Omega OS65 Series Owner's manual

Category
Measuring, testing & control
Type
Owner's manual
OS65 SERIES
Infrared Pyrometers
http://www.omega.com
e-mail:
J
lhquy
Teekmdoglea
OME6.4
Am
L
or
use on human8
I
use
medkd
-
This product
is not intended for
CAUTION!
EMC/EMI regulations that
apply. OMEGA is constantly pursuing certification of its products to the European New Approach
Directives. OMEGA will add the CE mark to every appropriate device upon certification.
The information contained in this document is believed to be correct but OMEGA Engineering, Inc. accepts
no liability for any errors it contains, and reserves the right to alter specifications without notice.
WARNING: These products are not designed for use in, and should not be used for, patient connected applications.
uk@?omega.com
It
is
the policy of OMEGA to comply with all worldwide safety and
5EX,
England
Tel: 44 (1455) 285520
Tel: 44 (161) 777-6611
FAX: 44 (1455) 283912
FAX: 44 (161) 777-6622
Toll Free in England: 0800-488-488
e-mail:
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M44
7,
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Broughton Astley, Leicestershire,
Irlam, Manchester,
LE9
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P.O. Box
france@@mega.com
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Tel: 49 (07056) 3017
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FAX: (31) 20 6434643
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FAX: (95) 203-359-7807
En Espariol: (203) 359-1660 ext: 2203
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1-800-622-BESTL”
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Customer Service: l-800-622-2378
I
For immediate technical or application assistance:
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5Al
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e-mail:
http://www.omega.com
Servicing North America:
USA:
One
Omega Drive, Box 4047
OMEGAneP
On-Line Service
Internet e-mail
--.-“UIIIIIIII
14
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.
“................“............
.
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.
..”
10
4.4
Digital Output
Option
...
.
..
U.“IH~.mm”...“ W..“-...~“..““..““.-
.
..”
9
4.3 Accessories Dimensions
-.
...
“._“...___
-.
...
8
4.2 Field of View Diagrams
~“..“.H~.........“~..~“.~.~.~““..~..”~~...”..~...~“...~-.~”..~”.“~.~“”
8
4.1 Specifications
..~.......~........~....“..“~..“”~~....~.~”~...“.....“....~.....“.~..“.”
..-.““- m-....=.....“......“.-“.“-.
8
Section 4: Specifications
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35
Maintenance
“oo.“”
8
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...-........U....
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7
3.4
Comparison
Measurements
..-
6
3.3 Emissivity Tables
“~“..“..N......“...~.~.....“..~.~....”..””.~-”.~.“.~..........”...”
.
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.
6
3.2 Emissivity Adjustment
..“w....m....................““.....”~...~.”.””....-“-“-“”-”-.....“....“...”
..........
6
3.1 Emissivity
..H.........................~“~.”..”..~.”.~..~...“...“~~.~””~..~.~~.....“..~.“......““..“..”
.
4
Section 3: Operation
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3
23 Wiring
..“...“m....“...“.“.......~-.“-..~..~....-..................-”-”..~....“..“~........”
..........
2
2.2 Dimensions
.
..“.....“.“.~.~“.m.“....“.~..............~....”...““~~..~.....~.-..................”
..
2
2.1 Unpacking
..
Iustalhtion
..
..“...““.“..“-.....~..“...-......................~.“..--“”....-.-
....................
2
Section 2:
..-..-......HI.“ W..““.~““.-....“”.....-........-.““~.-“.....”..-.“-..”
........
1
1.3 Accessories
..................
“.“.........UI.
1
1.2 Available Models
-
..“.......~..~...~~...............”.......~.-.”~.~
..~...................._._.....“....~......................”_.....“....~.“_.......”
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1
1.1
General Description
..................
section
Page
Section 1: Introduction
.
Table of Contents
OS65 Series
RlO.
and
R9
tanges
the mocouple outputs only available with
5OOT
* J
or
K
-R12
0 to
1OOooF
-Rll
0 to
5OOT
-570
to
-RlO
1OOOT
-700
to
-R9
25O C
-R8
0
to
oto5OOT
-R7
-570
to
250°C
-R6
5ooOF
-700
to
-R5
125OC
-R4
0
to
25OT
-R3 0
to
-57”
to
125°C
-R2
-Rl
-70“
to
250°F
he
SufIix
Temperature
diagrams
for details.
Range Table
ordering
f&n optical table
below.
See
optical
code
t
Insert optics
from
range table below.c&e
tempemmre
range
*
Insert
V-DC
OS65-V(*)(t) o-5
mA
OS65-h&Q(*)(t)
O-20
mA
OS65-MAl(*)(t)
4-20
mV/degree
OS65- M v(*)(t)
1
OS65-K(*)(t)
K
OS65-J(*)(*)
J
ModelNumber
Output Type
circuitry
that insures accuracy and repeatability. There are
six different outputs available, wh ich can feed directly into co mputers, data loggers, or other
instru m entation.
1.2
Available Models
suffering
any loss in perfor m ance. This
includes installations that are moving, vibrating, or subject to m echanical shock. This
rugged design, coupled with their relatively s m all di m ensions, m ake these instru m ents
ideally suited for a w ide variety of applications where durability, size, and low cost are
important.
The OS65 Series are advanced non-contact m easure m ent syste ms. They utilize
m icroprocessor-based electronic
uflsafe
to touch. The
OS65 Series can be
installed in your existing equip m ent or
mounted with its own hardware for continuous monitoring of a process line. Since the OS65
Series instru m ents do not use chopper mo tors or vibrator m echanis m s, they can be mounted
in any position and in hostile environ m ents without
f@ile, or
Infi-ared
Pyrometers are
designed to measure the temperature
of
targets rapidly and accurately. This includes difficult targets that are moving, inaccessible,
Section 1: Introduction
1.1
General Description
The OMEGA@ OS65 Series
signs
of
damage. Note any evidence of rough handling in transit. Immediately report any damage to
the shipping agent.
Note:
The carrier will not honor any claims unless all shipping material is saved for their
examination. After examining and removing contents,
save
packing
material and carton in
the event reshipment is necessary.
veri@
that you have received all equipment. If you have any
questions about the shipment, please call the OMEGA Customer Service Department at
l-800-622-2378 or 203-359-1660.
When you receive the shipment, inspect the container and equipment for any
15-foot
cable)
NIST Traceable Calibration Certificate
2.1
Unpacking
Remove the Packing List
and
50-foot
cable (in place of the
Air/water Cooling Jacket
Mounting Frame
Right Angle Mounting Bracket
Mounting Nut
NEMA 4 Electronics Enclosure
NEMA 12 Electronics Enclosure
NIST
Section 2: Installation
Air Purge
Collar
c50
OS65-NEMA12
Options
OS65-NEMA4
OS65-MN
OS65-RAB
OS65-MF
OS65-AWC
OS65-APC
suffix
BBto model number.
1.3 Accessories
infrared
sensing head and
electronics card (without NEMA 4 enclosure and sensor mounting bracket and nut), add
15-foot
interconnecting cable
and electronics housed in NEMA 4 (IEC529, IP66) enclosure.
To order a bare bones operating system, including just the
Each unit is supplied with sensor mounting bracket and
nut,
Optical Table
..
__
..--
__-._.
.---
.--
_...
__
1
OS65 ELECTRONICS
__-
.
(5.7)
I
2.25”
4
--
CABLE
SENSlNC
HEAD
15FT (460)
OSB5
(1o.g)~--
.-._-_.__
4.3
(2:54)
(2.54)
L
__-.--
J
@
1.625”
(164.1)
II
It
4.25” (10.8)
\
l/2
20
THD
f
- -
1
-
----.
-
(13.3)
--
5.2
-..-
.____._-
--
t
THRU
DlMENSIONS
0.205 HOLE
(PLUS)
*See
next page for
wiring to meters with
built-in power supplies,
referred to as sensor
excitation
4
*
l.-wNlIs)
3.
Y6RuNuTBl
PoaPowEREDwoPsuPPLY
(MlNU6)
-
FUJS)
3.
lERulNuY62
2.
??
LOOPSUPPLY
NouPowEl?Eo
L
ma
-
SHIELD
-
-
GREEN
)
~DeJ iI
Nc
6. SHIELD GROUND
SENSOR INPUT
+
5.
AMB
SENSOR
&DCPOWER+
4. GREEN
I;“,“”
EK
$:
%DCPOWER-
+
IR SENSOR
l.W l+TE
TB2
TERMlNALTEll
TERMINAL
CONNECTlON
VDC
POWER
9-30
CZM%
I
I
091
OS6!i-MA2
OS65MAl
and
&
5 do not share common
ground. The output on TB2 is a floating
differential output.
WIRING DIAGRAM FOR
1
+
5. N/C
6. SHIELD GROUND
Terminals
AME SENSOR
+
4. GREEN
6:~F%F
XF
I::kFK
+
IR SENSOR
TB2
1. WHITE
TERMNALTBI
TERMINAL
-- Bm -
SENSOR INPUT
WHITE
BLACK
TBl
L
+3
OS6HAV
and OS65V
OS65J,OS6!bK,
WIRING DIAGRAM FOR
with
terminal 5, and
must have a separate isolated power supply from the power supply on terminals 5 and
6.)
TEb2
wiring terminals. 1 and 3 are not at common ground
-(PLUS)
(Note
for
l.-fbmJUs)
3.
YERMNAL lB2
POWER60 LOOP SUPPLY
R&%X466
FOR
DIGJTAL
SlilELD GROUN D
I
T62
11111.
_I^..
I
I
3
-
-,,
IIL_
N.c
I
I
I
5.
-
+
AMBSENS~R
I
GFtEEh
IIIII
4.
.-_
.
:2V& ‘C
6. DC POWER +
;&A&K
%DCPOWER-
!R SENSOR +
TERMINALTB2
1. WHITE
TERMINALTBl
WN
1
CONNtr;
VDI
CONNECTION POWER
S-30
SENSOR
OS65MA2
Meter with internal power
supply for sensor excitation
OS65MA1 and WIRING DIAGRAM FOR
17*
Street, New York, New York 10011.
1FlKPlemu-n
Data Corporation, subsidiary of Plenum
Publishing Company, 227 West
7,8,
and 9) by Y.S. Touloukian
and D.P. Dewitt, published by
1.
Standardized values of emissivity are available for most
materials.
A simplified table of emissivities is provided here. For a more detailed listing of
emissivities, refer
to
Thermal Radiative Properties ” (vol.
usiug
a thermocouple. Adjust the
emissivity control until the OS65 Series reading equals that of the thermocouple. For
exceedingly high temperatures, determine the emissivity using the emissivity value table
on page 7 of this manual.
4.
When a portion of the surface of the material can be coated, a dull black paint will have
emissivity of approximately 1 .O (other non-metallic coatings such as mold release may
be used also). Use this truetemperature to determine the emissivity using the method
described in Example
temperature
and the object s
emissivity can be determined using the method described as above.
3.
For high temperatures, measure the object temperature
.O,
the
measurement you obtain from it can be considered a true
250°C),
a piece of masking
tape can be placed on the object and its temperature measured with the OS65 Series
instrument. Since the masking tape has an emissivity of approximately 1
500°F,
arrows
are aligned with the proper setting. Determining
the proper setting can be done as follows.
1.
Heat a sample of the material to a known temperature as determined by a precise sensor.
Using the emissivity control of your OS65 Series instrument, adjust the indicated
temperature until it matches the temperature measured by the contact sensor. This value
of emissivity can now be used whenever the same material is measured.
2.
For relatively low temperatures (to approximately
from
0.10 to 0.90 in 0.10 steps. The second pot allows a fine adjustment of the
emissivity and has a range of 0.00 to 0.09 in 0.01 steps. To make the adjustment, use a small
screwdriver to turn the pots until the
Section
3:
Operation
3.1
Emissivity
A blackbody is defined as an object that emits the maximum theoretical amount of radiation
at a given temperature and has an emissivity at 1.0. The name blackbody is misleading
because it is not the color of the object, as much as the material and the surface finish of the
material that determines the emittance value.
The emittance of most organic substances (wood, cloth, plastic, and most paints) is
approximately 0.95. Metals with smooth, polished surfaces will have emittance values much
lower than 1.0.
3.2
Emissivity Adjustment
When
using an OS65 Series model to measure shiny, metallic
objects, the proper emissivity
adjustment must be made. This is easily accomplished by adjusting the emissivity pots on
the electronics board. One of the pots allows a coarse adjustment of the emissivity and has
a
range
0.90-0.98
0.93
0.90-0.95
7
0.90-0.95
0.95
0.90
0.95
0.90
0.90
(G=
20
mils thickness)
Rubber
Sand
Snow
soil
Water
wood
Natural
0.40-0.60
0.20
0.70-0.90
0.20
0.10
0.03
0.20
Emissivity
0.95
0.95
0.95
0.90
0.95
0.95
0.95
0.95
0.85
0.95
0.80-0.95
0.98
0.95
@asue
Any
Color
Plastic
Paper
Paint
Non-Metallic
ICe
Limestone
Grvp=
ClaY
Concrete
Cloth
Plate
Gravel
GXi3LUiC
Carbonmdum
Materials
Asbestos
Asphalt
Brick
Galvaoized
Non-Metals
o>ridized
Polished
zinc
silver
Steel
Cold-Rolled
0.40-0.60
0.05-0.10
0.10-0.40
0.20-0.50
0.10
0.30
0.09
0.03
0.70-0.90
Ground Sheet
Polished Sheet
oxidized
Stainless
PlatinIml
Polished
Black
o?ddized
Unoxidized
(NiCu)
Nickel
Polished
Monel
Iron,
Wrought
0.20-0.55
0.09
0.05
0.50
0.03-0.05
0.40
0.10
0.40-0.80
0.03
0.02
0.50-0.90
0.15
0.50-0.70
0.60-0.95
0.20
0.20-0.30
Smooth
0.70
0.30
oxidized
iron,
cast
oxidized
Unoxidized
Molten
Rusted
Iron
oxidize d
unoxidize d
Copper
oxidized
Polished
Gold
Polished
Carbon
Graphite
chromium
uIloxidized
Polished
Brass
oxidized
Polished
Alumiuum
oxidized
techniques
described above.
Metals
Materials
Emissivitv
The best determination of emissivity can be made using the
that
the actual emissivity, particularly for metals, can vary
greatly depending on surface finish oxidation, corrosion, or the presence of dirt, water, or
oil.
Emissivity Tables
The following tables are provided as a guide for estimating the emissivity of various
materials. It is important to note
1omAmaximum
10.9 cm x 4.1 cm (4.30 ” x 1.63); l-112-20 thread
13.3 cm x 9.1 cm (5.25 x 3.62)
0.3 kg (8 oz.)
0.1 kg (4 oz.)
1.2 kg (43.2 oz.)
8
7)/0.02
-
(15fi.
cable standard); Optional 15 m (50 ft. cable)
(Supply Voltage
12OT
4.5 m
32Oto
185T)
85“C
(0 to
-180
to
dust-tight
or drip-tight enclosure
NEh4A
12
sensing
head NEMA 4, dust-tight and water-tight
with either NEMA 4 electronics enclosure or
x&4
VDC,
40
s”
at 6
9-30
15:1,
minimum spot size 1 ” at 15
24: 1, minimum spot size
T
3:1,minimumspotsize ’/4at3/4
7: 1, minimum spot size 1 at
msec
(10 to 90%)
8-
14 microns
0.10 to 0.99 digitally adjustable
300
Hoc
&O-50%
of reading
(l°C),
whichever is greater
+z?F
+l% of reading or
iu
NEMA 4 enclosure:
Electronics
only (without
NEMA 4 enclosure):
Electronics
mounted
Weight-
Sensing Head:
Electronics:
Dimensions-
Sensing Head:
@A,
Voltage Output Mode):
Current-
ComN!ction:
Max. Lead
Wire
Resistance-
(Ohms, Current Output Mode):
Load
EkCtl-OlliCS:
Sensing
Head:
Range-
(FOV):
Power:
Environmental Ratings:
Ambient Operating
Response
Time:
Field of View
Emissivity
Range:
3.4
Comparison Measurements
When making comparison measurements on the same material, an approximation of the
emissivity will still give good results. Selecting a relatively low emissivity value will make
the difference in compared temperatures slightly larger than actual. When trying to locate a
slight temperature difference, setting the emissivity to 0.20 will provide the maximum
sensitivity, although the absolute temperature measurement will not normally be correct.
3.5 Maintenance
Due to its solid-state, sealed construction, the OS65 Series instruments require minimum
maintenance. The optics may require periodic inspection and cleaning if the sensor is in a
dirty environment. Use an optical cleaning solution (e.g. mild detergent) and a cotton swab.
Care
should be taken to prevent scratching the lens or its coating.
If
you are operating the
instrument in a dirty atmosphere, the optional lens air purge assembly is recommended.
Se&on
4:
Specifications
Accuracy:
Repeatability:
Spectral Response:
24:l
15:l
3:l
OISTANCE: SENSOR TO
OBJECT (cm)
2Dcm
5cm
10 cm
15c m
L
co
o -
%
E
Z-
1.58Clll
1.7 cm
ti
4
q
4
U&
1
.w
APERTUR E
1/4’a:6
+
625
FOCUS
CLEAR
rn
og
a.
iz-
z
12345678 9
I
I
I
I
I
I
r
,
MSTANCE:
SENSOR TO OBJECT (in)
(cm)OBJECT
6Oa-n
DISTANCE: SENSOR TO
6ocm 2ocm 4Ocm
(I)
,
a
o-
cfn
to
a.3
?I?-
E
(in)
SENSOR
TO
OBJECT
(CM
DISTANCE:
06JEcT
40fm
DISTANCE: SENSOR
TO
3om
2oan
toa
83
ld.5
6
,
4
D
1’
CLEAR
$
0
w
4.1
lid
OFklECT
(an)
DISTANCE: SENSOR TO
(II)
2
3
4
6
DISTANCE: SENSOR TO OBJECT
OWECT
SENSOR
TO
OFVIEW DIAGRAMS
DISTANCE:
4.2
FIELD
_!
10
i
I
3.00
/
I
b
.2s
6.250
RIGHT ANGLE MOUNTING BRACKET
j---
--+.5
.125
7
4
R
01.52
r
COUAR
OS65
APC
AIR PURGE
l/8-27
NPT
7
HEX
OS65-MF
MOUNTING FRAME
l/4”
OIA SCREWS
OS65-RAB
62.80
BOLT CIRCLE
FOR 3
-
c
2.00
E
I
2.k
I
j
Y -
3.50
!
.25
NOUNTING
NUT
OS65MN
COOL3NG
JACKET
WATER
An%
OS%-
ACCESSORIES -
DIMENSIONS (INCHES)
i/2
11
A3APTC],?
SCALE.
CGNDiJ:T
UN-29
29
(3.81)
l/2
1
112
NP T
OS65-CA
ADA?TilR
(3.81)
PIPE
N?T
20
(3.81)
UN-2 B
THR U
i.5
OS65-PA
WRENC H
FLAT S
1 .5
_j
1.1 5
(29.2 )
I
RIGdT
ANGLE ADAPTOR
;o ’;;i~;
I
THR U
iii
(C.32)
27
NP T
118
(29.2)
1.15
2C
/
I - + -
(3.81)
OS65”SV
1.5
&
NEMA 12 ENCLOSURE
1
N&MA
N4-UX
Nl2-MX
VIEW SHOWING CLAMP END (4 TOTAL)
USED ON NEMA-4,
( 102 )
VIEW B-B
VIEW SHOWING HINGE END
USED ON NEMA-12,
UJ ,
ANO
INYOE
COA ll HC
POwCR
POL lCS lt R
CnAV
-
4 . 00-- -
ANY 61
12
GAUGE
sll.
CAUCE
(191)
-p-
-
7.50
PANELS
14
FTC FEET
(191)
(60)
7.50 ---
t;;
L2.364
19)
b-
SECTlON
A- A
75
(152)
_._i
6.00
,-
-4
@ F -
--- _ -- __
------ -
=P
I
--+--.-_--_-_----_c__
I
P
_
------_-_
---_-__
(171)
B
I--
--- 6.75
/--
COVER
F
f-z- - \
AlR
PURGE COLLAR
13
OS65-APC
-_Ikl.28
l/8-27
NPT
.28
--+
HEX
&---
2.25
!
l/2-20-
I
from
settling on the lens.
1
liter&z).
Clean or instrument ” air is recommended to avoid contam-
inants
cfm
(0.5 to 1.5
aperture.
Air flow should be a maximum
of 1 to 3
front
l/S
NPT thread port and out the
from
the
lens. It may be installed before or after the bracket (see drawing) and screwed in fully. Air
flows into the
OS&j-AWC
WATER COOLING JACKET
Air Purge Collar (APC)
The APC accessory is used to keep dust, moisture, airborne particles and vapors away
PIACES
10°C),
is not recommended. To avoid condensation and lens dam-
age, it is required to use the APC with the AWC.
2
50°F
(
50°
to 80°F (10 to 27°C) for efficient cooling.
Chilled water, below
Kg&
cm). Water flow should be approximately 0.5 gallons (2
liters) per minute; water temperature should be
PSID
(0.14 to 0.35
liter&c)
with a pressure drop across the housing
of 2 to 5
(25OC)
should be 3 to 5 cfm (1.4 to 2.4
l/8
NPT threads. Air flow
77°F
(121°C)/3500F
(175°C). It is supplied with two
Sensor (Air/Water-Cooled Housing)
The
air/water-cooled housing (AWC) option allows the sensor to be used in ambient tempera-
tures up to 250°F
9600
14
A4
Baud Rate:
Turn
unit on with emissivity set at 00.
Default Conditions: Address:
assigned
4800 baud
Baud Rate Code:
01
300 baud
02 600 baud
03
1200 baud 04
2400 baud
05
4800 baud 06
9600 baud
Reset:
AA is
0/oAAo5
Unit at address
@AABB
Unit at address AA gets new address BB
Both
characters are
required: i.e.,
OA rather than just A.
commands: #AA
Unit at address AA responds with the IR temperature
Format:
A one character command followed by a two character address and
possibly an additional two character address or a two character baud rate code.
The address
is two characters between 00 and
FF hex.
RX0
GREEN
3
TX/RX
GREEN
5
CND BLACK
TOP VIEW
FRONT VIEW
I
YELLOW
Interrogation
TX0
YELLOW
2
TX/RX
YELLOW
3
I
ANALOG POWER
DIGITAL
OUTPUT
RS
232
RS
48 5
TERMINAL TB3 TERMINAL TB3
2
8databits
1 start bit
1
stop bit
9600, N, 8,
Protocol
9600
no
parity
DIGITAL OUTPUT WIRING (not field installable)
-
(MINUS)
13 + (PLUS)
-
(MINUS)
13
- CC4 Card Cage
FOR NON-POWERED LOOP SUPPLY FOR POWERED LOOP SUPPLY
TERMINAL TB4
TERMINAL TB4
16 +
(PLUS)
17
- MA1 and MA2 with OS65
-
OS65
COUPliTER
POWER
SUPPLY
GO’VDC
+-
HOST
-
TX/R X
II , I
RS485
TERMINAL TB4
3 + TX/RX
1
ST
TBt
r
\&&$j
-
(MINUS)
mV
and V
TERMINAL TB4
16 + (PLUS)
17
OS65-JX.
OUTPU T
WIRIN G
-
SHIELD GROUND
SHIELD
1
-
N/ C
GRiEN
2
-
-
RED
3
4
-
BLACK +
1.2
VC C
TEA
5
d
INPISEI;SOR
TBl
I
DIAGRA M
iI
111
-
-
DC POWER
IR
SENSOR +
8
MilTi
-
11111
6
783
TERMINAL TB4
TERMINAL
WIRIN G
Q-30 VDC
SENSOR CONNECTION
0
Copyright 1996 OMEGA ENGINEERING, INC. All rights reserved. This document may not be copied, photocopied,
reproduced, translated, or reduced to any electronic medium or machine-readable form, in whole or in part, without prior
written consent of OMEGA ENGINEERING, INC.
PO. number under which the product was
1. P.O. number to cover the COST
PURCHASED,
of the repair,
2. Model and serial number of the product under
2. Model and serial number of product, and
warranty, and
3. Repair instructions and/or specific problems
3. Repair instructions and/or specific problems
relative to the product.
relative to the product.
OMEGAs policy is to make running changes, not model changes, whenever an improvement is possible. This affords
our customers the latest in technology and engineering.
OMEGA is a registered trademark of OMEGA ENGINEERING, INC.
/
INQUIRIES
Direct all warranty and repair requests/inquiries to the OMEGA Customer Service Department. BEFORE
RETURNING ANY PRODUCT(S) TO OMEGA, PURCHASER MUST OBTAIN AN AUTHORIZED RETURN
(AR) NUMBER FROM OMEGA S CUSTOMER SERVICE DEPARTMENT (IN ORDER TO AVOID
PROCESSING DELAYS). The assigned AR number should then be marked on the outside of the return
package and on any correspondence.
The purchaser is responsible for shipping charges, freight, insurance and proper packaging to prevent
breakage in transit.
FOR
WARRANTY
RETURNS, please have the
FOR
NON-WARRANTY
REPAIRS, consult OMEGA
following information available BEFORE
for current repair charges. Have the following
contacting OMEGA:
information available BEFORE contacting OMEGA:
1.
(2)
in medical
applications or used on humans. Should any Product(s) be used in or with any nuclear installation or
activity, medical application, used on humans, or misused in any way, OMEGA assumes no responsibility
as set forth in our basic WARRANTY/DISCLAIMER language, and additionally, purchaser will indemnify
OMEGA and hold OMEGA harmless from any liability or damage whatsoever arising out of the use of the
Product(s) in such a manner.
RETURN REQUESTS
LIABILlTY
The remedies of purchaser set forth herein are exclusive and the total liability of
OMEGA with respect to this order, whether based on contract, warranty, negligence,
indemnification, strict liability or otherwise, shall not exceed the purchase price of the
component upon which liability is based. In no event shall OMEGA be liable for
consequential, incidental or special damages.
CONDITIONS: Equipment sold by OMEGA is not intended to be used, nor shall it be used: (1) as a “Basic
Component” under 10 CFR 21 (NRC), used in or with any nuclear installation or activity; or
MERCHANTABIUTY
AND FITNESS FOR A PARTICULAR PURPOSE ARE HEREBY DISCLAIMED. LIMITATION OF
WARRANTlES
INCLUDING ANY WARRANTY OF
TITLE,
AND AU IMPLIED
REPRESENTATlONS
OF ANY KIND WHATSOEVER, EXPRESSED OR IMPLIED, EXCEPT THAT OF
triacs.
OMEGA is pleased to offer suggestions on the use of its various products. However,
OMEGA neither assumes responsibility for any omissions or errors nor assumes liability for any
damages that result from the use of its products in accordance with information provided by
OMEGA, either verbal or written. OMEGA warrants only that the parts manufactured by it will be
as specified and free of defects. OMEGA MAKES NO OTHER WARRANTIES OR
WARRANTY/DISCLAIME R
OMEGA ENGINEERING, INC. warrants this unit to be free of defects in materials and workmanship for a
period
of
13 months from date of purchase. OMEGA Warranty adds an additional one (1) month grace
period to the normal
one (1) year
product warranty to cover handling and shipping time. This
ensures that OMEGA ’s customers receive maximum coverage on each product.
If the unit should malfunction, it must be returned to the factory for evaluation. OMEGA s Customer
Service Department will issue an Authorized Return (AR) number immediately upon phone or written
request. Upon examination by OMEGA, if the unit is found to be defective it will be repaired or replaced at
no charge. OMEGA s WARRANTY does not apply to defects resulting from any.action of the purchaser,
including but not limited to mishandling, improper interfacing, operation outside of design limits,
improper repair, or unauthorized modification. This WARRANTY is VOID if the unit shows evidence of
having been tampered with or shows evidence of being damaged as a result of excessive corrosion; or
current, heat, moisture or vibration; improper specification; misapplication; misuse or other operating
conditions outside of OMEGA s control. Components which wear are not warranted, including but not
limited to contact points, fuses, and
&
Dissolved Oxygen Instruments
Ml770 0299
pH,
Conductivity
&
Wastewater Treatment
&
Water Monitors
Industrial Water
&
Tubing
Air, Soil
&
Control Instrumentation
Refractometers
Pumps
&
Band Heaters
0 Flexible Heaters
0
Laboratory Heaters
ENVIRONMENTAL
MON ITORING AND CONTROL
Metering
0
Immersion
&
Strip Heaters
0
Heating
Cable
0
Cartridge
&
Plotters
HEATERS
0
Recorders, Printers
0
Datalogging Systems
&
Compatibles
0
Plug-in Cards for Apple, IBM
0
Communications-Based Acquisition Systems
&
Engineering Software
@
Data Acquisition
&
Conductivity Equipment
DATA ACQUISITION
pH
&
Pumps
0
Industrial
/
Laboratory Meters
0
Controllers, Calibrators, Simulators
Benchtop
&
Accessories
0
pH
Electrodes, Testers
pH/CONDUCTIVITY
0
&
Batch Controllers
/
Paddlewheel Systems
0 Totalizers
&
Flow Computers
0 Air Velocity Indicators
0 Turbine
b?
Rotameters, Gas Mass Flowmeters
&
Accessories
FLOW /LEVEL
&
Pressure Gauges
0 Displacement Transducers
0 Instrumentation
&
Strain Gauges
0 Load Cells
G4
Transducers
&
Process Monitors
0 Infrared Pyrometers
PRESSURE, STRAIN AND FORCE
&
Thermistor
0 Calibrators & Ice Point References
0 Recorders, Controllers
&
Assemblies
0 Wire: Thermocouple, RTD
&
Thermistor Probes, Connectors, Panels
RTD
I_2
Thermocouple,
I
Need for
Process Measurement and Control?
OMEGA...Of Course!
TEMPERATURE
Were
Do I Find Everything
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Omega OS65 Series Owner's manual

Category
Measuring, testing & control
Type
Owner's manual

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