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▼Purpose and Issues of Implementation • Strengthening the ability to inquire about necessary information when needed • Warehouse operations are becoming overly dependent on specific individuals • Improvement of shipping accuracy and inventory accuracy ↓ ▼Effects of Implementation • Inventory management and efficiency of warehouse operations through part number labels • Standardization of warehouse operations, enabling anyone to perform at a veteran level • Enhanced inquiry response capabilities • Addition of gate management functions, strengthening information provision for progress management and shipping status of parts ▼System Features • Total management from receiving inspection to label issuance, storage, picking, delivery, and supply • During receiving, a label with the part number is attached to the parts • Increased efficiency and accuracy in the shipping process (shipping rate below 25 ppm, inventory accuracy below 0.012%) • Improved management efficiency and accuracy (enhanced inquiry functions) ▼System Overview 1. Receiving Inspection: Inspect parts with labels attached and issue part number labels for attachment 2. Storage: Scan location and part number labels for storage 3. Picking: Attach "handheld picking supply slips" at the delivery unit level 4. Sorting: Sort by project code at the delivery batch level 5. Shipping 6. Gate Management System: Provide information on the receipt, shipment, and location of parts via the internet
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Free membership registration- A regionally-focused food wholesaler providing a well-rounded selection of products and the necessary quantities when needed. ▼ Purpose and Challenges of Implementation • Streamlining shipping operations and improving accuracy • Achieving precise date management for high-accuracy inventory items • Managing traceability of shipped products ↓ ▼ Effects of Implementation • Increased efficiency in picking operations • Improved accuracy in inventory management and date management • Easy realization of traceability ▼ Features of the System • Accurate date management through location management • Increased picking efficiency for a variety of small quantities (over 100 cases per person per hour) • Improved work efficiency and accuracy (shipping errors below 25 ppm, inventory accuracy below 0.012%) • Increased sorting efficiency for promotional items using DAS ▼ Overview of the System 1. Receiving: Issue date-labeled product tickets during incoming inspection for location management. 2. Shipping instructions are obtained from the host system; picking for loose and case items is done by store-specific handheld devices, and sorting for promotional items is done using digital displays. 3. Improved work accuracy and efficiency. 4. Individual work efficiency and accuracy management is implemented, along with KPIs.
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Free membership registrationImplementation and Problem-Solving Case of Warehouse Management System [Connected Linc] ■ Purpose of Implementation and Issues • Improve storage efficiency of mobile racks • Inventory counting takes an enormous amount of time, and storage locations are memorized by veterans • Replacement of the inventory management system is necessary ↓ ■ Implementation Effects • Increased efficiency in picking and inventory counting tasks. Improved management accuracy • Effective utilization of mobile racks (work efficiency and space) • Standardization of in-house operations allows anyone to perform at a veteran level • Improved work efficiency by replacing the inventory management system • Reduced work lists using handheld devices • Increased efficiency of automated warehouses and mobile racks • Improved work efficiency and accuracy (shipping errors below 25 ppm, inventory accuracy below 0.012%) ■ System Configuration 1. Scan the product label (barcode for item number and lot number) for each inbound pallet to register it 2. Outbound instructions are obtained from the host system, and batch picking is consolidated by transport service 3. Maintain first-in, first-out based on expiration dates while issuing picking instructions in location order, ensuring work efficiency even with mobile racks during outbound operations 4. Thorough lot management, etc.
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Free membership registrationWarehouse Management Package System [Connected Linc] On-Premise and Cloud Compatible [Purpose and Challenges of Implementation] - Publicly share inventory status with shippers to reduce inquiry responses - Maintain product tracking information (traceability) - Eliminate complicated tasks to achieve simple and efficient operations ↓ [Implementation Effects] - Decrease in inquiries from shippers - Simplification and efficiency of operations through the realization of traceability (reduction in work instructions from shippers) - Simplification of replenishment instructions [System Features] ■ Provides inventory and shipping information to shippers via VPN connection ■ Inventory simulation function ■ Management of products stored flat and picking instructions [System Overview] ■ Manages inventory from the state of imported containers by incorporating BL data ■ Issues and attaches QR code labels to actual products during transfer to the warehouse ■ Registers incoming goods by scanning actual product labels at flat storage locations using handheld devices ■ Imports outbound instruction data from shippers for allocation processing (Daily allocation processing simulates inventory to guide replenishment from the port to the warehouse) ■ Collects traceability data during navigation picking with handheld devices for picking instructions
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Free membership registration"Connected Linc" is a WMS (Warehouse Management System) package software that supports the resolution of various issues and challenges in warehouse management. Customization tailored to each customer’s operations is also possible. Additionally, by ensuring that it "fits & fits" with existing operations (not a gap), it minimizes the operational changes associated with implementation, allowing for a smart, speedy, and reliable setup at a low cost. 【Benefits of Implementation】 ■ Increased Work Efficiency ■ Improved Accuracy ■ Data Integration ■ Traceability ■ Visualization
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