Multi-channel time-interleaved analog-to-digital converter
US-2015381193-A1 · Dec 31, 2015 · US
US9787315B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9787315-B1 |
| Application number | US-201715600231-A |
| Country | US |
| Kind code | B1 |
| Filing date | May 19, 2017 |
| Priority date | Jul 20, 2016 |
| Publication date | Oct 10, 2017 |
| Grant date | Oct 10, 2017 |
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A control device according to an embodiment includes a driving unit that supplies, to a control target, a current or a voltage on which an Alternating-Current (AC) component is superimposed, an Analog-to-Digital (AD) converter, and an AD conversion controller. The AD conversion controller causes, in an AC cycle of the AC component, the AD converter to execute a first AD conversion in synchronization with a starting timing of the AC cycle, and then to execute second and subsequent AD conversions at predetermined time intervals in response to a trigger by an internal timer of the AD converter.
Opening claim text (preview).
What is claimed is: 1. A control device comprising: a driving unit that supplies, to a control target, a current or a voltage on which an Alternating-Current (AC) component is superimposed; an output unit that outputs a detection voltage according to the current or the voltage supplied to the control target from the driving unit; an Analog-to-Digital (AD) converter that performs an AD conversion on the detection voltage; an AD conversion controller that causes the AD converter to execute the AD conversion at a plurality of timings in an AC cycle of the AC component to acquire a plurality of AD-converted values; and a drive controller that controls the current or the voltage to be supplied to the control target from the driving unit based on the plurality of AD-converted values, wherein the AD conversion controller causes, in the AC cycle, the AD converter to execute a first AD conversion in synchronization with a starting timing of the AC cycle, and then to execute second and subsequent AD conversions of the plurality of AD conversions at predetermined time intervals in response to a trigger by an internal timer of the AD converter. 2. The control device according to claim 1 , wherein the AD conversion controller causes, in the AC cycle, the AD converter to execute the first AD conversion in a first time from the starting timing of the AC cycle, and then to execute the second and subsequent AD conversions at intervals of a second time longer than the first time in response to the trigger by the internal timer of the AD converter. 3. The control device according to claim 2 , wherein the AD conversion controller outputs, to the AD converter, a trigger of the AD conversion to cause the AD converter to execute the first AD conversion in the first time from the starting timing of the AC cycle. 4. The control device according to claim 2 , wherein the AD conversion controller requests one AD conversion in response to a trigger by the internal timer in which a time interval is set to be shorter than the first time to cause the AD converter to execute the first AD conversion in the first time from the starting timing of the AC cycle. 5. The control device according to claim 2 , further comprising a change unit that changes a frequency of the AC component based on a predetermined condition, wherein the AD conversion controller changes the second time in accordance with the change of the frequency performed by the change unit to keep a number of the AD conversions constant in the AC cycle. 6. The control device according to claim 5 , wherein, when the frequency of the AC component is constant for a predetermined time period or more, the AD conversion controller requests the AD converter to execute the AD conversions in response to the trigger by the internal timer, and causes the AD converter to execute, from the first AD conversion, the AD conversions in response to the trigger by the internal timer. 7. An AD conversion controlling method comprising: outputting, to an AD converter, a detection voltage according to a current or a voltage on which an AC component is superimposed; and causing the AD converter to perform an AD conversion on the detection voltage at a plurality of timings in an AC cycle of the AC component, wherein the causing includes causing, in the AC cycle, the AD converter to execute a first AD conversion in synchronization with a starting timing of the AC cycle, and then to execute second and subsequent AD conversions of the plurality of AD conversions at predetermined time intervals in response to a trigger by an internal timer of the AD converter.
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