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Mittelmann RG10-D Mode D'emploi page 13

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Les langues disponibles

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1. Technical data
Manufacturer:
Product:
Type:
Descent rope:
Certification:
Maximum descent height:
Maximum descent load:
Minimum descent load:
Maximum ambient temperature:
Minimum ambient temperature:
Descent velocity:
Calculation of descent energy:
2. Application
The RG10-D rescue device for descending is a rescue devices by means of which one person or
several persons one after the other are able to vertical descend from a higher to a lower level at
limited velocity.
The equipment may only be used within the limits defined in this user manual and for its intended
use. The RG10-D rescue device for descending may only be used as rescue system and not as fall
arrest system. The device can be used in vertical, and inclined position. The position depends on the
particular use.
Vertical position : device is hanging vertically on an anchor point.
inclined Position: f.e. in use for inclined descent.
3. Inspection
Before use: visual check and functional test of the device visual check forwear, corrosion and
damages. Check the readability of the labels.
The functional test is performed as follows: Pull left and right on the descent rope, the rope should be
relatively hard to pull through but it should move smoothly and evenly.
The inspection prior to use may be omitted for certain equipment parts intended for emergency use if
they were packaged and sealed by a competent person. If any doubts concerning the safety of the
system or parts thereof exist, the system or its parts have to be immediately withdrawn from service.
It is not permitted to use damaged devices, full body harnesses or ropes.
Devices that were subjected to a fall from a height must also be withdrawn from service and sent back
to the manufacturer for maintenance and re-inspection.
Instructions for use
Mittelmann Sicherheitstechnik GmbH & Co. KG
Descender device
RG10-D
Mittelmann wire rope Ø 5 mm
Material: galvanized steel
EN 341:2011/1B
ANSI/ASSE Z359.4-2013
100 m
140 kg
50 kg
60° C
-40° C
1,5 m/s at loads up to 100 kg. Increasing speed is to be expected
as load is increased (2,0 m/sec. max.)
W=m
g
x
x
m descent load (kg), g acceleration of free fall (9,81 m/s
h descent height (m), n number of descent
class B W=1,5 x 10
h
n
x
6
J
2
)

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