Digital load cell with redundancy design
The present invention provides a digital load cell with redundancy design, the digital load cell including: at least one force measuring element that measures a load force applied to the digital load cell, where each force measuring element converts the load force into one analog signal; and one or more analog-to-digital conversion modules, where each force measuring element is connected to at least one analog-to-digital conversion module, and the analog-to-digital conversion module converts the analog signal into a digital signal. According to the digital load cell of the present invention, redundancy design is provided at least for both the force measuring element and the analog-to-digital conversion module, which can effectively ensure the proper operation of the digital load cell.
1 . A digital load cell with redundancy design comprising:
a force measuring element configured to measure a load force applied to the digital load cell and convert the load force into one analog signal; and
two or more analog-to-digital conversion modules, wherein the force measuring element is connected to each of the two or more analog-to-digital conversion modules, and wherein each of the two or more analog-to-digital conversion modules is configured to receive the analog signal from the force measuring element and independently convert the analog signal into a respective digital signal.
2 . The digital load cell of claim 1 , further comprising: one or more processors, wherein each of the two or more analog-to-digital conversion modules is connected to at least one of the one or more processors, wherein each of the one or more processors is configured to process the respective digital signal received from a respective one of the two or more analog-to-digital conversion modules.
3 . The digital load cell of claim 2 , further comprising: one or more storage units, wherein each of the one or more processors is connected to at least one of the one or more storage units.
4 . The digital load cell of claim 2 , further comprising: one or more power supply units, wherein each of the one or more processors is connected to at least one of the one or more power supply units.
5 . The digital load cell of claim 2 , further comprising: one or more communication units, wherein each of the one or more processors is connected to at least one of the one or more communication units, which is adapted to communicate with an external device.
6 . The digital load cell of claim 2 , further comprising: an alarm unit, wherein the at least one of the one or more processors is configured to compare the digital signal with a threshold to obtain a comparison result, and prompt, based on the comparison result, the alarm unit to issue an alarm.
7 . The digital load cell of claim 2 , wherein the at least one of the one or more processors is configured to calculate a difference between at least two digital signals, and use the difference for fault trend analysis.
8 . The digital load cell of claim 2 , wherein the processor is configured to, following application of the load to the digital load cell, compare at least two digital signals to obtain a dynamic comparison result.
9 . The digital load cell of claim 8 , further comprising: an alarm unit, wherein the at least one of the one or more processors is configured to compare the dynamic comparison result with a dynamic threshold range to obtain a dynamic comparison result, and prompt, based on the dynamic comparison result, the alarm unit to issue an alarm.