How Can a Telpo Kiosk Transform Your Business Operations?
A Telpo kiosk automates transaction flows through hardware engineered for high-frequency environments, supported by a 45,000-square-meter facility established in 1999. Deploying the systems shifts manual checkout to self-service models, managing up to 2 million units in annual production capacity. The equipment integrates multi-OS compatibility, including Android and Linux, operating alongside a 99.5% SMT line yield rate. Businesses replace traditional counters with modular terminals tested in a 900-square-meter CNAS-certified laboratory. Operations rely on customized hardware configurations to handle high transaction volumes across 100 export countries without expanding local workforces.
Local workforces rely on a centralized manufacturing infrastructure capable of scaling alongside global retail demands.
Global retail demands require the production environment to utilize 16,000 square meters of dedicated workshop space. Facilities operate Yamaha high-speed mounters and Panasonic insertion machines to maintain output. The automated assembly lines process 150,000 to 180,000 smart terminals monthly.
Monthly output volumes depend entirely on structural engineering and consistent component testing.
Component testing occurs when engineers conduct verification within a facility divided into 12 specific testing zones. The laboratory received formal CNAS certification in 2020. Testing protocols cover Over-The-Air darkroom analysis, Electromagnetic Compatibility, and climate endurance.
Climate endurance allows the hardware to function consistently in outdoor public transit networks.
Public transit networks in Mexico City integrated the TPS530 to upgrade their electric trolleybus fleets.
Electric trolleybus fleets utilizing the deployment currently serve over 115,000 local residents with contactless payment options. Transit officials recorded a 20% reduction in daily commute times following the installation.
Following the installation in public transit, international bus networks adopted similar ticketing validators.
Ticketing validators like the T10 model saw deployments of more than 2,000 units for bus fleets in Vietnam. The terminals process bank cards, e-wallets, and QR codes natively. For environments requiring high physical resilience, the T20 model provides IP65 water and dust resistance alongside an IK08 impact rating.
Impact ratings and physical resilience protect the internal processing modules used in retail spaces.
Retail spaces utilize the C50 terminal to apply edge computing capabilities directly to store aisles. Software processes visual data to identify unpackaged items on the checkout scale.
The checkout scale visual recognition system maintained a 99.8% accuracy rate during implementation in Walmart bakery sections.
Bakery sections and self-checkout counters extend similar accuracy rates to franchise restaurant operations globally.
Franchise restaurant operations at Burger King replaced manual registers with customized K20 kiosks. The machines process card swipes, QR codes, and multi-modal facial recognition payments. Customers complete their own orders and print receipts without staff assistance.
Staff assistance decreases further when convenience chains implement customized self-service stations.
Customized self-service stations at 7-Eleven utilize the F1 customized facial payment terminal for convenience store transactions. Shoppers use the proprietary application to scan items and finalize payments independently.
Finalizing payments independently requires strict compliance with international financial security standards.
Security standards require devices to hold EMV Level 1 and Level 2 application certifications for contact and contactless interfaces. The hardware architecture complies with PCI-PTS security requirements for payment data transmission. Support extends to global networks including AMEX, Discover, Visa payWave, and MasterCard PayPass.
MasterCard PayPass and other network compatibility integrates with localized payment methods across various European commercial centers.
Commercial centers and retailers in Romania maintain 1,000 units of the K10 kiosk for utility bill payments. The German Football Association uses 100 M8 mobile devices for SoftPOS operations during live stadium events.
| Model | Component Type | Primary Function | Regional Deployment |
| P8 | Handheld POS | Retail checkout |
Nigeria (5,000+ units) |
| K10 | Self-Service | Utility payment |
Romania (1,000 units) |
| M8 | Mobile POS | Event ticketing |
Germany (100 units) |
Live stadium events and ticketing applications run on platforms built by the internal software division.
The internal software division employs more than 200 research and development engineers to maintain the software architecture. R&D personnel account for 33% of the total corporate workforce. They oversee a portfolio containing over 130 software copyrights and 70 national patents.
National patents cover the embedded systems and the proprietary operating platform running on the devices.
The devices natively support multiple operating systems including Android, Linux, and Windows. The proprietary OS update features 101 distinct functions and 144 API interfaces. Developers use the provided interfaces to build custom applications for specific retail tasks.
Specific retail tasks complete the hardware deployment cycle for international enterprise buyers.
International enterprise buyers account for more than 20,000 global clients across multiple sectors. Exported units account for 60-80% of the total manufactured hardware volume. Teams process over 500 distinct custom OEM and ODM projects to match specific buyer requirements.
Specific buyer requirements dictate the physical dimensions and structural materials used in manufacturing.
Manufacturing customization services cover ID appearance design, MD structural engineering, and PCBA tailoring. Motherboard product modifications require 20 working days to process. Full machine assembly customization runs on a minimum 45-day production cycle.
Production cycles include mandatory technical reviews to verify component feasibility and establish precise cost estimations.
Precise cost estimations require the engineering team to generate 3D models and exact Bills of Materials before prototyping. Facilities utilize industrial-grade iSLA660 3D printers to fabricate physical hardware samples. Managers initiate bulk material procurement only after the first-piece inspection passes all technical parameters.
Technical parameters frequently involve integrating advanced biometric components into the hardware shell.
The hardware shell supports drivers for external fingerprint scanners, iris cameras, and palm vein sensors. The P105 flagship terminal processes palm print verification locally using a Qualcomm QCM6125 processor. Edge AI computing handles the biometric data within milliseconds without querying remote servers.
Remote servers remain necessary for mobile device management and automated fleet configuration.
Automated fleet configuration incorporates AI-powered Mobile Device Management protocols. The infrastructure executes predictive maintenance schedules and automates software deployment across distributed hardware. Retailers transition from standard hardware purchasing to an integrated smart service operational model.
Operational models in outdoor sectors demand specific environmental protection ratings.
Environmental protection ratings on the S8 tablet feature a rugged, tri-proof shell designed for outdoor security and mobile inspections. Facilities deploy the TPS980 and F10 facial recognition access terminals at employee gates and transit checkpoints. The F8 model provides rapid identification for municipal attendance logging and sports stadium entry control.