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ESD108 Diodes: Datasheet, Pinout, Specification [FAQ]

  • Contents

Product Overview

This Infineon ESD (electrostatic discharge) protection device has a bi-directional and symmetric I/V characteristic and excellent clamping performance.

 

This blog will introduce ESD108 systematically from its features, pinout to its specifications, applications, also including ESD108 datasheet and so much more.

 

Catalog

Product Overview

ESD108 Features

ESD108 Pinout

ESD108 Potential Applications

ESD108 Electrical Characteristics

ESD108 Thermal Characteristics

ESD108 Typical Characteristic Diagrams

ESD108 Package

ESD108 Specification

ESD108 Manufacturer

ESD108 Datasheet

Using Warnings

ESD108 FAQ

 

ESD108 Features

  • ESD / transient protection according to:

- IEC61000-4-2 (ESD): ±25 kV (air) / ±25 kV (contact)

- IEC61000-4-4 (EFT): ±2.5 kV / ±50 A (5/50 ns)

- IEC61000-4-5 (Surge): ±2.5 A (8/20 μs)

  • Bi-directional maximum working voltage: VWM = ±5.5 V
  • Line capacitance: CL

 = 0.28 pF at f = 1 MHz

  • Clamping voltage: Vcl = 20 V at ITLP = 16 A with Rdyn = 0.78 Ω
  • Very low leakage current: IL

 =0.1 nA

  • Small form factor SMD size 0201, low profile (0.58 x 0.28 x 0.15 mm³)

 

ESD108 Pinout

The following figure is the diagram of ESD108 pinout.

 

ESD108 Pinout

ESD108 Pinout

 

ESD108 Potential Applications

  • USB 3.x Gen. 1, USB 2.0
  • HDMI, DisplayPort

 

ESD108 Electrical Characteristics

The following is the diagram of ESD108 electrical characteristics.

 

ESD108 Electrical Characteristics

ESD108 Electrical Characteristics

Note: TA = 25°C, unless otherwise specified. Device is electrically symmetrical.

 

ESD108 Thermal Characteristics

The following is the diagram of ESD108 thermal characteristics.

 

Maximal working current

Maximal working current: IWM = f(TS, TA), device mounted on PCB with Rth = 200 K/W

 

ESD108 Typical Characteristic Diagrams

The following are the diagrams of ESD108 typical characteristic.

 

Leakage current

Leakage current: IL= f(Vt)

 

Line capacitance

Line capacitance: CL= f(Vt), f = 1 MHz, 1 GHz

 

Clamping voltage (ESD)

Clamping voltage (ESD): Vcl = f(tp), 8 kV positive pulse based on IEC61000-4-2

 

ESD108 Package

The following diagram shows the ESD108 package.

 

ESD108 Package

ESD108 Package

 

ESD108 Specification

Product Attribute Attribute Value
Manufacturer: Infineon
Product Category: ESD Suppressors / TVS Diodes
Polarity: Bidirectional
Working Voltage: 5.5 V
Number of Channels: 1 Channel
Termination Style: SMD/SMT
Package/Case: WLL-2-1
Clamping Voltage: 18.5 V
Pppm - Peak Pulse Power Dissipation: 1.8 kW
Vesd - Voltage ESD Contact: 25 kV
Vesd - Voltage ESD Air Gap: 25 kV
Cd - Diode Capacitance: 0.38 pF
Ipp - Peak Pulse Current: 2.5 A
Minimum Operating Temperature: - 55 C
Maximum Operating Temperature: + 125 C
Series: ESD108

 

ESD108 Manufacturer

Infineon Technologies is a leading global designer, manufacturer and supplier of a broad range of semiconductors used in various microelectronic applications. Infineon's product portfolio consists of logic products, including digital, mixed-signal, and analog integrated circuits, as well as discrete semiconductor products.

 

ESD108 Datasheet

You can download ESD108 datasheet from the link given below:

ESD108 Datasheet

 

Using Warnings

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

ESD108 FAQ

What do TVS diodes do?

TVS Diodes are used to protect semiconductor components from high-voltage transients. Their p-n junctions have a larger cross-sectional area than those of a normal diode, allowing them to conduct large currents to ground without sustaining damage.

 

Where should a TVS diode be placed?

Place TVS diode near the edge of the PCB. To enable the excessive surge current to be channeled to chassis ground before damaging the transceiver, the placement of the TVS diode is also important. It is a good practice to place TVS diodes as close to the edge of the board as possible.

 

What is difference between ESD diode and TVS diode?

Technically there is no difference between ESD and TVS diodes. They serve the same purpose by shunting large current due to overvoltage to protect integrated circuit. However, TVS diodes are typically a much bigger devices compared to ESD and withstand much higher transient current compared to ESD.

ESD108B1CSP0201XTSA1 Documents & Media

Download datasheets and manufacturer documentation for Infineon Technologies ESD108B1CSP0201XTSA1.
Datasheets
datasheet
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TVS DIODE 5.5V 41V WLL-2-1

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