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O-ESD is open-hardware project for (pre-compliance) [ESD immunity testing](https://en.wikipedia.org/wiki/IEC_61000-4-2) in accordance with [IEC/EN 61000-4-2](https://webstore.iec.ch/en/publication/68954) standard. It is a stand-alone battery-powered portable device that can produce low-energy voltage pulses in the range from –15kV to 15kV. All electronic devices must be immune to a certain level of ESD, as ESD happens everyday between humans and electronic devices.
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<br>
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<br>O-ESD is released under [CERN Open Hardware License Version 2 – Strongly Reciprocal](https://o-esd.etf.bg.ac.rs/IMG/cern_ohl_s_v2.txt).<br>
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<br>The current release is [version 1.0](https://o-esd.etf.bg.ac.rs/forgejo/dragan.olcan/O-ESD/src/branch/main/v1.0).<br>
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<br>Electrostatic discharge can irreparably damage electronic devices. Use O-ESD with caution!<br>
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The current release is [version 1.0](https://o-esd.etf.bg.ac.rs/forgejo/dragan.olcan/O-ESD/src/branch/main/v1.0).<br>
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Electrostatic discharge can irreparably damage electronic devices. Use O-ESD with caution!<br>
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## Features
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* Contact discharge mode and air discharge mode.
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Once the O-ESD is powered-up the splash screen should appear for 1 s at the LCD. Afterwards, the main screen of the O-ESD shows up. LCD has four 20-character lines. Each line stands for one item. Items (i.e., lines) are selected by moving the selector “ > ” using up/down buttons.<br>
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If an item has a numeric value selectable by the user, the numeric value can be changed by rotating the knob. Some items have multiple choices (selections) or submenus (sub-items) available and those are accessible by pressing the knob.<br>
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<br><br>
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There are two modes of operation:
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There are two modes of operation
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* contact discharge and
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* air discharge.
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The default mode is the contact discharge. The sharp conductive tip (electrode) is used for contact discharge and should be placed in the red socket at O-ESD output. For air discharge the rounded conductive tip (electrode) is used and it should be placed in the black socket. O-ESD is intended for use with only one conductive tip (electrode) inserted at a time and with the appropriate mode of operation selected.<br>
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<br>
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All components of the motherboard except step-up transformer are available on the market. The step-up transformer must be assembled per specifications.<br>
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<br>
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The transformer has the following roles:
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* to accumulate energy while the switching transistor is in the on state and release that energy to the high-voltage cascade when the switching transistor goes to the off state;
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The transformer has the following roles
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* to accumulate energy while the switching transistor is in the on state and release that energy to the high-voltage cascade when the switching transistor goes to the off state
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* to provide step-up voltage transformation from the low-voltage input to the high-voltage cascade and
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* to provide galvanic insulation between the low-voltage input and the high-voltage cascade.
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<br>Windings:<br>
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