
【虹科方案】AI 識別與 AR 工作流:重塑 PCB 質檢良率與數字化工廠
面臨 PCB 質檢良率瓶頸?虹科 HongKe 提供 AR 標準化工作流 + AI 識別解決方案,將肉眼漏檢率降低 50%,新員工培訓縮短至 1 天。適用於香港及東南亞電子製造轉型,助您實現高效品質控製與品質追溯。

NationwideIncreasing road transportation of highly sensitive medical equipment and suppliesThe Government of the Hong Kong Special Administrative Region (HKSAR) has also been working on the development of a new technology. As a result, these sensitive, high-tech devices are exposed to high levels of stress and risk, such asShock and vibrationThe loading and reloading of equipment, as well as movement within hospital and clinic operating rooms, trucks on bumpy roads and front yard drives are typical risk situations that can lead to damage. Loading and reloading of equipment, as well as movement within operating rooms in hospitals and clinics, and trucks traveling over bumpy roads and forecourts are typical risky situations that can lead to equipment damage.
Uroviva Services AG uses an autonomous MSR165 data logger with an integrated 3-axis accelerometer to monitor the harsh transportation of sensitive medical equipment and to fully document theImpact, shock and vibration conditionsThe

Highly sensitive sensors record the acceleration in all three axes: forward and backward (X), left and right (Y), and up and down (Z). Since the DataCORDER is subject to permanent gravity (gravitational acceleration), the actual position can also be determined. Once the position and acceleration have been determined, the data analysis reveals the pressure to which the cargo was subjected.
In principle, depending on the choice of sensor, the MSR165 can be used to measure direct effects on the goods, such as force and acceleration, as well as indirect factors such as temperature, humidity, pressure or light.

If the threshold is not set, the MSR165 can provide up to 3 days of continuous transportation measurements at a rate of 1600 measurements per second. If the threshold is set, the MRS165 DataCORDER can be used toUp to six months of shock vibration monitoringThe MSR165 can perform ±15g or ±200g impact monitoring. The user can use the optional automatic charging station or long-life batteries for longer recording times.The MSR165 can perform shock monitoring to ±15g or ±200g. The MSR165 can perform ±15g or ±200g impact monitoring. 32 measurements were recorded prior to the event. The recorder's storage capacity of 2 million measurements is sufficient for standard recording of more than 10,000 impacts.
Uroviva Service AG utilizes a version with expanded memory for its applications. As a result, the recorder has a storage capacity of more than 1 billion measured values. Thanks to its very small form factor, light weight and the data logger's own built-in sensors and power supply, the MSR165 can be mounted directly on the housing of a mobile device. There is no need to install cables that can cause obstacles during transportation. The battery can be charged via the USB port of a laptop and the measurement parameters can be programmed at the same time, simplifying the operation of the DataCORDER.
Uroviva Services AG uses the MSR165 data logger for each shipment. This ensures that theShock impacts affecting goods are recorded throughout the journey on country roads, highways and in urban traffic.The company can verify this at any time through continuous recording. Through continuous recording, the company can verify at any time that theWhen and where the goods were shocked or struckand itsWhether the intensity will affect the smooth operation of highly sensitive high-tech equipmentThe transport route can be optimized considerably. Based on the measurement data and transport routes recorded during transport and loading, transport routes, transport methods and cargo safety can be significantly optimized.

面臨 PCB 質檢良率瓶頸?虹科 HongKe 提供 AR 標準化工作流 + AI 識別解決方案,將肉眼漏檢率降低 50%,新員工培訓縮短至 1 天。適用於香港及東南亞電子製造轉型,助您實現高效品質控製與品質追溯。

深入解析虹科 GNSS 模擬器中高斯噪聲對定位效果的影響。了解如何透過科學模擬提升接收機性能與定位精度,適用於香港及東南亞 B2B 技術測試環境。

虹科MSR衝擊振動記錄器可為物流運輸、軌道運輸、電力能源、工業自動化等領域提供高精度、可靠的衝擊振動監測解決方案。透過引入虹科MSR165衝擊微型振動記錄儀,海信日立成功建構了一套科學的數據監測體系,實現了對設備運輸環境的精準量化與產品設計的持續優化。