when a capacitor or any chargeable device connected across a load which may be resistive or inductive than the capacitive device discharges and this discharging of this device is called electronic discharge . it is used in CCD (charged coupled devices).
3000 volts From ESD Association ESD Handbook ESD TR20.20 section 5.3.2.1: "When people are charged with static electricity, they can release stored energy to conductive objects such as doorknobs and electronic circuits. This transfer of energy is called an electrostatic discharge. Sometimes the electrostatic discharge causes visible sparks, but more often, it is both unseen and unfelt. Electrostatic discharges can damage ESD sensitive components used in modern electronics. Static electricity is a natural phenomenon that occurs in all climates and at all levels of relative humidity year round. Most people cannot feel an electrostatic discharge unless the static voltage is greater than 2000 volts. However, some electronic circuitry can be damaged by ESD that is less than 2000 volts. The damage can be done without people having any sensation of the ESD event. When a wrist strap is worn properly and connected to ground, the person wearing it will stay near ground potential."
To calculate the discharge superheat on a chiller, first measure the temperature of the refrigerant gas at the discharge line using a temperature sensor. Next, determine the saturation temperature of the refrigerant at the corresponding pressure in the discharge line using pressure-temperature charts. Subtract the saturation temperature from the measured discharge temperature to find the discharge superheat. The formula is: Discharge Superheat = Discharge Temperature - Saturation Temperature.
uses of electronic mail
components of electronic spreadsheet
BYD Electronic was created in 2007.
"Electronic metal discharge" typically refers to the phenomenon of metal parts discharging electrical energy when they come into contact with each other. This can occur when metal components with different electrical charges or potentials make contact, leading to a spark or discharge of electricity. It is important to prevent such discharges in electronic devices to avoid damage.
A rapid movement of excess charge from one place to another is known as an electrical discharge. This phenomena can result in lightning, electric sparks, or discharge in electronic devices.
electrostatic discharge
ESD stands for Electrostatic Discharge. It refers to the sudden flow of electricity between two electrically charged objects caused by contact, an electrical short, or dielectric breakdown. ESD can damage electronic components and devices if not properly handled.
Because it can lead to immediate or delayed failure of semiconductor junctions in nearby electronic devices.
A technician can discharge static buildup by wearing an anti-static wrist strap connected to a grounded object or by touching a grounded metal surface before handling sensitive electronic components. This helps to prevent damage to the components from electrostatic discharge.
A grounding bracelet is a device worn around the wrist that helps to dissipate static electricity from the body to prevent damage to sensitive electronic components. It is used in electronic assembly and repair to reduce the risk of electrostatic discharge (ESD) damage to electronic equipment.
Electrostatic discharge (ESD) tools are devices used to prevent damage to electronic components from static electricity. They are grounded tools that help to safely handle sensitive electronic components by dissipating any built-up static charge on the person using them. Examples include ESD-safe mats, wrist straps, and grounded workstations.
Static electricity may build up and discharge through the circuits you are working on. This may damage them. Removing the ground cable, removes the discharge path to ground.
To safely discharge static electricity, you can touch a grounded metal object, like a doorknob or a metal faucet, to allow the excess charge to flow away. Avoid touching sensitive electronic devices directly to prevent damage.
ESD or electro static discharge is harmful to electronic components because it can cause component overload similar to an electric shock
The relationship between the voltage of static electricity and its effects on electronic devices is that higher voltage levels can cause damage to electronic devices. When static electricity builds up and discharges at a high voltage, it can create a surge of electrical energy that can overload and potentially harm the delicate components of electronic devices. It is important to handle electronic devices carefully to prevent static electricity buildup and discharge.