Abstract:
An exemplary frame assembly includes a mounting frame and a fixing frame which is detachably mounted inside the mounting frame. The fixing frame includes two opposite side plate and two latching assemblies. Each latching assembly includes two connecting arms, a main body and a handle. Each connecting arm includes a first section extends from a front end of a corresponding one of the first and second side plate a predetermined distance and coplanar with the corresponding one of the first and second side plate and a second section bent backwards from the first section and overlapping the first section. Each second section includes a first latching portion. The mounting frame includes two second latching portions. The two first latching portions of the two latching assemblies cooperate with the two second latching portions to lock the fixing frame to the mounting frame.
Abstract:
A marker for the detection of liver cancer and application of the marker thereof. The application includes use of cytochrome p450 family 17 subfamily A polypeptide 1 (CYP17A1 protein) in the preparation of diagnostic reagents or kits for the detection of liver cancer kit. Studies have shown that CYP17A1 expression levels are higher in liver cancer tissues than in the adjacent healthy tissues, and the amount of CYP17A1 in sera of liver patients is significantly higher than that of healthy human population. Therefore, CYP17A1 can be used as a marker for the diagnosis of liver cancer (especially serological diagnosis).
Abstract:
A heat dissipating blower includes a main body and a cover. The main body includes a shell and a fan. An outlet and a first gap are defined in the shell. A connecting portion is set at one end of the first gap away from the outlet. Two sliding grooves are formed on inner surfaces of a first wall and a second wall and a plurality of locating holes is set on the two sliding grooves. The cover includes two parallel side plates and a middle plate. A plurality of positioning pins is set on outer surfaces of the two side plates. Some of the positioning pins are located in corresponding ones of the locating holes to change an area of the outlet.
Abstract:
An enclosure of an electronic device includes a chassis, a sliding plate slidably disposed on the chassis, and a pivot member. A number of vent holes and a location hole are defined in the chassis. A number of teeth are formed on a sidewall bounding the location hole. A through slot is defined in the sliding plate. A toothed rack is formed on a sidewall bounding the through slot. The pivot member extends through the through slot and the location hole. The pivot member includes a toothed portion engaging with the toothed rack and the teeth, and a smooth neck. When the toothed portion disengages from the teeth, the neck is pivotably received in the location hole, the pivot member is pivoted to drive the sliding member to slide relative to the chassis by the toothed portion rolling on the toothed rack, thereby exposing or covering the vent holes.
Abstract:
An electronic device includes a processor, a first storage unit, and a second storage unit. The first storage unit stores data generated by the processor in real time. The processor checks amount of storage space in use of the first storage unit, compares the current amount of used storage space of the first storage unit checked this time with a previous amount of used storage space of the first storage unit checked previously to determine whether the current amount of used storage space is greater than the previous amount of used storage space, obtains data that was stored in the storage space of the first storage unit since the previous check if the current used storage space is greater than the previously used storage space, and stores the obtained data in the second storage unit after the data is obtained.
Abstract:
A wrist housing, a wrist rotatably connected to the wrist housing, a first driver, a first transmission mechanism, a rotary member, a second driver, and a second transmission mechanism makes a robot arm assembly. The wrist housing is hollow. The first driver is assembled within the wrist housing for driving the wrist to rotate relative to the wrist housing along a first rotary axis. The first transmission mechanism is also assembled within the wrist housing and is positioned between the wrist and the first driver. The rotary member is rotatably assembled to a distal end of the wrist along a second rotary axis. The second driver is assembled within the wrist housing for driving the rotary member to rotate. The second transmission mechanism is assembled within the wrist housing, and is positioned between the second driver and the rotary member.
Abstract:
A connector includes a main body, an electrical interface extending from a front end of the main body, and a fixing member pivotably mounted to the main body with a first end. A second end of the fixing member forms a dummy interface similar to the electrical interface.
Abstract:
A heat dissipating apparatus includes a heat sink, a fan, and an airflow guide. The heat sink includes a conducting base board and a number of parallel fins vertically extending from the conducting base board. An air intake and an air outlet are defined in opposite ends of the heat sink. The airflow guide includes a mounting cover accommodating the heat sink, and a guiding element connected to the mounting cover. The fan is mounted to the mounting cover and at the air intake of the heat sink. The guiding element is arranged at the air outlet of the heat sink. The guiding element includes a guiding board. An angle between the guiding board and the fins at the air outlet is less than 90 degrees and more than 0 degrees.
Abstract:
A stand includes a supporting panel, two first rotating members attached to opposite sides of the supporting panel, two second rotating members rotatably mounted to first ends of the first rotating members, and two supporting members mounted to second ends of the first rotating members to support the two first rotating members. An angle forms between the first and second rotating members at the first ends, because of the supporting member.
Abstract:
An electrical device enclosure includes a front panel, a power supply and a switch assembly mounted on the front panel. The power supply includes an alternating current (AC) plug and a power circuit. The AC plug is used to receive an AC voltage. The power circuit is used to convert the AC voltage from the AC plug into a direct current voltage. The switch assembly is connected between the AC plug and the power circuit to turn on/off a connection between the AC plug and the power circuit.