Omron SYSDRIVE 3G3MV-AB001 User manual

1
3G3MV →3G3MX
Migration guide

2
CONTENTS
1. PRECAUTIONS DURING REPLACEMENT................................................................................................2
2. MAIN UNIT DIMENSIONS / MOUNTING DIMENSIONS.............................................................................3
3. WIRING
(1) MAIN CIRCUIT TERMINAL....................................................................................................................4
(2) CONTROL CIRCUIT TERMINAL...........................................................................................................5
(3) THE DIFFERENCES ON TERMINAL SCREW AND WIRE SIZE BETWEEN MV AND MX....................6
4. STANDARD BRAKING TORQUE AND MINIMUM CONNECTABLE RESISTANCE VALUE.......................8
5. PARAMETER TABLE...................................................................................................................................10
6. THE DIFFERENCES BETWEEN MV AND MX:
RATED OUTPUT CAPACITY / CURRENT AND CARRIER FREQUENCY DEFAULT VALUE.......................18

3
1. Precautions during Replacement
These topics especially require your attention when replacing the 3G3MV series (referred below as: MV) to
the 3G3MX series (referred below as: MX).
1) Pulse train input/ pulse monitor output are not available.
Pulse train input and pulse monitor output terminals are not available on the MX control. Thus operation and
command with a pulse train is not possible. The operation using outer command input requires analog input
(voltage input or current input).
2) The number of Multi function input terminals on the MX is one less than the MV control.
The number of multi function input terminal on MX is 6. (MV input terminal: 7). Change to the MX is not
possible if all multi function input terminals are used on the MV.
3) The number of analog inputs is decreased to one.
The number of multi function analog input usable on the MX is one. Change to MX is not possible if two
analog inputs are used on the MV.
4) The functions below are not available on the MX.
・Frequency reference loss detection function
・Startup DC control function
・Under torque detection
・Energy saving control
5) Digital operator does not have copy function.
The MX digital operator is not equipped with a copy function. Use the digital operator sold separately
3G3AX-OP02 (released soon)
6) Difference of rated output current
MX drive has a rated output current lower than the MV drive.
Please refer to [6. The differences between MV and MX: rated output capacity/ current and carrier
frequency]
7) Please confirm the braking value when using braking resistors.
Regarding the capacity below, reconsideration on inverter capacity is perhaps necessary.
It is because the minimum connectable resistance value of MX is larger than the one of MV.
Please refer to [4. Standard braking torque and minimum connectable resistance value]

4
2. Main unit dimensions / mounting dimensions
・The outer dimensions and mounting dimensions of the MX drive are larger than the MV series.
Please note that the size value is larger than the MV depending on capacity.
・The mounting screw position on 3G3MV-AE002・AE004/A2002 to 2007 differs from the MV drive. Please be
careful when mounting (refer to the Figure below).

5
3. Terminal Table
(1) Main circuit terminal
・Please note that MV and MX sometimes have terminals with different names.
MV MX Remarks
R/L1 R/L1
S/L2 S/L2
T/L3 T/L3
AC power input terminal
U/T1 U/T1
V/T2 V/T2
W/T3 W/T3
Motor output terminal
B1 P/+2
B2 RB
Braking resistor connection terminal
+1 +1 DC reactor connection terminal,
At DC power input: positive pole
+2 P/+2 DC reactor connection terminal
-(minus) -(minus) DC reactor connection terminal

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(2) Control circuit terminal
・ The terminal configurations and terminal names are different on the MV and MX drives.
・ The default value will display the multi function setting allocated on both MV and MX.
・ On the default setting, the control terminals of S3 and S4 on MV have switched to the ones on MX.
・ “―――” on the table indicates “no terminal”.
・Terminal block arrangement/ configuration

7
(3) Terminal size and wire size differences between MV and MX.
・Main circuit terminal size and electrical wire size
(Recommended wiring breaker and electromagnetic contactor will be same)
・Control circuit terminal size and electrical wire size

8
The shape of terminal screw used for control circuit terminal differs on MV or MX.
MV:Minus
MX:Plus
Please be careful at wiring.
*1When connecting 100V or 200V series on a relay output terminal block, please use 0.75mm2.
When equal or more 7 wires on control circuit terminal block. Please use shield wire of equal or less 0.5mm2.
The length to signal line armor is 5 to 6mm and connect it as an electrical wire. (If stranded wire, keep it from
coming apart).
The max armor outer dimensions of signal line(except alarm signal line) is equal ore less 2.00mm.
(Regarding mark tube and multi-conductor cable: mark tube at the fixed position equal or less 40mm from
connection end to sheath length. Set multi-conductor cable equal or less 40mm from connection end to
sheath length. If the line is too thick, terminal block cover possibly does not close).

9
4. Standard damping resistance value and Minimum connectable resistance
value
・The conditions for calculating average deceleration torque on a single inverter differ on the MV series and
the MX series.
[MV] the average deceleration torque when decelerating in the shortest time
From 60Hz on a single unit motor
[MX] the average deceleration torque when deceleration in the shortest time
From 50Hz on a single unit motor.
・Braking resistor is not installed on inverter main body. Please use the optional braking resistor when large
regeneration torque is necessary.
Average deceleration torque on each capacity
・The minimum connectable resistance value differ. Please confirm the regeneration capacity of the capacity in

10
bold. Depending on cases, please consider using a larger capacity drive.
Minimum connectable resistance value on each capacity
・ Following is the braking options used on MX.

5 Parameter table
MV MX
Model
Function No. Set
value No. Set
value
Remarks
Parameter write-prohibit
selection/ initial constant n001 1 b031
b084
01
00
b031:Parameter protection function
b084: Parameter initialization select
Control mode selection n002 0 A044 02 The default value of MX series is vector
control.
RUN command selection n003 0 A002 02
Frequency reference
selection n004 0 A001 00
Stopping method selection n005 0 b091 00
Reverse rotation-prohibit
selection n006 0 ――― ―――
STOP key enabled/
disabled selection n007 0 b087 0 0
Frequency reference
selection on local mode n008 0 ――― ―――
Operator frequency
setting method selection n009 0 ――― ―――
Operation selection at
operator interruption n010 0 ――― ―――
Maximum frequency n011 60.0 A004 60.0
Maximum voltage n012 200.0 A082 200
Maximum voltage frequency n013 60.0 A003 60.0
Middle output frequency n014 1.5 A043 3.0
Middle output frequency
voltage n015 12.0 A042 5.0
Minimum output frequency n016 1 . 5 b082 0.5
Minimum output frequency
voltage n017 12.0 ――― ―――
V/f pattern setting
∗Set middle output frequency and vol
ume with % to the max value.
Acceleration/Deceleration
setting unit n018 0 ――― ―――
Ac celeration time 1 n019 10.0 F002 10.0
Deceleration time 1 n020 10.0 F003 10.0
Ac celeration time 2 n021 10.0 A092 15.00
Deceleration time 2 n022 10.0 A093 15.00
S-shape
acceleration/deceleration
characteristics selection
n023 0 A097
A098
00
00
A097:Acceleration characteristics
A098:Deceleration characteristics
[b082]
[n016]
[A043]
[n014]
[A003]
[n013]
[A004]
[n011]
[MX]
[MV]
(Hz)
[A082][n012]
[A042][n015]
[---][n017]
[MX] [MV]
(V)
10

11
MV MX
Model
Function No. Set
value No. Set
value
Remarks
Frequency reference 1
(Principal velocity
frequency)
n024 6 .00 F001
A020 0.0 setting frequency on F001 enables to set
the same value on A020.
Frequency reference 2 n025 0.00 A021 0.0
Frequency reference 3 n026 0.00 A022 0.0
Frequency reference 4 n027 0.00 A023 0.0
Frequency reference 5 n028 0.00 A024 0.0
Frequency reference 6 n029 0.00 A025 0.0
Frequency reference 7 n030 0.00 A026 0.0
Frequency reference 8 n031 0.00 A027 0.0
Inching frequency command n032 6.00 A038 6.0 The set range of MX is 0.00 to 9.99.
Upper frequency
reference limit n033 100 A061 0.0 The default value of MX 0.0 shows “limit
function invalid”.
Lower frequency reference
limit n034 0 A062 0.0
Frequency reference select/
reference unit selection n035 0 b086 1 . 0
Motor rated current n036
Varies
with
capacity
b012 Rated
current b012: set electronic thermal level.
Motor protection function
select n037 0 b013 00 b013: set electronic thermal characteristics
Motor protection operation
time n038 8 ――― ―――
Cooling fan operation select
(with cooling fan only) n039 0 b092 0 1
Motor rotation direction n040 0 F004 0 0
MV: corresponded to all operation
command
MX: Direction selection at pressing operator
RUN
Acceleration time 3 n041 10.0 ――― ―――
Deceleration time 3 n042 10.0 ――― ―――
Acceleration time 4 n043 10.0 ――― ―――
Deceleration time 4 n044 10.0 ――― ―――

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MV MX
Model
Function No. Set
value No. Set
value
Remarks
Multi function input
selection 1 n050 1 C001 0 0
Multi function input
selection 2 n051 2 C002 0 1
Multi function input
selection 3 n052 3 C003 1 8
Multi function input
selection 4 n053 5 C004 12
Multi function input
selection 5 n054 6 C005 02
Multi function input
selection 6 n055 7 C006 0 3
Multi function input
selection 7 n056 1 0 ――― ――― No setting is possible since the number of
multi function inputs of MX is 6.
Multi function output
selection 1 n057 0 C026 0 5
Multi function output
selection 2 n058 1 C021 0 0
Multi function output
selection 3 n059 2 C022 0 1
Frequency reference gain n060 100 C081
C082
100.0
100.0
C081: Gain adjustment at voltage input
C082: Gain adjustment at current input
Frequency reference bias n061 0 A011
A101
0.0
0.0
A011: Bias adjustment at voltage input
A101: Bias adjustment at current input.
Analog frequency reference
filter time constant n062 0.10 A016 8 MV: Set filter time constant
MX: Set sampling frequency
(Not used) n063 ――― ――― ―――
Frequency reference loss
detection function
selection
n064 0 ――― ―――
Multi function analog
output : output type
selection
n065 0 ――― ―――
Multi function analog output
selection n066 0 C028 00
Multi function analog output
gain n067 1.00 b080 100
Multi function analog
voltage input gain n068 100 ――― ―――
Multi function analog
voltage input bias n069 0 ――― ―――
Multi function analog
voltage input: filter time
constant
n070 0.10 ――― ―――
Multi function analog current
input gain n071 100 ――― ―――
Multi function analog current
input bias n072 0 ――― ―――

13
MV MX
Model
Function No. Set
value No. Set
value
Remarks
Multi function analog current
input filter time constant n073 0.10 ――― ―――
Pulse train frequency
reference gain n074 100 ――― ―――
Pulse train frequency
reference bias n075 0 ――― ―――
Pulse train frequency
reference input filter time
constant
n076 0.10 ――― ―――
Multi function analog input
terminal function selection n077 0 ――― ―――
Multi function analog input
terminal selection n078 0 ――― ―――
Multi function analog input
frequency bias value n079 10 ――― ―――
Carrier frequency n080
Varies
with
capacity
b083 5.0
Operation after momentary
power interruption and
return selection
n081 0
Number of fault retries n082 0
b001 to
b005 ―――
Set b001=1or 2.
Execute error retry to over voltage
and over current at b005=0.
The numbers of retry is fixed at 3.
Jump frequency 1 n083 0.00 A063 0.0
Jump frequency 2 n084 0.00 A065 0.0
Jump frequency 3 n085 0.00 A067 0.0
Jump width n086 0.00
A064
A066
A068
0.5
MV: set output frequency for jump as n083
to 085 and set jump width to n086.
MX: set frequency command for jump as
A063・065・067. Set jump frequency width
on A064・066・068.
Accumulated operating
time select n087 0 ――― ―――
Accumulated operating time n088 0 d016
d017 ―――
MV:select monitoring time on n087 and
n088 displays cumulative operation time.
MX:d016:accumulated operation on RUN
d017:Power ON time
DC injection breaking
current n089 50 A054 50
DC injection
breaking-to-stop time n090 0.5 A055 0.5
DC injection breaking time
at startup n091 0.0 ――― ―――
Stall prevention during
deceleration select n092 0 b130 0 0 MX: set level on b131.
Stall prevention operation
level during deceleration n093 170 b140 00 MX:ON/OFF setting only
Detection level is 160% fixed

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MV MX
Model
Function No. Set
value No. Set
value
Remarks
Stall prevention
operation level n094 160 ――― ―――
Frequency detection level n095 0.00 C042
C043
0.0
0.0 C042:at acceleration C043:at deceleration
Over-torque detection
function level 1 n096 0 ――― ―――
Over-torque detection
function level2 n097 0 ――― ―――
Over-torque detec ti on l eve l n098 160 C041 Rated
current
Over-torque detection time n099 0.1 ――― ―――
Up/down frequency memory n100 0 C101 00
Speed search
deceleration time n101 2.0 ――― ―――
Speed search
operation level n102 150 ――― ―――
Replaceable with starting at same
frequency on trip retry function.
Torque compensation gain n103 1.0 A046 1.0
Torque compensation
primary delay time constant n104 0.3 ――― ―――
Torque compensation
excitation loss n105
Varies
with
capacity
――― ―――
Rated motor slip n106
Varies
with
capacity
H006 100
Motor phase-to-phase
resistance n107
Varies
with
capacity
――― ―――
Motor leakage
Inductance n108
Varies
with
capacity
――― ―――
Tor q u e c o m pe n s a t i o n l i m i t n109 150 ――― ―――
Motor no load current n110
Varies
with
capacity
――― ―――
Slip compensation gain n111 0.0
Slip compensation
Primary delay time constant n112 2.0
A047
H006
100
100
Slip compensation select on
regeneration operation n113 0 ――― ―――
(Not used) n114 ――― ――― ―――
Stall prevention operation
level automatic gradual
decrease function selection
n115 0 ――― ―――

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MV MX
Model
Function No. Set
value No. Set
value
Remarks
Acc/deceleration time select
at stall protection on
operation
n116 0 ――― ―――
Under torque detection
function select n117 0 ――― ―――
Under torque detection level n118 10 ――― ―――
Under torque detection time n119 0.1 ――― ―――
Frequency reference 9 n120 0.00 A028 0.0
Frequency refer e n c e 10 n121 0.00 A029 0.0
Frequency r efe r e n c e 11 n122 0.00 A030 0.0
Frequency refer e n c e 12 n123 0.00 A031 0.0
Frequency refer e n c e 13 n124 0.00 A032 0.0
Frequency refer e n c e 14 n125 0.00 A033 0.0
Frequency refer e n c e 15 n126 0.00 A034 0.0
Frequency refer e n c e 16 n127 0.00 A035 0.0
PI D control sel e c t n128 0 A071 00
Detection value adjustment
gain n129 1.00 A075 1.00
MV: Adjust input level of target value
MX: Set percentage of feedback value and
display it on monitor d004.
Proportiona l g a i n( P) n130 1.0 A072 1.0
In tegral ti m e ( I ) n131 1.0 A073 1.0
Differ en t i a l t i m e (D ) n132 0.00 A074 0.0
PID Offset adjustment n133 0 ――― ―――
In tegral(I) upper limit value n134 100 ――― ―――
PID first-order primary delay
time constant n135 0.0 ――― ―――
Feedback loss detection
selection n136 0 ――― ―――
Feedback loss detection
level n137 0 C044 3.0
Feedback loss detection
level n138 1.0 ――― ―――
MV: Execute the operation selected on
n136 when the status of less or equal
detection level set on n137 continues
longer than the time set up on n138.
MX: multi-function output terminal outputs
OD (PID deviation signal) when reaching
the level set on C044 (set multi function
output function “OD”).

16
MV MX
Model
Function No. Set
value No. Set
value
Remarks
Energy saving control
selection n139 0 ――― ―――
Energy saving control
coefficient K2 n140
Varies
with
capacity
――― ―――
Energy saving voltage low
limit at 60Hz output. n141 50 ――― ―――
Energy saving voltage lower
limit at 6Hz output n142 12 ――― ―――
Power average time n143 1 ――― ―――
Probe operation voltage
limit n144 0 ――― ―――
Prove operation control
voltage step at 100%. n145 0.5 ――― ―――
Prove operation control
voltage step at 5% n146 0.2 ――― ―――
Not used n147
n148 ――― ――― ―――
Pu lse train input scale n149 2500 ――― ―――
Multi function analog output
pulse train frequency
selection
n150 0 ――― ―――
RS-422/485
communication time over
detection selection
n151 0 C076
C077
02
0.00
∗C076:Select stop operation at time out
∗C077:Set the time of communication time
out
RS-422/485
communications frequency
reference/ monitor unit
selection
n152 0 ――― ―――
RS-422/485
communications
Slave address
n153 00 C072 1
RS-422/485
communications
Baud rate select
n154 2 C071 04
RS-422/485
communications
Parity select
n155 0 C074 00
RS-422/485
communications
Send dwell
n156 10 C078 0
RS-422/485
communications
RTS control enabled/
disabled
n157 0 ――― ―――

17
MV MX
Model
Function No. Set
value No. Set
value
Remarks
Motor code n158
Varies
with
capacity
――― ―――
Energy saving voltage
upper limit at 60Hz output n159 120 ――― ―――
Energy saving voltage
upper limit at 6Hz output n160 16 ――― ―――
Power detection width for
probe operation switching n161 10 ――― ―――
Power detection filter time
constant n162 5 ――― ―――
PID output gain n163 1.0 ――― ―――
PID feedback
Input block selection n164 0 A076 00
Not used n165 ――― ――― ―――
Input open phase
detection level n166 0 ――― ―――
Input open phase
detection time n167 0 ――― ―――
Output open phase
detection level n168 0 ――― ―――
Output open phase
detection time n169 0.0 ――― ―――
Enter command
operation select n170 0 ――― ―――
DC injection breaking P
(proportional) gain n173 83 ――― ―――
DC injection breaking
I(integral) gain n174 0 ――― ―――
Low-speed carrier
frequency reduction
selection
n175 0 b150 00 Function specification differs on MV or MX.
Parameter copy function
selection n176 Rdy ――― ―――
Parameter read prohibit
selection n177 0 ――― ―――
Error log n178 ―――
d080
d081
d082
――― Setting MV or MX is not possible only with
reference..
Software No. n179 ――― ――― ―――

18
6 The differences between EV and JX: rated output capacity / current
and carrier frequency default value
MV MX
Power
Model
3G3MV-
Rated
output
capacity
(kVA)
Rated
output
current
(A)
Carrier
frequency
(kHz)
Carrier
frequency
at 10kHz
rate output
current(A)
Model
3G3MX
-
Rated
output
capacity
(kVA)
Rated
output
current
(A)
Carrier
frequency
(kHz)
Carrier
frequency
at 10kHz
rate output
current(A)
AB001 0.3 0.8
AB002 0.6 1.6 AE002 0.5 1.6
AB004 1.1 3.0 AE004 0.8 2.6
AB007 1.9 5.0
10
No
decrease
of rating
AE007 1.3 4.0
AB015 3.0 8.0 7.0 AE015 2.7 8.0
AB022 4.2 11.0 10.0 AE022 3.8 11.0
5.0
No
decrease
of rating
Single-
phase
200V
AB037 6.7 17.5
7.5
16.5
A2001 0.3 0.8
A2002 0.6 1.6 A2002 0.6 1.6
A2004 1.1 3.0 A2004 1.0 3.0
A2007 1.9 5.0
10
No
decrease
of rating
A2007 1.7 5.0
A2015 3.0 8.0 7.0 A2015 2.8 8.0
A2022 4.2 11.0 10.0 A2022 3.8 11.0
A2037 6.7 17.5 16.5 A2037 6.1 17.5
A2055 9.5 25.0 23.0 A2055 8.3 24.0
Three-
phase
200V
A2075 13.0 33.0
7.5
30.0 A2075 11.1 32.0
5.0
No
decrease
of rating
A4002 0.9 1.2 1.0
A4004 1.4 1.8 1.6 A4004 1.0 1.5
A4007 2.6 3.4 3.0 A4007 1.7 2.5
A4015 3.7 4.8 4.0 A4015 2.6 3.8
A4022 4.2 5.5 4.8 A4022 3.8 5.5
A4037 6.6 8.6 8.1 A4037 6.0 8.6
A4055 11.0 14.8
No
decrease
of rating
A4055 9.0 13.0
Three-
phase
400V
A4075 14.0 18.0
7.5
17.0 A4075 11.1 16.0
5.0
No
decrease
of rating

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use of Products in combination with any electrical or electronic components,
circuits, system assemblies or any other materials or substances or environ-
ments. Any advice, recommendations or information given orally or in writing,
are not to be construed as an amendment or addition to the above warranty.
See http://www.omron247.com or contact your Omron representative for pub-
lished information.
14. Limitation on Liability; Etc. OMRON COMPANIES SHALL NOT BE LIABLE
FOR SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES,
LOSS OF PROFITS OR PRODUCTION OR COMMERCIAL LOSS IN ANY
WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS
BASED IN CONTRACT, WARRANTY, NEGLIGENCE OR STRICT LIABILITY.
Further, in no event shall liability of Omron Companies exceed the individual
price of the Product on which liability is asserted.
15. Indemnities. Buyer shall indemnify and hold harmless Omron Companies and
their employees from and against all liabilities, losses, claims, costs and
expenses (including attorney's fees and expenses) related to any claim, inves-
tigation, litigation or proceeding (whether or not Omron is a party) which arises
or is alleged to arise from Buyer's acts or omissions under these Terms or in
any way with respect to the Products. Without limiting the foregoing, Buyer (at
its own expense) shall indemnify and hold harmless Omron and defend or set-
tle any action brought against such Companies to the extent based on a claim
that any Product made to Buyer specifications infringed intellectual property
rights of another party.
16. Property; Confidentiality. Any intellectual property in the Products is the exclu-
sive property of Omron Companies and Buyer shall not attempt to duplicate it
in any way without the written permission of Omron. Notwithstanding any
charges to Buyer for engineering or tooling, all engineering and tooling shall
remain the exclusive property of Omron. All information and materials supplied
by Omron to Buyer relating to the Products are confidential and proprietary,
and Buyer shall limit distribution thereof to its trusted employees and strictly
prevent disclosure to any third party.
17. Export Controls. Buyer shall comply with all applicable laws, regulations and
licenses regarding (i) export of products or information; (iii) sale of products to
“forbidden” or other proscribed persons; and (ii) disclosure to non-citizens of
regulated technology or information.
18. Miscellaneous. (a) Waiver. No failure or delay by Omron in exercising any right
and no course of dealing between Buyer and Omron shall operate as a waiver
of rights by Omron. (b) Assignment. Buyer may not assign its rights hereunder
without Omron's written consent. (c) Law. These Terms are governed by the
law of the jurisdiction of the home office of the Omron company from which
Buyer is purchasing the Products (without regard to conflict of law princi-
ples). (d) Amendment. These Terms constitute the entire agreement between
Buyer and Omron relating to the Products, and no provision may be changed
or waived unless in writing signed by the parties. (e) Severability
. If any provi-
sion hereof is rendered ineffective or invalid, such provision shall not invalidate
any other provision. (f) Setoff. Buyer shall have no right to set off any amounts
against the amount owing in respect of this invoice. (g) Definitions. As used
herein, “including” means “including without limitation”; and “Omron Compa-
nies” (or similar words) mean Omron Corporation and any direct or indirect
subsidiary or affiliate thereof.
Certain Precautions on Specifications and Use
1. Suitability of Use. Omron Companies shall not be responsible for conformity
with any standards, codes or regulations which apply to the combination of the
Product in the Buyer’s application or use of the Product. At Buyer’s request,
Omron will provide applicable third party certification documents identifying
ratings and limitations of use which apply to the Product. This information by
itself is not sufficient for a complete determination of the suitability of the Prod-
uct in combination with the end product, machine, system, or other application
or use. Buyer shall be solely responsible for determining appropriateness of
the particular Product with respect to Buyer’s application, product or system.
Buyer shall take application responsibility in all cases but the following is a
non-exhaustive list of applications for which particular attention must be given:
(i) Outdoor use, uses involving potential chemical contamination or electrical
interference, or conditions or uses not described in this document.
(ii) Use in consumer products or any use in significant quantities.
(iii) Energy control systems, combustion systems, railroad systems, aviation
systems, medical equipment, amusement machines, vehicles, safety equip-
ment, and installations subject to separate industry or government regulations.
(iv) Systems, machines and equipment that could present a risk to life or prop-
erty. Please know and observe all prohibitions of use applicable to this Prod-
uct.
NEVER USE THE PRODUCT FOR AN APPLICATION INVOLVING SERIOUS
RISK TO LIFE OR PROPERTY OR IN LARGE QUANTITIES WITHOUT
ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO
ADDRESS THE RISKS, AND THAT THE OMRON’S PRODUCT IS PROP-
ERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE
OVERALL EQUIPMENT OR SYSTEM.
2. Programmable Products. Omron Companies shall not be responsible for the
user’s programming of a programmable Product, or any consequence thereof.
3. Performance Data. Data presented in Omron Company websites, catalogs
and other materials is provided as a guide for the user in determining suitabil-
ity and does not constitute a warranty. It may represent the result of Omron’s
test conditions, and the user must correlate it to actual application require-
ments. Actual performance is subject to the Omron’s Warranty and Limitations
of Liability.
4. Change in Specifications. Product specifications and accessories may be
changed at any time based on improvements and other reasons. It is our prac-
tice to change part numbers when published ratings or features are changed,
or when significant construction changes are made. However, some specifica-
tions of the Product may be changed without any notice. When in doubt, spe-
cial part numbers may be assigned to fix or establish key specifications for
your application. Please consult with your Omron’s representative at any time
to confirm actual specifications of purchased Product.
5. Errors and Omissions. Information presented by Omron Companies has been
checked and is believed to be accurate; however, no responsibility is assumed
for clerical, typographical or proofreading errors or omissions.
This manual suits for next models
47
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