Electronic personal dosimeter with ultra wide band wireless communication function and communication method
A technology of wireless communication and wireless communication module, applied in the field of electronic personal dosimeter and communication, can solve the problem that the ultra-wideband wireless communication function of electronic personal dosimeter cannot be realized, and achieves improved safety, convenience, and informationization. degree of effect
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Embodiment 1
[0033] figure 1It is a schematic structural diagram of an electronic personal dosimeter with ultra-wideband wireless communication function in this embodiment. As shown in the figure, an electronic personal dosimeter with ultra-wideband wireless communication function includes a radiation detection module 1 , a main control module 2 , and an ultra-wideband wireless communication module 3 . Wherein, the radiation detection module 1 is connected with the main control module 2 through communication, and is used to convert the collected radiation particles into high-amplitude pulse signals, and send the high-amplitude pulse signals to the main control module 2; The broadband wireless communication module 3 is connected in communication, and is used for processing the high-amplitude pulse signal, and sends the processing result to the ultra-wideband wireless communication module 3, and simultaneously controls the ultra-wideband wireless communication module 3 to work; the ultra-wid...
Embodiment 2
[0042] figure 2 It is a block diagram of a communication method positioning principle of an electronic personal dosimeter with an ultra-wideband wireless communication function in this embodiment, and the method includes the following steps:
[0043] Step 1: Use the power management circuit to boost and filter the power output from the battery, and divide the boosted and filtered power into 3.3V power and 9V power; use the 3.3V power as the radiation detection module, main control module and The working power supply of the ultra-wideband communication module uses a 9V power supply as the bias voltage of the Si-PIN detector;
[0044] Step 2: Use the Si-PIN detector to collect radiation particles and generate a current signal, pass the current signal through the I / V conversion circuit and the shaping amplifier circuit in turn to form a pulse signal, and then use the comparison circuit to filter out the pulse signal The low-amplitude pulse signal retains the high-amplitude puls...
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