
Telpo cash register machine line includes Android-based touchscreen POS terminals designed for retail and restaurant checkout workflows with configurations such as 15.6-inch Full HD 1920×1080 capacitive display, multi-touch input, and optional customer-facing secondary screens. Hardware options include up to 8GB RAM and 128GB storage, supporting continuous multi-application use like ordering, payment, and inventory sync. Built-in thermal printing modules support 80mm paper width with printing speeds up to 250mm/s and automatic cutting. The system integrates multiple interfaces such as USB, RJ11, RJ45 for external devices. The structure supports retail and hospitality environments requiring continuous transaction throughput and multi-device connectivity.
Telpo cash register machine product line is built around Android POS terminals used in retail checkout and restaurant billing environments. The hardware layout includes a 15.6-inch 1920×1080 capacitive touch panel with multi-touch support, combined with optional customer-facing screens in 10.1-inch or secondary 15.6-inch formats.
The display structure separates cashier input and customer confirmation, with synchronized output across two screens in real time.
The same system configuration is used in retail counters where transaction volume reaches around 300–500 orders per hour during peak hours in 2024 deployments.
dual screen pos setup allows parallel interaction without switching interfaces.
The product architecture supports hardware configurations up to 8GB RAM and 128GB storage, paired with Android operating environment. Processing units are built for continuous use under multi-application conditions such as POS software, payment apps, and inventory tools running simultaneously.
Android-based environment reduces dependency on single-purpose firmware, allowing software stacking across ordering and payment layers.
In 2023–2024 deployment cycles, systems with similar configuration were used in environments with more than 20 concurrent checkout events across multiple lanes, maintaining stable interface response under continuous input load.
Printing subsystem integrates thermal technology using 80mm paper width and output speed reaching up to 250mm/s, with automatic cutter support. Receipt generation is directly linked with order confirmation flow from cashier screen input.
Printing output is synchronized with transaction finalization, reducing delay between payment confirmation and ticket issuance.
Field usage data from retail environments with over 1,000 daily receipts per terminal shows consistent printing continuity across long operational hours without manual reset requirements in standard configurations.
Connectivity options include USB ports, RJ11, RJ12, RJ45 Ethernet, and audio interfaces. These ports support external devices such as barcode scanners, cash drawers, and kitchen printers.
Interface distribution is structured to support multi-device connection without external hub dependency.
In multi-terminal restaurant setups deployed between 2022 and 2025, each POS unit typically connects to 3–6 peripheral devices simultaneously, including payment terminals and kitchen display systems.
Display interaction design supports mirrored mode and extended mode between cashier and customer screens. Customer-facing screens display order details, pricing, and promotional content in real time.
Dual-screen structure supports simultaneous viewing of transaction stages by staff and customer.
In quick-service restaurant environments where average service time ranges between 90–180 seconds per order, the interface reduces manual confirmation steps by allowing direct visual validation on the second screen.
Industrial housing design supports continuous operation with input power specification of 24V/2.5A and working temperature range from -5°C to 45°C.
Hardware design allows stable operation in environments with extended daily operating cycles above 12 hours.
In hospitality deployments across 2024 service environments, terminals typically operate across 2–3 shifts per day, maintaining continuous uptime across long service windows without scheduled shutdown cycles.
System integration supports retail ecosystems combining ordering, payment, and inventory modules within a single terminal. The structure connects with external POS software platforms through standard interfaces and network connections.
System-level design reduces dependency on separate devices for transaction processing and receipt handling.
Across restaurant chains operating between 50 and 200 seats per location, terminals are often deployed in clusters of 2–8 units depending on service volume distribution, allowing distributed checkout coverage across multiple service points.