摘要:
PROBLEM TO BE SOLVED: To provide a user with useful information by an analysis device control system which manages use degrees of consumable parts and presents information about exchange of the consumable parts to the user.SOLUTION: For consumable parts 4a to 7a of units 4 to 7 of an analysis device 1, a use degree management unit 12 is provided to manage a use degree of each of the consumable parts 4a to 7a that indicates current total used time and current total used frequency of the corresponding consumable part. An exchange schedule date calculation unit 13 calculates an exchange schedule date (including the time) for each of the consumable parts 4a to 7a on the basis of a use limit value and the use degree stored in a use limit storage unit 11. For each of the consumable parts 4a to 7a, the calculated exchange schedule date is to be displayed on a display 2 in a predetermined display manner.
摘要:
Provided is a sample processing apparatus management system, sample processing apparatuses and a management apparatus, and a management method that can accurately and easily adjust the respective sample processing apparatuses irrespective of their individual differences. When abnormality has occurred in a sample analyzer, the sample analyzer requests approval for self-adjustment from a management server. The management server determines whether to permit performance of the self-adjustment, and when having determined to permit the self-adjustment, notifies the sample analyzer of the approval for the self-adjustment. When the approval for the self-adjustment has been notified of, the sample analyzer performs the self-adjustment.
摘要:
Disclosed is an automatic analyzer that is capable of executing a plurality of different measurement sequences in a sequential, parallel manner, has a check function for avoiding simultaneous mechanical equipment use and interference between the mechanical equipment, incorporates a plurality of different transport mechanism operation schemes for transporting a reaction vessel to the mechanical equipment, and minimizes a decrease in the throughput by choosing an appropriate transport mechanism operation scheme as needed. Before initiating a measurement sequence for a requested analytical test, the automatic analyzer checks for simultaneous use of the mechanical equipment. If it is judged that simultaneous mechanical equipment use would result, the automatic analyzer postpones the start of the requested analytical test. This makes it possible to avoid simultaneous mechanical equipment use and make a proper analysis. Further, the automatic analyzer incorporates a logic that initiates an analytical test irrelevant to simultaneous equipment use prior to the other analytical tests when a plurality of different analytical tests are requested. This makes it possible to make efficient analyses.