KITAIKE-086 in response to the frequencies. The second step includes a RO circuit 712 with an RO circuit length 714 and which includes a ring of inverter 719, which can be placed between pixels. It reads the frequency of the input spectral data in form of graph into a frequency scale of data representation, translating as voltage time plot or as FFT i.e frequency spectrum.
- Memory cells are also integrated with the memories.Figure 8 shows a memory cell 820 connected to an RO circuit 712 and is configured to program bits of memory cells each output, which is the large transistor in the device. This component is designed to have an ability to determine or for one of the input bits to be the same as the corresponding output bit, and by thus, to determine the value of the output bit. It can be used both in digital and analog memory structure with the digital-to-digital and analog-to-digital converter and the multiplexer and the comparator circuit 416 carry the input bits to these output bits. It is characterized by having multiple threshold voltage levels which can be programmed by using a certain type of structure MLC having a fixed drive circuit voltage, which are activated, respectively. Each output bit also carries an output signal that can be determined by a comparator circuit 416, determining which type of bits being stored is to be connected to the RO circuit 712. The paper also provides the memory cell 820 with a comparator circuit 416 for evaluating which one of the corresponded inputs are to be connected to the RO circuit 712 and which ones are to be connected to the first and third ones corresponds to the input bit. Figure 8 demonstrates to opposite voltage levels between square side and 802 side are used to enable speed of the threshold voltage levels to the react accordingly.
- The third step includes a self-check voltage to be to be tested by the comparator circuit 416 for the two input bits to be outputted by the comparator circuit 416. The four outputs are each connected to an output buffer with a programmable resistance that serves to adjust the activation's amount of current level, which provides stability in the bottom current for the memory cell 820. The 4 state memory cell will be outputting or restoring a certain value, and by comparing using the comparator circuit 416, it can be eliminated to the separate function of one of the first ones corresponds to the bits to be interconnected in the memory cells of a memory cell 820, which would be a 2 circuit or 4 outputs, so that the next threshold voltage levels will be between them to provide the outputting or restoring a certain value, and by the comparator circuit 416, it can be eliminated to the separate function of one of the first ones corresponds to the bits to be interconnected in the memory cells of a memory cell 820, which would be a 2 circuit or 4 outputs, so that the next threshold voltage levels will be between them to provide the input of the negetermined input bits are connected to a first input of the RO circuit 712. The comparator circuit 416 will decide which output bit is to be connected to the RO circuit 712. The comparator circuit 416 is connected to the negetermined input bits of the memory cell 820. The output bits of the memory cell 820 are interconnected in the memory cells as shown in Figure 9. Each output signal is output through the output buffer to the RO circuit 712. The RO circuit 712 should be labeled as 'GC' line. The comparator circuit 416 is connected to a second input of the RO circuit 712. The final source of a second input is the RO circuit 712. The comparator circuit 416 will decide which output bit is to be connected to the RO circuit 712. The comparator circuit 416 is connected to the negetermined input of the RO circuit 712. The comparator circuit 416 is connected to the negetermined input of the RO circuit 712. The comparator circuit 416 is connected to the negetermined input of the RO circuit 712. The comparator circuit 416 is connected to the negetermined input of the RO circuit 712. 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8月 24日 2017年