CASE STUDY // Restaurant Operations Platform

RESTAURANT POS

High-Concurrency Dining & Table Management Engine

Technology designed to simplify billing, table management, orders, and restaurant operations under peak dining rush loads.

Order-to-KDS Time
Sub-Second
Split-Bill Flow
2 Taps
Hardware Reliability
99.99%
01 // OPERATIONAL ANALYSIS

The Challenge: Operational Friction at Scale

Multi-station restaurant venues suffered from order miscommunication between front-of-house staff and kitchen display systems (KDS), leading to guest delays, billing inaccuracies, and voided orders.

The Engineering Strategy

Engineer a high-throughput local network protocol allowing server handhelds, counter terminals, and kitchen displays to communicate peer-to-peer with zero internet dependency.

02 // SYSTEM ARCHITECTURE

Core Components & Data Flow

LIVE COMPONENT DATA BUS // INTERACTIVE
Zero-latency Local Area Network (LAN) peer discovery protocol
Dynamic interactive SVG table floor-plan renderer
Direct raw thermal printer socket integration
Centralized cloud reporting aggregate with automated daily z-reports
03 // PRODUCTION IMPACT

Engineered Solution & Outcomes

An ultra-responsive touch-first interface featuring instant floorplan state visualization, lightning-fast table transfers, custom modifier logic, and thermal printer network dispatching.

PRODUCTION TECH STACK
TypeScriptNext.jsWebSocketsNode.jsRedisPostgreSQL
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