High Voltage Switch Characteristic Tester

Can perform electric and manual operations; >Can perform electric and manual operations

>Suitable for mechanical dynamic characteristic testing of various high-voltage circuit breakers within 500KV voltage level

>Can measure actual stroke and custom stroke

>Can achieve single close, single open, close-open, reclose, and reopen operations of circuit breakers

>Convenient wiring, simple operation, only one close (open) action is needed to obtain all close (open) data, can choose to save 50 sets of data, provide later query and upload to computer for permanent storage, also can view and print all data and motion curve charts on site

>Built-in clock circuit, can display current year, month, day, hour, minute, second, even if power is off, can automatically save setting data and test data

>Built-in delay protection function, after circuit breaker action, can automatically cut off the action power supply, well protects the circuit breaker equipment and high-voltage switch tester

>Built-in DC power supply, selectable range: 30-270V/10A, no instantaneous voltage drop in output of conventional rectifier power supply, very accurate for testing switch action voltage

>Can dynamically analyze the relationship between stroke and speed of circuit breaker within each 1ms time

>Can be configured with upload software to achieve computer archiving and online viewing, printing.

Technical Specifications


>Time test range: 1—499.9ms Resolution: 0.01ms Accuracy ≤0.1ms

>Speed test range: 15ms Resolution: 0.01m/s Accuracy ±1% reading + 2 digits

>Stroke test range: unlimited Resolution: 0.01mm Accuracy ±1% reading + 2 digits

>DC power supply selection range: 25-265V/10A Resolution: 1V Accuracy ≤±1%

>Working power: AC220V ±10% Frequency: 50Hz ±5%

>Ambient temperature: -10°C~40°C Relative humidity: ≤85%

>Insulation resistance: ≤2MΩ

>Dielectric strength: Power input line to housing can withstand 1.5KV for 1 minute withstand voltage test.

Term Definitions


1. Close/Open time: The time interval from the instant the close (open) command is received to the instant all pole contacts touch (separate). 2. Close/Open simultaneity: The maximum time difference among the contacts of each break touching (separating) at the instant. 3. Bounce time: The time from the first contact (separation) to the final stable contact (separation) of the moving and stationary contacts during close (open) operation. 4. Operating time: (Contact operating time) The time from the instant the close (open) command is received to the instant the contacts just start to move. 5. Bounce count: The number of times the moving and stationary contacts separate (close) during open (close) operation. 6. Bounce amplitude: The maximum rebound value of the moving contact during its movement. 7. Stroke: The distance from the initial position to any position of the moving contact during open/close operation. 8. Opening gap: The total gap between the contacts of one pole or any connected conductive parts when in the open position. 9. Over-travel: The distance the moving contact continues to move after the contacts touch during close operation. 10. Excess travel: The difference between the maximum stroke during the moving contact's motion and the stroke after stabilization during open/close operation. 11. Just close (open) speed: The speed of the moving contact at the instant of touching (separating) with the stationary contact during close (open) operation. 12. Average speed: The ratio of the stroke to the time during the entire movement of the moving contact in close (open) operation. 13. Arcing time: In close-open operation, the time interval from the instant all pole contacts touch to the instant all pole arcing contacts separate in the subsequent open operation.

Printer Installation Method


(1) A-type panel: Please pinch the elastic clips on both sides of the printer frame with your fingers, push the entire printer into the mounting hole of the instrument or equipment panel, and check whether the printer is installed firmly. (2) D-type and F-type front paper-loading panel: Installation is extremely simple and convenient, just insert the entire printer into the mounting hole of the instrument or equipment panel, clamp the printer from behind the equipment panel with plastic clips and tighten the screws. ◆The general paper loading process is as follows ① Remove the front cover of the printer ② A-type panel micro printer must be removed from the instrument panel. Note: The micro printer power must be turned off before operation. D-type, F-type front paper-loading panel and T-type desktop can skip this step. ③ Remove the paper roll shaft, install a new paper roll, put the paper shaft back into the guide groove of the printer, and confirm that the paper roll shaft is installed firmly and will not fall out. ④ Cut the paper end into a triangle or trim it straight. ⑤ Turn on the printer power, after the printer feeds a little paper, press the SEL key to turn off the SEL indicator, then press the LF key to rotate the print head, manually feed the paper head into the paper inlet below the print head, the paper will slowly enter the print head until the paper comes out from the front of the print head, then press the LF or SEL key to stop the print head rotation → close the printer cover, and thread the paper out through the paper outlet of the front cover. ◆Replacing the ribbon cartridge Ribbon replacement is only for dot matrix printers; thermal printers only need special thermal paper and do not need to replace the ribbon (consumable). Note: Thermal paper has two sides, only the front side can be printed. ◆The process of replacing the ribbon cartridge is as follows ① Open the printer front cover. ② First lift the right end of the ribbon cartridge, then lift the left end (the end with the knob) to remove the ribbon cartridge. ③ Gently place the left end of the new ribbon cartridge on the gear shaft of the print head, turn the knob on the ribbon cartridge in the direction of the arrow until the end of the ribbon cartridge falls to the bottom, then put down the right end of the ribbon cartridge. ④ Install the printer cover, first hang the upper part of the front cover on the frame, pay attention to align the indicator lights and buttons, then press the lower part of the front cover toward the frame with a little force to snap the front cover onto the frame.

>Suitable for mechanical dynamic characteristic testing of various high-voltage circuit breakers within 500KV voltage level

>Can measure actual stroke and custom stroke

>Can achieve single close, single open, close-open, reclose, and reopen operations of circuit breakers

>Convenient wiring, simple operation, only one close (open) action is needed to obtain all close (open) data, can choose to save 50 sets of data, provide later query and upload to computer for permanent storage, also can view and print all data and motion curve charts on site

>Built-in clock circuit, can display current year, month, day, hour, minute, second, even if power is off, can automatically save setting data and test data

>Built-in delay protection function, after circuit breaker action, can automatically cut off the action power supply, well protects the circuit breaker equipment and high-voltage switch tester

>Built-in DC power supply, selectable range: 30-270V/10A, no instantaneous voltage drop in output of conventional rectifier power supply, very accurate for testing switch action voltage

>Can dynamically analyze the relationship between stroke and speed of circuit breaker within each 1ms time

>Can be configured with upload software to achieve computer archiving and online viewing, printing.

Technical Specifications


>Time test range: 1—499.9ms Resolution: 0.01ms Accuracy ≤0.1ms

>Speed test range: 15ms Resolution: 0.01m/s Accuracy ±1% reading + 2 digits

>Stroke test range: unlimited Resolution: 0.01mm Accuracy ±1% reading + 2 digits

>DC power supply selection range: 25-265V/10A Resolution: 1V Accuracy ≤±1%

>Working power: AC220V ±10% Frequency: 50Hz ±5%

>Ambient temperature: -10°C~40°C Relative humidity: ≤85%

>Insulation resistance: ≤2MΩ

>Dielectric strength: Power input line to housing can withstand 1.5KV for 1 minute withstand voltage test.

Term Definitions


1. Close/Open time: The time interval from the instant the close (open) command is received to the instant all pole contacts touch (separate). 2. Close/Open simultaneity: The maximum time difference among the contacts of each break touching (separating) at the instant. 3. Bounce time: The time from the first contact (separation) to the final stable contact (separation) of the moving and stationary contacts during close (open) operation. 4. Operating time: (Contact operating time) The time from the instant the close (open) command is received to the instant the contacts just start to move. 5. Bounce count: The number of times the moving and stationary contacts separate (close) during open (close) operation. 6. Bounce amplitude: The maximum rebound value of the moving contact during its movement. 7. Stroke: The distance from the initial position to any position of the moving contact during open/close operation. 8. Opening gap: The total gap between the contacts of one pole or any connected conductive parts when in the open position. 9. Over-travel: The distance the moving contact continues to move after the contacts touch during close operation. 10. Excess travel: The difference between the maximum stroke during the moving contact's motion and the stroke after stabilization during open/close operation. 11. Just close (open) speed: The speed of the moving contact at the instant of touching (separating) with the stationary contact during close (open) operation. 12. Average speed: The ratio of the stroke to the time during the entire movement of the moving contact in close (open) operation. 13. Arcing time: In close-open operation, the time interval from the instant all pole contacts touch to the instant all pole arcing contacts separate in the subsequent open operation.