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Patent · US11528030B2 · B2 · US

Analog input device

(11) Publication number
US11528030B2
(21) Application number
17/020,876
(22) Filing date
2020-09-15
(30) Priority date
2019-09-18
(43) Publication date
2022-12-13
(45) Date of grant
2022-12-13
(51) IPC
B25J 13/06; H03M 1/06
(52) CPC
  • H03M Coding; decoding; code conversion in general: 1/0617, 1/0678, 1/1076, 1/12
  • B25J Manipulators; chambers provided with manipulation devices: 13/06, 13/08
  • G05B Control or regulating systems in general; functional elements of such systems; monitoring or testing arrangements for such systems or elements: 19/0423, 2219/21137
(73) Assignee
Denso Wave Inc
(72) Inventors
Takashi Hanai
(54) Title
Analog input device
(57) Abstract

An analog input device, which converts an inputted analog signal to a digital signal and outputs the digital signal, includes a high resolution AD converter, a first low resolution AD converter, and a second low resolution AD converter. When a difference between a first digital signal converted by the high resolution AD converter and a second digital signal converted by the first low resolution AD converter is equal to or less than a predetermined first threshold, the analog input device outputs first digital signal. When the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold, the analog input device stops an output of the first digital signal.

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Claims (5)

  1. An analog input device, which converts an analog signal input to the analog input device to a digital signal and outputs the digital signal that is converted, the analog input device comprising: a high resolution analog to digital converter executing an analog to digital conversion to the analog signal with a first resolution and outputting a first digital signal that is converted; a first microcomputer including a first low resolution analog to digital converter, the first low resolution analog to digital converter executing an analog to digital conversion to the analog signal with a second resolution and outputting a second digital signal that is converted, and the second resolution being lower than the first resolution; a second microcomputer including a second low resolution analog to digital converter, the second low resolution analog to digital converter executing an analog to digital conversion to the analog signal with the second resolution and outputting a third digital signal that is converted; a first comparator comparing the first digital signal output from the high resolution analog to digital converter with the second digital signal output from the first low resolution analog to digital converter as a first comparison process; a digital signal output unit outputting the first digital signal when a result of the first comparison process indicates that a difference between the first digital signal and the second digital signal is equal to or less than a predetermined first threshold, and the digital signal output unit stopping an output of the first digital signal when a result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold; and a switching unit permits or forbids an output of the first digital signal to the first comparator according to an instruction output from at least one of the first microcomputer or the second microcomputer, wherein at least one of the first microcomputer or the second microcomputer includes a second comparator that compares the second digital signal output from the first low resolution analog to digital converter with the third digital signal output from the second low resolution analog to digital converter as a second comparison process, when a result of the second comparison process indicates that a difference between the second digital signal and the third digital signal is equal to or less than a predetermined second threshold, the second comparator controls the switching unit to permit the output of the first digital signal to the first comparator, and when a result of the second comparison process indicates that the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the second comparator controls the switching unit to forbid the output of the first digital signal to the first comparator.
  2. The analog input device according to claim 1, wherein the switching unit is configured by a switching element arranged between the high resolution analog to digital converter and the first comparator.
  3. The analog input device according to claim 1, wherein, when the result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is equal to or less than the predetermined first threshold, the digital signal output unit outputs the first digital signal to an external device which is included in the industrial control apparatus via a communication bus of the industrial control apparatus.
  4. The analog input device according to claim 3, wherein the analog signal is output from a sensor, and the external device is provided by a control device that generates a command according to a detection value of the analog signal output from the sensor and outputs the generated command to a robot controller that controls an operation of a robot.
  5. An analog input device, which converts an analog signal input to the analog input device to a digital signal and outputs the digital signal that is converted, the analog input device comprising: a high resolution analog to digital converter executing an analog to digital conversion to the analog signal with a first resolution and outputting a first digital signal that is converted; a first microcomputer including a first low resolution analog to digital converter, the first low resolution analog to digital converter executing an analog to digital conversion to the analog signal with a second resolution and outputting a second digital signal that is converted, and the second resolution being lower than the first resolution; a second microcomputer including a second low resolution analog to digital converter, the second low resolution analog to digital converter executing an analog to digital conversion to the analog signal with the second resolution and outputting a third digital signal that is converted; an application specific integrated circuit including a first comparator, the first comparator comparing the first digital signal output from the high resolution analog to digital converter with the second digital signal output from the first low resolution analog to digital converter as a first comparison process, the application specific integrated circuit outputting the first digital signal when a result of the first comparison process indicates that a difference between the first digital signal and the second digital signal is equal to or less than a predetermined first threshold, and the application specific integrated circuit stopping an output of the first digital signal when a result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold; and a switching element arranged between the high resolution analog to digital converter and the application specific integrated circuit, the switching element permits or forbids an output of the first digital signal to the first comparator according to an instruction output from at least one of the first microcomputer or the second microcomputer, wherein at least one of the first microcomputer or the second microcomputer includes a second comparator that compares the second digital signal output from the first low resolution analog to digital converter with the third digital signal output from the second low resolution analog to digital converter as a second comparison process, when a result of the second comparison process indicates that a difference between the second digital signal and the third digital signal is equal to or less than a predetermined second threshold, the second comparator controls the switching element to permit the output of the first digital signal to the first comparator, and when a result of the second comparison process indicates that the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the second comparator controls the switching element to forbid the output of the first digital signal to the first comparator.

Description

The present disclosure relates to an analog input device which converts an inputted analog signal to a digital signal and outputs the converted digital signal.

There has been known an analog input device which includes high resolution analog to digital converters in redundant manner.

An analog input device, which converts an inputted analog signal to a digital signal and outputs the digital signal, includes a high resolution AD converter, a first low resolution AD converter, and a second low resolution AD converter. When a difference between a first digital signal converted by the high resolution AD converter and a second digital signal converted by the first low resolution AD converter is equal to or less than a predetermined first threshold, the analog input device outputs first digital signal. When the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold, the analog input device stops an output of the first digital signal. The analog input device further includes a first comparator. When a difference between the second digital signal and a third digital signal converted by the second low resolution AD converter is equal to or less than a predetermined second threshold, the analog input device permits an output of the first digital signal to the first comparator. When the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the analog input device forbids the output of the first digital signal to the first comparator.

Citations (6)

  • US20020120362A1
  • US20100010672A1
  • US8217822B2
  • US9098728B2
  • US10678151B2
  • JP2019020822A
Record as JSON
{
  "publication_number": "US11528030B2",
  "country": "US",
  "kind": "B2",
  "title": "Analog input device",
  "abstract": "An analog input device, which converts an inputted analog signal to a digital signal and outputs the digital signal, includes a high resolution AD converter, a first low resolution AD converter, and a second low resolution AD converter. When a difference between a first digital signal converted by the high resolution AD converter and a second digital signal converted by the first low resolution AD converter is equal to or less than a predetermined first threshold, the analog input device outputs first digital signal. When the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold, the analog input device stops an output of the first digital signal.",
  "claims": [
    "1. An analog input device, which converts an analog signal input to the analog input device to a digital signal and outputs the digital signal that is converted, the analog input device comprising: a high resolution analog to digital converter executing an analog to digital conversion to the analog signal with a first resolution and outputting a first digital signal that is converted; a first microcomputer including a first low resolution analog to digital converter, the first low resolution analog to digital converter executing an analog to digital conversion to the analog signal with a second resolution and outputting a second digital signal that is converted, and the second resolution being lower than the first resolution; a second microcomputer including a second low resolution analog to digital converter, the second low resolution analog to digital converter executing an analog to digital conversion to the analog signal with the second resolution and outputting a third digital signal that is converted; a first comparator comparing the first digital signal output from the high resolution analog to digital converter with the second digital signal output from the first low resolution analog to digital converter as a first comparison process; a digital signal output unit outputting the first digital signal when a result of the first comparison process indicates that a difference between the first digital signal and the second digital signal is equal to or less than a predetermined first threshold, and the digital signal output unit stopping an output of the first digital signal when a result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold; and a switching unit permits or forbids an output of the first digital signal to the first comparator according to an instruction output from at least one of the first microcomputer or the second microcomputer, wherein at least one of the first microcomputer or the second microcomputer includes a second comparator that compares the second digital signal output from the first low resolution analog to digital converter with the third digital signal output from the second low resolution analog to digital converter as a second comparison process, when a result of the second comparison process indicates that a difference between the second digital signal and the third digital signal is equal to or less than a predetermined second threshold, the second comparator controls the switching unit to permit the output of the first digital signal to the first comparator, and when a result of the second comparison process indicates that the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the second comparator controls the switching unit to forbid the output of the first digital signal to the first comparator.",
    "2. The analog input device according to claim 1, wherein the switching unit is configured by a switching element arranged between the high resolution analog to digital converter and the first comparator.",
    "3. The analog input device according to claim 1, wherein, when the result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is equal to or less than the predetermined first threshold, the digital signal output unit outputs the first digital signal to an external device which is included in the industrial control apparatus via a communication bus of the industrial control apparatus.",
    "4. The analog input device according to claim 3, wherein the analog signal is output from a sensor, and the external device is provided by a control device that generates a command according to a detection value of the analog signal output from the sensor and outputs the generated command to a robot controller that controls an operation of a robot.",
    "5. An analog input device, which converts an analog signal input to the analog input device to a digital signal and outputs the digital signal that is converted, the analog input device comprising: a high resolution analog to digital converter executing an analog to digital conversion to the analog signal with a first resolution and outputting a first digital signal that is converted; a first microcomputer including a first low resolution analog to digital converter, the first low resolution analog to digital converter executing an analog to digital conversion to the analog signal with a second resolution and outputting a second digital signal that is converted, and the second resolution being lower than the first resolution; a second microcomputer including a second low resolution analog to digital converter, the second low resolution analog to digital converter executing an analog to digital conversion to the analog signal with the second resolution and outputting a third digital signal that is converted; an application specific integrated circuit including a first comparator, the first comparator comparing the first digital signal output from the high resolution analog to digital converter with the second digital signal output from the first low resolution analog to digital converter as a first comparison process, the application specific integrated circuit outputting the first digital signal when a result of the first comparison process indicates that a difference between the first digital signal and the second digital signal is equal to or less than a predetermined first threshold, and the application specific integrated circuit stopping an output of the first digital signal when a result of the first comparison process indicates that the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold; and a switching element arranged between the high resolution analog to digital converter and the application specific integrated circuit, the switching element permits or forbids an output of the first digital signal to the first comparator according to an instruction output from at least one of the first microcomputer or the second microcomputer, wherein at least one of the first microcomputer or the second microcomputer includes a second comparator that compares the second digital signal output from the first low resolution analog to digital converter with the third digital signal output from the second low resolution analog to digital converter as a second comparison process, when a result of the second comparison process indicates that a difference between the second digital signal and the third digital signal is equal to or less than a predetermined second threshold, the second comparator controls the switching element to permit the output of the first digital signal to the first comparator, and when a result of the second comparison process indicates that the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the second comparator controls the switching element to forbid the output of the first digital signal to the first comparator."
  ],
  "description_excerpt": "The present disclosure relates to an analog input device which converts an inputted analog signal to a digital signal and outputs the converted digital signal.\n\nThere has been known an analog input device which includes high resolution analog to digital converters in redundant manner.\n\nAn analog input device, which converts an inputted analog signal to a digital signal and outputs the digital signal, includes a high resolution AD converter, a first low resolution AD converter, and a second low resolution AD converter. When a difference between a first digital signal converted by the high resolution AD converter and a second digital signal converted by the first low resolution AD converter is equal to or less than a predetermined first threshold, the analog input device outputs first digital signal. When the difference between the first digital signal and the second digital signal is larger than the predetermined first threshold, the analog input device stops an output of the first digital signal. The analog input device further includes a first comparator. When a difference between the second digital signal and a third digital signal converted by the second low resolution AD converter is equal to or less than a predetermined second threshold, the analog input device permits an output of the first digital signal to the first comparator. When the difference between the second digital signal and the third digital signal is larger than the predetermined second threshold, the analog input device forbids the output of the first digital signal to the first comparator.",
  "cpc": [
    "H03M 1/0617",
    "B25J 13/06",
    "B25J 13/08",
    "G05B 19/0423",
    "G05B 2219/21137",
    "H03M 1/0678",
    "H03M 1/1076",
    "H03M 1/12"
  ],
  "ipc": [
    "B25J 13/06",
    "H03M 1/06"
  ],
  "assignees": [
    "Denso Wave Inc"
  ],
  "inventors": [
    "Takashi Hanai"
  ],
  "filing_date": "2020-09-15",
  "publication_date": "2022-12-13",
  "grant_date": "2022-12-13",
  "priority_date": "2019-09-18",
  "application_number": "US-202017020876-A",
  "family_id": "74868790",
  "cited_by_count": 0,
  "citations": [
    "US20020120362A1",
    "US20100010672A1",
    "US8217822B2",
    "US9098728B2",
    "US10678151B2",
    "JP2019020822A"
  ]
}

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