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L_CWDimTab

Written by Julien

Column Name

Description

Data Type

Length

Allow Nulls

Default

CW_RID

ID-No. of the counterweight-frame
(ID-No.=RID number of the counterweight-frame)
consecutive number

Integer

4

0
​

CW_PG_GRP

Number of the profile-group construction for the corresponding counterweight-frame.

/* Faktoren

0: DGB

1: DY

2: Frameheight

3: m_pCWDimSet->m_CW_SPACE;

4: m_pCWDimSet->m_CW_SUBWEIGHT_DZ_START;

5: Durchmesser der Pulleybeamrolle

*/

void

CGrCWFrameComp::SetProfilGruppenParameter(double *pData)

{

pData[0] = m_pCWDimSet->m_CW_DBG;

pData[1] = m_CW_Y_TIEFE_Edit;

pData[2] = m_CW_FRAME_DZ;

pData[3] = m_pCWDimSet->m_CW_SPACE;

pData[4] = m_pCWDimSet->m_CW_SUBWEIGHT_DZ_START;

if(m_pMovePulleyBeam[0]->m_pPulleySingle[0]->IsOwnerActive())

pData[5] = m_pMovePulleyBeam[0]->m_pPulleySingle[0]->Get_D();

else

pData[5] = 0;

pData[17] = GET_GS_Z_TOP();

pData[18] = GET_GS_Z_BOTTOM();

pData[19] = GET_GUIDES_DY();

pData[50] = m_pCWDimSet->m_CW_USER_PG_50;

pData[51] = m_pCWDimSet->m_CW_USER_PG_51;

pData[52] = m_pCWDimSet->m_CW_USER_PG_52;

pData[53] = m_pCWDimSet->m_CW_USER_PG_53;

pData[54] = m_pCWDimSet->m_CW_USER_PG_54;

pData[55] = m_pCWDimSet->m_CW_USER_PG_55;

pData[56] = m_pCWDimSet->m_CW_USER_PG_56;

pData[57] = m_pCWDimSet->m_CW_USER_PG_57;

pData[58] = m_pCWDimSet->m_CW_USER_PG_58;

pData[59] = m_pCWDimSet->m_CW_USER_PG_59;

pData[60] = m_pCWDimSet->m_CW_USER_PG_60;

pData[61] = m_pCWDimSet->m_CW_USER_PG_61;

pData[62] = m_pCWDimSet->m_CW_USER_PG_62;

pData[63] = m_pCWDimSet->m_CW_USER_PG_63;

pData[64] = m_pCWDimSet->m_CW_USER_PG_64;

pData[65] = m_pCWDimSet->m_CW_USER_PG_65;

pData[66] = m_pCWDimSet->m_CW_USER_PG_66;

pData[67] = m_pCWDimSet->m_CW_USER_PG_67;

pData[68] = m_pCWDimSet->m_CW_USER_PG_68;

pData[69] = m_pCWDimSet->m_CW_USER_PG_69;

}

Integer

4

✓

0
​

CW_MF_RID

ID-No. of the manufacturer
​
ID-No.=RID number of the manufacturer (MF_RID)

Integer

4

✓

0
​

CW_DESC

Description of the counterweight-frame

VarWChar

50

✓

CW_SUB_DESC

Sub-description of the counterweight-frame

VarWChar

50

✓

CW_MAT_RID

RID number of the material for the inlets

Integer

4

✓

0
​

CW_DBG

[0], Distance between guide rails

Double

9

✓

0
​

CW_DY

[1], Width of the inlets

Double

9

✓

0
​

CW_SPACE

[3], Distance from the subweight to the guide rail, for the calculation of the width of the subweight

Double

9

✓

0
​

CW_RELATION

Not in use, insert "0"

Double

9

✓

0
​

CW_APPLIED_WEIGHT_MIN

Minimum value for applied weight, as sum of CW_FRAME_WEIGHT, the inlets, guide shoes, etc. It is used only for the selection in the navigator.

Double

9

✓

0
​

CW_APPLIED_WEIGHT_MAX

Maximum value for applied weight, as sum of CW_FRAME_WEIGHT, the inlets, guide shoes, ect. It is used only for the selection in the navigator.

Double

9

✓

0
​

CW_FRAME_HEIGHT_K

[2], Constant value for calculation the counterweight-frame height.

Height of the counterweight-frame =

CW_FARME_HEIGHT_SW_F0 * CW_SUBWEIGHT_COUNT * CW_SUBWEIGHT_DZ + CW_FRAME_HEIGHT_K

Double

9

✓

0
​

CW_FRAME_HEIGHT_SW_F0

Factor for the calculation of the counterweight-frame height.

Height of the counterweight-frame =

CW_FARME_HEIGHT_SW_F0 * CW_SUBWEIGHT_COUNT * CW_SUBWEIGHT_DZ + CW_FRAME_HEIGHT_K

Double

9

✓

0
​

CW_FRAME_WEIGHT

Weight of the counterweight-frame

Double

9

✓

0
​

CW_SUBWEIGHT_DZ

Height of one inlet (subweight). Inlets with different heights are currently not supported.

Note for inlets:

To define the shape of an inlet you must define the shape of the inlet (usually 4 characteristic points) in L_ProfilGrpPktTab. The points of the shape are marked with the PGP_CODE_NO = 100. Only the coordinates PGP_X0_K0 and PGP_Y0_K0 are important. The PGP_Z0_K0 can be set to zero.

If you have a bigger counterweight with parallel stacks of inlets, the shape of the second inlet will be defined similar but the shape points are marked with PGP_CODE_NO = 101.

A counterweight can have up to 8 parallel stacks of inlets.

Double

9

✓

0
​

CW_SUBWEIGHT_COUNT

Default value for the quantity of the inlets in z-direction

SmallInt

2

✓

0
​

CW_SUBWEIGHT_IX_MAX

Maximum inlets in y- or x- direction

SmallInt

2

✓

0
​

CW_SUBWEIGHT_DZ_START

[4], Distance between the bottom of the cwt-frame and the start of the subweights

Double

9

✓

0
​

CW_SUBWEIGHT_SPACE

Not in use, insert "0"

Double

9

✓

0
​

CW_Z_BOTTOM

Set to 0.

Today the buffer impact points are defined by characteristic points together with the geometry group.

This variable contains the Z-distance between the bottom of the counterweight-frame and the buffer impact point. In early DigiPara Liftdesigner versions, this distance was determined by this variable.

Double

9

✓

0
​

CW_GUIDE_TYPE

The type of the guiding system which is used for this counterweight-frame:

1 — no more use
2 — no more used
3 — no more used
0x0010 — CW_GUIDE_TYPE_DIR_OUTSIDE The direction of the cwt guide rails is rotated by 180 degrees. Do not use negative DBG dimension to archive this goal.
0x0020 — CW_GUIDE_TYPE_BF_AT_FRAME. Use this option to fix the buffers at the cwt frame instead of having the buffer in the pit. Remarks: Objects, e.g. Shaft.CWT.Weight.BufferSupport0., are available as buffer support unit. Note that these objects currently can only be activated by a VBA macro. These new objects make sense in the case that you have the buffers fixed at the car frame. The "BufferSupport0." object internally is the same as the hydraulic jack support unit.

SmallInt

2

✓

0
​

CW_TYPE

Types of counterweight-frames:

10 - Counterweight - 1:1

11 - Counterweight - 2:1 - 1 pulley top

12 - Counterweight - 2:1 - 2 pulleys top

13 - Counterweight - 4:1

SmallInt

2

✓

0
​

CW_GS_RID_TOP

RID number of the guide shoe for the top of the counterweight-frame

Integer

4

✓

0
​

CW_GS_RID_BOTTOM

RID number of the guide shoe for the bottom of the counterweight-frame

Integer

4

✓

0
​

CW_SG_RID

RID number of the safety gear of the counterweight-frame.

When a safety gear isn’t possible for the corresponding counterweight frame, insert a "0".

Integer

4

✓

0
​

CW_GS_Z_TOP

Distance between IP (insert point) and rail force attack point of the guide shoe at the top

Double

9

✓

0
​

CW_GS_Z_BOTTOM

Distance between IP (insert point) and rail force attack point of the guide shoe at the bottom

Double

9

✓

0
​

CW_BF_COUNT

The quantity of buffers which are used for this counterweight-frame

SmallInt

2

✓

0
​

CW_PART_NO

Item-No., Order No. or similar number which identifies the part

VarWChar

50

✓

CW_PB_RID

RID number of the pulley beam for the counterweight-frame

Integer

4

✓

0
​

CW_PB_ALPHA

The angle of the pulley beam relative to the axles of the counterweight-frame

How to rotate the Pulley Beam.htm

Double

9

✓

0
​

CW_PBU_RID

RID number of the used pit base unit

Integer

4

✓

0
​

CW_DBG_MIN

The minimum DBG that is supported by the CWT frame. This column implements a minimum check. If for example that value is 500, users can not change the DBG value in the drawing to a value less than 500.

Fill -1 to disable the check (allows all possible minimum DBG values)

Double

9

✓

0
​

CW_DBG_MAX

The maximum DBG that is supported by the CWT frame. This column implements a maximum check. If for example that value is 1000, users can not change the DBG value in the drawing to a value larger than 1000.

Fill -1 to disable the check (allows all possible maximum DBG values).

Double

9

✓

0
​

CW_USER_PG_50

Double

9

✓

0
​

CW_USER_PG_51

Double

9

✓

0
​

CW_USER_PG_52

Double

9

✓

0
​

CW_USER_PG_53

Double

9

✓

0
​

CW_USER_PG_54

Double

9

✓

0
​

CW_USER_PG_55

Double

9

✓

0
​

CW_USER_PG_56

Double

9

✓

0
​

CW_USER_PG_57

Double

9

✓

0
​

CW_USER_PG_58

Double

9

✓

0
​

CW_USER_PG_59

Double

9

✓

0
​

CW_USER_PG_60

Double

9

✓

0
​

CW_USER_PG_61

Double

9

✓

0
​

CW_USER_PG_62

Double

9

✓

0
​

CW_USER_PG_63

Double

9

✓

0
​

CW_USER_PG_64

Double

9

✓

0
​

CW_USER_PG_65

Double

9

✓

0
​

CW_USER_PG_66

Double

9

✓

0
​

CW_USER_PG_67

Double

9

✓

0
​

CW_USER_PG_68

Double

9

✓

0
​

CW_USER_PG_69

Double

9

✓

0
​

CW_GUIDES_DY

[19], This is the distance (in Y direction) between the center of DBG and the center of the counterweight. The default value is 0.

If the counterweight is not symmetrical in Y direction you will fill a value other than 0 here.

Double

9

✓

0
​

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