LAMBDA 10-3 OPERATION MANUAL – REV. 3.03 (20110829)
iv
Never look into the optical pathway of the high intensity light sources typically used
Never look into the optical pathway of the high intensity light sources typically used
Never look into the optical pathway of the high intensity light sources typically used
Never look into the optical pathway of the high intensity light sources typically used
with this instrument. Doing so can cause permanent eye damage.
with this instrument. Doing so can cause permanent eye damage.
with this instrument. Doing so can cause permanent eye damage.
with this instrument. Doing so can cause permanent eye damage.
The high
The high
The high
The high----intensity light sources typically used with this instrument also produce a
intensity light sources typically used with this instrument also produce a
intensity light sources typically used with this instrument also produce a
intensity light sources typically used with this instrument also produce a
ssssignificant amount of heat. Direct contact with the housing of those instruments can
ignificant amount of heat. Direct contact with the housing of those instruments can
ignificant amount of heat. Direct contact with the housing of those instruments can
ignificant amount of heat. Direct contact with the housing of those instruments can
cause serious burns.
cause serious burns.
cause serious burns.
cause serious burns.
The SmartShutter is Not a Safety Shutter:
The SmartShutter is Not a Safety Shutter:
The SmartShutter is Not a Safety Shutter:
The SmartShutter is Not a Safety Shutter: Sutter Instrument Co.’s SmartShutter is
Sutter Instrument Co.’s SmartShutter is
Sutter Instrument Co.’s SmartShutter is
Sutter Instrument Co.’s SmartShutter is
not i
not i
not i
not intended to be a ‘safety shutter.’ A safety shutter usually closes automatically in the
ntended to be a ‘safety shutter.’ A safety shutter usually closes automatically in the
ntended to be a ‘safety shutter.’ A safety shutter usually closes automatically in the
ntended to be a ‘safety shutter.’ A safety shutter usually closes automatically in the
event of a power failure and is designed with the primary goal of ensuring that it will not
event of a power failure and is designed with the primary goal of ensuring that it will not
event of a power failure and is designed with the primary goal of ensuring that it will not
event of a power failure and is designed with the primary goal of ensuring that it will not
allow any unintended exposure. For laser safety applications, a shutter is no
allow any unintended exposure. For laser safety applications, a shutter is no
allow any unintended exposure. For laser safety applications, a shutter is no
allow any unintended exposure. For laser safety applications, a shutter is normally
rmally
rmally
rmally
designed so that no single component failure allows an unintended exposure to the laser
designed so that no single component failure allows an unintended exposure to the laser
designed so that no single component failure allows an unintended exposure to the laser
designed so that no single component failure allows an unintended exposure to the laser
beam. The SmartShutter is intended for use in the controlling of light in scientific and
beam. The SmartShutter is intended for use in the controlling of light in scientific and
beam. The SmartShutter is intended for use in the controlling of light in scientific and
beam. The SmartShutter is intended for use in the controlling of light in scientific and
industrial applications. The SmartShutter was designed for high performa
industrial applications. The SmartShutter was designed for high performa
industrial applications. The SmartShutter was designed for high performa
industrial applications. The SmartShutter was designed for high performance and
nce and
nce and
nce and
durability, but without certain features that would be desirable in a safety shutter
durability, but without certain features that would be desirable in a safety shutter
durability, but without certain features that would be desirable in a safety shutter
durability, but without certain features that would be desirable in a safety shutter
application.
application.
application.
application.
Electromagnetic Interference
Electromagnetic Interference
Electromagnetic Interference
Electromagnetic Interference
To comply with FDA and CE electromagnetic immunity and interference standards; and to
To comply with FDA and CE electromagnetic immunity and interference standards; and to
To comply with FDA and CE electromagnetic immunity and interference standards; and to
To comply with FDA and CE electromagnetic immunity and interference standards; and to
reduce the electromagnetic couplin
reduce the electromagnetic couplin
reduce the electromagnetic couplin
reduce the electromagnetic coupling between this and other equipment in your lab always
g between this and other equipment in your lab always
g between this and other equipment in your lab always
g between this and other equipment in your lab always
use the type and length of interconnect cables provided with the unit for the interconnection
use the type and length of interconnect cables provided with the unit for the interconnection
use the type and length of interconnect cables provided with the unit for the interconnection
use the type and length of interconnect cables provided with the unit for the interconnection
of one or more filter wheels and/or shutters, h
of one or more filter wheels and/or shutters, h
of one or more filter wheels and/or shutters, h
of one or more filter wheels and/or shutters, host computer via serial RS
ost computer via serial RS
ost computer via serial RS
ost computer via serial RS----232 or parallel
232 or parallel
232 or parallel
232 or parallel
interface, or othe
interface, or othe
interface, or othe
interface, or other equipment via TTL connections
r equipment via TTL connections
r equipment via TTL connections
r equipment via TTL connections (see the TECHNICAL SPECIFICATIONS
(see the TECHNICAL SPECIFICATIONS
(see the TECHNICAL SPECIFICATIONS
(see the TECHNICAL SPECIFICATIONS
appendix for more details).
appendix for more details).
appendix for more details).
appendix for more details).
Operational
Operational
Operational
Operational
Failure to comply with any of the following precautions may
Failure to comply with any of the following precautions may
Failure to comply with any of the following precautions may
Failure to comply with any of the following precautions may damage this device.
damage this device.
damage this device.
damage this device.
This instrument is designed for operation in a laboratory environment (Pollution Degree
This instrument is designed for operation in a laboratory environment (Pollution Degree
This instrument is designed for operation in a laboratory environment (Pollution Degree
This instrument is designed for operation in a laboratory environment (Pollution Degree
I).
I).
I).
I).
This unit is not designed for operation at altitudes above 2000 meters nor was it tested
This unit is not designed for operation at altitudes above 2000 meters nor was it tested
This unit is not designed for operation at altitudes above 2000 meters nor was it tested
This unit is not designed for operation at altitudes above 2000 meters nor was it tested
for safety above 2000 meters.
for safety above 2000 meters.
for safety above 2000 meters.
for safety above 2000 meters.
DO NOT CONNECT OR DISC
DO NOT CONNECT OR DISC
DO NOT CONNECT OR DISC
DO NOT CONNECT OR DISCONNECT THE CABLES BETWEEN THE
ONNECT THE CABLES BETWEEN THE
ONNECT THE CABLES BETWEEN THE
ONNECT THE CABLES BETWEEN THE
CONTROLLER AND THE MECHANICAL UNITS WHILE POWER IS ON.
CONTROLLER AND THE MECHANICAL UNITS WHILE POWER IS ON.
CONTROLLER AND THE MECHANICAL UNITS WHILE POWER IS ON.
CONTROLLER AND THE MECHANICAL UNITS WHILE POWER IS ON.
Please allow at least 20 seconds after turning the unit off before disconnecting the
Please allow at least 20 seconds after turning the unit off before disconnecting the
Please allow at least 20 seconds after turning the unit off before disconnecting the
Please allow at least 20 seconds after turning the unit off before disconnecting the
mechanical units. Failure to do this may result in damage to the electronics.
mechanical units. Failure to do this may result in damage to the electronics.
mechanical units. Failure to do this may result in damage to the electronics.
mechanical units. Failure to do this may result in damage to the electronics.
Oper
Oper
Oper
Operate only in a location where there is a free flow of fresh air on all sides.
ate only in a location where there is a free flow of fresh air on all sides.
ate only in a location where there is a free flow of fresh air on all sides.
ate only in a location where there is a free flow of fresh air on all sides.
NEVER ALLOW THE FREE FLOW OF AIR TO BE RESTRICTED.
NEVER ALLOW THE FREE FLOW OF AIR TO BE RESTRICTED.
NEVER ALLOW THE FREE FLOW OF AIR TO BE RESTRICTED.
NEVER ALLOW THE FREE FLOW OF AIR TO BE RESTRICTED.
Содержание Lambda 10-3
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