}, {"key": "monthly-fee", "type": "clause", "offset": [4067, 4078]}, {"key": "the-product", "type": "clause", "offset": [4094, 4105]}, {"key": "pay-per-use", "type": "definition", "offset": [4128, 4139]}, {"key": "types-of", "type": "clause", "offset": [4192, 4200]}, {"key": "end-users", "type": "clause", "offset": [4201, 4210]}, {"key": "pay-for", "type": "definition", "offset": [4215, 4222]}, {"key": "of-customer", "type": "clause", "offset": [4314, 4325]}, {"key": "an-overview", "type": "clause", "offset": [4327, 4338]}, {"key": "cost-structure", "type": "clause", "offset": [4346, 4360]}, {"key": "you-need", "type": "clause", "offset": [4610, 4618]}], "snippet": "A description of the technology lets investors know what they are investing in. The challenge is to keep it as short as possible, while still painting the complete picture. It should not be overly technical, but it clearly needs to describe what the technology does, what is different or new about it and why it is relevant and thus addresses an unmet user need. As an extent of the technological description, a description of the novelty or radicalness of the innovation is important for investors before they feel confident enough to invest in the innovation. \u2587\u2587\u2587\u2587\u2587\u2587\u2587 describes how new and unique the technology is, and in what way it is based on scientific findings. Radicalness indicates the compatibility with current infrastructure. A completely radical technology is not just a new technology that can potentially open up a new market, but it also disturbs the status quo and the way of doing things. Usually with completely radical innovations, new infrastructure and legislation is required, and new stakeholders will arise because of it. Completely radical technologies are very rare however, and it is not always advantageous to have a radical technology. The risks of such a technology not being successful are very high and the required time of development before it is market ready is also quite high. However, the rewards when it succeeds are very high as well. The radicalness of the technology is therefore an important factor in determining which type of investor will be willing to invest. Most likely, the majority of the time building the company will concern the technological development of the innovation. A clear overview of tasks, milestones and deliverables of this technological development is therefore very important for potential investors. A common way to map this process is though the use of \u2587\u2587\u2587\u2587\u2587 charts. Important in such a roadmap that there is a clear overview of the different dependencies such as when task C cannot start if task A and B have not finished yet. A healthy development plan has several parallel tasks and not too many dependencies. Every technological development comes with risks. Having risks is not a bad thing, but having no clear overview of the possible risks or of the severity and mitigation measures of these risks is. Each risk should be described, the chance of it happening should be indicated (low, medium high) the potential effects should be described, the severity should be indicated (low, medium high), the proposed risk-mitigation measures should be described and the chance of success of these mitigation measures should be indicated (low, medium, high). Having a clear overview of your competitors, rivals and future substitutions for your product enables you to determine your appropriation regimes. In other words, how will you make sure you reap the profits of the investments in the technological development? If your product can be replicated within half a year, investors will not want to invest in your product. How will you protect your innovation then? There are a few options for this: having a patent is the strongest protection, but also the most expensive. Furthermore, it is not always possible to apply for a patent (if the technology has already been publicly demonstrated or described for example). Being the very first with a completely new technology can be a protection mechanism, especially when the technology and product are very complex. The requirement of unique assets or resources are also ways to protect the innovation and to make sure that it is not easily replicable. In some cases, secrecy can be a powerful tool (such as Coca-Cola keeping their recipe a secret), but that can be very difficult with technological products and impossible with software. Having a clear overview of your protection mechanisms is essential for investors to feel confident to invest in your company. Financial\u200c One of the most important questions an investor will ask you is: how will you make money? It is very important to describe your revenue stream; will people have to pay a monthly fee? Will they buy the product in a store? Will they pay per use? Are there add-ons they can buy later on? Different types of end users can pay for your innovation in different ways. It is important to describe the revenue stream per type of customer. An overview of the cost structure is required to be able to determine if your company will be profitable in the end. All of the costs and their type (i.e. fixed or variable, single or continuous) should be clearly described. A part of this is having an overview of all the resources you need, including personnel and machinery.", "hash": "5d4a57d3c65ede03df3b923dd10c64a5", "id": 5}, {"samples": [{"hash": "2qw8Njv9TYY", "uri": "/contracts/2qw8Njv9TYY#technology-description", "label": "Site License Agreement", "score": 32.6593437195, "published": true}, {"hash": "wXM2TLKVSa", "uri": "/contracts/wXM2TLKVSa#technology-description", "label": "Site License Agreement", "score": 32.305393219, "published": true}], "size": 4, "snippet_links": [{"key": "system-description", "type": "clause", "offset": [28, 46]}, {"key": "equipment-provided", "type": "definition", "offset": [62, 80]}, {"key": "project-approach", "type": "clause", "offset": [163, 179]}, {"key": "specific-project", "type": "clause", "offset": [232, 248]}, {"key": "licensee-shall", "type": "clause", "offset": [260, 274]}, {"key": "the-design", "type": "clause", "offset": [315, 325]}, {"key": "maintenance-of", "type": "clause", "offset": [356, 370]}, 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2665]}, {"key": "the-problem", "type": "clause", "offset": [2807, 2818]}, {"key": "standard-rates", "type": "clause", "offset": [2864, 2878]}, {"key": "the-systems", "type": "clause", "offset": [2894, 2905]}, {"key": "by-the-licensee", "type": "clause", "offset": [2974, 2989]}, {"key": "comply-with", "type": "definition", "offset": [3028, 3039]}, {"key": "access-procedures", "type": "clause", "offset": [3059, 3076]}, {"key": "security-clearance", "type": "definition", "offset": [3092, 3110]}, {"key": "applicable-statutes", "type": "clause", "offset": [3236, 3255]}, {"key": "construction-provisions", "type": "definition", "offset": [3260, 3283]}, {"key": "not-limited", "type": "clause", "offset": [3300, 3311]}, {"key": "payment-of-prevailing-wages", "type": "clause", "offset": [3316, 3343]}, {"key": "all-work", "type": "clause", "offset": [3349, 3357]}, {"key": "to-the-extent", "type": "clause", "offset": [3384, 3397]}, {"key": "applicable-laws", "type": "clause", "offset": [3410, 3425]}], "snippet": "This space reserved for the System description to include the equipment provided in RFP-FS-2023-06-JP \u201cAttachment C1\u201d (Proposed Equipment Form) and the layout and Project approach provided in RFP-FS-2023-06-JP \u201cAttachment B2\u201d (Site Specific Project Approach). Licensee shall meet the below minimum requirements for the design, financing, installation, and maintenance of alternative energy supply sources for electrical or thermal energy, and energy storage systems. Licensee shall include at minimum the following components and services for Solar PV projects: Information referenced in Exhibit I. Licensee shall not include building structural retrofit costs. Licensee shall include costs associated with compliance with DSA ADA requirements including parking lot striping and location of canopies, but not include costs for Precheck DSA Canopies. Roof replacement (if required) built to the Judicial Council\u2019s specifications and related maintenance shall be included in the Rent. Security camera installation (if required) purchased and installed to the Judicial Council\u2019s specifications shall be included in the Rent. All such security camera equipment will remain the property of the Judicial Council. Licensee shall complete the O&M Services described below. Standard System Repair and Maintenance. Licensee shall construct and install the System (PV, \u2587\u2587\u2587\u2587, and Microgrid) at the Facility. During the Term, Licensee will operate and perform all routine and emergency repairs to, and maintenance of, the System at its sole cost and expense, except for any repairs or maintenance resulting from Judicial Council\u2019s negligence, willful misconduct or breach of this Agreement. During the entire Project life it will be the responsibility of the Licensee to perform all site maintenance, including work required by equipment vendors to maintain warranties, recalibration of equipment, module washing, vegetation management, System monitoring and reporting, and the maintenance of revenue grade meters for billing purposes. Licensee shall (a) have the appropriate experience and ability to operate and maintain photovoltaic solar systems and the financial capability to do same; or (b) enter into a contract with a subcontractor, pursuant to which (i) such Subcontractor shall be responsible for System operation and maintenance under this Agreement and (ii) subcontractor shall administer all rights (including access rights to the Facility) and obligations of subcontractor on behalf of Licensee under this Agreement. Licensee shall not be responsible for any work done by others on any part of the System unless Licensee authorizes that work in advance in writing. If the System requires repairs for which Judicial Council is responsible, Judicial Council shall pay Licensee for diagnosing and correcting the problem at Licensee or Sub-contractors\u2019 then-current standard rates. Any damage to the systems resulting from vandalism/theft will be repaired in a timely fashion by the Licensee at Licensee\u2019s expense. Licensee shall comply with Judicial Council\u2019s access procedures (notification, security clearance, badging, etc.). When performing repairs to, and maintenance of, the System, Licensee or subcontractor shall comply with all applicable statutes and Construction Provisions, including, but not limited to, payment of prevailing wages (for all work including module washing) to the extent required by Applicable Laws.", "hash": "227519361f63cb04c74a9bb39c41b0a7", "id": 1}, {"samples": [{"hash": "g4JeYx6diQX", "uri": "/contracts/g4JeYx6diQX#technology-description", "label": "Operator Node as a Service and Token Right Agreement", "score": 34.5523616372, "published": true}, {"hash": "lk29oieHZ67", "uri": "/contracts/lk29oieHZ67#technology-description", "label": "Operator Node as a Service and Token Right Agreement", "score": 33.8657913208, "published": true}], "size": 2, "snippet_links": [{"key": "designed-for", "type": "definition", "offset": [91, 103]}, {"key": "economic-viability", "type": "clause", "offset": [104, 122]}, {"key": "resource-efficiency", "type": "clause", "offset": [132, 151]}, {"key": "operation-of", "type": "definition", "offset": [376, 388]}, {"key": "the-operator", "type": "clause", "offset": [408, 420]}, {"key": "access-to-the", "type": "clause", "offset": [463, 476]}, {"key": "the-company", "type": "definition", "offset": [502, 513]}, {"key": "web-interface", "type": "definition", "offset": [603, 616]}, {"key": "upon-request", "type": "definition", "offset": [654, 666]}, {"key": "continuous-development", "type": "clause", "offset": [740, 762]}, {"key": "during-the-contract-period", "type": "clause", "offset": [804, 830]}], "snippet": "3.1. Gevulot Firestarter is the neutral, decentralized prover layer for the modular stack, designed for economic viability and high resource efficiency. It aggregates workloads from across the industry and ensures centralized-equivalent proving performance with high liveness and availability guarantees common in decentralized networks.\n3.2. The Servers are dedicated to the operation of Prover Nodes.\n3.3. The Operator acknowledges that they do not have direct access to the Servers or Prover Nodes. The Company manages the Servers, and the Operator receives information and functionalities through a web interface, when one is available. Before that, upon request via email.\n3.4. The Operator acknowledges that the NaaS Service is under continuous development, and its content and features may change during the contract period.", "hash": "a6971347b13d3a5debdc2022217e3e4f", "id": 2}, {"samples": [{"hash": "j8IdUxBNVYj", "uri": "/contracts/j8IdUxBNVYj#technology-description", "label": "Contract (Balqon Corp.)", "score": 17.0, "published": true}, {"hash": "8iSARvuMMD7", "uri": "/contracts/8iSARvuMMD7#technology-description", "label": "Contract (Balqon Corp.)", "score": 17.0, "published": true}], "size": 2, "snippet_links": [{"key": "principles-of-operation", "type": "clause", "offset": [35, 58]}, {"key": "control-approach", "type": "definition", "offset": [73, 89]}, {"key": "the-technology", "type": "clause", "offset": [93, 107]}, {"key": "clean-fuel", "type": "definition", "offset": [115, 125]}, {"key": "the-project", "type": "definition", "offset": [138, 149]}, {"key": "if-applicable", "type": "clause", "offset": [151, 164]}, {"key": "available-equipment", "type": "clause", "offset": [235, 254]}], "snippet": "This section describes the general principles of operation and emissions control approach of the technology and/or clean fuel involved in the project. If applicable, discuss how the principle of operation differs from other, currently available equipment. This includes describing what the \u201cadvancement\u201d actually is over currently available technologies.", "hash": "5b88f108f057c12b225f915559b0f181", "id": 3}, {"samples": [{"hash": "C6NeDDAhbF", "uri": "/contracts/C6NeDDAhbF#technology-description", "label": "Contract", "score": 19.0, "published": true}], "size": 1, "snippet_links": [{"key": "management-systems", "type": "clause", "offset": [62, 80]}], "snippet": "Building Automation Systems Overview Computerized Maintenance Management Systems (CMMS)", "hash": "1d6dd0f35b304e87a3d6183bbcb6acfb", "id": 4}, {"samples": [{"hash": "e0JqJN1KsHu", "uri": "/contracts/e0JqJN1KsHu#technology-description", "label": "Intellectual Property License Agreement (Espre Solutions Inc)", "score": 21.0, "published": true}], "size": 1, "snippet_links": [{"key": "the-technology", "type": "clause", "offset": [0, 14]}, {"key": "system-developer", "type": "definition", "offset": [63, 79]}, {"key": "application-programming-interfaces", "type": 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"copies-of-the", "type": "clause", "offset": [6823, 6836]}, {"key": "separate-documents", "type": "clause", "offset": [6880, 6898]}, {"key": "by-licensee", "type": "clause", "offset": [6911, 6922]}, {"key": "patent-no", "type": "clause", "offset": [6926, 6935]}, {"key": "serial-no", "type": "definition", "offset": [7078, 7087]}, {"key": "digital-media", "type": "clause", "offset": [7153, 7166]}], "snippet": "The technology licensed under this agreement is a toolkit (or \u201csystem developer\u2019s kit\u201d SDK) that provides application programming interfaces (API\u2019s )t o control a media engine (ME) that has support for the following main functions: The technology provides components that support encoding video and formatting the resultant media into an ME format. The encoding API supports selecting from a myriad of options including: \u2013 Resolution (width, from 160 to 1024, and height, from 128 to 768) \u2013 Frame rate (1-30 frames/second) \u2013 Encoding quality (essentially on a scale from 1-3 1) \u2013 Rate control bandwidth (>40 bps) \u2013 Rate control mode (none, T\u2587\u2587\u2587, \u2587\u2587\u2587\u2587) \u2013 Input source (typically a local file in an AVI file format \u2014 several input codecs in this format supported as an input source) \u2013 Input source span (allows specification of a scene to encode by specifying a starting and ending AVI frame number \u2013 Quantization levels (allows restriction on range of qualities used during rate control functions) \u2013 Output destination (typically a local file set in the ME format that includes audio, video, index, and production metadata) The technology as extended by this agreement will support controlling the encoding process across a large span of AVI files to encompass the requirements of entire movie length material (at least support for two hours). The encoding process allows the media engineer to view the movie as one, seamless object even if many local disk files are required to hold it. The encoding tool contains a viewing process that allows the media engineer to index the movie. This primarily refers to selecting a frame and giving it a name or mnemonic. These indices may be used by the engineer to demark scenes and/or other control points within the encoding (viewing) process. The technology supports specifying different encoding parameters for each scene, allowing a movie to be formatted at various combinations of quality and frame rate settings. Even resolution may be changed when encoding from one scene to the next. Indices may also be used to force key frame insertion and synchronization points for other data. The encoding process automatically synchronizes audio and video that are contained in the same input source, but also supports synchronizing other forms of data. The technology provides APIs to control the processes of uploading the ME format media into an archive that supports media distribution and rendering. The underlying engine components reside in both the execution time client and server(s). The archive structure supports maintaining more than one copy of an object for both redundancy and for load sharing considerations. Each archive object in the ME format has, as a minimum: \u2013 Video index file(s) \u2013 Video data file(s) \u2013 Audio index file(s) \u2013 Audio data file(s) The archive will also be extended to support an encryption model. The technology provides APIs to control access to objects in the video archive, supporting object rendering in a web distribution model. There is an underlying Java based player that supports rendering multiple videos simultaneously on an HTML web page with programmable coordination among the videos. The player and its supporting Javascript environment have all of the elements required to: \u2022 Access the index and data files from an archive. \u2022 Buffer the video object such that the video starts to play quickly (typically within 3 seconds), but can sustain interruptions in the flow of data from the server. \u2022 Manage the overall processor and bandwidth constraints. The player supports bandwidth coordination among multiple videos that may be playing simultaneously. Each video can be designated as \u201cprimary\u201d or \u201csecondary\u201d. When initial buffering occurs, primaries are able to get to the initial fast start state (3 seconds worth of render time) before a secondary may start. At any time while playing and buffering, the secondary(s) will back off if a primary is about to stall for lack of data. Any video may have its buffering bandwidth effect controlled to a percentage of its computed average bandwidth requirement (i.e., a video may be loaded at 1 10% of its average bit rate rather than loading as fast as it can -ME supports both paradigms). \u2022 Start a video on any designated frame. The player supports an API that includes a request to play from frame(x) to frame(y) and/or start playing to end at frame(x). This is used to effect slider drag operations that allow the subscriber to advance or backup to any position within a movie with no dependence on prior buffering. \u2022 Render the video from an internal memory cache. The video is buffered from a stream and is not stored on the local disk. Thus, a two hour movie is never completely contained within the client machine. \u2022 Automatically recover from server disconnects. When connected to a web server to pull the video data, the player will encounter frequent disconnects during the course of a two hour period. The technology supports automatically detecting that this has occurred and to reconnect before the object buffer is drained. \u2022 Automatically select from multiple object formats. Any ME archive object may be represented in more than one format (resolution, frame rate, etc.). The player environment is capable of analyzing the processor speed and available bandwidth and selecting an appropriate format. The player may also be directed to select or change formats while playing and not be required to start over. \u2022 Restrict access to the video. The Java player is restricted to operation within a specific web domain. If a different web page tries to activate a player not authorized for it, the player will fail to run. It is understood that under this agreement, this security model will be extended to support an encryption model. \u2022 Support complex ME formats. The complex ME object format is structurally the same, but supports dynamic frame rate and resolution settings. The video may use a different frame rate for each included scene. Deliverables The technology consists of a combination of source and object (executable) code and associated documentation: \u2013 ME encoder Windows dynamic link library executables \u2013 ME encoder controller Java applet executable \u2013 ME player Java applet executable \u2013 ME upload applet executable \u2013 ME installer applet executable \u2013 ME media service controller Javascript source code \u2013 ME media engine hosting service PHP executable (obfuscated source code) Intellectual Property All eViewMediaEngine software and other Intellectual Property associated with the technology described here remains the sole property of ESPRE. The Software License Agreement conveys to the Licensee the Intellectual Property protection associated with all patents (pending and issued) owned by ESPRE for the technology, including all those listed in Schedule B. Copies of the following ESPRE patents can be provided in separate documents if required by Licensee: \u2013 Patent No. US 7,003,168\u2014Image Compression \u2013 Patent No. US 6,904,175\u2014I mage Compression \u2013 Patent No. US 6,771,299 \u2014 Wavelet Transformation \u2013 Application Serial No. 601761,554 \u2014 eViewStudio \u2013 Application Serial No. 60177 1,727 \u2014 Digital Media Player \u2013 Application Serial No. 101307,613 \u2014 Wireless Telepresence \u2013 Application Serial No. 601744,389 \u2014 Wireless Navigation System \u2013 Application Serial No. 601864,963 \u2014 High Accurate Predictor Based Fractional Pixel Search for H.264 \u2013 Application Serial No. 601864,965 Hybrid Integer Pixel Searching Method for Fast Block Based Motion Estimation \u2013 Application Serial No. 601894,372 \u2014 Virtual Exchange Network", "hash": "64c658a0b9d7742fc9ae0955ca9e71d9", "id": 6}, {"samples": [{"hash": "chc4XcMf4aM", "uri": "/contracts/chc4XcMf4aM#technology-description", "label": "Power Purchase Agreement", "score": 24.4235858917, "published": true}], "size": 1, "snippet_links": [{"key": "generating-facility", "type": "definition", "offset": [30, 49]}, {"key": "solar-farm", "type": "definition", "offset": [90, 100]}, {"key": "solar-modules", "type": "definition", "offset": [180, 193]}, {"key": "performance-warranty", "type": "definition", "offset": [235, 255]}, {"key": "pv-modules", "type": "definition", "offset": [440, 450]}, {"key": "state-of-the-art", "type": "clause", "offset": [493, 509]}, {"key": "network-system", "type": "definition", "offset": [510, 524]}, {"key": "easily-removed", "type": "definition", "offset": [888, 902]}, {"key": "the-facilities", "type": "clause", "offset": [917, 931]}, {"key": "minimal-impact", "type": "clause", "offset": [953, 967]}, {"key": "the-land", "type": "clause", "offset": [971, 979]}, {"key": "model-number", "type": "clause", "offset": [990, 1002]}, {"key": "right-of-way", "type": "clause", "offset": [1129, 1141]}, {"key": "property-lines", "type": "definition", "offset": [1285, 1299]}, {"key": "setback-lines", "type": "clause", "offset": [1300, 1313]}], "snippet": "The Pristine Sun Photovoltaic generating facility consists of a 647 kW (DC) / 500 kW (AC) solar farm utilizing single-axis DuraTrack tracker technology from Array Technologies and solar modules of 280 to 300 \u2587\u2587\u2587\u2587\u2587 \u2587\u2587 each with 25-year performance warranty. The 42 trackers are spaced approximately 16 feet between rows in two blocks. Each tracker block uses one gear drive and a 1.5-3HP, 3-phase, 480V/AC motor, rotating 52 polycrystalline PV modules per row. The trackers are controlled by a state of the art network system that communicates with each tracker in the array. In high wind conditions an anemometer mounted on site will send a signal throughout the networked system which will relay a command to field lock the trackers at a 0 degree flat stow position. The vibration driven I-beam piers are double hot dipped in a special galvanization process to prevent corrosion and are easily removed at the end of the facilities life- cycle, causing minimal impact to the land. 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The 160 trackers are spaced approximately 16 feet between rows. Each tracker uses one A gear drive and a 1.5- 3HP, 3-phase, 480V/AC motor, rotating 60 polycrystalline PV modules per row. The trackers are controlled by a state of the art network system that communicates with each tracker in the array. In high wind conditions an anemometer mounted on site will send a signal throughout the networked system which will relay a command to field lock the trackers at a 0 degree flat stow position. The vibration driven I-beam piers are double hot dipped in a special galvanization process to prevent corrosion and are easily removed at the end of the facilities life-cycle, causing minimal impact to the land. 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