Explore our high-performance automated guided vehicles engineered for dynamic load handling, intelligent narrow aisle navigation, and industrial-grade reliability.
As land-scarce Singapore accelerates its trajectory toward a premier global logistics hub, enterprises face the dual challenge of astronomical real estate costs and chronic labor shortages. According to the Singapore Economic Development Board (EDB), adopting advanced robotics aligned with the Smart Industry Readiness Index (SIRI) framework is no longer optional—it is a critical survival metric.
The integration of China-manufactured Automated Guided Vehicles (AGVs) and Autonomous Mobile Robots (AMRs) in Singapore has emerged as a cornerstone solution. By combining China's rapid technological iteration cycles and manufacturing scale with localized engineering adaptation, businesses can deploy intelligent material handling systems at a fraction of Western capital expenditures while achieving unmatched throughput performance.
This whitepaper details the architectural, technical, and regulatory landscapes of utilizing state-of-the-art Chinese AGVs in Singapore. It addresses safety mandates, deployment strategies, and ROI optimization profiles for operations managers seeking to build high-efficiency, resilient supply chain frameworks.
Fusing Intelligent Hardware and Enterprise Planning Software into a Unified Supply Chain Control Tower
Taking actual business needs as our cornerstone, SCP is committed to comprehensively innovating and enhancing the overall supply chain planning of modern enterprises. We provide organizations with end-to-end supply chain solutions, building a multi-role, multi-dimensional intelligent supply chain collaboration system that achieves all-round operational efficiency and seamless workflow optimization.
At present, SCP has established a complete product architecture supported by both proprietary hardware (such as Laser SLAM smart forklifts and robotic chassis) and advanced software control suites. This architecture is supplemented by top-level designs of our proprietary supply chain control tower to create an agile, flexible, and resilient end-to-end logistics environment for global enterprises.
"Our approach bridges the gap between digital supply chain planning software and the actual physical operations executed by smart autonomous AGVs on the warehouse floor."
Benefiting farmers and bringing welfare to consumers by optimizing global agricultural and food processing supply chain efficiency.
Leading the technological upgrade of the supply chain and achieving extraordinary value for industry transformers.
Alliance of Developers of New Quality Supply Chain Technology, focusing on high-end robotics and software orchestration.
Analyzing Laser SLAM, Visual SLAM, Fleet Management Systems, and Hybrid Navigation Protocols.
By mapping environments using high-precision LiDAR sensors, our systems achieve ±5mm positioning accuracy. Laser SLAM eliminates the need for expensive physical infrastructure like magnetic tapes or floor reflectors, allowing dynamically adaptable pathing.
In highly complex layouts, our systems blend 2D/3D Laser SLAM with QR code landmarks and inertial navigation (IMU). This ensures uninterrupted localization even in rapidly changing environments with dense pedestrian traffic.
Managed via an intelligent algorithm engine, our Fleet Management System dynamically coordinates up to 100+ AGVs/AMRs. FMS minimizes deadlocks, plans optimal paths, and coordinates opportunity charging patterns.
| Parameter / Capability | Laser SLAM Forklifts (e.g. SFL-CDD14) | Intelligent Low-Profile Pallet AGVs | High-Performance AMR Chassis (AMB-CSW10-BH) |
|---|---|---|---|
| Load Capacity Range | 1,400 kg - 3,000 kg | 1,500 kg - 3,000 kg | 1,000 kg (1 Ton) | Navigation Accuracy | ±10mm (SLAM) / ±5mm (Hybrid) | ±10mm (SLAM) / ±5mm (QR Code) | ±5mm (High-Precision LiDAR SLAM) |
| Obstacle Detection | Dual-layer Laser Scanner + Safety Bumpers | 360° Safety LiDAR + Optical Proximity Sensors | 3D Depth Camera + Front LiDAR Sensor |
| Battery & Autonomy | Lithium Iron Phosphate (LFP) / 6-8 hr runtime | LFP Rapid-Charge / Automatic Docking | LFP Battery with 24/7 Smart Opportunity Charging |
| Applicable Environments | Narrow aisles, high racks, pallet stacking | Cross-docking, line-feeding, standard racks | Factory assembly line integrations, material towing |
Our factories utilize advanced vertical integration models to build robotic systems that offer superior cost-to-performance metrics. By manufacturing structural chassis, navigation algorithms, and sensor assemblies within a unified ecosystem, we eliminate margins added by multi-tiered supply chains.
Our research and development processes focus on constant performance iteration. We integrate feedback from diverse global deployments back into the core architecture of systems like our SFL-CDD14-CE forklifts and AMB-CSW10-BH mobile chassis, ensuring that software, hardware, and safety systems meet rigorous CE, ISO, and local Singapore standards.
For Singaporean operators, this translates to faster lead times, access to a deep inventory of spare parts, and customizable chassis designs that accommodate unique pallet dimensions or restricted spatial envelopes.
Combining Industrial Accumulation, Business Comprehension, and Tailored Systems Delivery
As a subsidiary of New Hope Group, we maintain a solid reputation and execution capacity, backed by deep industrial intelligence across multiple heavy-duty sectors.
We were incubated directly from the digital operations side of the New Hope ecosystem, meaning we understand the real-world operational complexities of factory floors.
We retain full IP ownership and R&D capabilities for system integration across procurement, sales, and warehouse supply interfaces to meet bespoke client requirements.
Our packages include light advisory consultations that optimize material flows, analyze process bottlenecks, and map out strategic digital transitions.
We deploy dedicated implementation engineers locally. Our teams manage physical layout scanning, target commissioning, safety calibration, and employee training to ensure systems launch on schedule and operate reliably.
Custom Deployments for Food Processing, Cold Chain, and Precision Electronics Manufacturing
SCP specializes in providing end-to-end technological solutions tailored for the food supply chain, integrating software matrices with automated AGV hardware. Using IoT sensors, artificial intelligence, and machine learning, we optimize procurement, temperature-regulated handling, and order fulfillment processes.
In temperature-controlled facilities, our AGVs function in sub-zero environments, mitigating safety hazards associated with human operators in extreme cold. By coordinating mobile scales, robotic lifts, and fleet systems, we maintain uninterrupted tracking data across the entire supply chain.
In sectors like semiconductor assembly and precision electronics, environmental contamination control is paramount. Our automated guided vehicles, built on clean-room rated components and utilizing non-marking polyurethane wheels, carry fragile wafer cases and electronic sub-assemblies without causing micro-vibrations or generating airborne particulates.
Through integration with Manufacturing Execution Systems (MES), our mobile robot chassis receive material call signals directly from assembly stations, automating transport tasks to minimize floor inventory and optimize work-in-progress (WIP) cycles.
Integrating Green Technology, Advanced Research, and Global Partnerships for Industry Progress
We continuously invest in R&D to optimize our software architectures and control tower platforms. By strengthening hardware-software integrations across procurement, sales, and shipping functions, we build a reliable technological base for sustainable automation.
By working closely with global logistics networks and local partners, we develop systems that streamline cold chain and warehouse management. We cooperate with overseas integrators to share best practices and construct a competitive, international supply chain framework.
Aligned with our vision of leading technical supply chain upgrades, we build sustainable practices directly into our design processes, helping clients reduce energy consumption through smart fleet routing and optimized charging cycles.
Deploying autonomous equipment in Singapore requires compliance with strict safety regulations, overseen by the Workplace Safety and Health (WSH) Council and the Ministry of Manpower (MOM). Our AGV systems are engineered to meet international safety levels (specifically ISO 3691-4 and PL-d / Cat 3 safety certifications).
To satisfy localized safety standards, our AGVs are configured with multi-tier hazard mitigation protocols:








Key criteria to evaluate when integrating Chinese AGV technology into Singaporean logistics infrastructures.
When acquiring robotic automation systems for Singaporean operations, evaluate suppliers based on the following key metrics:
Examine hardware costs alongside installation, training, software licensing fees, and planned maintenance cycles over a 5-year period.
Assess the supplier's mapping process, factory integration speed, and capability to run simulated operations prior to physical delivery.
Confirm the presence of local technical support teams in Singapore to handle hardware issues, supply spare parts, and perform safety audits.
Clear, direct answers regarding deployment, safety compliance, and system integration.
The typical implementation cycle ranges from 6 to 12 weeks. This includes environmental mapping, building layout paths in the Fleet Management System (FMS), commissioning safety zones, testing system integration, and training local staff.
Our automated guided vehicles are designed to meet standard ISO 3691-4 international robotics directives. They come equipped with safety-certified LiDAR sensors, hardwired emergency stop relays, and automated deceleration profiles that ensure safe operation alongside manual floor traffic.
Yes. The API structure of our FMS allows integration with major WMS, MES, and ERP platforms (such as SAP, Oracle, and custom database structures). Data exchange is facilitated via REST APIs, Modbus, TCP/IP, or OPC-UA protocols.
Unlike older magnetic tape or physical wire systems, Laser SLAM navigation maps can be updated digitally. Small floor plan modifications can be updated directly in the system software without requiring structural changes to the warehouse.
In cold storage environments (down to -25°C), we equip our vehicles with internal thermal management systems and specialized insulation. Fast opportunity charging protocols are used to keep lithium iron phosphate (LFP) battery cells at optimal operating temperatures.
Explore additional automated guided vehicles engineered for specialized floor weights, pallet stacks, and custom heavy-load integrations.