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    • 81. 发明专利
    • Indicia reader safety
    • GB2544392A
    • 2017-05-17
    • GB201615961
    • 2016-09-20
    • HAND HELD PRODUCTS INCORPORATED
    • JOHN A FURLONGSEAN PHILIP KEARNEY
    • G06K7/10G06K7/12G06K19/06
    • Ultraviolet (UV) light exposure from an indicia reader configured to read UV sensitive security marks is limited by determining that an item has one or more UV-sensitive security marks, activating a UV light source to read the UV-sensitive security marks, and if a UV exposure risk is detected, then deactivating the UV light source. The exposure risk may include the expiration of a time period, detecting that the item is no longer visible in the indicia readers field of view, or the detection of an object adversely affected by UV light, e.g. a human or human body part. The indicia reader 1 may be configured with two illumination light sources: a primary light source 30 for illuminating primary indicia (e.g., a barcode) 3 and a secondary ultraviolet (UV) light source 40 for revealing secondary indicia (e.g., UV fluorescent watermarks) 4 used to protect against counterfeit and fraud. The primary indicia may provide information that classifies the item, and the secondary light source may only be activated if the items class matches a class stored in the readers memory 60.
    • 86. 发明专利
    • Managing energy usage in mobile devices
    • GB2553198A
    • 2018-02-28
    • GB201709146
    • 2017-06-08
    • HAND HELD PRODUCTS INCORPORATED
    • MARK HOWERICKY GEORGE AUSTINROBERT ARLAN KOHTZ
    • G06F1/32H04W52/02
    • An environmental characteristic, such as temperature, humidity and/or dew point, is monitored over at least two environments 210, 220 in which a mobile device 100 is operable. A location of the mobile device is tracked in relation to the environments. The mobile device is informed with data relating to the environmental characteristic of the environment in which the mobile device location is located. A characteristic of the mobile device, such as the temperature of the device, is sensed. The data related to the environmental characteristic of the environment in which the device is located is compared to the sensed mobile device characteristic. Based on the comparison, an energy-using operation of the mobile device is controlled. Controlling the operation may comprise changing an operating state of a heater element. Sensors 211, 222 disposed in the environments may sense the environmental characteristics and communicate the sensed data over a network 230. The mobile device may comprise a network interface for exchanging data signals with the network 230. The at least two environments may comprise an outdoor operational environment and an indoor operational environment of the mobile device.
    • 87. 发明专利
    • Managing energy usage in mobile devices
    • GB2553196A
    • 2018-02-28
    • GB201709144
    • 2017-06-08
    • HAND HELD PRODUCTS INCORPORATED
    • CHIRANT PARIKHMICHAEL EHLERMARK HOWE
    • G06F1/32H04W52/02
    • A battery powered mobile device has a battery monitoring circuit that measures one or more parameters indicative of a current state of the battery. A battery power factor is calculated as a function of the one or more parameters, and the battery power factor is compared to a threshold. When the battery power factor exceeds the threshold, a system or process within the mobile device is identified whose power consumption can be reduced. The power consumption is reduced by altering or disabling the identified system or process. The systems or processes may be identified on the basis of an assigned priority. The parameters measured may be the battery temperature, battery terminal voltage and battery current draw. The battery power factor may be calculated as the sum of assigned values given to each of the battery temperature (T), terminal voltage (V) and current draw (I). The identified system or process may comprise a heater element, and the power consumption may be reduced by either deactivating the heater element or causing the heater element to operate at less than 100% heat generation.
    • 88. 发明专利
    • Smart Scan Peripheral
    • GB201713662D0
    • 2017-10-11
    • GB201713662
    • 2017-08-25
    • HAND HELD PRODUCTS INCORPORATED
    • A smart scan peripheral is capable of attaching to a mobile computing device (e.g., a smartphone) allowing the resulting combination to be used like a traditional gun scanner. The scan handle peripheral does not require a power source or any electrical connection to the mobile computing device but can operate to still relay trigger pull information to a running application on the mobile computing device. This scan handle peripheral makes use of a magnetometer found in the mobile computing device by moving a magnet into the vicinity of the electromagnetic field generated by the magnetometer. As the handle magnet enters the magnetic field around the magnetometer, a software application in the processor of the mobile computing device monitoring the magnetometer readings and when a disruption is detected, a trigger event is sent to the processor to trigger an operation such as a barcode scanning event. In an alternative embodiment, a passive near field communication (NFC) tag 600 is mounted on an actuator which slides into a readable position of an NFC reader on the mobile computing device to cause a trigger event.