Method for arranging conducting lines of a flexible cable in an optical disk drive
View Patent ↗A method for arranging conducting lines of a flexible cable in an optical disk drive first confirms the pins having similar functions of all chips on a main board and a sub-board, and uses only one conducting line of the flexible cable to connect these pins. Therefore, the number of the conducting lines of the flexible cable can be reduced.
1. A method for arranging conducting lines of a flexible cable in an optical disk drive, the flexible cable used between a first circuit board and a second circuit board, the method comprising:
generating a control signal for the optical disk drive, a switch circuit located on the first circuit board and being controlled by an input signal to generate the control signal, wherein when the input signal turns the switch circuit on, the control signal has a first voltage level, and when the input signal turns the switch circuit off, the control signal has a second voltage level;
transmitting the control signal from a first node on the first circuit board to a second node on the second circuit board through a conducting line of the flexible cable:
connecting a pin of a first control chip located on the first circuit board to the first node for receiving the control signal; and
connecting a pin of a second control chip located on the second circuit board to the second node for receiving the control signal, wherein the first control chip and the second control chip are controlled by the same control signal.
2. The method of claim 1 wherein the optical disk drive is a slim-type optical disk drive.
3. A method for arranging conducting lines of a flexible cable in an optical disk drive, the flexible cable used between a first circuit board and a second circuit board, the method comprising:
generating a control signal for the optical disk drive, a switch circuit located on the first circuit board and being controlled by an input signal to generate the control signal, wherein when the input signal turns the switch circuit on, the control signal has a first voltage level, and when the input signal turns the switch circuit off, the control signal has a second voltage level;
transmitting the control signal from a first node on the first circuit board to a second node on the second circuit board through a conducting line of the flexible cable;
connecting a pin of a first control chip located on the first circuit board to the first node for receiving the control signal;
connecting an input of a NOT gate to the second node; and
connecting a pin of a second control chip located on the second circuit board to an output of the NOT gate for receiving a logical inverse of the control signal.
4. The method of claim 3 wherein the optical disk drive is a slim-type optical disk drive.