TV-Toor engineers systems that keep working when national infrastructure stops: overhead protection, distributed survivable energy, earthquake preparedness and emergency-economy logistics. We do not sell decks. We produce design specifications that can be priced, manufactured and put through independent engineering review. Operating since 1998.
Overhead protection against steep-trajectory threats, differential armour, slat armour and transportable modular structures for schools and public institutions.
Hardened generation and storage units deployed in numbers, so that hitting several units reduces output instead of shutting a system down.
Preparedness dossiers for municipalities and water utilities, facility sensitivity mapping, damage and repair-time estimates, and seismic retrofit of the ageing building stock.
Emergency water storage, autonomous living units and household survival kits, built around the first 72 hours in which no government response is yet effective.
Two parallel crises, security and climate, rest on the same weak point: large central systems designed for an era when the threat was expensive and precise, not cheap and numerous.
A stock of roughly 80,000 residential buildings of three storeys or more, built before 1980 and not compliant with standard 413. Only about 3,900 of them, some five percent, were actually retrofitted by 2024. The national reference scenario for a strong earthquake projects around 7,000 fatalities, some 29,000 severely damaged buildings and an economy-wide cost of 150 to 200 billion shekels.
Methodology note. In every document we submit, each figure carries one of three certainty levels: verified against an official source, conservative estimate, or requires verification. The figures above belong to the first category.
A single hardened energy unit built as an industrial product rather than a field project: an upper steel mesh, a protective standoff gap, a bifacial solar plate and telescopic legs. The mesh is intended to initiate a shaped charge in the air, and the gap attenuates the blast wave before it reaches the asset. Plate 12.0 by 2.5 metres, 8 mm galvanised mesh, standoff of at least 400 mm, elevation 2.5 m, design wind 150 km/h, standards IS 413 and ISO 12944 C5-M.
An external steel envelope around and above an existing residential building. The perimeter frame carries its own weight on independent piles and transfers no vertical load to the old concrete, while coupling to the floor slabs at every level through energy-absorbing seismic connectors. The same envelope carries an overhead protective canopy, a solar roof with storage, charging infrastructure and architectural renewal, without evacuating residents and without adding housing units.
Two shipping containers cut and joined on site into a continuous 50 square metre classroom. Armour is differential: AR500 at 6 mm facing the threat, AR400 at 4 mm at the rear, with a 10 mm spall liner behind both. Slat armour at 350 mm standoff, eight reusable twistlock ground anchors and an autonomous solar micro-grid.
Separating mass from altitude. The laser source and cooling plant stay in a ground station inside a container; only the effector head is lifted, on a tethered drone at 100 to 120 metres, with the energy carried up through a single optical fibre. Three 5 kW sources combine to 14.1 kW effective, pointing accuracy under 20 microradians, kill time of 2 to 3 seconds at 500 metres, one operator per 10 to 20 km sector, fully commercial off-the-shelf components.
A family living unit that arrives as a standard container, deploys in one working day to three times its transport volume, and supplies power, climate control, drinking water, hot water and waste treatment with no grid connection of any kind. The performance metric is autonomy days: 21 days of full water autonomy and 72 hours of full function in a total blackout.
A 110,000 litre water storage array for a critical facility, built from five 40 ft containers with flexible bladders connected in series for continuous circulation, with filtration, pressure boosting at 4 bar, a tanker fill point and telemetry that alerts the moment city mains pressure drops. Alongside it, a thirty-day household kit for a family of four.
Backup between large power stations assumes an attacker can strike few targets. Cheap swarm attacks break that assumption. Distribution across hundreds of sites replaces the question of whether the system survived with how much of it survived.
When an attack costs thousands of dollars and an interception costs tens to hundreds of thousands, active defence loses the arithmetic even when it works. Passive protection installed once flips the cost ratio back toward the defender.
What is built on site is priced again at every site. What is produced on a line and assembled on site is priced once, tested once, and improves with each unit. Every product here is dimensioned to standard transport envelopes from day one.
We do not write zero collapses or approved patent when that is not the situation. Every figure is marked verified, conservative estimate or requires verification, and every design target is phrased as a target rather than a result.
1998, HLS division founded to develop, produce and deploy command and control systems for complex facilities. 2003, think tank formed to assemble consortiums of businesses and technologies from Israel and abroad. 2017, earthquake preparedness dossiers for municipalities and water utilities covering roughly three thousand facilities. 2025, modular protected classroom specification. 2026, Solar Shield and Israel 360 consolidated into deployment plans.
TV-Toor Ltd. Email yoel.genad@tv-toor.com, phone 052-343-0086.