AUTOMATIC SAMPLE INJECTION DEVICE
20230280315 · 2023-09-07
Inventors
Cpc classification
International classification
Abstract
An automatic sample injection device is configured to perform an injection operation of a sample to an analyzer by a sampling mechanism (2) for sucking and dispensing a solvent. The automatic sample injection device is provided with solvent arrangement locations (14) at which a plurality of solvents each accommodated in a vial is arranged, a method setting unit (16) configured to set a method of a predetermined operation using a solvent based on information input by a user, a solvent arrangement setting unit (20) configured to set the number or types of solvents to be arranged at the solvent arrangement locations; and a control unit (6) configured to control the sampling mechanism to execute the predetermined operation with a method set by the method setting unit.
Claims
1. An automatic sample injection device configured to perform an injection operation of a sample to an analyzer the automatic sample injection device comprising: a sampling mechanism configured to suck and dispense a solvent; an arithmetic controller; and a control unit, wherein the arithmetic controller is configured to set a method of a predetermined operation using a solvent based on information input by a user, present a plurality of request items to a user when setting the method, and determine a recommended method corresponding to a selected request item, and wherein the control unit is configured to control the sampling mechanism to execute the predetermined operation with a method set by the arithmetic controller.
2. The automatic sample injection device as recited in claim 1, wherein the arithmetic controller is configured to, when setting the method, present the determined recommended method to the user.
3. An automatic sample injection device configured to perform an injection operation of a sample to an analyzer, the automatic sample injection device comprising: a sampling mechanism configured to suck and dispense a solvent; a solvent arrangement unit on which a plurality of solvents each accommodated in a vial is arranged; an arithmetic controller; and a control unit, wherein the arithmetic controller is provided with: a method setting unit configured to set a method of a predetermined operation using a solvent based on information input by a user; and a solvent arrangement setting unit configured to automatically set types of solvents to be arranged-at on the solvent arrangement unit, based on the method set by the method setting unit.
4. The automatic sample injection device as recited in claim 1, wherein the predetermined operation is a cleaning operation of the sampling mechanism before and after the injection operation.
5. The automatic sample injection device as recited in claim 1, wherein the analyzer is a gas chromatograph.
6. The automatic sample injection device as recited in claim 3, wherein the predetermined operation is a cleaning operation of the sampling mechanism before and after the injection operation.
7. The automatic sample injection device as recited in claim 3, wherein the analyzer is a gas chromatograph.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013]
[0014]
[0015]
[0016]
EMBODIMENTS FOR CARRYING OUT THE INVENTION
[0017] Hereinafter, with reference to the attached drawings, one example of an automatic sample injection device according to the present invention will be described.
[0018] As shown in
[0019] The sampling mechanism 2 is provided with a syringe 10 and a drive unit 12 for driving the syringe 10. The sampling mechanism 2 is for sucking and dispensing a sample and a solvent from vials arranged on the turret 4 by the syringe 10.
[0020] The turret 4 is a disk-shaped table. The turret 4 includes thereon a plurality of vial arrangement locations on the same circumference. The plurality of vial arrangement locations includes solvent arrangement locations 14 for arranging a plurality of vials each accommodating a solvent. Note that on the turret 4, in addition to the solvent arrangement locations 14, a sample arrangement location for arranging a vial for accommodating a sample may be provided. Also note that the sample arrangement location may be provided at a location different from a location on the turret 4.
[0021] The control unit 6 is a function realized by an electronic circuit including a CPU (central processing unit) or the like. The control unit 6 is configured to control the sampling mechanism 2 and the turret 4 to analyze the respective samples arranged on the turret 4. The arithmetic controller 8 communicatively coupled to the control unit 6 is provided with a function of setting a method of a predetermined operation using the solvent arranged on the turret 4, such as, e.g., a cleaning operation of the sampling mechanism 2 before and after the sample injection. The control unit 6 controls the sampling mechanism 2 and the turret 4 so that a cleaning operation or the like is executed according to the method set by the arithmetic controller 8.
[0022] The arithmetic controller 8 is realized by a general-purpose personal computer or a dedicated computer. The arithmetic controller 8 is electrically connected to a display 22 for performing various information displays and an input device 24, such as, e.g., a keyboard. The arithmetic controller 8 is provided with a method setting unit 16, a recommended method presentation unit 18, and a solvent arrangement setting unit 20. The method setting unit 16, the recommended method presentation unit 18, and the solvent arrangement setting unit 20 are functions obtained by the CPU in the arithmetic controller 8 executing predetermined programs.
[0023] The method setting unit 16 is configured to set a method of a cleaning operation or the like based on the information input by a user via the input device 24. Specifically, when the user inputs an instruction to edit the method, the method setting unit 16 displays a method edit screen on the display 22. When the user inputs necessary information on the method edit screen, the method setting unit 16 sets the method based on the input information.
[0024] Here, the cleaning operation of the sampling mechanism 2 is an operation of sucking the solvent from the vial 14 on the turret 4 by the syringe 10 and discharging the solvent to a drain (not shown). The cleaning operation method is defined by the type of the solvent used in each of the cleaning operation before the sample injection and the cleaning operation after the sample injection, and the number of times of suction and discharge by the syringe 10.
[0025] The recommended method presentation unit 18 is a function for assisting the user when setting the method of the cleaning operation or the like. The recommended method presentation unit 18 is configured to, when setting the method, present a plurality of request items to the user and present a recommended method corresponding to the request item selected by the user from the presented plurality of request items to the user.
[0026] The request item is a set of items to be achieved.
[0027] The recommended method is a method constructed in advance so that the effect of each request item is achieved. Although not illustrated in
[0028]
[0029] Returning to
[0030] Further, the solvent arrangement setting unit 20 may be configured to automatically set the arrangement of solvents on the turret 4 suitable for the method set by the method setting unit 16. In that case, the arithmetic controller 8 is provided with a storage area on the turret 4 that stores solvent arrangement information on the turret 4 corresponding to each of the methods that may be set, and when a method is set by the method setting unit 16, the arrangement of solvents on the turret 4 is set to correspond to the set method, and the information relating to the number and the types of the solvents to be arranged at the solvent arrangement locations 14 is displayed on the display 22. By using the solvent arrangement automatic setting function, the user only needs to arrange solvents at the solvent arrangement locations 14 on the turret 4 according to the information displayed on the display 22, and the user itself is not required to set by considering the solvent arrangement suitable for the method.
[0031] One example of the operation at the time of setting the method in the automatic sample injection device of this example will be described using the flowchart of
[0032] When the user inputs an instruction requiring the method edition to the arithmetic controller 8, the method setting unit 16 displays a method edit screen, and the recommended method presentation unit 18 displays a plurality of request items (Step 101). When the user selects the desired request item (Step 102), the recommended method presentation unit 18 presents a recommended method corresponding to the selected request item to the user by displaying it on the display 22 (Step 103). When the user edits and determines the information for the method by referring to the presented recommended method or applies the information on the presented recommended method as it is, the method setting unit 16 sets the method based on the information (Step 104). Subsequently, the user sets the arrangement of solvents on the turret 4 according to the set method, or the method setting unit 16 automatically sets the arrangement of solvents on the turret 4 based on the set method (Step 105).
[0033] Note that the example described above is merely an exemplary embodiment of automatic sample injection device according to the present invention. Embodiments of the automatic sample injection device according to the present invention are as follows.
[0034] One embodiment of the automatic sample injection device according to the present invention is directed to an automatic sample injection device configured to perform an injection operation of a sample to an analyzer by a sampling mechanism for sucking and dispensing a solvent. The automatic sample injection device is provided with: [0035] solvent arrangement locations at which a plurality of solvents each accommodated in a vial is arranged; [0036] a method setting unit configured to set a method of a predetermined operation using a solvent based on information input by a user; [0037] a solvent arrangement setting unit configured to set the number and types of solvents to be arranged at the solvent arrangement locations; and [0038] a control unit configured to control the sampling mechanism to execute the predetermined operation with a method set by the method setting unit.
[0039] According to the first aspect of the above-described embodiment, the automatic sample injection device is further provided with a recommended method presentation unit configured to, when setting the method, present a plurality of request items to the user to present a recommended method corresponding to the selected request item to the user. With such an aspect, the user can refer to the know-how of the manufacturer’s method, which makes it easier to construct a method to achieve the effects desired by the user.
[0040] According to the second aspect of the above-described embodiment, the solvent arrangement setting unit is configured to automatically set the number and the types of solvents to be arranged at the solvent arrangement locations, based on the method set by the method setting unit. With such an aspect, the setting of the solvent arrangement suitable for the set method can be simplified. This second aspect may be combined with the first aspect.
[0041] In the above-described embodiment, the predetermined operation may be a cleaning operation of the sampling mechanism before and after the injection operation.
[0042] Further, in the above-described embodiment, the analyzer may be a gas chromatograph.
TABLE-US-00001 Description of Symbols 2: Sampling mechanism 4: Turret 6: Control unit 8: Arithmetic controller 10: Syringe 12: Drive unit 14: Solvent arrangement location 16: Method setting unit 18: Recommended method presentation unit 20: Solvent arrangement setting unit 22: Display 24: Input device