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KEBA KeTop T10 directMove Handheld terminal

Short description

Using the inertial sensors of the 6D Inertial Measurement Unit (6D IMU),

the KeTop T10 directMove detects its orientation and direction in three

-dimensional space. The operator can therefore easily specify the desired

movement or rotation of the robot’s TCP by indicating the KeTop T10

directMove in the direction of motion and then by deflecting a small joystick

– regardless of his/her position relative to the robot. The speed of motion

can be changed by adjusting the intensity of the joystick deflection.

This means that no in-depth knowledge of coordinate systems is required.

Teach-in is easier and more efficient for both experienced operators and new

users.

Maximum flexibility is achieved through four operating modes that are displayed

on the 1.5″ color display using icons:

directMove mode: the robot follows the direction instructions from the KeTop

T10 directMove completely free in space.

snap2grid mode: use of defined coordinate systems as reference directions for

the KeTop T10 directMove for precisely directed movements of the robot.

virtual handle mode: the KeTop T10 directMove acts as a virtual handle on the

Tool Center Point to change its alignment quickly and easily.

axial movement mode: for the direct movement of individual robot axes as with

a conventional handheld operating device.

With the KeTop T10 directMove, the individual path points are thereby determined

and finely adjusted. If necessary, standard operating devices and screen devices

such as laptops can also be used for programming.

KEBA KeTop T10 Product features

Product features

• Ideal for the intuitive teach-in of 6-axis robots

• Can be used without robot programming knowledge

• Time saving of approximately 20% during teach-in

• Detects its orientation in space

• Safe retraction from critical situations

• Customizing of keyboard and display icons optional

axial movement mode: for the direct movement of individual robot axes as with

a conventional handheld operating device.

With the KeTop T10 directMove, the individual path points are thereby determined

and finely adjusted. If necessary, standard operating devices and screen devices

such as laptops can also be used for programming.

KEBA KeTop Operation & Monitoring

Mobile and stationary visualization solutions

KeTop stands for a unique choice from mobile to stationary operating

devices for easy implementation of all possible visualization and operating

tasks. Performance and size of the devices are scalable; depending on

the model, membrane keyboards, touchscreens as well as multitouch

monitors – on request with unique haptic elements – are available.

Patented KEBA innovations create outstanding experiences of interaction.

A user-friendly visualization software guarantees fast and unlimited project

realization, no programming knowledge required.

Highest robustness, quality and safety are standard of the advanced premium

products as well as a maximum in terms of ergonomics and best-possible

operating efficiency.

KeTop operating devices are available with three software

packages: Embedded, Trend and Style.

Embedded contains an operating system with VNC (Virtual Network Computing)

and browser as well as a multi appmanager, for switching between two application

(VNC, browser or JAVA). The software package embedded also forms the basis

for the Trend and Style versions.

The Trend software package also contains a standard visualization application

and the Style variant offers modern multitouch visualization.

Customizing in hardware and software

Extensive customizing can be easily implemented with the KeTop devices for hous

ings, keyboard layout and software.

In addition to machine visualizations in the customer’s own design, individually de

signed housings and housing variants are also possible.

KEBA KeTop AP500 Force-feedback-touch

Force-feedback-touch

On the basis of piezo-touch technology, a perceptible pressure point including

a “clicksound” is generated. The user thereby receives an active, haptic

(and acoustic) feedbackduring interactions.

Custom design

Customizing hardware and software

Color, logo and extension panels can be adapted to meet customer

-specificrequirements. The application is easily adapted to the corporate 

design using a centralstyling mechanism. The degree of customization

knows no limits.

As easy to operate as a smartphone

Rely on proven HMI components for modern user interfaces

Integrated multitouch gestures, high-performance widgets and various

graphicalpossibilities are just some of the features of the powerful HMI

framework.

The ready-made elements are simply arranged into finished visualization

masks usingdrag & drop and transferred to the panel without needing to

program a single line of code.

KEBA KeTop AP500 RealTime Multitouch

RealTime Multitouch

Controlling machines in realtime

Using the unique RealTime Multitouch and corresponding RealTime Widgets,

hand movements are reliably and directly translated into machine movements.

Thus, the realtime capability of the operating panel is also provided for without

expensive mechanical command devices.

Features

Learn more about the simple operation and innovative design of our KeTop

AP500 panel line

Operate with all of the senses

Blind operation thanks to haptic feedbackHaptic printing and the snap-dome

effect of the glass surface give the user tactileorientation, even if the user

glances away from the operating panel. Reliable operationwith full focus on

the process is thereby possible.

Haptic printing

Printed, haptic elements on the glass surface allow the user to feel his

position andprovide orientation on the display.

KEBA KeTop AP500 Multi-touch panel with realtime capability

Multi-touch panel with realtime capability

The KeTop AP500 panel line offers robust gesture operation through

an industrial multitouch with integrated touchbooster for glove operation.

The RealTime Multitouch is able to transmit operator interactions in

real-time via EtherCAT or ProfiNet directly to the controller.

Many mechanical built-in elements and membrane keys are thus a thing

of the past. With the KeTop AP500 line, you can reduce your HMI variants

to one panel.

This gives you full flexibility in the user interface thanks to the matching

KeView Style software solution.

The Intel Atom CPU with 7 Gen Intel HD graphics acceleration makes the

KeTop AP500 panel line an optimal platform for visualization tasks.

Multitouch, gesture control and graphic effects provide a new user

experience in machine operation.

KEBA Stationary operation

KEBA Stationary operation

The stationary operation for your needs

Keyboard and gesture control for the industry

The stationary operating devices from KEBA combine industry-proven

technology with modern operating concepts. Devices for general

industrial applications as well as specially optimized versions for

specific applications are available. The performance and size of the

stationary panels are scalable. Depending on the model, short-stroke

or membrane keys, touchscreens and multitouch monitors – also with

unique haptic feedback on request – are available.

Available operating options:

• Key operation via tactile short-stroke and membrane keys

• Touch operation

• Multitouch and gesture control

Emerson PR 6423 is a non-contact eddy current transducer

The PR 6423 is a non-contact eddy current transducer with a rugged

construction and designed for extremely critical turbomachinery

applications such as steam, gas, compressor and hydro turbomachinery,

blowers and fans.

The purpose of a displacement probe is to measure position or shaft

movement without contacting the measured surface – the rotor.

In the case of sleeve bearing machines, the shaft is separated

from the bearing material by a thin film of oil. The oil acts as

a dampener and therefore the vibration and position of the shaft

are not transmitted through the bearing to the bearing case.

The use of case vibration sensors is discouraged for monitoring

sleeve bearing machines since the vibration produced by shaft motion

or position is greatly attenuated through the bearing oil film.

The ideal method of monitoring shaft position and motion is by

mounting a non-contact eddy sensor through the bearing, or

inside the bearing, measuring the shaft motion and position

directly.

Emerson Eddy Current Displacement Transducer Specifications

The PR 6423 is commonly used to measure vibration of

machine shafts, eccentricity, thrust (axial displacement), differential

expansion, valve position, and air gaps.

• Non-contact measurement of static and dynamic shaft displacement

– Axial and radial shaft displacement (position)

– Shaft eccentricity

– Shaft vibration (motion)

• Meets international standards, DIN 45670. ISO 10817-1 and API 670

• Rated for explosive area, Eex ib IIC T6/T4

• Other displacement sensor selections include PR 6422. PR 6423.

PR 6424 and PR 6425

• Select converter, such as CON 011/91. 021/91. 041/91. and cable for

complete transducer system

EATON Galileo Design Tool offers a simulator

The possibility to create your own user defined controls with

parameter interface (tags, text, images, script assignments,

…) improves reusability and graphical consistency across the

project, saving time during the development phase.

By activating the web visualization functionality of Galileo,

remote devices such as PC’s, tablet’s or smartphones can easily

access the XV-102 visualization. Based on the HTML5-standard

all common web browsers (Safari, Chrome, Edge) are supported.

It is possible to make an existing visualization web-accessible

with just a few simple configuration clicks, or to design a

specially tailored visualization for web purposes (e.g., tailored

content for portrait mode view, reduced functionality for web

access).

The Galileo Design Tool offers a simulator with which the

created visualization can be easily tested on the developer PC.

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