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ELECTROMAGNETIC ANECHOIC CHAMBER AND UNIFORM FIELD AREA TESTING APPARATUS

2015
Online Patent

Titel:
ELECTROMAGNETIC ANECHOIC CHAMBER AND UNIFORM FIELD AREA TESTING APPARATUS
Link:
Veröffentlichung: 2015
Medientyp: Patent
Sonstiges:
  • Nachgewiesen in: USPTO Patent Applications
  • Sprachen: English
  • Document Number: 20150048962
  • Publication Date: February 19, 2015
  • Appl. No: 14/010548
  • Application Filed: August 27, 2013
  • Assignees: HON HAI PRECISION INDUSTRY CO., LTD. (New Taipei, TW), HONG FU JIN PRECISION INDUSTRY (ShenZhen) CO., LTD. (Shenzhen, CN)
  • Claim: 1. A uniform field area (UFA) testing apparatus, comprising: a supporting bar; a sliding member slidably fitted about the supporting bar; a first driving mechanism driving the sliding member to slide along the supporting bar; a rack slidably installed to the sliding member along a direction perpendicular to the supporting bar; a second driving mechanism driving the rack to slide relative to the sliding member; and a field intensity probe mounted to a bottom end of the rack.
  • Claim: 2. The UFA testing apparatus of claim 1, wherein the supporting bar defines a slide slot extending through two opposite side surfaces of the supporting bar, the rack is slidably received in the slide slot of the supporting bar.
  • Claim: 3. The UFA testing apparatus of claim 2, wherein the sliding member comprises a sliding shell slidably fitted about the supporting bar, the sliding shell defines two opposite guiding holes aligning with the slide slot of the supporting bar, the rack is slidably received in the guiding holes of the sliding shell.
  • Claim: 4. The UFA testing apparatus of claim 3, wherein the sliding shell comprises four sliding plates connected end to end through four angle irons, the guiding holes are defined two opposite sliding plates positioning at top and bottom of the supporting bar.
  • Claim: 5. The UFA testing apparatus of claim 4, wherein the sliding shell further comprises two shafts connected between every two adjacent angle irons and located at two opposite ends of the corresponding sliding plate, two conveying wheels are pivotably fitted about each shaft.
  • Claim: 6. The UFA testing apparatus of claim 4, wherein the first driving mechanism comprises two adjusting wheels rotatably installed to two opposite ends of the supporting bar, a transmission belt coiled on the adjusting wheels, and a first motor driving the adjusting wheels to rotate, the transmission belt is mounted to the sliding shell.
  • Claim: 7. The UFA testing apparatus of claim 7, wherein one of the sliding plates defines a mounting hole, the the transmission belt is mounted in the mounting hole.
  • Claim: 8. The UFA testing apparatus of claim 3, wherein the second driving mechanism comprises an installing shell mounted to a bottom of the sliding shell and a second motor installed in the installing shell, the second motor comprises a gear wheel, the rack extends through the installing shell, and the rack is engaged with the gear wheel.
  • Claim: 9. An electromagnetic anechoic chamber, comprising: a chamber; an antenna mounted at a first end of the chamber; a test bench mounted at a second end of the chamber opposite to the antenna; and a uniform field area testing apparatus comprising: a supporting bar horizontally mounted on a top of the chamber; a sliding member slidably fitted about the supporting bar; a first driving mechanism driving the sliding member to slide along the supporting bar; a rack slidably installed to the sliding member along an upright direction; a second driving mechanism driving the rack to slide; and a field intensity probe mounted to a bottom end of the rack opposite to the antenna.
  • Claim: 10. The electromagnetic anechoic chamber of claim 9, wherein the supporting bar defines a slide slot extending through top and bottom surfaces of the supporting bar, the rack is slidably received in the slide slot of the supporting bar.
  • Claim: 11. The electromagnetic anechoic chamber of claim 10, wherein the sliding member comprises a sliding shell slidably fitted about the supporting bar, the sliding shell defines two opposite guiding holes aligning with the slide slot of the supporting bar, the rack is slidably received in the guiding holes of the sliding shell.
  • Claim: 12. The electromagnetic anechoic chamber of claim 11, wherein the first driving mechanism comprises two adjusting wheels rotatably installed to two opposite ends of the supporting bar, a transmission belt coiled on the adjusting wheels, and a first motor driving the adjusting wheels to rotate, the transmission belt is mounted to the sliding shell.
  • Claim: 13. The electromagnetic anechoic chamber of claim 11, wherein the second driving mechanism comprises an installing shell mounted to a bottom of the sliding shell and a second motor installed in the installing shell, the second motor comprises a gear wheel, the rack extends through the installing shell, and the rack is engaged with the gear wheel.
  • Current U.S. Class: 342/1
  • Current International Class: 01; 01

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