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Next Generation 3D Programmable Palette

A pallet system that allows for the sharing of jigs with one unit! Realizing three-dimensional curved shapes on the pallet from 3D CAD and 3D measurement data.

▶ What is the "3D Programmable Palette"? … [Prevents Work Damage] Using three-dimensional shape data, precise curved shapes can be configured on the palette. This allows for the use of shapes without pressure, enabling support for thin, soft materials and fragile glass products. … [Palette Sharing is Possible] One unit can accommodate various shapes and materials, reducing labor hours and initial costs, and eliminating the need for storage space for dedicated palettes, contributing to space-saving in equipment. ▶ What is the "Narai Unit"? … A mechanism that aligns multiple elements using a quick clamper to support, grip, and transport various types of workpieces. ▶ What is the "Quick Clamper"? … The latest locking mechanism that allows linear movement clamping and unclamping to be done effortlessly with a "one-touch" operation. It does not require power during fixation, maintains high holding force consistently, and prevents variations in tightening. *This demo unit can be viewed at our company office. For more details, please contact our sales representative.

"Quick Clamper" Usage Example Video Gallery

basic information

"This is a system that enables multi-variety support for pallets!" 【Concern】I want to align fragile or soft material works. → "With the 3D Programmable Palette!" - No need for alignment shapes through pressing - Accurate curved shapes can be set on the pallet from 3D shape data ⇒ For example, it can accommodate a wide range of shapes and materials such as automotive interior panels and glass products, preventing damage to the workpieces. 【Concern】I want to save on jig costs and setup changeover time during small-lot production of various items. → "With the 3D Programmable Palette!" - One unit can accommodate all shapes and materials of workpieces - Sharing of jigs and pallets is possible ⇒ Contributes to cost reduction of initial expenses / reduction of work hours / no need for jig production / space-saving.

Price range

Delivery Time

Model number/Brand name

TPS

Applications/Examples of results

"Uses" ●【Lower Support】 ●【Upper Support】 ●【Transport】 ●【Grip】 and so on.

Detailed information

catalog(38)

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[Sample available for loan] Quick Clamper (TPS)

PRODUCT

Both thrust direction and rotation direction are fixed! Flexible gripper [Quick Clamper]

PRODUCT

[New Product] Custom Clamper AUW (Exhibited by M-Tech)

PRODUCT

Supports multi-variety work! 【Quick Clamper】 × "Narai Unit" Flyer

PRODUCT

Sample available for loan: Isoginchaku (TPS)

PRODUCT

Experience Demo Unit Flyer for the NARAI Unit [Quick Clamper]

PRODUCT

"Height adjustment without steps! Work support unit" Quick Clamper Flexible Adjuster Brochure (Exhibited by M-Tech)

PRODUCT

Quick Clamper Case Studies: Fall Prevention for Doors and Shutters (Manual)

TECHNICAL

Quick Clamper Case Studies: Fall Prevention for Doors and Shutters (Air-Driven)

TECHNICAL

Quick Clamper Case Studies: Fall Prevention for Doors and Shutters (Electric)

TECHNICAL

Quick Clamper Case Studies: Fall Prevention for Doors and Shutters (Spring Replacement)

TECHNICAL

[Quick Clamper Case Studies] Suction Fixture with Adjustable Unit Position

TECHNICAL

Quick Clamper Case Studies: Work Inverter

TECHNICAL

Quick Clamper Case Studies: Manual Adjustment of Various Sensor Positions

TECHNICAL

Quick Clamper Case Studies: Manual Adjustment of Camera Position

TECHNICAL

Quick Clamper Case Studies: Cable Forming

TECHNICAL

Quick Clamper Case Study: Hand Press Machine Finger Pinch Poka-Yoke

TECHNICAL

Quick Clamper Case Study: Preventing Rail Shelf Protrusion

TECHNICAL

Quick Clamper Case Studies: Assembly Receiving Jigs Capable of Push-Pull Operations

TECHNICAL

Quick Clamper Case Studies: Transporting Large Workpieces with Inclination

TECHNICAL

Quick Clamper Case Study: Clamping of Stacked Batteries

TECHNICAL

Quick Clamper Case Study Collection: Adjustable Placement Jigs

TECHNICAL

Quick Clamper Case Study: Suction Fixture with Adjustable Unit Position 2

TECHNICAL

Quick Clamper Case Study: Preventing Flapping During Large Workpiece Transport

TECHNICAL

Quick Clamper Case Study: Optimization of Cell Production Booths

TECHNICAL

Quick Clamper Case Studies: Fixing Work Tables During Heavy Object Assembly

TECHNICAL

Quick Clamper Case Study: Work Support Fixture for Conveyor Transport

TECHNICAL

[Exhibition Information] 10th Nagoya Machine Element Technology Exhibition (M-Tech NAGOYA) Participation! <April 9 (Wed) - 11 (Fri) Port Messe Nagoya>

OTHER

Quick Clamper Case Studies: Aluminum Frame Holding Jig

TECHNICAL

Quick Clamper Case Studies: Extraction from Injection Molding Machines

TECHNICAL

Quick Clamper Case Studies: Fixing Distribution Board Doors

TECHNICAL

Quick Clamper Case Studies: Transport Jigs for AGVs

TECHNICAL

Quick Clamper Case Study: Transporting Large Workpieces with Inclination 2

TECHNICAL

Quick Clamper Case Study: Inter-Process Transportation Using Linear Conveyors

TECHNICAL

Quick Clamper Case Studies: Extraction from Pallets

TECHNICAL

【Usage Example】One-touch for both fixing and releasing! "Quick Clamper" (TPS)

PRODUCT

Quick Clamper Case Studies: Box Packing onto Pallets

TECHNICAL

CAD data(63)

Model number overview File
TCEG 08(2D) Element (φ8, 2D)
  • 2D dxf ( 111KB)
TCEG08 (3D, no axis) Element (φ8, 3D, no axis)
  • 3D stp ( 36KB)
TCEG08 (3D, with axis) Element (φ8, 3D, with axis)
  • 3D stp ( 42KB)
TCEG 12(2D) Element (φ12, 2D)
  • 2D dxf ( 114KB)
TCEG12 (3D, no axis) Element (φ12, 3D, no axis)
  • 3D stp ( 36KB)
TCEG12 (3D, with axis) Element (φ12, 3D, with axis)
  • 3D stp ( 42KB)
TCEG 16(2D) Element (φ16, 2D)
  • 2D dxf ( 121KB)
TCEG16 (3D, no axis) Element (φ16, 3D, no axis)
  • 3D stp ( 0B)
TCEG16 (3D, with axis) Element (φ16, 3D, with axis)
  • 3D stp ( 43KB)
TCEG 20(2D) Element (φ20, 2D)
  • 2D dxf ( 111KB)
TCEG20 (3D, no axis) Element (φ20, 3D, no axis)
  • 3D stp ( 0B)
TCEG20 (3D, with axis) Element (φ20, 3D, with axis)
  • 3D stp ( 42KB)
TCEG 25(2D) Element (φ25, 2D)
  • 2D dxf ( 112KB)
TCEG25 (3D, no axis) Element (φ25, 3D, no axis)
  • 3D stp ( 0B)
TCEG25 (3D, with axis) Element (φ25, 3D, with axis)
  • 3D stp ( 42KB)
TUWP 08(2D) Plate unit (φ8, 2D)
  • 2D dxf ( 314KB)
TUWP08 (3D, no axis) Plate unit (φ8, 3D, no axis)
  • 3D stp ( 458KB)
TUWP08 (3D, with axis) Plate unit (φ8, 3D, with axis)
  • 3D stp ( 462KB)
TUWP 12A(2D) Plate unit (φ12, 2D)
  • 2D dxf ( 298KB)
TUWP12 (3D, no axis) Plate unit (φ12, 3D, no axis)
  • 3D stp ( 274KB)
TUWP12 (3D, with axis) Plate unit (φ12, 3D, with axis)
  • 3D stp ( 278KB)
TUWP 16(2D) Plate unit (φ16, 2D)
  • 2D dxf ( 287KB)
TUWP16 (3D, no axis) Plate unit (φ16, 3D, no axis)
  • 3D stp ( 449KB)
TUWP16 (3D, with axis) Plate unit (φ16, 3D, with axis)
  • 3D stp ( 453KB)
TUWP 20A(2D) Plate unit (φ20, 2D)
  • 2D dxf ( 298KB)
TUWP20 (3D, no axis) Plate unit (φ20, 3D, no axis)
  • 3D stp ( 263KB)
TUWP20 (3D, with axis) Plate unit (φ20, 3D, with axis)
  • 3D stp ( 267KB)
TUWL08(2D) Lever unit (φ8, 2D)
  • 2D dxf ( 474KB)
TUWL08(3D) Lever unit (φ8, 3D)
  • 2D stp ( 332KB)
TUWL16(2D) Lever unit (φ16, 2D)
  • 2D dxf ( 472KB)
TUWL16(3D) Lever unit (φ16, 3D)
  • 2D stp ( 350KB)
TUSR08(2D) Reel Clamper (φ8, 2D)
  • 2D dxf ( 228KB)
TUSR08(3D) Reel Clamper (φ8, 3D)
  • 3D stp ( 2MB)
TUSR12(2D) Reel Clamper (φ12, 2D)
  • 2D dxf ( 226KB)
TUSR12(3D) Reel Clamper (φ12, 3D)
  • 3D stp ( 2MB)
TUSR16(2D) Reel Clamper (φ16, 2D)
  • 2D dxf ( 226KB)
TUSR16(3D) Reel Clamper (φ16, 3D)
  • 3D stp ( 2MB)
TUSR20(2D) Reel Clamper (φ20, 2D)
  • 2D dxf ( 221KB)
TUSR20(3D) Reel Clamper (φ20, 3D)
  • 3D stp ( 2MB)
TUSR25(2D) Reel Clamper (φ25, 2D)
  • 2D dxf ( 220KB)
TUWI 22C Inner unit (φ22)
  • 2D dxf ( 120KB)
TUWI22C(3D) Inner unit φ22 (3D)
  • 2D stp ( 147KB)
TUSR25(3D) Reel Clamper (φ25, 3D)
  • 3D stp ( 2MB)
TURG30B(2D) Reel unit (φ30, 2D)
  • 2D dxf ( 295KB)
TURG30B(3D) Reel unit (φ30, 3D)
  • 3D stp ( 2MB)
TUSA08(2D) Air unit 1 way (one direction) φ8 (2D)
  • 2D dxf ( 332KB)
TUSA08(3D) Air unit 1 way (one direction) φ8 (3D)
  • 3D stp ( 864KB)
TUSA16(2D) Air unit 1-way (unidirectional) φ16 (2D)
  • 2D dxf ( 338KB)
TUSA16(3D) Air unit 1-way (unidirectional) φ16 (3D)
  • 3D stp ( 924KB)
TUWA08(2D) Air unit 2-way (bidirectional) φ8 (2D)
  • 2D dxf ( 313KB)
TUWA08(3D) Air unit 2-way (bidirectional) φ8 (3D)
  • 3D stp ( 2MB)
TUWA16(2D) Air unit 2-way (bidirectional) φ16 (2D)
  • 2D dxf ( 330KB)
TUWA16(3D) Air unit 2-way (bidirectional) φ16 (3D)
  • 3D stp ( 2MB)
ADLM08(2D) Air Unit Adapter 2 (φ8, for Linear Bush, 2D) Compatible Units: TUSA08/TUWA08
  • 2D dxf ( 198KB)
ADLM16(2D) Air Unit Adapter 2 (φ16, for Linear Bush, 2D) Compatible Units: TUSA16/TUWA16
  • 2D dxf ( 201KB)
ADLB08(2D) Air Unit Adapter 1 (φ8, for LB fittings, 2D) Compatible Units: TUSA08/TUWA08 *The adapter (1) is not needed when attaching FA fittings to TUSA08/TUWA08.
  • 2D dxf ( 190KB)
ADLB16(2D) Air Unit Adapter 1 (φ16, for LB/FA fittings, 2D) Compatible Units: TUSA16/TUWA16
  • 2D dxf ( 194KB)
AUW08(2D) Custom Clamper (φ8)
  • 2D dxf ( 0B)
AUW08(3D) Custom Clamper (φ8)
  • 3D stp ( 0B)
TAU-S9(3D) Isoginchaku (Square Type with 9 Suction Pads 3D)
  • 3D step ( 0B)
TAU-S9(2D) Isoginchaku (Square Type with 9 Suction Pads 2D)
  • 2D dxf ( 0B)
TAU-R7(3D) Isoginchaku (Round Type with 7 Suction Pads 3D)
  • 3D step ( 580KB)
TAU-R7(2D) Isoginchaku (Round Type with 7 Suction Pads 2D)
  • 2D dxf ( 0B)

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