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Shenzhen Xingtong IOT Technology Co., Ltd.

Barcode Scanner Manufacturer with development & Invention ability

Intelligent Traceability and Dispensing of Traditional Chinese Medicine Decoction Pieces: Technical Architecture and Application Analysis of the Xingtong Traceability Code Integrated Machine
来源: | Arthuor: XTIOT Barcode Scanner | Time: 2026-01-16 | 15 Reading | 分享到:

In the circulation of traditional Chinese medicine (TCM) decoction pieces, the accuracy of dispensing, the completeness of traceability, and the efficiency of data collaboration directly impact medication safety and the management efficiency of medical institutions. 

Traditional manual barcode scanning methods for dispensing have limitations in identification, efficiency bottlenecks, and data synchronization delays, making them unsuitable for meeting drug regulatory traceability requirements and the efficient operational needs of medical institutions. 

Xingtong IoT's TCM decoction piece traceability and dispensing integrated machine, relying on a core technology closed-loop of "batch scanning + automatic deduplication + voice reporting," combined with full-dimensional high-speed data acquisition and seamless integration with HIS systems, builds an intelligent traceability and dispensing solution adapted to medical scenarios, providing technical support for medical institutions and pharmaceutical manufacturers.



The core technological advantages of the integrated machine stem from the deep collaboration of its imaging module, decoding algorithm, and system integration. 

Its two main models, XT8101HD and XT8601B, offer differentiated technical adaptations for different application scenarios, covering complex barcode recognition and high-speed batch processing needs.


The XT8101HD focuses on complex drug regulatory code recognition scenarios, overcoming recognition bottlenecks through optical system and algorithm optimization. 

This model is equipped with a 1.02-megapixel global exposure image-based scanning module. Global exposure technology can quickly capture static or slightly dynamic barcode images, avoiding distortion caused by rolling shutters, and is suitable for scenarios where drug boxes are irregularly placed during dispensing. 

For common problems such as reflective film on drug boxes, dirt obstruction, blurry printing, and water mist interference, its built-in multi-spectral illumination module and adaptive image enhancement algorithm can dynamically adjust light intensity and imaging parameters, improving barcode contrast and edge clarity. 

It also integrates a full-code decoding engine, supporting parallel reading of multiple codes, ensuring recognition accuracy and stability in complex scenarios, and eliminating missed or incorrect readings from a technical perspective. 


In addition, the automatic scanning function triggers imaging and decoding through infrared sensing, and combined with the real-time audio feedback of the voice reporting module, achieves full-process automation of "scanning-verification-recording" without manual intervention. 

It also supports plug-and-play functionality, allowing for quick deployment through standardized interfaces, reducing the difficulty of system integration for medical institutions.



The XT8601B is designed for batch dispensing scenarios, improving efficiency and accuracy through high-pixel imaging and parallel processing technology. This model is equipped with a 6-megapixel high-speed barcode scanning module.  

Thanks to its higher-resolution image sensor and wide-angle optical lens, it can read 100 barcodes simultaneously in a single scan, accommodating batch scanning of 1-60 medicine boxes (the specific number is dynamically adjusted based on the size of the medicine boxes). 

Its core technological highlight is the adaptive scene recognition algorithm, which uses image segmentation technology to distinguish barcodes on medicine boxes of different heights and sizes, achieving comprehensive scanning coverage.  

It also integrates automatic deduplication and incremental scanning logic, using local data caching and comparison algorithms to prevent duplicate and missed scans, ensuring the accuracy of batch dispensing. 

To address the problem of reflection from the medicine box film, optical polarization filtering technology is used to suppress reflective interference, ensuring that reading speed and accuracy are not affected. 

This meets the high-efficiency needs of medical institutions during peak dispensing periods and supports plug-and-play functionality for quick integration into existing dispensing processes.



Full-dimensional data acquisition and system collaboration capabilities are key technical supports for the integrated machine to achieve a closed-loop traceability system. Both models have zero-latency data acquisition capabilities and seamlessly connect to HIS systems through standardized communication protocols, enabling real-time uploading and synchronization of scanning data. 

This ensures data interoperability between dispensing records, drug traceability information, and the medical institution's management system, providing traceable credentials for the entire lifecycle traceability of drugs. 

For pharmaceutical manufacturers, this technology enables precise data collection in the production and distribution links, building a complete "production-distribution-dispensing" traceability system and assisting enterprises in achieving refined management.



From a technical implementation perspective, the Xingtong integrated machine, through modular hardware design and software algorithm optimization, not only solves the core pain points in the dispensing of traditional Chinese medicine decoctions but also lowers the application threshold through features such as plug-and-play and system compatibility. 

Its technical architecture not only improves dispensing efficiency and accuracy, reducing labor costs and error rates, but also empowers drug regulatory traceability compliance through data closure, building an intelligent and traceable drug management system for medical institutions and pharmaceutical manufacturers, demonstrating strong scene adaptability and practical value.


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