摘要:
The system includes conversion circuits INFN, INFM incorporated both in the numerical control apparatus 1 and in the machine 2. The conversion circuits INFN, INFM are adapted to convert serial data into parallel data and vice versa. A cable LN connects the conversion circuits. Decoder circuits (DEC1 and DEC2) are incorporated in the machine 2. These decoder circuits pass control data to, or monitoring data from, the machine 2. Parallel data from or for the decoder circuits DEC1 and DEC2 is converted into serial data so that the exchange of data between the machine 2 and the numerical control apparatus 1 is in a bit-serial manner through the cable LN. For example, machine elements RL, to RL N corresponding to address signals are activated in accordance with data transmitted bit-serially from the numerical control apparatus 1 or, alternatively, the states of the machine elements (RC, to RC 2 ) corresponding to the address signals are read in a parallel manner and transmitted bit-serially to the numerical control apparatus 1. The address signals may be transmitted over line LN to the decoder circuits DEC1, DEC2 in the machine 2. Alternatively address signals may be generated in the machine 2 on the basis of clock (CLK) and synchronization (SYNC) signals from the numerical control apparatus 1.
摘要:
As a conversion table for converting NC data of first type into NC data of second type, there are registered to a memory (103) a G-code conversion table (GTB) which holds a relationship between a G-code in the first NC data and a G-code in the second NC data, an M-code conversion table (MTB) which holds a relationship between an M-code in the first NC data and an M-code in the second NC data, and a coordinate value instruction code conversion table (PTB) which holds a relationship of coordinate value instruction codes (X, Y, Z, I, J and K codes) between the first NC data and the second NC data. Using these conversion tables (GTB, MTB, PTB), the format of the first NC data is converted into a format of the second NC data.
摘要:
As a conversion table for converting NC data of first type into NC data of second type, there are registered to a memory (103) a G-code conversion table (GTB) which holds a relationship between a G-code in the first NC data and a G-code in the second NC data, an M-code conversion table (MTB) which holds a relationship between an M-code in the first NC data and an M-code in the second NC data, and a coordinate value instruction code conversion table (PTB) which holds a relationship of coordinate value instruction codes (X, Y, Z, I, J and K codes) between the first NC data and the second NC data. Using these conversion tables (GTB, MTB, PTB), the format of the first NC data is converted into a format of the second NC data.
摘要:
Die Erfindung betrifft ein Verfahren zum Betrieb eines Diagnosesystems (DS) und ein Diagnosesystem (DS) für ein Kraftfahrzeug (KFZ), wobei diagnoserelevante Daten aus einem fahrzeugseitigen Informationssystem in das Diagnosesystem (DS) übertragen werden, und wobei das Diagnosesystem (DS) durch ein Autorensystem (AS) konfiguriert wird. Dabei wird ein Wert (W) eines Parameters der diagnoserelevanten Daten des Kraftfahrzeugs (KFZ) nach der Übertragung in das Diagnosesystem (DS) zusammen mit einer zugehörigen Quelleinheit (QE) und einer den Parameter bezeichnenden Referenz in einem Textcontainer (TC) gespeichert, wobei dem Textcontainer (TC) mittels des Autorensystems (AS) eine definierte Zieleinheit (ZE) zugefügt wird, wobei der ursprüngliche Wert (W) und die Quelleinheit (QE) im Textcontainer (TC) verbleiben, und wobei an einer oder an mehreren Verwendungsstellen des Wertes (W) des Parameters jeweils eine Umsetzung des Wertes (W) von der Quelleinheit (QE) in die Zieleinheit vorgenommen wird.
摘要:
The system includes conversion circuits INFN, INFM incorporated both in the numerical control apparatus 1 and in the machine 2. The conversion circuits INFN, INFM are adapted to convert serial data into parallel data and vice versa. A cable LN connects the conversion circuits. Decoder circuits (DEC1 and DEC2) are incorporated in the machine 2. These decoder circuits pass control data to, or monitoring data from, the machine 2. Parallel data from or for the decoder circuits DEC1 and DEC2 is converted into serial data so that the exchange of data between the machine 2 and the numerical control apparatus 1 is in a bit-serial manner through the cable LN. For example, machine elements RL, to RL N corresponding to address signals are activated in accordance with data transmitted bit-serially from the numerical control apparatus 1 or, alternatively, the states of the machine elements (RC, to RC 2 ) corresponding to the address signals are read in a parallel manner and transmitted bit-serially to the numerical control apparatus 1. The address signals may be transmitted over line LN to the decoder circuits DEC1, DEC2 in the machine 2. Alternatively address signals may be generated in the machine 2 on the basis of clock (CLK) and synchronization (SYNC) signals from the numerical control apparatus 1.
摘要:
Disclosed is a numerical control method and apparatus for positionally controlling the movable element of a machine tool in such a manner that numerically controlled machining is performed along a projected path (14) obtained by projecting a programmed path (12), lying on a predetermined plane (11), onto a plane of projection (13) inclined at a predetermined angle (a) with respect to the first-mentioned plane (11). The method includes the steps of entering data specifying a programmed path (12) on the predetermined plane (11), subjecting the entered data to a projective transformation in accordance with entered projection angle data to generate projective transformation data specifying the projected path (14), and performing an interpolation on the basis of the projective transformation data to produce an output signal indicative of the results of the interpolation, and positionally controlling the movable element on the basis of the projective transformation output signal.