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These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations. Lidar, which stands for Light Detection and Ranging, is a remote sensing method that uses light in the form of a pulsed laser to measure ranges (variable distances) to the Earth. These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations. Lidar, which stands for Light Detection and Ranging, is a remote sensing method that uses light in the form of a pulsed laser to measure ranges (variable distances) to the Earth. These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations. Lidar, which stands for Light Detection and Ranging, is a remote sensing method that uses light in the form of a pulsed laser to measure ranges (variable distances) to the Earth. These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations. Lidar, which stands for Light Detection and Ranging, is a remote sensing method that uses light in the form of a pulsed laser to measure ranges (variable distances) to the Earth. These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations. Lidar, which stands for Light Detection and Ranging, is a remote sensing method that uses light in the form of a pulsed laser to measure ranges (variable distances) to the Earth. These light pulses—combined with other data recorded by the airborne system — generate precise, three-dimensional information about the shape of the Earth and its surface characteristics. A lidar instrument principally consists of a laser, a scanner, and a specialized GPS receiver. Airplanes and helicopters are the most commonly used platforms for acquiring lidar data over broad areas. Two types of lidar are topographic and bathymetric. Topographic lidar typically uses a near-infrared laser to map the land, while bathymetric lidar uses water-penetrating green light to also measure seafloor and riverbed elevations.",{"credits":12169,"designers":12172,"description":12175},{"text":12170,"title":12171},"\u003Cp>Designed by Cornel Windlin (2000) and Pablo Desportes & Luca Pellegrini (2022). First released on Lineto in 2022. Font engineering and mastering by Alphabet, Berlin.\u003C/p>","Credits",{"text":12173,"title":12174},"\u003Cp>(*1964) co-founded Lineto with Stephan Müller. He primarily designed type for use in his own work, such as LL Alpha Headline and LL Lutz Headline (1992), LL Gravur Condensed (1996), LL supermax (1999), and many more. A recipient of the Jan Tschichold Prize (1997) and the Swiss Grand Prix for Design (2007), Cornel created visual identities for Schauspielhaus Zürich, the \u003Cem>Vitra Home Collection\u003C/em> and \u003Cem>TATE ETC\u003C/em>. He runs his design practice and directs Lineto out of Zurich.\u003C/p>\u003Cp>Pablo Desportes\u003C/p>\u003Cp>(*1996) studied at ENSAAMA (Olivier de Serre), Paris from 2014 to 2017, and he received a BA from La Cambre, Brussels in 2020. At Lineto, Pablo has been responsible for much of the graphic design output on the website, including type specimen and online publications. He redeveloped the dot-matrix face LL DMT (2021/22), making it playfully variable, and also designed the re-iteration of the typographic ready-made LL Plot (2022). His graphic counterpart to LL Supreme, LL Supremus, was released in early 2024.\u003C/p>\u003Cp>Luca Pellegrini\u003C/p>\u003Cp>(*1989) holds an MA in Type Design from ECAL (2019). His 2016 BA project from SUPSI on Xanti Schawinsky yielded a typeface which was later released as part of Adobe’s ‘Hidden Treasures of Bauhaus’. Luca joined Lineto in 2019 and has since designed the soon-to-be-published LL Unica77 Condensed, LL Unica77 VIP and LL Unica77 Mono families, along with an extensive symbol set for the Unica77 families. He also designed LL Rephlex (2021), and is currently working on a digital reformulation of Schawinsky’s typewriter font used in the Olivetti model ‘Studio 42’.\u003C/p>","Cornel Windlin",{"text":12176,"title":12177},"\u003Cp>LL Plot is best described as a typographic ready-made. Cornel Windlin came across it while directing the graphic identity and communication during Christoph Marthaler’s tenure at Schauspielhaus Zürich in 2000/01. Fascinated by the illogical and oddly inconsistent lettershapes found on stage-set building plans, he inquired within the workshops. The actual source was a wildly obscure default font pre-installed on the in-house plotter, probably the remnant of a primitive single-stroke design used on pen-plotters which ran on MS Windows.\u003C/p>\u003Cp>Windlin extracted the font, converted it and edited it to suit his purpose, while adding a slightly heavier weight and a second style with condensed proportions. He prominently used them on a poster campaign and in the second season preview book, before they were put to rest on the back-up cartridges when Windlin left the theatre later that year.\u003C/p>\u003Cp>The Plot fonts had never been published on Lineto, but two decades later, Pablo Desportes discovered them while browsing through some of Windlin’s Schauspielhaus designs from the era. He suggested a redevelopment project, focussing on technical adjustments and expansion of the glyph set, which also demanded a number of formal corrections and refinements that were completed in collaboration with Luca Pellegrini.\u003C/p>\u003Cp>LL Plot now comes in two weights and carries both Latin and Cyrillic character sets.\u003C/p>","LL Plot",{"504":12168},{"125":11998},{"91":12146},{"allowRouteUpdates":10,"customRouteHash":41,"consideredRouteHash":41},{"octoSubMenu":41,"isOctoOpen":7,"isOctoHidden":7,"isOctoBlurred":7,"isOctoScrolling":7,"isOctoMenuHidden":7,"isOctoBarOpen":7,"isOctoBarHidden":10,"isOctoBuddyOpen":10,"isOctoPadOpen":7,"isOctoGuiHidden":7,"hasOctoTabs":7,"hasOctoSounds":10,"menuLinks":41,"preventClose":7,"menuDirection":12183,"menuBackRouteName":41,"itemSpacing":41,"fontRatio":41,"animationCounter":41,"hasVisibleItems":7,"visibleSubMenuLines":101,"maxSubMenuLines":101,"scrollableLines":101,"scrollableOffset":101,"currentSubMenuComponent":41,"nextSubMenuComponent":41,"currentBuddyComponent":41,"nextBuddyComponent":41,"octoTabsComponent":41,"octoPadComponent":41,"currentBuddyItems":41,"octoBarGroup":41,"octoBarGroupCount":101,"activeSection":41,"activeSectionLock":101,"searchTerm":41,"searchResults":12184,"isSearchActive":7},"vertical",[]]