摘要:
An anesthesia machine exhaust emission control system (200) detects a gas flow in a connection pipeline (210) by means of an electronic flow detection unit (220) and displays same by means of a display unit (240), and a controller (230) controls, according to an operating state of the anesthesia machine, a switch unit (260) so same turns on or turns off the connection pipeline (210). The method for controlling the anesthesia machine exhaust emission control system (200) comprises: directly displaying a gas flow value in the connection pipeline (210) by means of the electronic flow detection unit (220), the controller (230) and the display unit (240), so that the user can conveniently and accurately read the gas flow value in the connection pipeline (210). The connection pipeline (210) is turned off when an anesthesia machine is in a standby state, thereby greatly saving exhaust gas recovery resources of a hospital.
摘要:
A backup flow control system applicable to an anesthesia machine. The backup flow control system turns on a backup ventilation mode when an electronic flow control system of the anesthesia machine has failed, and comprises a first controller (1), a flow regulation valve (2), an accommodation cavity (3), and a cover (4). The accommodation cavity (3) is a hollow structure having an opening. The cover (4) is connected to the opening of the accommodation cavity (3) to close the opening. The flow regulation valve (2) is disposed inside the accommodation cavity (3). The first controller (1), according to the operating state of the electronic flow control system, controls to turn on the backup flow control system and to open the cover (4), such that the opening is wide open to expose the flow regulation valve (2); or controls to turn off the backup ventilation mode.
摘要:
This disclosure is an anesthesia machine (100, 700) and system, may be used in the technical field of medical devices; the anesthesia machine (100, 700) may include a gas source interface (101) and an oxygen supply apparatus (102) and an anesthetic breathing apparatus (103) separately connected to the gas source interface (101); the oxygen supply apparatus (102) may provide an oxygen-containing gas to a patient (105, 105a, 105b); the anesthetic breathing apparatus (103) may provide anesthetic breathing support to the patient (105, 105a, 105b). The anesthesia machine system may include an anesthesia machine (100, 700) and an oxygen supply device; the anesthesia machine (100, 700) may be provided with a fixing mechanism; the oxygen supply device may be detachably fixed to the anesthesia machine (100, 700) by means of the fixing mechanism.
摘要:
A lock device (30) is disclosed, which comprises: a holder (31) which is provided with a through hole (312) running through the holder (31) and a slide (311) intersecting with the through hole (312); a guide bar (32), which is provided with an outer threaded area on at least a portion of a surface and passes through the through hole (312), where the outer threaded area is located at where the through hole (312) intersects with the slide (311); a lock component (35) received in the slide (311), where the end of the lock component (35) facing towards the guide bar (32) is provided with a lock threaded area which can engage with the outer threaded area of the guide bar (32); and a drive assembly which drives the lock assembly to move towards or away from the guide bar (32) in the slide (311). In the embodiments of present disclosure, the guide bar is locked when threads on the lock threaded area engage with outer threads on the outer threaded area. The lock devices according present disclosure are simple, easy to maintain, low cost, not ease to failure, with high reliability and able to bear very large load. In addition, they will not generate noise and need not to be operated with electricity, and the operation is more convenient.
摘要:
A lock device (30) is disclosed, which comprises: a holder (31) which is provided with a through hole (312) running through the holder (31) and a slide (311) intersecting with the through hole (312); a guide bar (32), which is provided with an outer threaded area on at least a portion of a surface and passes through the through hole (312), where the outer threaded area is located at where the through hole (312) intersects with the slide (311); a lock component (35) received in the slide (311), where the end of the lock component (35) facing towards the guide bar (32) is provided with a lock threaded area which can engage with the outer threaded area of the guide bar (32); and a drive assembly which drives the lock assembly to move towards or away from the guide bar (32) in the slide (311). In the embodiments of present disclosure, the guide bar is locked when threads on the lock threaded area engage with outer threads on the outer threaded area. The lock devices according present disclosure are simple, easy to maintain, low cost, not ease to failure, with high reliability and able to bear very large load. In addition, they will not generate noise and need not to be operated with electricity, and the operation is more convenient.