Slim cell force ratings, Before installing the transducer, Safety considerations – Cleveland Motion Controls ULTRA SERIES SLIM CELL TRANSDUCER REV AA User Manual

Page 8: Efore, Nstalling the, Ransducer

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U

LTRA

S

ERIES

S

LIM

C

ELL

T

RANSDUCER

AO-70263

R

EV

AA


P

AGE

8

OF

18

2.1.1 S

LIM

C

ELL

F

ORCE

R

ATINGS

Size

MWF (lb.)

Linear Overload (%)*

Ultimate Overload (%) **

10 400

800

25 400

800

50 400

1000

100 300

1000

250 300

1000

UltraSlim 1

500 150

500

500 200

1000

UltraSlim 2

1000 150

500

*Linear overload: Maximum force applied on the transducer before hitting the safety stop (the output is linear up to that point).
** Ultimate Overload: Maximum force applied on the transducer with out risking permanent deformation.

2.2 B

EFORE

I

NSTALLING THE

T

RANSDUCER

Before you install the Slim Cell Transducer you should perform the following steps:

1. Review the safety considerations (Section 2.2.1)

2. Assemble the mounting hardware and review the torque fastener information (Section 2.2.2)

3. Reference the mounting dimensions (Section 2.2.3)

4. Determine a mounting location (Section 2.2.4)

5. Determine an appropriate mounting style (Section 2.2.5)

2.2.1 S

AFETY

C

ONSIDERATIONS

Safety should not be an afterthought. Before installing, servicing or calibrating review and follow applicable policies
and procedures to ensure worker safety. Machinery must be in a safe state and be aware of any additional hazards
that can arise when installing and calibrating higher force transducers.

The following points are important to remember:

• Check that all hardware is mounted with appropriate fasteners (thread size and pitch,

fastener grade, length of thread engagement).

• When “dead-weights” are used to produce calibration forces, always wear steel-toed

shoes.

• When manually handling calibration weights and rolls, use safe lifting practices to avoid

injury.

• Size cordage or straps with ample safety factors to reduce the chances of failure and

falling weights.

• Consider where the cords and weights will travel to should a failure occur.

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