New SMT Equipment: tactil motor (5)

General Electric SR469-P5-HI-A20 Motor Management Relay

General Electric SR469-P5-HI-A20 Motor Management Relay

New Equipment | Industrial Automation

Sales Manager: Nancy Lin Email:  info@amikon.cn Skype:  onlywnn_1 Mobile(Whatsapp): (+86)-18020776786 ​​​ Amikon :  Shipping Term : TNT,DHL,FEDEX,ETC Payment Term : T/T Warranty: 12 month Amikon supply: New+original+factory sealed+high quali

Amikon Automation Equipment Co., LTD

8 Channel Isolated Input FBM203 P0914SV FOXBORO

8 Channel Isolated Input FBM203 P0914SV FOXBORO

New Equipment | Industrial Automation

Sales Manager: Nancy Lin Email:  info@amikon.cn Skype:  onlywnn_1 Mobile(Whatsapp): (+86)-18020776786 ​​​ Amikon :  Shipping Term : TNT,DHL,FEDEX,ETC Payment Term : T/T Warranty: 12 month Amikon supply: New+original+factory sealed+high quali

Amikon Automation Equipment Co., LTD

Electronics Forum: tactil motor (5)

MPM screen printer

Electronics Forum | Wed May 19 09:32:28 EDT 2004 | Mr Fix it - MPM

Sounds to me like the driver for the tactile is not working. The tactile has three components to it. The first is the switch, the second is the pneumatic up/down actuator and the third is a small motor in the tactile assembly. The motor has a driv

mpm up 3000 ultraflex

Electronics Forum | Sat Jun 13 13:51:44 EDT 2015 | tnisbet

The problem could be the tactile motor, we have it in stock. Please contact sales@goppm.com and request a quote for part number CA-399.

Used SMT Equipment: tactil motor (2)

Asymtek DS-S-820

Asymtek DS-S-820

Used SMT Equipment | Soldering Equipment/Fluxes

Precision Batch Semiconductor Dispenser by Nordson Asymtek, as new. Nordson Asymtek DS-S-820 product information. Motion System Type: Brushless DC servo motors, closedloop with precision encoder feedback Encoder resolution: 10 microns X-Y

Fix Trade BV

Nordson Asymtek ds-s-820

Nordson Asymtek ds-s-820

Used SMT Equipment | Semiconductor & Solar

Precision Batch Semiconductor Dispenser by Nordson Asymtek, as new. Nordson Asymtek DS-S-820 product information. Motion System Type: Brushless DC servo motors, closedloop with precision encoder feedback Encoder resolution: 10 microns X-Y ac

Fix Trade BV

Parts & Supplies: tactil motor (162)

MPM 3.4W Tactile Motor Assembly 1002440 P26443-12-017 MPM UP2000 Motor

MPM 3.4W Tactile Motor Assembly 1002440 P26443-12-017 MPM UP2000 Motor

Parts & Supplies | Assembly Accessories

Detailed Product Description Brand: MPM Machine Model: UP2000 Part Name: Tactile Motor Part Number: 1002440 Power: 3.4W Condition: Original New 3.4W Tactile Motor Assembly 1002440 P26443-12-017 MPM UP2000 Motor Description: PART NO:1002440

KingFei SMT Tech

Juki SMT PICK AND PLACE SPARE PARTS JUKI 750 760 HEAD 2 PRESSURE SENSOR E93187250A0 PS40-102V-NAM

Juki SMT PICK AND PLACE SPARE PARTS JUKI 750 760 HEAD 2 PRESSURE SENSOR E93187250A0 PS40-102V-NAM

Parts & Supplies | Sensors

SMT MACHINE SPARE PARTS JUKI 750 760 HEAD 2 PRESSURE SENSOR E93187250A0 PS40-102V-NAM JUKI Nozzle Specifications: Brand Name JUKI PRESSURE SENSOR Part Number E93187250A0 Model Number PS40-102V-NAM Ensure Tested buy juki Guarantee 1 month u

KingFei SMT Tech

Technical Library: tactil motor (2)

Embracing a New Paradigm: Electronic Work Instructions (EWI)

Technical Library | 2019-03-15 16:26:50.0

While there have been quite dramatic and evident improvements in almost every facet of manufacturing over the last several decades owing to the advent and mass adoption of computer automation and networking, there is one aspect of production that remains stubbornly unaffected. Massive databases track everything from orders, to inventory, to personnel. CAD systems allow for interactive and dynamic 3D rendering and testing, digital troubleshooting, and simulation and analysis prior to mass production. Yet, with all of this computational power and all of this networking capability, one element of production has remained thoroughly and firmly planted in the past. Nearly all manufacturing or assembly procedures are created, deployed, and stored using methodologies derived from a set of assumptions that ceased to be relevant fifty years ago. This set of assumptions, referred to below as the “Paper Paradigm” has been, and continues as the dominant paradigm for manufacturing procedures to this day. It is time for a new paradigm, one that accounts for the vastly different technological landscape of this era, one that provides a simple, efficient interface, deep traceability, and dynamic response to rapidly changing economic forces.This paper seeks to present an alternative. Instead of enhancing and improving on systems that became irrelevant with the invention of a database, instead of propping up an outdated, outmoded and inefficient system with incremental improvements; rewrite the paradigm. Change the underlying assertions to more accurately reflect our current technological capability. Instead of relying on evolutionary improvements, it is time for a revolution in manufacturing instructions.

ScanCAD International, Inc.

Design and Integration of aWireless Stretchable Multimodal Sensor Network in a Composite Wing

Technical Library | 2020-10-08 00:55:22.0

This article presents the development of a stretchable sensor network with high signal-to-noise ratio and measurement accuracy for real-time distributed sensing and remote monitoring. The described sensor network was designed as an island-and-serpentine type network comprising a grid of sensor "islands" connected by interconnecting "serpentines." A novel high-yield manufacturing process was developed to fabricate networks on recyclable 4-inch wafers at a low cost. The resulting stretched sensor network has 17 distributed and functionalized sensing nodes with low tolerance and high resolution. The sensor network includes Piezoelectric (PZT), Strain Gauge(SG), and Resistive Temperature Detector (RTD) sensors. The design and development of a flexible frame with signal conditioning, data acquisition, and wireless data transmission electronics for the stretchable sensor network are also presented. The primary purpose of the frame subsystem is to convert sensor signals into meaningful data, which are displayed in real-time for an end-user to view and analyze. The challenges and demonstrated successes in developing this new system are demonstrated, including (a) developing separate signal conditioning circuitry and components for all three sensor types (b) enabling simultaneous sampling for PZT sensors for impact detection and (c)configuration of firmware/software for correct system operation. The network was expanded with an in-house developed automated stretch machine to expand it to cover the desired area. The released and stretched network was laminated into an aerospace composite wing with edge-mount electronics for signal conditioning, processing, power, and wireless communication.

Stanford University

Express Newsletter: tactil motor (17)


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