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ROMSPG3.01 Datasheet(PDF) 14 Page - u-blox AG |
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ROMSPG3.01 Datasheet(HTML) 14 Page - u-blox AG |
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14 / 31 page ![]() CAM-M8 - Data Sheet UBX-15031574 - R04 Page 14 of 31 Production Information 1.17 Clock generation 1.17.1 Oscillators The CAM-M8Q concurrent GNSS module uses a TCXO oscillator. The TCXO option allows accelerated weak signal acquisition, enabling faster start and reacquisition times. The CAM-M8C concurrent GNSS module uses a crystal-based oscillator. This makes the CAM-M8C a more cost efficient solution. Oscillators used on CAM-M8 series modules are carefully selected and screened for stability and against frequency perturbations across the full operating range (–40 °C to +85 °C). The careful selection and qualification of critical parts, such as GNSS oscillators, has resulted in u-blox modules being the most reliable positioning modules in the industry, particularly in challenging conditions 1.17.2 Real-Time Clock (RTC) In the CAM-M8Q the RTC is driven by a 32 kHz oscillator, which makes use of an external RTC crystal. If the main supply voltage fails and a battery is connected to V_BCKP, parts of the receiver switch off, but the RTC still runs providing a timing reference for the receiver. This operating mode is called Hardware Backup Mode, which enables all relevant data to be saved in the backup RAM to allow a hot or warm start later. The CAM-M8C has no integrated RTC crystal. The CAM-M8C can operate in single crystal mode, where the 26 MHz crystal oscillator can be used to provide frequency reference to the RTC without using an additional RTC crystal in Hardware Backup Mode. This makes the CAM-M8C a more cost efficient solution at the expense of a higher backup current. The current time is maintained in the RTC and ephemeris and other last known data is kept in the backup RAM. In A-GNSS based systems, the RTC is not required when coarse or fine time information is available from the network. ☞ More information, see the CAM-M8 Hardware Integration Manual [1]. 1.18 Power management The u-blox M8 technology offers a power optimized architecture with built-in autonomous power saving functions to minimize power consumption at any given time. Furthermore, the receiver can be used in two operating modes: Continuous mode for best performance or Power Save Mode for optimized power consumption respectively. 1.18.1 DC-DC converter The CAM-M8 module integrates a DC-DC converter, allowing reduced power consumption especially when using a main supply voltage above 2.5 V. ☞ For more information, see the CAM-M8 Hardware Integration Manual [1]. |
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