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Polyonics推出PCB用高溫可移動(dòng)防靜電膠帶

來(lái)源:林中祥膠粘劑技術(shù)信息網(wǎng)2014年01月15日

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Polyonics Introduces a High-temperature Removable Antistatic Masking tape for PCB


Polyonics has introduced a new generation high temperature, removable antistatic masking tape. The Polyonics XT-658 is a 1 mil polyimide antistatic tape with an acrylic PSA and PET liner that is rated for 300C and, depending on the severity of the process, can be removed with little to no residue. The single coated tape helps protect heat and chemically sensitive portions of PCBs during the traditional wave flow and wash cycles and provides a low peel voltage (less than100v) that helps protect static sensitive devices from potentially harmful ESD events.

Masking tapes can generate significant charges (greater than 2500v) when their liners are removed prior to application. Once the tape is applied it will transfer these charges to the PCB and potentially damage static sensitive devices resident on the PCB. If not caught, these charges can damage assemblies that include the charged PCB or even effect the operation of final products.

The Polyonics XT-658 provides a low peel voltage (less than 100v) when its liner is removed to help protect static sensitive devices (SSD) from electrostatic charges. In addition, when the tape is removed after the manufacturing process, it further protects the board by again generating less than 100 volts. See the complete ESD story presented in the animation at right.

Electrostatic charges are generated when dissimilar materials come in contact with PCBs. This occurs primarily through tribocharging with the charges arising from human contact, contact with manufacturing equipment e.g. fixtures, slides, clamps, conveyors, robots, etc. or something as simple as applying masking tape.

Polyonics single coated antistatic tapes incorporate TriboGard technologies. These unique technologies include a variety of specially formulated conductive elements in a durable polymer matrix. The conductive elements create low peel voltages (less than 100v) when the liners are removed and again when the tape is removed.

The charge density chart illustrates that when electrostatic charges are deposited on conductive surfaces they discharge quickly, potentially damaging SSDs. When charges are deposited on insulative surfaces, they tend to stay indefinitely and thus can damage SSD further on in the manufacturing and assembly process. This is why its critical to keep charges away from electrical devices to avoid the possibility of ESD events.

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