A connected record between every hospital and pharmacy.
Venless is building a biometric health information system — one patient identity, recognized by Venless Biometric Telemetry, shared securely across hospitals and pharmacies.
Fragmented medical records cost lives. When a hospital runs out of a critical medicine with no visibility into nearby stock, or a patient is sent between facilities during an emergency with no shared history, the delay itself becomes the danger.
Venless Care connects hospitals and pharmacies on one database, using continuous active microsecond facial scanning to identify patients consistently across every point of care — no repeated forms, no lost history, no guesswork.
It's built around a simple question: does your medical software actually help you deliver care, or is it just software? Every hospital and pharmacy is also a business — Venless Care is designed so doing right by the patient and growing the business point the same direction, not opposite ones.
The same identity layer powers the Venless Food Machine (VFM), an automated cooking and dispensing unit designed for high-uptime deployment in campus and public settings. The VFM launches first, as a standalone food platform, now operating at select locations with a public launch targeted for late 2026. The deeper "food is medicine" integration — meals matched to a person's actual health record — is the roadmap once Venless Care is live and hospitals and pharmacies in that same area are using it, not a claim about the VFM's current operation.
-
STOCK VISIBILITY
Preventing shortages before they happen
Real-time visibility into medicine stock across facilities helps prevent the kind of critical shortages that have cost lives.
-
SMART REFERRALS
Routing patients to capacity, not chance
Referrals move through the system based on actual bed and resource availability — reducing the time lost moving between facilities during an emergency.
-
REFERRAL INCENTIVES
Making the right referral the easy one
Planned: a non-cash reward system — not a payment — that makes referring a patient to proper care as worthwhile to a pharmacy as a sale, developed in discussion with the Pharmaceutical Society to avoid a pay-for-referral structure.
-
SUPPLY INTELLIGENCE
Lower waste, lower cost
Aggregated demand data can help pharmaceutical suppliers produce and distribute more accurately — reducing waste and, over time, cost of care. Any data shared with manufacturers is aggregate product-performance insight, not individual patient records.
-
OUTBREAK PATTERNS
Seeing an outbreak before it's declared
Planned: spotting the same unusual pattern showing up across multiple facilities early — surfacing a likely outbreak sooner than any single hospital could see on its own.
-
CLAIMS YOU CAN TRUST
Insurance claims that match the record
Planned: a patient-triggered way to file an insurance claim that's checked against verified platform history rather than a purchasable paper report — aimed at reducing fraud and easing the upfront-deposit problem patients face in emergencies.
-
FOOD AS MEDICINE
Nutrition matched to your health record
Roadmap, not day-one: once Venless Care is live in a given area, the VFM there can use a person's record — including known allergies and past reactions to medication or ingredients — to guide food suited to their actual health needs, not just their appetite.
Picture a world where healthcare is actually healthcare — not a business wearing healthcare as a disguise.
Where hospitals and pharmacies are freed from carrying the business side alone, so they can focus on care instead of survival. Where less waste means cheaper drugs, because no one has to price in the cost of dead inventory. Where insurance is something people can actually reach, not a wall between a treatable condition and the money to treat it. Where no one stays home with something that could kill them because they don't believe they can afford to be seen.
That's the world we're building toward — one identity, one record, one machine at a time. It's a lot to carry, and it isn't meant to be carried by one company alone.
Join the solution →Three verticals, one shared identity layer.
Each product line runs on the same underlying engineering foundation — biometric identity, structured data, precision hardware.
Venless Health (Venless Care)
A biometric patient identity system connecting hospitals and pharmacies — built so that better care and better business point the same direction, not opposite ones. Reduces stock shortages, misrouted referrals, and duplicated records.
HEALTHCARE SYSTEMSVenless Food Machine (VFM)
An automated ingredient-assembling cooker powered by a Raspberry Pi 5 processor, precise mechanical actuators, and custom stainless steel compartments — engineered for unattended, high-uptime food service, with a Flet-based interface running natively across iOS, macOS, Windows, and Android. Two-sided design, now operating at select locations including university campuses, with a public launch targeted for late 2026. Deeper integration with Venless Care for allergy-aware nutrition follows as Venless Care goes live area by area. Full specification below.
AUTOMATED HARDWARERaising a Thousand Entrepreneurs
Venless's applied engineering campaign — where Venless Care and VFM are field-tested live, and where the next cohort of builders is trained.
APPLIED EDUCATIONProduct demos
Short walkthroughs of the Venless ecosystem — Venless Care, the Venless Food Machine, and the engineering behind them.
Venless Care
How biometric identity connects hospitals and pharmacies on one shared record.
Venless Food Machine
A look inside the automated cooking hardware — from ingredients to a finished plate.
The Venless Ecosystem
A short overview of how the pieces fit together — engineering, healthcare, and education.
The Venless Food Machine — Phase 1
Now operating at select locations, including university campuses, with a public launch targeted for late 2026: a two-sided, standalone food platform built for campus and public deployment. The figures below are the current engineering design specification — some, particularly around sensor performance and power draw, are targets pending real-world testing and validation rather than certified, measured results. Dimensions and weight below reflect the earlier single-screen design and are pending an update to match the current two-sided configuration.
Footprint & Frame
4.80 m (W) × 1.80 m (D) × 2.85 m (H), ≈8.64 m² total footprint, ~1,400 kg. Ceramic-coated 316L stainless steel frame, matte black powder coat, IP65-rated enclosure, kinetic-orange LED trim.
Display & Recognition
Two-sided design: one 55" industrial capacitive touchscreen per side, Full HD 1080p, anti-glare tempered glass — letting two people order at once, front and back. Biometric facial verification designed for fast recognition at close range — a performance target, not yet independently tested.
Food Preparation Core
150 kg ingredient vault, 250–300 meals per refill, 2–4 minute prep time via dual-zone induction heating. Motorized serving hatch, automated clean-in-place wash cycle. Launches selling food — not yet linked to personal health records.
Power & Compute
Raspberry Pi 5 (16GB) as the central compute unit, targeting an NVIDIA Jetson Orin Nano co-processor for on-device recognition. Designed for grid power (400V three-phase or 230V single-phase) with battery backup for critical systems during outages — power figures are current design targets.
Reserved Wing Alcoves
Left and right structural alcoves ship open — usable as customer standing space in Phase 1 — and are pre-wired for future modules. Nothing hydrogen- or solar-related is installed in the Phase 1 unit; see below for what those alcoves are designed to eventually hold.
Networking
5G cellular, Wi-Fi 6E, Gigabit Ethernet, GPS time-sync, and remote over-the-air update capability for fleet management across deployment sites.
Beyond Phase 1: the long-term vision
The Phase 1 unit's wing alcoves are physically reserved for two future additions — on-site hydrogen production and enterprise fleet refueling. Neither exists in the Phase 1 build launching in August. The image and specification below describe that longer-term direction, not current hardware.
Why we're sharing this: it's the direction the Phase 1 design is built to grow into — the reserved wing alcoves are sized and pre-wired specifically for this. None of the specifications below are certified, tested, or built. Figures are engineering targets for a future phase, shared for transparency about long-term direction rather than as a description of current capability.
Left Alcove: Water Splitting
Reserved 1.50 m × 1.80 m envelope for a PEM microfluidic electrolyzer stack, water purification module, and gas separator — on-site hydrogen production from water.
Right Alcove: Hydrogen Fueling
Reserved envelope for a hydrogen fuel cell / generator and 350–700 bar dispensing valve assembly with emergency pressure venting. Hydrogen dispensing is safety-critical, regulated infrastructure — this is a design direction, not a claim of existing or certified capability.
Roof: Solar Generation
Canopy surface pre-contoured to accept 6–8 m² of flexible organic solar film, intended to help power on-site electrolysis once the water-splitting module is installed.
Raising a Thousand Entrepreneurs
A 6-day live engineering campaign hosted at Radford University College — training the next cohort of builders across CAD/CAM, data science, and cyber-physical systems.
Free office space for students who join Radford
Radford University College has committed to providing free office space to campaign participants who go on to join Radford's student body. This commitment is made by Radford, not Venless — speak with our team for current details on how to take up this offer as part of your enrollment.
Interested in Radford University College?
Venless can help guide participants through the Radford admissions process. This is entirely optional and separate from campaign participation — you don't need to be pursuing admission to join, and joining the campaign doesn't enroll you at Radford.
Parametric CAD/CAM Engineering
Design-to-manufacture workflows using parametric modeling for real, producible hardware.
Relational Data Science & Public Health
Structured data systems applied to healthcare delivery, patient records, and outcomes — built on the same logic behind Venless Care.
Cyber-Physical Systems & Edge Automation
Embedded logic and sensor-driven control — the engineering discipline behind the VFM.
Two ways to join
Start free. Upgrade any time if you want to attend in person.
Join Online
- Live stream of all 6 days
- Access to your chosen track's materials
- Certificate of participation eligibility
- No cost, no obligation
Attend In Person
- Everything in the online tier
- On-site at Radford University College, Accra
- Hands-on lab access and direct mentor time
- First access to the live VFM pilot on campus
Register for the campaign
Start with the free online tier, or select in-person if you want to attend on campus. This form doesn't process payment — a Venless team member will follow up with next steps.
- Open to undergraduate, postgraduate, and independent innovators worldwide
- Choose one specialized track to focus on for the 6-day campaign
- Radford admissions guidance is available on request — separate from campaign registration
Online participation is free. In-person attendance has a registration fee to cover venue costs — details are shared before you confirm that tier.
The campaign, in the room.
Moments from previous Raising a Thousand Entrepreneurs sessions — the same live, hands-on format returning in August 2026.











The Venless Executive Leadership Matrix
The founding and strategic leadership guiding Venless Solution Ltd's engineering direction and institutional partnerships.

Lepskey Brian
Sets the technical and strategic direction across Venless Solution Ltd's engineering, healthcare, and education verticals.

Grace Fred
Contributes to strategic planning and institutional partnership development across the Venless Ecosystem.

Emmanuela Frempong
Contributes to strategic planning and institutional partnership development across the Venless Ecosystem.