1. Field of the Invention
The invention relates to a transformer and, more particularly, to a network transformer.
2. Description of the Prior Art
With the development of the computer technology, the network technology is improving day by day. The current computer is gradually departing from the stand-alone operation and moving into the network operation era. Therefore, various network modules and devices for controlling network connections are also under development.
Generally speaking, various computer devices are connected with other computers in the network via network modules and network cables.
The network transformer 112 is also called as a network insulating transformer, and is mainly for providing the impedance matching and abnormality isolation. For example, when the impedances of the computer devices (or the network devices) connected by the network cable are not equal, the impedances can be adjusted by changing the turns of coil sets in the network transformer 112 to match the impedances of the devices connected by the network cable.
The voltages of the devices connected by the network cable may not be the same. Under the protection of the network transformer, the damage caused by the connections of the devices of different voltages can be avoided. Moreover, the network transformer also can avoid the local computer device (or network device) being damaged by the transient voltage transmitted from the network cable.
The invention provides a network transformer to improve the current technique.
According to a specific embodiment, the invention provides a network transformer including a plurality of coil sets, a casing, an insulating board, and a plurality of pins. The insulating board is disposed in the casing and connects with at least two side walls of the casing to form a plurality of isolation chambers, so that each of chambers contains one coil set. The pins are provided on the casing. The network transformer is disposed on a PCB via the pins.
According to a specific embodiment, the invention provides an electronic device including a circuit board, a CPU, a chipset, a network chip, a network connector, and a network transformer. The CPU is disposed on the circuit board. The chipset is coupled with the CPU and disposed on the circuit board. The network connector is disposed on the circuit board. The network transformer is separately coupled with the network chip and the network connector. The network transformer further includes a plurality of coil sets, an insulating board, a plurality of pins, and a casing. The pins are disposed on the casing. The network transformer is disposed on a PCB via the pins. The insulating board is disposed in the casing and connects with at least two side walls of the casing to form a plurality of isolation chambers for separately containing the coil sets.
According to a specific embodiment, the invention provides a network module including a network chip, a network connector, and a network transformer. The network transformer is separately coupled with the network chip and the network connector. The network transformer includes a plurality of coil sets, an insulating board, a plurality of pins, and a casing. The pins are disposed on the casing. The network transformer is disposed on a PCB via the pins. The insulating board is disposed in the casing and connects with at least two side walls of the casing to form a plurality of isolation chambers for separately containing the coil sets.
The advantage of the invention is described hereinafter. The insulating board is disposed in the casing of the network transformer to form a plurality of isolation chambers for separating the coil sets, which avoids the coil set breakdown by lightning when the network transformer is struck by the transient voltage of lightning, and further to avoid the network device being damaged. The invention can improve the lightning protective effect of the network transformer and save the cost of using periphery devices, that achieves the cost advantage.
These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings.
The pins 320 are disposed on the casing 310. The network transformer 300 is disposed on a printed circuit board via the pins 320 of the casing 310.
The insulating board 330 is disposed in the casing 310 and connected with side walls 311 and 312 of the casing 310 to separate the casing 310 into two isolation chambers 301 and 302. In the embodiment, the casing 310 and the insulating board 330 is integrally formed. In other embodiments, the casing 310 and the insulating board 330 can be two separated components, and the insulating board 330 is plugged in the casing 310. The insulating board 330 can be tightly disposed with the casing 310 via the adhesive or the wedge mechanism.
The isolation chamber 301 is for containing the coil set 341, and the isolation chamber 302 is for containing the coil set 344, so that each isolation chamber 301 or 302 can contain one coil set of the coil sets 341 and 342 to electrically insulate the coil sets 341 and 342.
Refer to
In the embodiment, the material of the casing 310 and the insulating board 330 is flame-resistant diallyl phthalate molding material, which can ensure that the network transformer is not damaged in the high temperature caused by the transient voltage of lightning. In the embodiment, the cores of the coil sets 341 and 342 are toroidal cores, which can form a magnetic confining field with nearly perfect magnetic line of force. The magnetic line of force has small transmission distortion and its coupling factor can be close to 1. Furthermore, using the toroidal core causes advantage of small space usage and high efficient.
Refer to
In the embodiment, the electronic device 700 can be a lap-top computer. In the other embodiments, the electronic device 700 can be other electronic devices with network module.
The CPU 601, the front side bus 602, the north bridge chip 603, the main memory bus 604, the main system memory 605, the south bridge chip 606, the input/output (I/O) bus 607, the network chip 608, the network transformer 610, and the network connector 609 are disposed on the motherboard 600. The north bridge chip 603 and the south bridge chip 606 may be a chipset. The network chip 608, the network transformer 610, and the network connector 609 may be a network module.
The CPU 601 is coupled with the chipset, that is to say, the CPU 601 is coupled with the north bridge chip 603 via the front side bus 602, and the north bridge chip 603 is coupled with the south bridge chip 606. The north bridge chip 603 is coupled with the main system memory 605 via the main memory bus 604. The south bridge chip 606 is coupled with the network chip 608 via the I/O bus. The network transformer 610 is separately coupled with the network chip 608 and the network connector 609.
The CPU 601 is for controlling the whole operation of the computer device. The CPU 601 is for reading, decoding, and executing the instruction in all the operations of the computer device.
The north bridge chip 603 is for controlling signal transmission between high-speed periphery devices (such as the main system memory 55) and the CPU 51.
The south bridge chip 606 is for controlling signal transmission between low-speed periphery devices (such as the PCI bus, the USB, the LAN, the ATA, the SATA, the audio controller, the keyboard controller, the real time clock controller, and the advantage power management) and the north bridge chip 603.
In the embodiment, the network chip 608 is a network chip module, and the specification of the network transformer 610 supports the 10/100M network module. The network connector 609 is a RJ45 connector, wherein the network transformer 610 has two isolation chambers to hold the coil separately for achieving the lightning protective effect.
The network transformer 610 utilizing the differential mode coupling coil sets filters the differential signal sent out by the network chip 608, and couples the differential signal to one end of the network cable. Therefore, the signal is transmitted between the network cable and the network chip 608 without physical connection, which separates the DC component of the signal, and the signal can be transmitted between different voltage devices.
As described above, the network transformer of the preferred embodiment of the invention can improve the performance of the conventional network transformer, and promote the lightning protection effect of the network transformer to protect the network device. Therefore, the periphery devices need not to be used in the network transformer so that the whole cost of the network transformer can be saved.
Although the present invention has been described in considerable detail with reference to certain preferred embodiments thereof, the disclosure is not for limiting the scope of the invention. Persons having ordinary skill in the art may make various modifications and changes without departing from the scope and spirit of the invention. Therefore, the scope of the appended claims should not be limited to the description of the preferred embodiments described above.
Number | Date | Country | Kind |
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097115818 | Apr 2008 | TW | national |