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Likes: 0. Results 1 to 9 of 9. Thread Tools Show Printable Version. I going to give all info in detail with what I am seeing and doing and maybe someone has run into a similar situation here. How come I do not get this call out in that line of g code? I have the set up in the middle of the table. I ran some tool testing programming it from the controller facemills and endmills and everything worked great. Now I just need posted programs to work from Fusion and I will be all set up.
Thank you in advance! Only thing I can offer is, years ago it seems I had something similar happen to an control. These resistors must be installed on both connectors. Their values must match the cable impedance. It is recommended to ground the unused pins in order to avoid erroneous control and data signal interpretations. Capacitance between conductors: Impedance: 50 Ohms. It is suggested to refer to the technical manual of the peripheral or computer to properly identify the signals and their corresponding pins.
Slot 1 is used for the "Memkey Card" and for upgrading software versions. The card id all the cards are different The software features that have been purchased for that unit. The screen will show the software updating page with the following information:. Installed version and New version Checksum of the installed version and that of the new one. The CNC will display the various stages of the software updating process and their status.
When done with the updating process, the CNC will display a new screen with the steps to follow. When using Sercos communications, the machine parameters for the axes and the spindle must be set to indicate whether each one of them will communicate with their corresponding drives via Sercos or not. For example: Command Feedback X axis via sercos connector axes module Y axis via sercos via sercos Z axis via sercos via sercos Spindle analog axes module connector axes module.
NODE Indicates the node number. It must be at "0". When using Sercos communication, the following machine parameters must be set for the axes and the spindle:. Possible values: 0 Analog axis Sercos Address. The Sercos addresses of the different axes and spindles must be consecutive starting from number 1. In other words, with 3 sercos axes and a sercos spindle, the values for this parameter must be 1, 2, 3, 4.
SERCOSLE Even when the data exchange between the CNC and the drive is done via sercos, one must define whether the feedback is also handled via sercos or through the corresponding connector for the axis or spindle.
The CNC controls the position loop. The velocity command is sent out to the drive via Sercos. The CNC control the position loop. When communicating with the drive via sercos, the "Speed enable" and "Drive enable" signals of the drive are also activated and deactivated via sercos.
These signals correspond to the "Speed enable" and "Drive enable" signals of the drive. In this situation, the motor is no longer governed and it will stop as soon as it runs out of kinetic energy stop by friction. Once the motor has stopped, the power circuit of the drive turns off and the motor no longer has torque.
If successful, the drive activates the "System OK" output. When having power at the Bus- - Once the "Drive enable and Speed enable" inputs have been activated.. X1, X2, X3 and X4. SUB-D type pin female connectors for feedback systems of each axis. The accept sinewave signals. X5 and X6. SUB-D type pin male connectors for feedback system of the axes. Up to 2 axes may be connected per connector. They do not accept sinewave signals.
Fast fuse F for internal protection of the PLC inputs and outputs. They are pin female connectors of the SUB-D type and they are used for the feedback system connections of the axes. The cable must have global shielding. The rest of the specifications depend on the feedback system utilized and the cable length required. All shields must only be connected to ground at the CNC end leaving the other end free.
The wires of the shielded cables cannot be unshielded for more than 75mm about 3 inches. It is highly recommended to run these cables as far as possible from the power cables of the machine. The appendix at the end of this manual shows the characteristics of the square and sinusoidal feedback inputs and those of the differential feedback alarm signals.
They are pin male connectors of the SUB-D type utilized for feedback system connections. It is possible to connect up to 2 axes to each one of them. The cables must have global shielding. When using a FAGOR P model handwheel, the axis selecting signal must be connected to the Io pin of the corresponding axis 5 or 13 of this connector. It is a pin male connector of the SUB-D type utilized for touch probe input and for the analog inputs.
It is possible to connect up to 8 analog inputs which could be used for system supervision, etc. There are two probe inputs 5V and 24V and the 0V probe input must be connected to the 0V of the external power supply.
Refer to the appendix at the end of this manual for more details on the characteristics of these probe inputs and recommended interface connections. Each one of the outputs O1 thru O8 correspond to the feedback inputs X1 thru X6. The 0V of the power supply used for these inputs must be connected to pins 18 and 19 of the connector.
This way, regardless of how this signal is treated by the PLC program, the electrical cabinet can process this signal immediately. The numbering of the various inputs and outputs of each module depends on the logic address assigned to the module and it is as follows:. The PLC can control up to inputs and outputs although it can only communicate to the outside world through the ones indicated above.
X1 and X2. The 0V of the external power supply used for the PLC inputs must be connected to pins 18 and 19 0V of each connector. Both the 24V and the 0V of the external power supply used for these outputs must be connected to pins 18 and 19 for 0V and 1 and 20 for 24V. Open navigation menu. Close suggestions Search Search. User Settings. Skip carousel. Carousel Previous. Carousel Next. Globais: Se se introduz o caractere "," depois do texto, o CNC espera o formato.
Ciclos fixos. A primeira ferramenta deve ser T1. O primeiro corretor deve ser D1. D Apaga o programa existente e abre-o como um novo. O resto dos eixos se podem deslocar mediante as teclas de JOG e mediante volantes. Se se deseja carregar uma tabela nova via DNC , se recomenda apagar a tabela anterior. Por lo tanto, para poder ejecutarlos no pueden estar activas las funciones "G48" ni "G49". Por exemplo G30 D Raio da ferramenta demasiado grande.
Previamente tem que ser descomutado G29 eixo. Verificar o programa do PLC. Ciclos de digitalizado. Revisar a sintaxe do bloco. Revisar o programa. Programar as coordenadas do ponto final diferentes do ponto inicial. Comprovar que o apalpador esteja bem ligado. Programar raio diferente de zero.
Para desabilitar esta zona de trabalho programar "G22 K1 S0". Para desabilitar esta zona de trabalho programar "G22 K2 S0". Para desabilitar esta zona de trabalho programar "G22 K3 S0". Para desabilitar esta zona de trabalho programar "G22 K4 S0".
CAUSA Trabalhando em coordenadas polares, se programou um deslocamento que implica mover um eixo que se encontra acoplado a outro. As causas podem ser: Falha no regulador Regulador avariado. Ajuste do regulador incorrecto. Falha no motor Motor avariado. Para desabilitar esta zona de trabalho programar "G22 K5 S0". Re-iniciando o PLC. O programa ficou numa volta infinita.
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