4.IPG激光器接口说明

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各版本IPG激光器开启外控模式

各版本IPG激光器开启外控模式

IPG激光器开启外控模式1.IPG YLR 有屏版:
注:开启外控模式请先注意激光器是否出光。

(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改为OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操作。

2.IPG YLR 无屏版:
(1)、请使用网线使激光器和工控机通讯。

(2)、网线连接后,请点击电脑右下角,打开网络和共享中心;(3)、点击本地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(TCP/Ipv4),点击属性;
(6)、将ip地址改成与图片一致,点击确定;
(7)、打开浏览器,输入192.168.3.230;
(8)、选择Modulation Mode,点击DISABLE,开启外控模式;
(9)、拖动红线处的选择栏,改变功率大小,选择Emission,点击ON,激光器已出光,请注意安全。

2、IPG YLS激光器:
(1)、YLS模块的激光器和无屏版一样,要更改ip地址,将ip地址更改为:192.168.100.10,具体请参照无屏版设置方法;
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;
(4)、将其状态更改为使能,点击确定;
(5)、切换到控制页面,开启外控模式,更改功率(功率和电流都可以更改功率),点击激光发射,激光器出光,请注意安全。

如有侵权请联系告知删除,感谢你们的配合!。

激光器外部控制模式接线说明

激光器外部控制模式接线说明

激光器外部控制模式接线说明图1说明:OUT和EXGND是SMC6480的两个I O口,分别接到继电器的13引脚和24V直流电源的COM端口,24V电源正接到继电器的14引脚,通过程序指令可以控制继电器13、14引脚上24V直流电压的通断。

当13、14引脚加上高电平,继电器的5、9引脚闭合接通,此时激光器的A1、A2两端会加上24V高电平,如果激光器所有条件准备就绪,就可以出光;若要关光,可通过程序指令使继电器断开5、9引脚。

图1 外部控制接线线路图激光器操作说明:IPG激光器有两种使用模式—TEST模式和Robot模式。

实验室现有的激光器是美版的,当激光器正面的钥匙旋钮左转打到REM时就是Robot 模式—(用机器手控制激光),右转打到ON时就是TEST模式--(用SMC6480外部控制激光)。

激光器的侧面旋钮和水冷机的侧面旋钮右转打到ON代表AC电源给内部接线端口供电,所以不论激光器用哪种模式,这两个侧面旋钮都是打到ON上。

激光器外部控制操作步骤:1、打开激光器和水冷机的侧面旋钮到ON 上2、打开逆变焊机和KUKA机器人的开关3、将激光器正面钥匙右转打到ON上4、打开LASERNET软件,点到control界面5、开启激光器电源—手动按下激光器正面的START按钮6、将外控按钮点开,将光闸通道1打开,将引导激光开启7、设置激光功率,点开激光发射按钮,此时没有出光8、通过SMC6480使外部24VDC加到A1、A2上。

激光出光。

备注:1、引导激光通道1、2分别代表熔覆头和焊接头的引导激光,光闸通道1、2分别代表熔覆头和焊接头的光闸。

2、激光器电源开启后激光器顶部的灯会亮下面的部分,当点开激光发射按钮,激光器顶部的灯全亮。

3、LASERNET无法启动激光器电源,但是可以通过LASERNET下高压—关掉激光器电源。

各版本IPG激光器开启外控模式

各版本IPG激光器开启外控模式

IPG激光器开启外控模式1.IPG YLR 有屏版:
注:开启外控模式请先注意激光器是否出光。

(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改为OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;
(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操作。

2.IPG YLR 无屏版:
(1)、请使用网线使激光器和工控机通讯。

(2)、网线连接后,请点击电脑右下角,打开网络和共享中心;
(3)、点击本地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(TCP/Ipv4),点击属性;
(6)、将ip地址改成与图片一致,点击确定;
(7)、打开浏览器,输入192.168.3.230;
(8)、选择Modulation Mode,点击DISABLE,开启外控模式;
(9)、拖动红线处的选择栏,改变功率大小,选择Emission,点击ON,激光器已出光,请注意安全。

2、IPG YLS激光器:
(1)、YLS模块的激光器和无屏版一样,要更改ip地址,将ip地址更改为:192.168.100.10,具体请参照无屏版设置方法;
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;
(4)、将其状态更改为使能,点击确定;
(5)、切换到控制页面,开启外控模式,更改功率(功率和电流都可以更改功率),点击激光发射,激光器出光,请注意安全。

各版本IPG激光器开启外控模式

各版本IPG激光器开启外控模式

IPG激光器开启外控模式之邯郸勺丸创作
时间:二O二一年七月二十九日
1.IPG YLR 有屏版:
注:开启外控模式请先注意激光器是否出光.
(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改成OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;
(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操纵.
2.IPG YLR 无屏版:
(1)、请使用网线使激光器和工控机通讯.
(2)、网线连接后,请点击电脑右下角,打开网络和同享中心;
(3)、点击当地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(TCP/Ipv4),点击属性;
(6)、将ip地址改成与图片一致,点击确定;
(7)、打开浏览器,输入192.168.3.230;
(8)、选择Modulation Mode,点击DISABLE,开启外控模式;(9)、拖动红线处的选择栏,改动功率大小,选择Emission,点击ON,激光器已出光,请注意平安.
2、IPG YLS激光器:
(1)、YLS模块的激光器和无屏版一样,要更改ip地址,将ip地址更改成:192.168.100.10,具体请参照无屏版设置办法;
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;
(4)、将其状态更改成使能,点击确定;
(5)、切换到控制页面,开启外控模式,更改功率(功率和电流都可以更改功率),点击激光发射,激光器出光,请注意平安.
时间:二O二一年七月二十九日。

IPG光纤激光器接口描述

IPG光纤激光器接口描述

YLP 系列掺镱光纤激光“B ”型及“B2”型实用简介及注意事项(您的设备是那种机型, 请注意查看随机说明!两种机型的接口略有不同!):♦ 激光的内部结构示意图Master Oscillator(MO):主振荡器Booster(BS)/Power amplifier :功率放大器MO control :主振荡器控制Booster control :功率放大器控制Power level :功率调节Modulation :调制(激光开关信号)Emergency Stop :急停信号 MO ON/OFF :主震荡器开/关 Synchronization :同步频率输入 Delivery fiber :传导光纤 Output head :激光输出头♦ 推荐激光电气连接示意图注意: 绿/黄线请接机壳, 不要悬空!♦电气连接注意事项:1.主电源(直流24伏)必须具备充足的功率(参考激光器相关参数中的最大电流消耗值)并能够具备在250微秒的短暂时间内可以提供超过50%的峰值电流。

通常的型号,电流消耗小于8安培,而峰值电流小于12安培即可。

电源必须保证正常使用时和峰值期间保持稳定的电压(所需要的稳定度请参阅相关的激光电气参数要求)。

电源的过压或不足及上电过程的杂波都会导致激光运行的不稳定。

2.连接主电源及激光器的导线必须使用合理的长度及面积,以保证不会产生太大的压降(特别是对峰值电流消耗而言)。

3.主电源24伏应当使用“悬浮”输出。

其负极应当仅与激光电源的蓝线连接。

错误的连接可能生成回路电流(上图画叉红线所示)4.激光接地(DB25针的10-15,24)和激光电源24伏的负极(蓝线)在激光模块内部被连接在一起。

在模块以外不允许将任何端口连接在一起!5.在模块内部共地端是通过一个470欧姆的电阻及并联的47纳法的电容与外壳相连接的。

这样的设计会中和地和机壳之间的电位。

6.控制卡的接地端可以在设计中同大地相连接。

如果没有的话,而控制卡电子线路具有“悬浮”地,不可以同24伏电源的负极及地线连接(蓝线和黄绿线),参考上图中的红虚线。

IPG激光器控制卡使用说明书

IPG激光器控制卡使用说明书

USBLMC_CUH_IPG_V1(4)USBLMC Client Use HandbookIPG BoardCatalogSafety During Installation And Operation (1)Summarize (2)Ways to differentiate modules (3)I.Functions of Fiber Module(IPG)and Definitions of Pins (3)1.Features (4)2.Output Socket Definitions (4)3.Definition of Output Socket Pin (5)a.CON1:DB15Galvo Output (5)b.CON2:DB25Fibre socket (6)c.CON3:DB9Marking-on-fly Encoder (7)d.CON4:DB15Power (8)e.CON5:IDC10Socket (10)4.Jumper Illustration (11)5.Hardware Connection (13)a.Input signal IN0,IN8,Start,EMSTOP (13)b.Input signal IN5,IN9 (13)b.Power Connection (14)c.Typical Connection of Fiber Laser Module (16)II.The common connection ways (16)1.The connection between User-defined digital Galvo conversion board&USBLMC control card (16)2.The encoder,photoelectric switch during marking-on-fly (18)Safety During Installation And OperationPlease read these operating instruction completely before you proceed with installing and operating this product.If there are any questions regarding the contents of this manual,please contact BJJCZ.1.Steps For Safe Operation�Carefully check your application program before running it.Programming errors can cause a break down of the system.In this case neither the laser nor the scan head can becontrolled.�Protect the board from humidity,dust,corrosive vapors and mechanical stress.�For storage and operation,avoid electromagnetic fields and static electricity.These can damage the electronics on the product.For storage,always use the antistatic bag.�The allowed operating temperature range is25℃±10℃.�The storage temperature should be between–20℃and+60℃.ser Safety�This product is intended for controlling a laser scan system.Therefore all relevant laser safety directives must be known and applied before installation and operation.Thecustomer is solely responsible for ensuring the laser safety of the entire system.�All applicable laser safety directives must be adhered to.Safety regulation may differ from country to country.It is the responsibility of the customer to comply with all localregulations.�Please observe all laser safety instructions as described in you scan head or scan module manual,and this manual.�Always turn on the power of this product and the power supply for the scan head first before turning on the laser.Otherwise there is the danger of uncontrolleddeflection of the laser beam.We recommend the use of a shutter to prevent uncontrolled emission of laserradiation.SummarizeUSBLMC marking control card is developed specially for marking machine,it adopt USB interface BLMC marking control card is made up of two PCB board:Main-board and IO board.Main board and IO board are connected by two sockets which with50pins.The main-boards are the same,the IO board is divided into three different kinds by application:Optic fiber module(IPG),common digital module,and common analog module.Among them,common digital module is with a conversion board.Features of USBLMC�PowerUSBLMC marking control card uses5V power.We suggest adopt the power of5V/3Ato achieve power mon digital module,common analog interface’s powerinput signal is on CON2socket of module;and the power input signal of the optic fibermodule is on CON4socket of module.Please check the corresponding instruction ofPINS.�The laser Control1)Offer3routes TTL signal:Laser Gate,PWM,FPK for laser ser Gatesignal used for controlling switch of laser;PWM signal can be regarded as PWMsignal in CO2laser machine or the repeated pulse frequency in Nd:Yag lasermachine;FPK is for the first pulse inhibits signal in YAG laser machine.2)Offer2routes that are used for controlling the power of the laser power supply andrepeated pulse frequency of Q switch.3)As to the YLP series of pulse optic fiber laser machine of IPG,which is supplyspecial control signal.4)Laser Gate,PWM signal can be set up into high level available or low levelavailable.5)Common digital module,common analog module can be used for pre-setting theoutput power of the laser power supply.�Common digital input/output signal(TTL signal)There are10routes input and7routes output mon digital signal is dividedinto two kinds,switch form of input signal(no need external power)and non-switchform of input signal(external component entities supply the electric current drive).Common output signal is belong to TTL output(Without optical-isolation),the maxoutput electric current is15mA.Note:"The inputs/outputs signal"of this manual are all for USBLMC control card.The signals receiving by the USBLMC and driving by external component is inputsignals;signals driving by USBLMC control and receiving by external component isoutput signals.�Support multi-card working pattern.One computer can control8sets of USBLMC at a time,makes and marks the control board to run side by side and operate.Differentcontents can be processed by8sets of control cards.�Marking-on-flyFlying encoder can be connected to do real-time liner speed checking for good result ofhigh speed marking.�Extend axis(step motor/servo electrical motor)outputCan output two directions/pulse signals of channels to control step motor(or servoelectrical motor),applicable to pivot or join.�Start signalUsed when marking contents are the same and high speed is required.The Floor pushcan connect to Start signal,or to the common input signal as well.If there are variablesin marking content,they have to be connected to the common input signal.�Compatible with USB2.0/USB1.0Ways to differentiate modulesThere are some texts at the right-bottom corner of the er can differentiate them by them.The contents are:I.Functions of Fiber Module(IPG)and Definitions of PinsEach module is developed according the different applications.Therefore,its serial number,pin definition,jumper setting,and functional settings can vary.When in use please make sure to refer to the instructions of each particular type of module.For example,5V power input signal of USBLMC,on the common digital module and common analog module,should be inserted from12/13/24/25of the feet on CON2socket;while on the optic fiber module,the power input signal is connected from4/5/12/13of the feet on CON4 socket.1.Featuresa).Specially set for the YLP pulse laser by IPG Company.CON2-DB25pin is directlyconnected with the laser cube’s25-stitch pin.b).Digital IO signal,with1-way common output and3-way common input signals.IN0/IN1are fixed as the input at fiber laser status;IN6as the emergency-stop signal input for fiber laser.IN7is to check whether the power of laser marking machine is turned on or off;IN2/3/5are not applicable.IN4/8/9are comment input signals.For specific connections and the suggested connections,please see the section“Digital IO Connection Instructions”.OUT0is the common output;OUT2s fixed as the red light of fiber laser;OUT3is fixed as laser enabled.OUT1,and OUT4~6are not used.c).Output X-axis step motor to control signals.Y/Z axis cannot be output.d).Connect rotary encoder for high speed marking.e).Galvo output signals are digital outputs and can be set as non-encoded digital signal outputs,or set as digital signal outputs with extend codes.2.Output Socket DefinitionsFig.1-1Fiber Module–Socket Illustration3.Definition of Output Socket Pina.CON1:DB15Galvo OutputGalvo signals are digital signals which can be directly connected to digital Galvo.Digital galvo’s signals transfer protocols are not exactly the same,therefore,it should be confirmed which type of transfer protocols is used by the digital galvo.The company also provides transfer boards,which are analog boards transferred from digital.It can also be transferred analog signal outputs and connected to analog galvo.Fig.1-2CON1of Fiber IO boardPin No.Signal name Illustrations1,9CLK-/CLK+Clock signal.Difference output2,10SYNC-/SYNC+Synchronized signal.Difference output3,11XChannel-/XChannel+Digital signal of X axis galvo.Difference output4,12YChannel-/YChannel+Digital signal of Y axis galvo.Difference output5,13ZChannel-/ZChannel+Digital signal of Z axis galvo.Difference output6,14Status-/Status+The state feedback signal of Galvo.Difference input8,15Gnd The reference ground of control card.For the common two-dimension Galvo,only connecting CLK,SYNC XChannel,Ychannel four groups with8signal lines is enough.We suggest use twisted-pair(such as net-line)for connecting for digital signal.b.CON2CON2::DB25Fibre socketCON2socket and optic fiber25stitch socket of laser instrument connect through25stitch rows of line directly.Fig.1-3Pins of CON2Pins Signal name Illustrations1——8P0——P7Laser power.TTL output.9PLATCH Power latch signal.TTL output.10,14Gnd Control card’s Ground11,12Ver2:GND Control card’s Ground Ver3:SGIN2,SGIN3Laser status input.13,15,24Ver2:GND Control card’s Ground Ver3:NULL Reserved16,21SGIN4,SGIN1Laser status input.17Vcc5V power output of control card.18MO Master Oscillator switch.TTL output 19AP Power amplifier.TTL output.20PRR Repeat pulse power signal.TTL output.22Out2Laser’s red light indication signal.TTL output.23EMSTOP Emergency stop signal.TTL output. 25NULL Reservedc.CON3:DB9Marking-on-fly EncoderFig.1-4Pins of CON3PIN No.Signals Illustrations1IN8Common input signal8.Forms a return circuit with GND9. To use this signal,connect it and GND respectively to either terminals of power.2,6IN9+/IN9-TTL input signal.Internal1K current-limited resistor. External current-limited resistor is suggested when voltage is over12V.Please refer to IN9Port Illustration.3,7BCODEN/BCODEP Encoder phase B input signal.Differential input. 4,5ACODEN/ACODEP Encoder phase A input signal.Differential input. 8Vcc Control card5V output.9Gnd Control card Ground.As the return circuit signal of pin8& 1.d.CON4:DB15PowerFig.1-5Fiber Interfere Board CON4Socket Signals and the definitions PIN No.Signals Illustrations1SGIN0Common input signal0.Forms a return circuit with ground 12and13of the control board.To use this signal,connect it and the ground respectively to either terminal of the power.This is an input signal.2EMSTOP Emergency-stop signal.Forms a return circuit with ground 12&13.To use this signal,connect it and the ground signal respectively to either terminal of the NORM-OPEN switch.When this EMSTOP is pressed,it means there is emergency and operation is immediately stopped.The signal is an input signal.3Ver2:POW_BTN Power signal of the laser instrument main power source. Forms a return circuit with the Ground12&13of the control board.To use this signal,connect it and the Ground signal respectively to either terminal of the NORM-OPEN switch.When the power button is pressed downward,pin 10&11are connected;when the button is bounced upwards,they are disconnected.For the power connection, see“Power Connection”.This is an input signal.Ver3:NULL Reserved4,5VCC5V input power positive terminal.This is an input signal.8START Start signal.Forms a return circuit with Ground12&13. To use this signal,connect it and the Ground signal respectively to either terminal of the power.This is an input signal.9OUT0Common output es GND12&13signals as reference signals.This is an output signal.10,11Ver2:POW_CON,POW_CON1Connection port of power relay.Connect POW_CON to theanode of power relay’s control power.One of the powerrelay’s control ports should be connected withPOW_CON1,and the other to the cathode of the cathode ofpower relay’s control power.When the3-point power isplugged in,POW_CON and POW_CON1are connected.At that time,power relay’s control port is connected to itscontrol power,power relay picks up,and fiber laser mainpower is on.Please see“Power Connection”for reference. Ver3:NULL Reserved12,13Gnd 5V input power cathode(Ground signal),i.e.the control card’s Ground signal.This is an input signal.6,14DIR-/DIR+Output signal.Direction signal of the extend axis(step motor or servo motor).The output mode could be set up either as differential output,or as level output(TTL output).This is an output signal.7,15PUL-/PUL+Pulse signal of extend axis(step motor or servo motor). The output mode could be set up either as differential output,or as level output(TTL output).This is an output signal.e.CON5:IDC10SocketFig.1-6CON5Socket PIN No.Signals Illustrations 1,2,3,4OUT5/4/6/1Common output signal es GND 5&7signals as reference signals.This is an output signal.5,7GND Ground 6,8NULL Reserved 9,10S45GND,SGIN5Common input signal 5.4.Jumper IllustrationFig.1-7Illustration of Fiber Interface board Module Jumper Location See jumper illustration below:Label NO.IllustrationsJP1,JP23Extend axis direction/pulse signaling set up.JP1set direction,JP2set pulse signal.Short connection to pins 1-2of jumper will makedifferential output of direction/pulse signal.CON4’s DIR-,DIR+,PUL-,PUL+should be respectively connected to step drive’sDIR-,DIR+,PUL-,PUL+.Short connection to pins 2-3of jumperwill make level output of direction/pulse signal.In this case,CON4’s VCC 、DIR+、PUL+should be respectively connected tostep drive’s VCC,DIR,PUL.JP32If pin NO.3of CON4is not connected to power switch,thisjumper should be connected short.Here correspond to that thepower switch is push down always.For system that uses powerswitch,do not connect the jumper.JP42Not used.JP5,JP6,JP72Index numbers 0~7,used to differentiate various cards when manycards are working at a time.JP8-JP7-JP6correspond to binary b2,b1,b0.Short connecting JUMPER means b0,and not short connecting it means b1.JP92Short connecting the JUMPER means galvo data excludes expanded code(s).Not short connecting it means it contains expanded code(s).Default Settings:JP1~JP2:Short connecting pin2~3.Extend axis direction/pulse signals output level mode. JP3:Not connecting.JP4:Not connecting.JP5~7:Not connecting.JP9:Short connecting.Fig.1-8Fiber module(Fiber Laser Module)Jumper Default Settings5.Hardware Connectiona.Input signal IN0,IN8,Start,EMSTOPFig.1-9input interface SGIN0、IN8、Start and EMSTOPFig.1-110Recommended Connection for Common Input SignalOnly an external switch is needed,and the contact resistance of the switch should be under100Ω.b.Input signal IN5,IN9Common input signal IN9connection circuit and suggested connection are shown as in fig.1-11 and1-12.(CON5PIN10and PIN9for IN5)Fig.1-11Common Input Signal IN9connection Circuit IllustrationFig.1-12Recommended Connection for Common Input Signal IN9The external power supply needs proper input voltage to make sure the current is between 10mA ~15mA.When input voltage is over 12V,it is suggested that control carton connects current-limited resistor R1.Supposed the input current chosen is 12mA,then the input resistance R1is calculated as per the following formula:10001121×⎟⎠⎞⎜⎝⎛−=Vin R Ωb.Power ConnectionSee below fig.1-13for recommended power connection:Fig.1-13Recommended power connection wayWhen the power switch is on,the control card turns on the power relay,and the laser main power is connected to the fiber laser.Pin POW_CON and pin POW_CON1allow maximum current of500mA.c.Typical Connection of Fiber Laser ModuleFig.1-14Typical connection way of fiber interface boardFor the Floor push,it depends whether the rotary encoder needs connected.If the marking-on-fly function is not used,then there is no need to connect the rotary encoder.II.The common connection ways1.The connection between U ser-defined digital Galvo conversion board&USBLMC control cardCON1(Digital input signal socket):Connect User-defined digital Galvo conversion’s DB15with USBLMC control card’s DB15directly.Fig.3-1Connection of conversion boardCON2(Power socket):Connect the outside±15V power to the corresponding pin,the range of the voltage is[±12V—±15V],as the following figure(Fig.3-2)Fig.3-2Connection of Power supplyCON3/CON4(Galvo control signal):It’s divided into Single interface&Difference two connection ways,we should choose the most suitable connection way according the GalvoNote:Difference connectioninterface’’s.We suggest use connection’’s output voltage is twice of single interfacesingle interface connection.And while only confirmed the Galvo interface is Difference interface,we can consider to follow the Difference output way.The two connection ways are as following figure(Fig.3-3Single interface of Galvo;Fig.3-4The difference of Galvo)Fig.3-3Single interface of GalvoFig.3-4The difference of Galvo2.The encoder,photoelectric switch during marking-on-flyUSBLMC control card receives differential drive signal(eg DS26LS31type)of encoder;use CON3:DB9encoder and photoelectric switch socket of mark-on-fly.The connection as the following figure(Fig:3-5)Fig.3-5Connection of encoder and photoelectric switch。

IPG激光器开启外控模式

IPG激光器开启外控模式

IPG激光器开启外控模式1.IPG YLR 有屏版:
注:开启外控模式请先注意激光器是否出光。

(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改为OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;
(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操作。

2.IPG YLR 无屏版:
(1)、请使用网线使激光器和工控机通讯。

(2)、网线连接后,请点击电脑右下角,打开网络和共享中心;
(3)、点击本地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(TCP/Ipv4),点击属性;
(6)、将ip地址改成与图片一致,点击确定;
(7)、打开浏览器,输入192.168.3.230;
(8)、选择Modulation Mode,点击DISABLE,开启外控模式;
(9)、拖动红线处的选择栏,改变功率大小,选择Emission,点击ON,激光器已出光,请注意安全。

2、IPG YLS激光器:
(1)、YLS模块的激光器和无屏版一样,要更改ip地址,将ip地址更改为:192.168.100.10,具体请参照无屏版设置方法;
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;
(4)、将其状态更改为使能,点击确定;
(5)、切换到控制页面,开启外控模式,更改功率(功率和电流都可以更改功率),点击激光发射,激光器出光,请注意安全。

IPG_用户使用指南_YLR-400~500-WC_R01

IPG_用户使用指南_YLR-400~500-WC_R01
2.1 安全规定 ........................................................................................................................... 4 2.2 激光辐射标志.................................................................................................................... 4 2.3 保证安全运行和最佳性能 .................................................................................................. 5 2.4 激光安全 ........................................................................................................................... 5 2.5 安全标识与粘贴位置 ......................................................................................................... 6 3、产品简介 .................................................................................................................................. 7 4、环境条件与防护 ....................................................................................................................... 8 5、光纤端面清洁 ........................................................................................................................... 9 5.1 必需的材料与工具............................................................................................................. 9 5.2 清洁操作 ........................................................................................................................... 9 6、控制面板 ................................................................................................................................ 12 6.1 前面板 ............................................................................................................................ 12 6.2 后面板 ............................................................................................................................ 13 6.3 控制接口管脚定义........................................................................................................... 14 7、RS232 控制 ........................................................................................................................... 15 7.1 连接与设置 ..................................................................................................................... 15 7.2 RS232 命令 ..................................................................................................................... 15 8、产品使用与操作 ..................................................................................................................... 18 8.1 工作方式 ......................................................................................................................... 18 8.2 开始使用 ......................................................................................................................... 19 8.3 远程控制时序.................................................................................................................. 20 8.4 手柄操作与设置 .............................................................................................................. 21 9、错误信息 ................................................................................................................................ 23 9.1 主供电未启动 ................................................................................................................ 23 9.2 光学互锁回路开路........................................................................................................... 23 9.3 高反报警 ......................................................................................................................... 23 9.4 激光模块过热.................................................................................................................. 23 9.5 温度过低 ......................................................................................................................... 24 9.6 未发现激光模块 .............................................................................................................. 24 9.7 激光模块电源故障........................................................................................................... 24 9.8 激光模块电源故障 2........................................................................................................ 24 9.9 激光模块故障.................................................................................................................. 24 10、声明 ..................................................................................................................................... 25

IPG光纤激光1000w安装说明书Installation Guide

IPG光纤激光1000w安装说明书Installation Guide

2 根据不同的配置,需要的冷却水也略有差异: - 激光器本体冷却:自来水、蒸馏水或去离子水,建议使用蒸馏水;
℃ - QBH 光输出端头冷却:去离子水,一般流量~1 升/分钟即可,温度应低于 31 。因此此 配置时,双路双温水冷机是必要的。
3 无论如何应当在使用时避免结冰和结露,具体结露条件可参考下表:
7. 维护.................................................................................................................................................................... 10
5. 工作模式与电气连接
1 工作模式介绍
功能操作工作模式
内控
ACC
Pulse setting: 不需要
门控制
Gate
需设置频率和 脉宽
Gate:

式 设
Modulation:
置 Analog
control:
功率设置
开关激光
= Disable
= Enable
= OFF
= OFF
= OFF
= OFF 或 = ON
23 主电源已启动 24 激光已使能
Output.x
用户控制器
Output.x
模拟输出 ~1 10V 模拟信号地
Output.x
返回端
Output.x Output.x Input.x
数字公共地
Output.x Input.x Input.x Input.x
6. 机柜设计建议
设计为时了着更重好考地虑保如证下整因个素系:统能够可靠地工作,并且工作环境适应性更强,且安全性更高,建议在机柜

IPG光纤激光 w安装说明书Ins llation Guide

IPG光纤激光 w安装说明书Ins llation Guide

YLR 系列产品安装指南中小功率售后服务部 2012-11-1目录1. 工作环境要求...................................................................................................................................................... 32. 电源连接.............................................................................................................................................................. 3(仅 WC) 3. 冷却水要求与连接............................................................................................................................... 44. 光学清洁与连接.................................................................................................................................................. 55. 工作模式与电气连接.......................................................................................................................................... 66. 机柜设计建议...................................................................................................................................................... 87. 维护.................................................................................................................................................................... 108. 其它建议............................................................................................................................................................ 101. 工作环境要求根据产品的实际安装和使用环境的状况来选择合适的冷却方式非常重要,不当的选择可能会影响系 统的可靠性。

IPG大功率光纤激光器_原理简介

IPG大功率光纤激光器_原理简介

典型的高功率光纤激光加工系统典型的高功率光纤激光加工系统一般包括以下几个基本单元:●高功率光纤激光器系统机械手准直聚焦系统外部光闸高功率光纤激光器系统包括以下几个模块:●传输光纤/操作光纤●光纤的外型●光纤的功能光纤是一种高度透明的玻璃丝,由纯石英经复杂的工艺拉制而成。

光纤 中心部分(芯Core)+同心圆状包裹层(包层Clad)+涂覆层套层外包层纤芯一次涂覆层型号描述QB IPG最常用型号输入端输出端输入端输出端Feeding fiber名称多路输出Process fiber反射镜Feeding fiberProcess fiber 耦合镜准直镜型号:FFS2way描述操作光纤的数目:Modular Multi-KW Fiber Laser Very High Beam Quality模块温度显示模块选择显示电源状态显示激光器功率水冷机要求制冷量(KW)12制冷机接口●内控模式激光功率和开关光均由LaserNet通过网线控制YLS-xx-SM series YLS-xx-SM-CT seriesYLR-xx-ST2(SST2) series YLR-xx-yy-WW seriesYLR –3000(5000) -YLR-xx-SM-CT series specifications Single Mode Fiber Laser with internal Fiber/Fiber coupler on topYLR-20000 Fiber LaserYLR-xx-C series specifications Multimode Fiber Laser with internal Fiber/Fiber coupler on sideYLR-xx-S2(SS2) series specifications Multimode Fiber Laser with internal 2-ways Beam Switch on sideYLR-xx-CT series specifications Multimode Fiber Laser with internal Fiber/Fiber coupler on top 内置光光耦合器P ≤2500 W P ≥3000 WYLR-xx-ST2(SST2) series specifications Multimode Fiber Laser with internal 2-ways Beam Switch on topP ≥3000 WYLR-2000-S2T-QCW Fiber Laser Main advantage:better cutting quality and faster speedIPG Application Lab in Burbach Heartly Welcome and thanks for Your attention !。

各版本IPG激光器开启外控模式

各版本IPG激光器开启外控模式

IPG激光器开启外控模式
1.IPGYLR有屏版:
注:开启外控模式请先注意激光器是否出光。

(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改为OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;
(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操作。

2.IPGYLR无屏版:
(1)、请使用网线使激光器和工控机通讯。

(2)、网线连接后,请点击电脑右下角,打开网络和共享中心;
(3)、点击本地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(
(6)、将ip地址改成与图片一致,点击确定;
(8)、选择ModulationMode,点击DISABLE,开启外控模式;
(9)、拖动红线处的选择栏,改变功率大小,选择Emission,点击ON,激光器已出光,请注意安全。

2、IPGYLS激光器:
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;(4)、将其状态更改为使能,点击确定;
(5)、切换到控制页面,
激光器出光,请注意安全。

IPG激光器接口说明

IPG激光器接口说明

IPG激光器接口说明目录1 XP1接口 (2)外部输入信号: (2)激光器输出信号 (3)2 XP2接口 (4)输入信号 (4)3 XP4接口 (5)P1、P2 模拟量输入, 模拟量电压0到10V(对应0-100%功率) (6)4、PA系统激光器通道 (6)第一通道控制激光器功率 (6)5、激光器上高压流程 (7)1 定制产品v1.0 可编辑可修改版本:编写:定制产品部时间:1 XP1接口外部输入信号:Laser Request(激光器请求)高电平有效外部控制时此位必须置1,无此信号输入时其它输入信号都会被忽略。

控制器发出此信号时激光器会发出应答信号,B7(Laser assigned)置为高电平。

A2 Program start (程序启动)高电平有效,控制激光程序起动和停止。

程序号由A8到A14定义。

如果程序号是0000000和A6为高电平,那么激光器由模拟量控制A3 Internal Control Enabled 内控使能,高电平有效A4 Rest error(复位错误)高电平有效复位激光器系统的所有错误信息和激光器输出的错误信号,输入激活时间2 定制产品至少持续1ms。

A5 Guide laser ON (引导激光开启)A6 Analogue control ON(模拟量控制激活)高电平有效激活时程序号要为0000000A16 公共地C1 Laser ON (激光器电源开启)用于打开和关闭激光器主电源,如果主电源不能开启,B13(Warming output)会被置1. 如果主电源开启,输出 B8(Laser ON)会置1.C3至C6 双光纤通道选择 C3 最低位,C6最高位0000→Home position0001→通道10010→通道2激光器输出信号B1 Laser Ready(激光器准备好)高电平有效B2 Emission ON 高电平有效激光器光闸打开,正在出光B3 Internal control enabled 高电平有效内控使能B4 Laser Error(激光器错误)B5 Guide Laser is ON 红光打开时置13 定制产品B6 Analogue Control is ON 模拟量控制模式时置1B7 Laser is assigned 激光器应答信号高电平有效。

IPG激光器接口说明

IPG激光器接口说明

.IPG激光器接口说明————————————————————————————————作者:————————————————————————————————日期:IPG激光器接口说明目录1 XP1接口 (4)1.1 外部输入信号: (4)1.2激光器输出信号 (5)2 XP2接口 (6)2.1 输入信号 (6)3 XP4接口 (7)P1、P2 模拟量输入, 模拟量电压0到10V(对应0-100%功率) (7)4、PA系统激光器通道 (7)第一通道控制激光器功率 (7)5、激光器上高压流程 (8)版本:V1.0编写:定制产品部时间:2016.61 XP1接口1.1 外部输入信号:Laser Request(激光器请求)高电平有效外部控制时此位必须置1,无此信号输入时其它输入信号都会被忽略。

控制器发出此信号时激光器会发出应答信号,B7(Laser assigned)置为高电平。

A2 Program start (程序启动)高电平有效,控制激光程序起动和停止。

程序号由A8到A14定义。

如果程序号是0000000和A6为高电平,那么激光器由模拟量控制A3 Internal Control Enabled 内控使能,高电平有效A4 Rest error(复位错误)高电平有效复位激光器系统的所有错误信息和激光器输出的错误信号,输入激活时间至少持续1ms。

A5 Guide laser ON (引导激光开启)A6 Analogue control ON(模拟量控制激活)高电平有效激活时程序号要为0000000A16 公共地C1 Laser ON (激光器电源开启)用于打开和关闭激光器主电源,如果主电源不能开启,B13(Warming output)会被置1. 如果主电源开启,输出 B8(Laser ON)会置1.C3至C6 双光纤通道选择 C3 最低位,C6最高位0000→Home position0001→通道10010→通道21.2激光器输出信号B1 Laser Ready(激光器准备好)高电平有效B2 Emission ON 高电平有效激光器光闸打开,正在出光B3 Internal control enabled 高电平有效内控使能B4 Laser Error(激光器错误)B5 Guide Laser is ON 红光打开时置1B6 Analogue Control is ON 模拟量控制模式时置1B7 Laser is assigned 激光器应答信号高电平有效。

IPG光纤激光器说明书

IPG光纤激光器说明书

产品质量保证条款谢谢贵公司购买我公司光纤激光器!贵公司需在发货后一个月内确认产品的质量问题,如果不能尽快在一个月内确认的话,就会造成在服务和供货上不必要的麻烦,特别是对于产品不是在美国本土安装的。

我们将给贵公司提供最好的质量和技术支持,在设备的安装和调试操作方面我们有一套详细的方案。

可以通过以下两种途径确认产品的质量:1.将已付资费同时写好地址的信封寄给我方2.直接上网进行确认所有提供的信息都是必须保密的有任何问题可以直接拨打客服电话(508)373-1157安全条款:1.警告鉴于对人体潜在的伤害,请按照规定的程序进行操作,如果不这样做的话,对自己或者他人都会造成伤害2.警示鉴于产品潜在的危险,请按照规定的程序进行操作,如果不这样做的话,对产品自身或者产品的零配件都会有损害3.重要事项关于产品的操作事项请按照说明书逐步操作。

你公司所购买的是400瓦的光纤激光器,执行标准是21 CFR 1040.10,激光波长达到1070纳米,通过光纤输出的激光的功率实际上已经超过400瓦,对人的眼睛和皮肤都会造成伤害,尽管这种辐射是不可见的,但是这种激光对人的角膜的伤害是无法避免的,在设备工作的时候必须带上激光护目镜。

警告:在设备工作中请根据波长范围选择合适的护目镜,请仔细阅读产品上的安全标签,产品的输出功率和波长范围。

有很多供应商为我们提供原材料和零配件。

如果设备经过重新安装或者改进的话,由终端客户负全责。

在设备的调试,操作过程当中如果不按照规定的程序运行,就会造成一定的危害在设备运行过程中,不要随意触动光纤激光器任何部件。

比如光纤准直器。

在靠近激光的位置会从不同的角度发散出激光,这些激光会从不同的镜面物体反射,反射的激光强度都会对人的眼睛和皮肤造成一定的伤害。

激光对人的皮肤,服装都会造成很大的伤害,激光可以引燃比如酒精,汽油之类的溶剂,激光可以进行切割和焊接,在安装和使用设备的时候请谨慎使用一些易燃的材料和气体。

4.IPG激光器接口说明

4.IPG激光器接口说明

专业资料IPG激光器接口说明目录1 XP1接口 (2)1.1 外部输入信号: (2)1.2激光器输出信号 (3)2 XP2接口 (4)2.1 输入信号 (4)3 XP4接口 (5)P1、P2 模拟量输入, 模拟量电压0到10V(对应0-100%功率) (5)4、PA系统激光器通道 (5)第一通道控制激光器功率 (5)5、激光器上高压流程 (6)版本:V1.0编写:定制产品部时间:2016.61 XP1接口1.1 外部输入信号:Laser Request(激光器请求)高电平有效外部控制时此位必须置1,无此信号输入时其它输入信号都会被忽略。

控制器发出此信号时激光器会发出应答信号,B7(Laser assigned)置为高电平。

A2 Program start (程序启动)高电平有效,控制激光程序起动和停止。

程序号由A8到A14定义。

如果程序号是0000000和A6为高电平,那么激光器由模拟量控制A3 Internal Control Enabled 内控使能,高电平有效A4 Rest error(复位错误)高电平有效复位激光器系统的所有错误信息和激光器输出的错误信号,输入激活时间至少持续1ms。

A5 Guide laser ON (引导激光开启)A6 Analogue control ON(模拟量控制激活)高电平有效激活时程序号要为0000000A16 公共地C1 Laser ON (激光器电源开启)用于打开和关闭激光器主电源,如果主电源不能开启,B13(Warming output)会被置1. 如果主电源开启,输出 B8(Laser ON)会置1.C3至C6 双光纤通道选择 C3 最低位,C6最高位0000→Home position0001→通道10010→通道21.2激光器输出信号B1 Laser Ready(激光器准备好)高电平有效B2 Emission ON 高电平有效激光器光闸打开,正在出光B3 Internal control enabled 高电平有效内控使能B4 Laser Error(激光器错误)B5 Guide Laser is ON 红光打开时置1B6 Analogue Control is ON 模拟量控制模式时置1B7 Laser is assigned 激光器应答信号高电平有效。

各版本IPG激光器开启外控模式

各版本IPG激光器开启外控模式

IPG激光器开启外控模式1.IPG YLR 有屏版:
注:开启外控模式请先注意激光器是否出光。

(1)、点击IPG显示屏的INT;
(2)、选择Modulation,将其更改为OFF;
(3)、外控模式已开启,点击QCW栏,进行功率选择,选择完毕请点击set;
(4)、功率选择完毕,可以开始出光,打开start按钮;
(5)、点击Emission,倒计时完毕之后,激光器出光,请注意激光,谨慎操作。

2.IPG YLR 无屏版:
(1)、请使用网线使激光器和工控机通讯。

(2)、网线连接后,请点击电脑右下角,打开网络和共享中心;
(3)、点击本地连接;
(4)、点击属性;
(5)、下拉,选择Internet协议4(TCP/Ipv4),点击属性;
(6)、将ip地址改成与图片一致,点击确定;
(7)、打开浏览器,输入192.168.3.230;
(8)、选择Modulation Mode,点击DISABLE,开启外控模式;
(9)、拖动红线处的选择栏,改变功率大小,选择Emission,点击ON,激光器已出光,请注意安全。

2、IPG YLS激光器:
(1)、YLS模块的激光器和无屏版一样,要更改ip地址,将ip地址更改为:192.168.100.10,具体请参照无屏版设置方法;
(2)、打卡LaserNet软件,点击设置;
(3)、点击ip设置,点击增加;
(4)、将其状态更改为使能,点击确定;
(5)、切换到控制页面,开启外控模式,更改功率(功率和电流都可以更改功率),点击激光发射,激光器出光,请注意安全。

4IPG激光器接口说明 2

4IPG激光器接口说明 2

IPG激光器接口说明目录1XP1接口 (2)1.1 外部输入信号:2ﻩ1.2激光器输出信号3ﻩ2XP2接口 (4)2.1输入信号................................................................................................................................ 43XP4接口5ﻩP1、P2模拟量输入, 模拟量电压0到10V(对应0-100%功率)ﻩ54、PA系统激光器通道 (5)第一通道控制激光器功率 (5)5、激光器上高压流程 (6)版本:V1.0编写:定制产品部时间:2016.61 XP1接口1.1外部输入信号:Laser Request(激光器请求) 高电平有效外部控制时此位必须置1,无此信号输入时其它输入信号都会被忽略。

控制器发出此信号时激光器会发出应答信号,B7(Laser assigned)置为高电平。

A2 Program start (程序启动)高电平有效,控制激光程序起动和停止。

程序号由A8到A14定义。

如果程序号是和A6为高电平,那么激光器由模拟量控制A3 Internal Control Enabled内控使能,高电平有效A4 Rest error(复位错误)高电平有效复位激光器系统的所有错误信息和激光器输出的错误信号,输入激活时间至少持续1ms。

A5 Guide laser ON(引导激光开启)A6 Analogue control ON(模拟量控制激活)高电平有效激活时程序号要为A16 公共地C1 Laser ON (激光器电源开启)用于打开和关闭激光器主电源,如果主电源不能开启,B13(Warming ou tput)会被置1. 如果主电源开启,输出 B8(Laser ON)会置1.C3至C6 双光纤通道选择 C3最低位,C6最高位0000→Home position0001→通道10010→通道21.2激光器输出信号B1 Laser Ready(激光器准备好) 高电平有效B2 Emission ON 高电平有效激光器光闸打开,正在出光B3 Internal control enabled高电平有效内控使能B4 Laser Error(激光器错误)B5 Guide Laseris ON 红光打开时置1B6 Analogue Control is ON 模拟量控制模式时置1B7 Laser is assigned激光器应答信号高电平有效。

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IPG激光器接口说明
目录
1 XP1接口 (2)
1.1 外部输入信号: (2)
1.2激光器输出信号 (3)
2 XP2接口 (4)
2.1 输入信号 (4)
3 XP4接口 (5)
P1、P2 模拟量输入, 模拟量电压0到10V(对应0-100%功率) (5)
4、PA系统激光器通道 (5)
第一通道控制激光器功率 (5)
5、激光器上高压流程 (6)
版本:V1.0
编写:定制产品部
时间:2016.6
1 XP1接口
1.1 外部输入信号:
Laser Request(激光器请求)高电平有效
外部控制时此位必须置1,无此信号输入时其它输入信号都会被忽略。

控制器发出此信号时激光器会发出应答信号,B7(Laser assigned)置为高电平。

A2 Program start (程序启动)
高电平有效,控制激光程序起动和停止。

程序号由A8到A14定义。

如果程序号是0000000和A6为高电平,那么激光器由模拟量控制
A3 Internal Control Enabled 内控使能,高电平有效
A4 Rest error(复位错误)高电平有效
复位激光器系统的所有错误信息和激光器输出的错误信号,输入激活时间至少持续1ms。

A5 Guide laser ON (引导激光开启)
A6 Analogue control ON
(模拟量控制激活)高电平有效激活时程序号要为0000000
A16 公共地
C1 Laser ON (激光器电源开启)
用于打开和关闭激光器主电源,如果主电源不能开启,B13(Warming output)会被置1. 如果主电源开启,输出 B8(Laser ON)会置1.
C3至C6 双光纤通道选择 C3 最低位,C6最高位
0000→Home position
0001→通道1
0010→通道2
1.2激光器输出信号
B1 Laser Ready(激光器准备好)高电平有效
B2 Emission ON 高电平有效激光器光闸打开,正在出光
B3 Internal control enabled 高电平有效内控使能
B4 Laser Error(激光器错误)
B5 Guide Laser is ON 红光打开时置1
B6 Analogue Control is ON 模拟量控制模式时置1
B7 Laser is assigned 激光器应答信号
高电平有效。

此为A1 信号的应答位,如果此信号为低电平,所有控制输入信号会被忽略。

B15 +24VDC
B16 0VDC 用户提供
D1-D4 多通道指示
0000→通道未选择(Home Position)
0001→通道1处于工作位置
0010→通道2处于工作位置
2 XP2接口
2.1 输入信号
A1、A2 Emission ON
A1A2为+24V时激光器会出光 0V时关光,可以通过接脉冲板的PWM+和PWN-输出端,来控制激光器出输出的是连续波或脉冲(?)
C1C4 急停通道1
C2C3 急停通道2
和机床的急停信号串联在一起,机床端有急停时激光器停止动作
C5C6 SC reset 安全回路复位输入
激光器上高压时此信号要输入高电平,持续2S以上
2.2 输出信号
2.1 A3 A5 Emission ON 出光时A3A5连通
2.2 B3B6 急停通道1 B4B5 急停通道2
当内部急停按扭按下时,通道1 和通道2断开
3 XP4接口
P1、P2 模拟量输入,模拟量电压0到10V(对应0-100%功率)
4、PA系统激光器通道
第一通道控制激光器功率
第二通道可以根据模拟量电压改变PWM脉冲板的频率和占空比,10V表示100%,5V 表示50%
当脉冲标志位为高电平时,输出的实际频率和占空比与第二通道电压成正比
当脉冲标志位为低电平时,输出的实际频率和占空比与第二通道电压没有关系
例如标位为高电平,频率为5000,占空比为100,第二通道电压为5V,则实际输出频率和占空比为2500和150。

5、激光器上高压流程
先确定激光器正常无报警
激光器请求信号Laser Request(激光器会输出应答信号Laser is assigned 会为高电平
模量量控制开启信号Analogue control ON给高电平
(XP1)C1 Laser ON 给高电平,开启激光器主电源
(XP2)C5C6 SC reset连通,Rest error,持续2S以上,安全回路复位,重置错误
④如果没有问题,激光器会输出激光器准备好信号B1 Laser Ready 和主电源开启成功信号B8 Laser on(out) , 上高压完成
(范文素材和资料部分来自网络,供参考。

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