Electro-Voice X-Line Very Compact (XLVC) manual Cbeam Shipping/Transport Configuration

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Step 1: Install Pickup Rings in Hole #10

Step 2: Rotate Yokes, Then Drop Pickup Rings

and #29 and Yokes in Positions A and C

(View Shown Cutaway for Clarity)

Figure 9e:

CBEAM Shipping/Transport Configuration

2.5 Using the XLVC-BGK and Grid for Pull Up

The XLVC-BGK is a rigging kit with the hardware necessary to install front hinge bars and rear swing arms on the bottom of the XLD281 and XLE181 loudspeaker system enclosures. This makes it possible to attach a grid to the bottom of an enclosure. The bottom grid can be used as a pull back on the bottom of a column to achieve downward tilt angles for the entire array that are greater than could be achieved from just a grid.

The XLVC-BGK consists of two front hinge bars, two rear swing arms, a shoulder bolt for the hinge bars and four sets of quick-release pins with screws to attach the lanyards to the enclosure rigging, as shown in Figure 10a.

Install the rectangular ends of the two hinge bars into the front rigging tubes the XLVC enclosure, as shown in Figure 10a, and secure each in the tubes with a quick-release pin having a green lanyard. The front hinge bars are mirror image. Make sure that the hinge bars are installed into the rigging tubes on the enclosure so that the two holes on the back side of the tube line up with the two holes on the bars. If the holes do not line up, exchange the left and right bars. Install the large hex-socket-head shoulder bolt through the slot in the rigging tube into the rear of the front hinge bars. The head of this bolt will serve as a handle to move the hinge bars in and out of the tubes. On each side of the enclosure, insert one of the small hex-socket-head bolts through the tab of the lanyard securing the hinge bar and through the tab of another matching quick-release pin having a green lanyard, then screw the bolt into the threaded hole on the side of the enclosure rigging. The extra quick-release pin on each side will be used to secure the hinge bars to the bottom grid. The newly added rigging should match the hinge bar and lanyards at the top of the enclosure. The extra front hinge bars at the bottom can be retracted into the rigging tubes during transport.

Secure the swing arms to rigging channels on each side of the enclosure by inserting a quick- release pin having a yellow lanyard into the 3° hole on the rigging channel, as shown in Figure 10a. The extra quick-release pins having a yellow lanyard will be used to attach the loose end of the swing arms to the bottom grid. There is insufficient room for both sets of swing arms to be retracted into the rear rigging channel during transport. Therefore, the bottom set of swing arms and quick-release pins will need to be removed when the enclosure is transported. Because the extra hardware must be removed, screws are not provided to attach the rear lanyards to the sides of the enclosure rigging.

ALWAYS MAKE SURE THAT THE QUICK-RELEASE PINS ON THE HINGE BARS FULLY LOCK INTO THE ROUND HOLES IN THE FRONT RIGGING TUBES ON BOTH THE ENCLOSURE AND THE GRID.

ELECTRO-VOICE®X-Line Very CompactTM Rigging Manual

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Contents Line Very Compact Rigging Manual Table of Contents Rigging-Safety Warning XLD281 Loudspeaker System IntroductionXLE181 Loudspeaker System Overview of the Xlvc Flying System Line Very Compact Rigging SystemXlvc Enclosure Rigging Hardware Details Typical Xlvc Flying System Without Coupler Beam Rigging Hardware XS212 Rigging HardwareWeight 48 lb 21.8 kg XLD281 Rigging Dimensions and WeightsXLE181 Rigging Dimensions and Weights Front View XS212 Rigging Dimensions and WeightsXlvc Rigging Accessory Details XLD Grid Rigging Dimensions and WeightsXLE Grid XLE Grid Rigging Dimensions and WeightsXLVC-BGK Cbeam Rigging Dimensions and WeightsAgcd Adapter Grid Dimensions and Weights XLVC-BGK Bottom Grid Kit ContentsSP12.6 XGS-4 Groundstack Details/DimensionsSP8.4 XLD/XS Dolly Array Considerations Xlvc Rigging and Flying TechniquesRigging Xlvc Enclosures Together Front View Front ViewSide ViewFront ViewSide View Rigging XLD281 or XLE181 Systems Together Rigging XS212 Enclosures Together Rigging XS212 Systems TogetherRigging XS212 and XLD281 Enclosures Together Rigging XLD281 and XS212 Systems Together Rigging the Xlvc Loudspeaker Systems and Xlvc Grids XLD Grid and XLE Grid Rigging Assembly XLD Grid and XLE Grid Rigging Configurations Rigging the Xlvc Grids and the Cbeam Cbeam Rigging Assembly Cbeam Single-Array Configuration Using Grid Position B Cbeam Dual-Array Configuration Using Grid Positions a and CCbeam Pick Up Options Using the XLVC-BGK and Grid for Pull Up Cbeam Shipping/Transport ConfigurationAssembling the XLVC-BGK Using the Agcd with Xlvc and XLC Systems XLVC-BGK Column of Enclosures XLD/XS Dolly LiftRigging an Array from the Xlvc Dollies Working-Load Limit and Safety Factor Definitions Structural Rating Overview Simplified Structural-Rating Guidelines XLD281 Simplified Structural RatingsELECTRO-VOICEX-Line Very CompactTM Rigging Manual ELECTRO-VOICEX-Line Very CompactTM Rigging Manual XLD281, XLE181 and XS212 Complex Structural-Strength Ratings Complex Structural-Rating AnalysisXld281 Hinge Bar Working-Load-Limit Structural Ratings XLD281 Complex Structural RatingsXle181 Hinge Bar Working-Load-Limit Structural Ratings XLE181 Complex Structural RatingsXs212 Hinge Bar Working-Load-Limit Structural Ratings XS212 Complex Structural RatingsELECTRO-VOICEX-Line Very CompactTM Rigging Manual ELECTRO-VOICEX-Line Very CompactTM Rigging Manual Cbeam Complex Structural-Strength Ratings Agcd Complex Structural-Strength Ratings Cbeam Complex Structural RatingsAgcd Adapter Grid Complex Structural Ratings Electro-Voice Structural-Analysis ProceduresWind Loading Electro-Voice Xlvc Loudspeaker Systems Rigging Inspection and PrecautionsELECTRO-VOICEX-Line Very CompactTM Rigging Manual Rigging References ReferencesMechanical Engineering References Websites ELECTRO-VOICEX-Line Very CompactTM Rigging Manual ELECTRO-VOICEX-Line Very CompactTM Rigging Manual Telex Communications, Inc /2006 Part Number 38110-429 Rev a