TE B. Precision Positioning Table. Now available with a longer stroke! IKO THOMPSON ASIA CO., LTD. (THAILAND)

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1 Precision Positioning Table NIPPON THOMPSON CO., TD. (JPN) Head Office : 7-17 Shiba -chome Minato-ku Tokyo , Japan : +1 (0)-44-5 : +1 (0) : ntt@ikonet.co.jp UR : Plant : Gifu, Kamakura IKO INTERNTION, INC. (U.S..) East Coast Operations (Sales Head Office) 91 Walsh Drive Parsippany, NJ U.S.. : Toll Free : : : eco@ikonet.co.jp Midwest Operations 1 Mark Street Unit G, Wood Dale, I 0191 U.S.. : Toll Free : : : mwo@ikonet.co.jp Minnesota Sales Office Mcndrews Road West, Suite Burnsville, MN 557 U.S.. : Toll Free : : : mwo@ikonet.co.jp West Coast Operations 9 Norwalk Boulevard, Suite 19 Santa Fe Springs, C 9070 U.S.. : Toll Free : : : wco@ikonet.co.jp Silicon Valley Sales Office Wyatt Drive, Suite Santa Clara, C 954 U.S.. : Toll Free : : : wco@ikonet.co.jp Southeast Operations 1 Boggs Road, Suite 0 Duluth, G 09 U.S.. : Toll Free : : : seo@ikonet.co.jp Southwest Operations 5 N. Beltline Road, Suite 1 lrving, TX 7 U.S.. : Toll Free : : : swo@ikonet.co.jp IKO THOMPSON BERINGS CND, INC.(CND) IKO THOMPSON BRZI SERVICE CO.,TD. (BRZI) Rua Frei Caneca 1407, Condominio Edificio Barão de Monte Cedro, Cjs. 01/0, Consolação, , São Paulo, SP, Brazil : +55 (0)-- : itb@ikonet.co.jp NIPPON THOMPSON EUROPE B.V. (EUROPE) The Netherlands (Sales Head Office) Sheffieldstraat 5 47 N Rotterdam The Netherlands : +1 (0)- : +1 (0) : nte@ikonet.co.jp Germany Branch Mündelheimer Weg Düsseldorf Germany : +49 (0) : +49 (0) : ntd@ikonet.co.jp Regensburg Sales Office Im Gewerbepark D 959 Regensburg Germany : +49 (0) : +49 (0) : ntdr@iko-nt.de Neunkirchen Sales Office Gruben Str. 95c 540 Neunkirchen Germany : +49 (0) : +49 (0) : ntdn@iko-nt.de U.K. Branch Vincent venue, Crownhill Milton Keynes, Bucks, MK 0B United Kingdom : +44 (0) : +44 (0) : sales@iko.co.uk Spain Branch utovia Madrid-Barcelona, Km. 4,700 Polig. Ind. ID - Nove -, Ofic zuqueca de Henares (Guadalajara) Spain : : : nts@ikonet.co.jp France Branch Bâtiment le Raphaël Paris Nord avenue des Nations BP5494 Villepinte 9594 ROISSY C.D.G Cedex France : + (0) : + (0) : contact@iko-france.com IKO THOMPSON KORE CO.,TD. (KORE) F, 1, Yeouigongwon-ro, Yeongdeungpo-gu, Seoul, Korea : + (0) : + (0)-7-55 : itk@ikonet.co.jp IKO THOMPSON SI CO., TD. (THIND) 1-7 Zuellig House, rd Floor Silom Road, Silom, Bangrak Bangkok 0, Thailand : + (0)-7-55 : + (0)-7-5 : ita@ikonet.co.jp IKO-THOMPSON (SHNGHI) TD. (CHIN) Shanghai (Sales Head Office) 10- MetroPlaza No.555 oushanguan Road ChangNing District Shanghai People's Republic of China : + (0) : + (0)1--55 Beijing Branch Room1, Jingtai Tower, NO.4,Jianguomenwai venue, Chaoyang District, Beijing People's Republic of China 00 : + (0) : + (0) * Guangzhou Branch Room 4, Garden Tower, Garden Hotel Huanshi East Road, Yuexiu District, Guangzhou, Guangdong People's Republic of China 504 : + (0) : + (0)0-1- Wuhan Branch Room 0, Truroll Plaza No.7 Wusheng Road, Qiao kou District, Wuhan, Hubei People's Republic of China 40 : + (0) : + (0) Shenzhen Office Room 40, Oriental Plaza, 7 Jianshe Road, uohu District, Shenzhen, Guangdong People's Republic of China 51 : + (0) : + (0) Ningbo Office Room 40, Zhongnongxin Building, No. Zhongshan East Road, Haishu Ward, Ningbo, Zhejiang People's Republic of China 0 : + (0) : + (0) Qingdao Office 7 Block, World Trade Center Building, No. Changjiang Middle Road, Development Zone Qingdao People's Republic of China 555 : + (0)5-70- : + (0) Shenyang Office -10 Tower I.City Plaza Shenyang, No.0 Nanjing North Street Heping District, Shenyang People's Republic of China 1 : + (0)4-4- : + (0) Matheson Boulevard East 7th floor Mississauga, Ontario 4W 5K4, Canada : : : itc@ikonet.co.jp Gentle to The Earth The specifications and dimensions of products in this catalog are subject to change without prior notice. When these products are exported, the exporter should confirm a forwarding country and a use, and, in case of falling under the customer's requirements, take necessary procedures such as export permission application. lthough all data in this catalog has been carefully compiled to make the information as complete as possible, NIPPON THOMPSON CO., TD. shall not be liable for any damages whatsoever, direct or indirect, based upon any information in this catalog. NIPPON THOMPSON CO., TD. makes no warranty, either express or impiled, including the impiled warranty of merchantability or fitness for a ISO particular purpose. Reproduction and conversion without permission are prohibited. CT-94E 9001 & Quality system registration certificate Printed in Japan 01. (K) Now available with a longer stroke!

2 Precision positioning table onger stroke products have been added to the TE series lineup of compact and lightweight precision positioning tables. Precision Positioning Table onger stroke capability expands the possibilities for machine design, making the long stroke TE series ideal for devices such as pick and place machines. Equipment used Work piece transporting device ocation used X-axis and Y-axis Variation Model and size Bed width Stroke length (bed length) TEB 0 (1) 1 (00) 10 () (0) (400) 4 (0) TE0B 0 (1) 0 (00) 00 (0) 0 (400) 400 (0) 0 (00) 00 (700) TEB 00 (40) 0 (440) 400 (540) 0 (40) 00 (740) 700 (40) 00 (940) Features of Precision Positioning Table TE 1.ight Weight / ow Profile.High ccuracy Positioning.ong-Term, Maintenance-Free Operation Far lighter and with a lower profile than IKO TU series Precision Positioning Tables, the TE series uses a high strength aluminum alloy for its main components with a slide table assembled inside a U-shaped bed. The result: a light weight, compact, precision positioning table. IKO's unique linear motion rolling guide technology utilizes a precision ball screw which enables higher accuracy positioning. For long stroke products, a high lead ball screw is used to achieve high speed and high accuracy positioning in a longer stroke. Mass The value shows the mass of the entire table with 1 standard table. TU Bed width (mm) Respective sensors to be attached directly into the mounting groove unit: kg Slide table and linear motion rolling guide integrated in a single structure to ensure low profile and compact design! On the ball! With built-in C-ube technology, long term maintenance free operation is possible. With C-ube, lubrication is supplied to the surfaces of the rolling elements, reducing the need for lubrication maintenance and improving machine reliability. C-ube integrated ubrication oil is directly supplied to surfaces of the rolling elements The surface of C-ube is always covered with the lubrication oil. ubrication oil is continuously supplied to the surface of the rolling elements by surface tension in the contact of C-ube surface and rolling elements. On the C-ube surface with which the rolling elements make contact, new lubrication oil is always supplied from the other sections. Cylindrical roller Cylindrical roller ubrication oil film Ultra light weight achieved through the use of slide table and bed made of high-strength aluminum alloy! TU TEB Surface tension C-ube Capillary action C-ube

3 Identification Number and Specification Identification Number and Specification Precision positioning table Example of Identification Number Model TE B: Precision Positioning Table TE Size Size indicates bed width. Select a size from the list in Table 1. Shape of slide table 7 Number of slide tables specification S: Standard table F: Flange type standard table 4 Bed length Select a bed length from the list in Table 1. 5 Table 1 Sizes and bed lengths Model and size Bed width Bed length TEB 1, 00,, 0, 400, 0 TE0B 0 1, 00, 0, 400, 0, 00, 700 TEB 40, 440, 540, 40, 740, 40, 940 Remark: For stroke length, please see the dimension tables shown on page 1 and on. Designation of motor folding back specification/motor attachment Table pplication of ball screw lead Model and size Bed length mm Ball screw lead mm TEB 0 or less or more TE0B 00 or less TEB ll S: One unit C: Two units 0: Without cover C: With bridge cover (applied to TE BF) TE B F 0 / T001 S C T000 : Motor inline specification without motor attachment T001~T0 : Motor inline specification with motor attachment R000 : Motor folding back specification without motor attachment R001~R00 : Motor folding back specification with motor attachment To specify the motor attachment, select it from the lists in Table.1 and Table.. Please specify motor attachment applicable to motor for use. If motor inline specification with motor attachment is specified, the main body is shipped with the coupling indicated in Table 4 mounted. However, the final position adjustment should be made by customer since it is only temporarily fixed. For a product without motor attachment (T000), no coupling is attached. If motor folding back specification with motor attachment is specified, housing applicable to the specified motor, pulley (on motor side and ball screw side), cover, motor bracket, belt and bolts necessary for assembly are supplied. Motor mounting bolts should be prepared by customer. Ball screw lead Select from among ball screw leads applicable to the sizes and bed lengths shown in Table. 9 Sensor specification 0: Without sensor : Two units of sensor mounted (limit) : Three units of sensor mounted (limit, pre-origin) 4: Four units of sensor mounted (limit, pre-origin, origin) 5: Two sensors attached (limit) : Three sensors attached (limit, pre-origin) 7: Four sensors attached (limit, pre-origin, origin) If sensor mounting (symbol,, or 4) is specified, the sensor is mounted into the mounting groove on the side of the bed, and two detecting plates are mounted on the slide table. If sensor attachment (symbol 5,, or 7) is specified, the specified number of sensors are attached, including mounting screws for sensors, nuts, two detecting plates, and mounting screws for the detecting plates. Table.1 pplication of motor attachment (motor inline specification) Motor to be used Flange Motor attachment Rated output size Type Manufacturer Series Model TEB TE0B TEB W mm SGMJV-5 T001 T00 - SGMV-5 T001 T00-40 YSKW EECTRIC SGMJV-01 - T00 - -V 0 CORPORTION SGMV-01 - T00 - SGMJV T SGMV T00 HF-MP05, HG-MR05 T001 T00 - HF-KP05, HG-KR05 T001 T00-40 Mitsubishi Electric HF-MP1, HG-MR1 - T00 - J, J4 0 Corporation HF-KP1, HG-KR1 - T00 - C servo HF-MP, HG-MR - - T00 motor 00 0 HF-KP, HG-KR - - T00 MSMD5 T004 T005 - MSME5 T004 T005 - Panasonic MSMD01 - T005 - MINS 5 0 Corporation MSME01 - T005 - MSMD0 - - T MSME0 - - T00 Hitachi Industrial DM-R5 T001 T00-40 Equipment Systems D DM T00 - Co., td DM T00 R 4 T α step R T00 ORIENT MOTOR Stepper motor R T00 Co., td. RK RK54 CRK54 4 T CRK RK5 CRK5 ( 1 ) 0 - T0 T0 Note ( 1 ) pplicable to the outer diameter φ of motor output shaft. Remark: For detailed motor specifications, please see respective motor manufacturer's catalog. Table. pplication of NEM motor attachment (motor inline specification) Motor to be used Flange Motor attachment Rated output size Type Manufacturer Series Model TEB TE0B TEB W inch TY-1( type) T001 T00 - TY-10( type) 40 T001 T00 - TY(metric) TY-1( type) T001 T00 - TY-0( type) T00 ( ) TY-( type) T00 ( ) TE904- TY-10(N type) TE17 ( 1 ) C servo TE904- llen-bradley TY-1(N type) motor TE17 ( 1 ) TY(NEM) TE905- TY-5(N type) TE14 ( 1 ) TE905- TY-540(N type) TE14 ( 1 ) TE904- NEM17C - - TE1 ( 1 )( ) TY-0(N type) TE9017- TE15 ( 1 ) TY-(N type) TE9017- TE15 ( 1 ) Servo or Stepper NEMD TE9017- TE09 ( 1 )( ) TE9017- TE09 ( 1 )( ) TE9017- TE097 ( 1 )( ) TE905- NEM4D - - TE095 ( 1 )( ) Note ( 1 ) The TE part numbers are the part number of motor attachment component sold separately. In the TE part number, please choose motor attachment code T000. No Coupling is included. It is required to consider customer s operation patterns for these motor attachment. ( ) Please confirm the length and the diameter of the motor shaft etc., and check the usability of the motor attachment with your motor beforehand. ( ) It is required to change the delivered coupling to XGS-C- 1 which is for the 1mm motor shaft by customer. Remark: For detailed motor specifications, please see respective motor manufacturer s catalog. 1N=0.kgf=0.4lbs

4 Identification Number and Specification Specifications Table. pplication of motor attachment (motor folding back specification) Motor to be used Flange Motor attachment Type Manufacturer Series Model Rated output size W mm TEB TE0B TEB SGMJV-5 R001 R00 - SGMV-5 R001 R00-40 YSKW EECTRIC SGMJV-01 - R00 - -V 0 CORPORTION SGMV-01 - R00 - SGMJV R SGMV R00 HF-MP05, HG-MR05 R001 R00 - HF-KP05, HG-KR05 R001 R00-40 Mitsubishi Electric HF-MP1, HG-MR1 - R00 - J, J4 0 Corporation HF-KP1, HG-KR1 - R00 - C servo HF-MP, HG-MR - - R00 motor 00 0 HF-KP, HG-KR - - R00 MSMD5 R004 R005 - MSME5 R004 R005 - Panasonic MSMD01 - R005 - MINS 5 0 Corporation MSME01 - R005 - MSMD0 - - R MSME0 - - R00 Hitachi Industrial DM-R5 R001 R00-40 Equipment Systems D DM R00 - Co., td DM R00 Stepper motor α step R 4 R ORIENT MOTOR RK Co., td. RK54 CRK54 4 R CRK Remark: For detailed motor specifications, please see respective motor manufacturer's catalog. Table 4 Coupling models (motor inline specification) Motor Coupling inertia J attachment Coupling models Manufacturer C -5 kg m T001 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T00 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T00 XGS-C- 14 Nabeya Bi-tech Kaisha 0.55 T004 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T005 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T00 XGS-C- Nabeya Bi-tech Kaisha 0.55 T007 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T00 XGS-C- Nabeya Bi-tech Kaisha 0.55 T009 XGS-19C- 5 5 Nabeya Bi-tech Kaisha 0.0 T0 XGS-19C- 5 Nabeya Bi-tech Kaisha 0.0 T0 XGS-C- Nabeya Bi-tech Kaisha 0.55 TE904-TE17 XGS-19C- 5.5 Nabeya Bi-tech Kaisha 0.0 TE9017-TE15 XGS-C- 1.7 Nabeya Bi-tech Kaisha 0.55 TE905-TE14 XGS-4C Nabeya Bi-tech Kaisha 1.0 Remark: For detailed coupling specification, please see the manufacturer's catalog. Specifications Table 5 ccuracy Model and size Bed length Positioning repeatability Positioning accuracy ( 1 ) Parallelism in table motion B Backlash ( 1 ) ±0.00 TEB (±0.00) ±0.00 TE0B (±0.00) ± TEB (±0.00) Note ( 1 ) This does not apply to tables of motor folding back specification. Remarks The values in ( ) are reference values provided that the timing belt tension is properly adjusted in motor folding back specification table. Table Maximum speed Motor type Model and size Bed length mm ead 4mm ead 5mm Maximum speed mm/s 0 or less TEB or less TE0B C servomotor or less TEB or less TEB Stepper motor 00 or less TE0B TEB 940 or less Remark: To measure the practical maximum speed, it is required to consider operation patterns based on the motor to be used and load conditions. Table 7 llowable moment llowable moment N m Model and size T 0 T X T Y TEB 9. TE0B 1.7 TEB 49.0 Remark The value is for one slide table. Table Maximum carrying mass Remark ead mm ead mm Model and size Ball screw lead Maximum carrying mass kg mm Horizontal Vertical TEB TE0B TEB The value is for one flange type standard table. 1N=0.kgf=0.4lbs. 7 ead 0mm

5 Specifications Sensor specification Table 9 Table inertia and starting torque Table Sensor timing chart Model and size Bed length mm Standard table ead Table inertia J T ( ) -5 kg m Starting Flange type standard table ead torque T S ( 1 ) N m Motor inline specification TEB TE0B TEB 4mm 5mm mm mm 0mm 4mm 5mm mm mm 0mm Note ( 1 ) When two units of slide table are used, it is about 1.5 times as long as that of one unit, and when table of motor folding back specification is used, it is about twice. ( ) For motor folding back specification, please add the following value to the value in the table. TEB: kg m, TE0B:0.9-5 kg m, TEB:0. -5 kg m OFF (D) CW CCW ON 14 B OFF C Stroke length (E) Motor folding back specification OFF Origin Pre-origin CCW limit CW limit Mechanical stopper CCW CW ON Origin 14 B OFF Pre-origin C OFF CW limit OFF Stroke length CCW limit (D) (E) Mechanical stopper Model and size Ball screw lead B C D( 1 ) E TEB TE0B TEB Note ( 1 ) The value in ( ) represents dimensions for two slide tables. Remarks 1. Mounting a sensor is specified using the corresponding identification number.. For the specifications of respective sensors, please see the sensor specifications in Table.. For the motor folding back specification, CW and CCW will invert. ( 9 ) (.5) 9 0 ( ) 1N=0.kgf=0.4lbs. 9

6 Sensor specification Dimensions of Motor ttachment Table Sensor specification Item Target models Motor inline specification Remark: Motor attachment for NEM, please see pages Ⅲ-1 or later of the general catalog. Manufacturer Model ( 1 ) Pre-origin CW limit CCW limit Origin Detection surface center zbil Corporation PM-DB1-S PM-DB1F-S PM-DB1-S PM-D1-S 5 TEB T000 (without attachment) φ φ M Depth TE904-TE1 TE904-TE9 φ M Through Shape mm M.5 Hole 0.7 T001 9 φ +0.0 φ 40.5 Counterbore depth.5 PCD, Evenly distributed at 90 TE9017-TE09 φ 4 0 φ Drilling.5 Counter bore depth 4 (Machining from opposite side) Power supply voltage DC1~4V ±% Current consumption Output Output operation Operation indication Pre-origin imit Origin Pre-origin imit Origin m or less NPN open collector Maximum input current : m or less (resistance load) pplied voltage :.4VDC or less Residual voltage : 1V or less at input current of m OFF in proximity OFF in proximity ON in proximity Orange ED (OFF upon detection) Orange ED (OFF upon detection) Orange ED (ON upon detection) T004 T007 T009 9 φ φ φ 40.5 Counterbore depth.5 4-M Through PCD45, Evenly distributed at M Through TE904-TE17 9 φ Drilling.5 Counter bore depth Drilling 7.5 Counterbore Depth 5 (Opposite Side) PCD4., Evenly distributed at 90 4-M Through VCC (brown) 1.5 Counterbore depth 4 Circuit diagram Main circuit OUT (black) GND (blue) Remarks 1. Wire the sensor cords on your own.. ead runs off by at least 00mm from the table end. ctual length varies depending on stroke length. Note ( 1 ) Model numbers apply to manufacturer standard products. Depending on the total length of the relevant product, the cable length may be different from that of standard products. Mounting Machining precision of mounting surface s the accuracy and performance of the table are effective by the precision of the mounting surface of the stand, the parallelism of the stand mounting surface should be μm or less as a guideline for general conditions. However, it must be in accordance with operating conditions such as required motion performance and positioning accuracy. Be sure to remove dirt and harmful protrusions on the mounting surface. Tightening torque for fixing screw Typical tightening torque for fixing the Precision Positioning Table is indicated in the following table. If sudden acceleration / deceleration occurs frequently or moment is applied, it is recommended to tighten them to 1. times higher torque than that indicated in the table. In addition, when high accuracy is required with no vibration and shock, it is recommended to tighten the screws to torque smaller than that indicated in the table and use adhesive agent to prevent looseness of screws. Screw tightening torque Female thread component Bolt size luminum alloy Steel Screw insert M M bout 0% of steel value bout 0% of steel value M 1 1. unit: N m 1N=0.kgf=0.4lbs.

7 Dimensions of Motor ttachment Dimensions of Motor ttachment TE0B T000 (without attachment) φ5 φ M Through TE9017-TE TEB T000 (without attachment) 15 5 φ φ M4 Depth 0 TE905-TE M5 Through T00 9 φ φ Counterbore depth.5 TE9017-TE097 φ φ Drilling.5 Counter bore depth.5 T φ φ Through Counterbore depth 0 φ φ T005 9 φ φ +0.0 PCD, Evenly distributed at Counterbore depth.5 4 φ φ M5 Through 4-.4 Drilling.5 Counter bore depth.5 T00.5 φ φ M5 Through PCD70, Evenly distributed at Through Counterbore depth 0 TE905-TE Drilling Counter bore depth M5 Depth PCD9.4, Evenly distributed at 90 4-φ4.5 Through 4-M Through PCD45, Evenly distributed at 90 φ5 φ Counterbore depth 5.5 PCD70, Evenly distributed at Through Counterbore depth 7 T0 φ φ T00 T0 φ φ TE9017-TE Drilling Counterbore Depth 7.5 φ φ M5 Depth PCD.7, Evenly distributed at 90 1N=0.kgf=0.4lbs. 1 1

8 0 Precision positioning table Dimensions of Motor ttachment Motor folding back specification TE0B TEB TEB R M4 Depth R Dimensions of Motor ttachment M4 Depth R000 (without attachment) φ M4 Depth 4 R (without attachment) 0.00 φ φ5 0 Depth 0 (without attachment) φ5 0 Depth φ5 0 Depth hole dia. φ PCD, Evenly distributed at M5 Through PCD70, Evenly distributed at PCD, Evenly distributed at R00 R00 R001 R00 hole dia. φ hole dia. φ14 hole dia. φ hole dia. φ5 4-M Through PCD45, Evenly distributed at PCD70, Evenly distributed at M Through PCD45, Evenly distributed at R005 R00 R004 hole dia. φ hole dia. φ hole dia. φ 1N=0.kgf=0.4lbs

9 Precision Positioning Table TE TEBS (Motor inline specification) TEBF (Motor inline specification) 7 (minimum center distance between 7 (minimum center distance between 4-M4 Depth 4-M Depth 5 ( 1 ) 4-M4 Depth ( 1 ) (5) S/ S/ () n-4.5 Through Counterbore depth 4 n-4.5 Through Counterbore depth 4 4-M Depth (both ends of the track rail) S/ S/ () (.) (C) (n 1) 0 C 1.5 (C) (n 1) 0 C Sectional dimension Sectional dimension S( ) C n kg( ) 1 1 0( - ) ( 40) ( 90) (140) (40) (40) 7 1. Note ( 1 ) Too deep insertion depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the through hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.07kg heavier with two slide tables. Remarks 1. Motor attachment for C Servomotor is.5mm lower than the bottom of the bed.. Motor attachment for stepper motor is 4.5mm lower than the bottom of the bed. S( 1 ) C n kg( ) 1 1 0( - ) ( 40) ( 90) (140) (40) (40) 7 1. Note ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.1kg heavier with two slide tables. Remarks 1. Motor attachment for C Servomotor is.5mm lower than the bottom of the bed.. Motor attachment for stepper motor is 4.5mm lower than the bottom of the bed. 1N=0.kgf=0.4lbs. 1 17

10 Precision Positioning Table TE TE0BS (Motor inline specification) TE0BF (Motor inline specification) 7 (minimum center distance between 7 (minimum center distance between 4-M Depth ( 1 ) 4-M5 Depth 7.5 ( 1 ) 4-M Depth (from back side) 4-M5 Depth (7) S/ 54 S/ (4) C (n 1) 0 (C) n-5.5 Through 9.5 Counterbore depth 5.4 n-5.5 Through 9.5 Counterbore depth 5.4 S/ 54 S/ (4) C (n 1) 0 (C) Sectional dimension 0 - Sectional dimension S( ) C n kg( ) 1 19 ( - ) ( - ) (15) (5) (5) (45) (55) 7.5 Note ( 1 ) Too deep insertion depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the through hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.1kg heavier with two slide tables. Remarks Motor attachment for stepper motor is 9mm lower than the bottom of the bed. S( 1 ) C n kg( ) 1 19 ( - ) ( - ) (15) (5) (5) (45) (55) 7. Note ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables. Remarks Motor attachment for stepper motor is 9mm lower than the bottom of the bed. 1N=0.kgf=0.4lbs. 1 19

11 Precision Positioning Table TE TEBS (Motor inline specification) 1 (minimum center distance between TEBF (Motor inline specification) 1 (minimum center distance between 4-M Depth ( 1 ) 4-M Depth 9 ( 1 ) 4-M5 Depth 4-M Depth 1 (9) n-. Through Counterbore depth.5 S/ 1 S/ () (n 1) 0 (70) M Depth (from back side) n-. Through Counterbore depth.5 S/ 1 S/ () (n 1) 0 (70) Sectional dimension. Bed length Overall length Stroke length Mounting holes of bed Mass(Ref.) S( ) n kg( ) ( 90) (190) (90) (90) (490) (590) (90) 9. Notes ( 1 ) Too deep a fixing thread depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the tapped hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables Sectional dimension Bed length Overall length Stroke length Mounting holes of bed Mass(Ref.) S( 1 ) n kg( ) ( 90) (190) (90) (90) (490) (590) (90) 9 7. Notes ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables.. 1N=0.kgf=0.4lbs. 0 1

12 Precision Positioning Table TE TEBS (Motor folding back specification) TEBF (Motor folding back specification) 7 (minimum center distance between 7 (minimum center distance between 4-M4 Depth M Depth 5 ( 1 ) 4-M4 Depth ( 1 ) S/ S/ () (C) (n 1) 0 C (5) 1 1 n-4.5 Through Counterbore depth M Depth (both ends of the track rail) S/ S/ () (.) (5).5 (5) (C) (n 1) 0 C (9.5) (9.5) n-4.5 Through Counterbore depth Sectional dimension - Sectional dimension S( ) C n kg( ) ( - ) ( 40) ( 90) (140) (40) (40) Note ( 1 ) Too deep insertion depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the through hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.07kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about 9.5mm lower than the bottom of the bed. In addition, it is about.5 to.5mm lower than the bottom of the bed if C Servomotor is mounted by customers, and about 4.5mm lower if stepper motor is mounted.. If folded back upward, motor attachment is about.5mm lower than the bottom of the bed. S( 1 ) C n kg( ) ( - ) ( 40) ( 90) (140) (40) (40) Note ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.1kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about 9.5mm lower than the bottom of the bed. In addition, it is about.5 to.5mm lower than the bottom of the bed if C Servomotor is mounted by customers, and about 4.5mm lower if stepper motor is mounted.. If folded back upward, motor attachment is about.5mm lower than the bottom of the bed. 1N=0.kgf=0.4lbs.

13 Precision Positioning Table TE TE0BS (Motor folding back specification) 7 (minimum center distance between TE0BF (Motor folding back specification) 7 (minimum center distance between 4-M Depth ( 1 ) 4-M5 Depth 7.5 ( 1 ) M Depth (from back side) 4-M5 Depth n-5.5 Through 9.5 Counterbore depth 5.4 (7) n-5.5 Through 9.5 Counterbore depth S/ 54 S/ (4) S/ 54 S/ (4) 1 C (n 1) 0 (C) (5) 4.5 (.5) C (n 1) 0 (C) (.4) (.5) 0 (5) Sectional dimension S( ) C n kg( ) ( - ) ( - ) (15) (5) (5) (45) (55) 7. Note ( 1 ) Too deep insertion depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the through hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.1kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about.5mm lower than the bottom of the bed.. If folded back upward, motor attachment is about 9mm lower than the bottom of the bed Sectional dimension S( 1 ) C n kg( ) ( - ) ( - ) (15) (5) (5) (45) (55) 7.1 Note ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about.5mm lower than the bottom of the bed.. If folded back upward, motor attachment is about 9mm lower than the bottom of the bed. 7 1N=0.kgf=0.4lbs. 4 5

14 Precision Positioning Table TE TEBS (Motor folding back specification) 1 (minimum center distance between TEBF (Motor folding back specification) 1 (minimum center distance between 4-M Depth ( 1 ) 4-M Depth 9 ( 1 ) 0 S/ (n 1) 0 (70) S/ () 7 (7) M5 Depth 4-M Depth (9) 14 n-. Through Counterbore depth.5 4-M Depth (from back side) S/ 1 S/ () () (n 1) 0 (70) () n-. Through Counterbore depth (7) Sectional dimension Bed length Overall length Stroke length Mounting holes of bed Mass(Ref.) S( ) n kg( ) ( 90) (190) (90) (90) (490) (590) (90) 9 7. Notes ( 1 ) Too deep a fixing thread depth of the mounting bolt may affect the running performance of the slide table, so never insert a bolt longer than the depth of the tapped hole. ( ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about mm lower than the bottom of the bed.. If folded back upward, motor attachment is about mm lower than the bottom of the bed Sectional dimension Bed length Overall length Stroke length Mounting holes of bed Mass(Ref.) S( 1 ) n kg( ) ( 90) (190) (90) (90) (490) (590) (90) 9.1 Notes ( 1 ) The value indicates the allowable stroke when limit sensors are mounted. The value in ( ) represents dimension for two slide tables in close contact. ( ) The value shows the mass of the entire table with one slide table, and it is 0.kg heavier with two slide tables. Remarks 1. Parts for motor attachment are appended, and this figure indicates a finished state after assembled by the customer.. If folded back to right and left, motor attachment is about mm lower than the bottom of the bed.. If folded back upward, motor attachment is about mm lower than the bottom of the bed.. 1N=0.kgf=0.4lbs. 7

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