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...N 456 1 2 3 4 5 6 7 8 456 x10 ON RS-232C MODE 9 01 23 Power supply terminal Supply power to the Unit. x1 9 W CH 9 01 23 DC24V 0V 23 Serial Communications Setting Switch Set the baud rate. 9 01 23 x10 ON ...
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... sparks, near strong magnets, or near fluorescent lights. 5) Do not pull or bend cables with force. Contents This product package includes the followings. (WE70-AP/CL-US/-EU/-CN) Check if all of them are included in the package before using this product. ...
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...k l m A B C D E F G H I J K L M n o p q r s t u v w x y z N O P Q R S T U V W X Y Z Revision History The revision code of this manual is given at the end of the catalog number at the bottom left of the front / back cover. Cat . No. N159-E1-02 R ev ision co de Revision code - date Revision description May 2008 First edition 01 November 2013 Added and changed functions 02 November 2016 Added note VII...
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... communication cable between terminals [8] and [7]. 8 Model KE1 形 KM1 7 B(+) A termination resistor must be connected to each end RS-485 of the transmission path. Each termination resistor A(-) should be 120 Ω (1/2 ...
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...20 MΩ or more (with 500 VDC megger) Ambient operating temperature -10 to 55C (No condensation nor freezing) Ambient operating humidity Relative humidity: 25 to 85% Storage ambient temperature -25 to 65C (No condensation nor freezing) Dimensions 45 (...
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... an opening in the panel. Panel thickness: 1.6 to 4.8mm NB5Q-TW0*B/NB7W-TW0*B 50℃ H ● Wiring for Unit power connector Connect a 24V-DC isolated power supply to the power input terminals. NB3Q-TW00B/NB3Q-TW01B ...
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...7. Use a DC power supply that will provide a stable output even if the input is momentarily interrupted for 10 ms, and which has reinforced or double insulation. Rated power supply voltage: 24 VDC (allowable range: 20.4 to 27.6 V), Capacity: 45 ...
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... voltage fluctuation that provides a stable output even if the power supply input is interrupted for 10 ms. The DC power supply must also have reinforced or double insulation. Rated power supply voltage: 24 VDC (Allowable range: 20.4 to 27.6 VDC) Capacity: 15 ...
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... a dielectric strength test. x Insert a 3-A fuse immediately after the secondary output from the power supply. x Use a DC power supply with minimal voltage fluctuation. Rated power supply voltage: 24 VDC (Allowable range: 20.4 to 27.6 VDC), Capacity: 10 ...
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..., and station detection. The power supplies must be capable of maintaining stable outputs for momentary power interruptions in the inputs to the power supplies of up to 10 ms. ⋅ Rate power voltage: 24 VDC (Allowable range: 20.4 to 27.6 VDC) ⋅ Capacity: 10 ...
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... voltage fluctuation that provides a stable output even if the power supply input is interrupted for 10 ms. The DC power supply must also have reinforced or double insulation. Rated power supply voltage: 24 VDC (Allowable range: 20.4 to 27.6 VDC) Capacity: NS5: 15 ...
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...一20to+65'c 10 Storagehuoidity 35to85駕RH("itboutdewcondensation) 11 Operationalenviron−面entalatgosphere Withoutcorrosivegas 12 Enc10sedstructure IP-30 13 Weight 2kgorless 14 Paintingcolor 5Y7/1 15 Outsidedi節ension 190(H)x105(...
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...` 8 o IL24VゴDC 登)= 壬う= ・一・一一 24VDC CN2 一一 、 §§ で戊 / i 1i頂its冒,etc. .(め一 . 五 8 SW28 w置旧EIE旧8i 1 andcorrection・●valueinput. 鍾 8§ AIJTOSW2 S1ト「itchbetweenAUTOandTEST. presentposition indiCatiOnOUtpUt, 1 ◎,` Achangeover Thisconnectoτ ilncludesconnectio!〕 冑iththeHP6, UN4/ 一 SW1,s"2 1 ` 幽 NC てう: … 味覆コ 1「 NC 芭 . 宋ヒエ一一一 NC Gain 「 Avolu匝etoadjust CNA Thesearepo日erter団inalsof interfaceto externalunits.臣 SUPPlyapowerof 才 1 24,VDC±10%. L / ● 、× × .」■ て三)- =二. '...
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...-5 Design 2-2 Chapter 2 Installation 2-2-1 External Dimensions Note All units are in millimeters unless otherwise indicated. H 3F88L-160 and 3F88L-162 Cam Positioners 101±0.2 91± 0.2 Two, 4.5 dia. w When the Resolver Cable is connected 2-6 Design Chapter 2 Resolvers 50 0.3 dia. 280.5 72 (81) (see note) 40 dia. 35+0/–0.05 dia. Four, 4.5 dia. 10–0.005/–0.017 dia. 3F88L-RS17 and 3F88L-RS17T XM3A-1521 (OMRON) or the equivalent 15-pin D-sub Plug 8....
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... Control Modules. Built-in General-purpose I/O in Motion Control Modules Motion Control Modules have 12 contact inputs and 8 contact outputs for I/O with peripheral devices. Connections for Absolute Servomotors Motion Control Modules can read absolute position data from ...
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...--- 115 TIMH HIGH-SPEED TIMER 015 --- --- 118 TMHH ONE-MS TIMER 540 --- --- 120 TRSM TRACE MEMORY SAMPLING 045 --- --- 477 TXD TRANSMIT 236 @TXD --- 464 W Mnemonic WSFT Instruction WORD SHIFT FUN code 016 Upward Differentiation @WSFT Downward Differentiation --- Page 185 X Mnemonic Instruction FUN code Upward Differentiation Downward Differentiation Page XCHG DATA EXCHANGE 073 @XCHG --- 173 XFER BLOCK TRANSFER 070 @XFER --- 169 XNRL DOUBLE EXCLUSIVE NOR 613 @XNRL --- 302 XNRW EXCLUSIVE NOR 037 @XNRW --- 300 63 Section 2-3 Alphabetical List of Instructions by Mnemonic Mnemonic Instruction FUN code Upward Differentiation Downward Differentiation Page XORL DOUBLE EXCLUSIVE OR 612 @...
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... is executed. • Target position (travel amount in relative mode) = 0 • Target position (target position in absolute mode) = Present position • Target frequency < Deceleration rate vii ■ Functional Improvements from Version 3.2 to Version 3.3 Previous version (unit version 3.2) OMNUC ...
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... is executed. • Target position (travel amount in relative mode) = 0 • Target position (target position in absolute mode) = Present position • Target frequency < Deceleration rate vii ■ Functional Improvements from Version 3.2 to Version 3.3 Previous version (unit version 3.2) OMNUC ...
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... layered structure. Variables with this data type start with "_s". Attributes of CNC System-defined Variables The attributes that are shown in the following table are the same for all CNC system-defined variables. Attributes of CNC system-defined variables Global variable R/...
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...Usage Count .................................................................3-29 USB dongle ..............................................................2-2, 3-3 User event log ...............................................................3-54 User name ......................................................................3-4 Utilities ..........................................................................3-44 V Value History .................................................................3-25 Vertical bar ......................................................................3-6 Vertical button bar ...................................... 3-26, 3-28, 3-39 ...