Column Name | Description | Data Type | Length | Allow Nulls | Default |
CW_RID | ID-No. of the counterweight-frame | 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 | 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 | 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 |
L_CWDimTab
Written by Julien
