

Real-time Cold Storage Monitoring
for Sample Integrity and Regulatory Compliance
Freezers
(-20℃, -80℃)
Temperature
The Temperature Sensor continuously monitors the unit for any temperature fluctuations, which is essential for safeguarding sample integrity.
Door Status
The Door Status Sensor delivers real-time monitoring of door closure integrity in freezers. To minimize false alert, the system integrates adaptive threshold filtering that distinguishes between routine access events (e.g., scheduled inventory checks) and unauthorized openings. Machine learning algorithms analyze historical door activity patterns (frequency, duration) to dynamically adjust sensitivity thresholds, reducing nuisance alarms by 92% compared to static systems.
Freezers & Fridges
(-20℃, 4℃)
Temperature
The Temperature Sensor continuously monitors the unit for any temperature fluctuations, which is essential for safeguarding sample integrity.
Door Status
The Door Status Sensor delivers real-time monitoring of door closure integrity in freezers and fridges. To minimize false alert, the system integrates adaptive threshold filtering that distinguishes between routine access events (e.g., scheduled inventory checks) and unauthorized openings. Machine learning algorithms analyze historical door activity patterns (frequency, duration) to dynamically adjust sensitivity thresholds, reducing nuisance alarms by 92% compared to static systems.
Fridges
(4℃)
Temperature
The Temperature Sensor continuously monitors the unit for any temperature fluctuations, which is essential for safeguarding sample integrity.
Door Status
The Door Status Sensor delivers real-time monitoring of door closure integrity in Fridges. To minimize false alert, the system integrates adaptive threshold filtering that distinguishes between routine access events (e.g., scheduled inventory checks) and unauthorized openings. Machine learning algorithms analyze historical door activity patterns (frequency, duration) to dynamically adjust sensitivity thresholds, reducing nuisance alarms by 92% compared to static systems.
Cryotanks
(Liquid Phase or Vapor Phase)
Temperature
The Temperature Sensor continuously monitors the internal temperature of the cryotank to ensure strict adherence to predefined operational limits.
Liquid Level
For liquid-phase cryotanks, the liquid level of substances like nitrogen is determined using temperature differential analysis. Typically, two independent temperature sensors are strategically positioned to detect maximum and minimum liquid levels, ensuring redundancy and compliance with safety protocols.
Cryotanic Containes
(Refrigerated box, transport box, dry ice box)
Temperature
The Temperature Sensor continuously monitors the internal temperature of the cryotanic containe to ensure strict adherence to predefined operational limits.
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