Infineon IR2111PBF MOSFET Gate Driver 2, 0.5 A 8-Pin 20 V, PDIP

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Sous-total (1 unité)*

2,32 €

(TVA exclue)

2,81 €

(TVA incluse)

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Dernier stock RS
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  • 1 570 unité(s) finale(s) expédiée(s) à partir du 26 janvier 2026
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10 - 242,20 €
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100 +1,87 €

*Prix donné à titre indicatif

N° de stock RS:
541-0654
Référence fabricant:
IR2111PBF
Fabricant:
Infineon
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Marque

Infineon

Product Type

MOSFET & IGBT Driver

Output Current

0.5A

Pin Count

8

Fall Time

40ns

Package Type

PDIP

Driver Type

MOSFET

Number of Outputs

2

Rise Time

130ns

Minimum Supply Voltage

1V

Maximum Supply Voltage

20V

Number of Drivers

2

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

125°C

Length

10.92mm

Standards/Approvals

No

Series

IR2111(S) & (PbF)

Width

7.11 mm

Height

5.33mm

Mount Type

Through Hole

Automotive Standard

No

Infineon MOSFET Gate Driver, 0.5A Output Current, 20V Supply Voltage - IR2111PBF


This MOSFET gate driver is designed for efficient control of power electronic circuits, specifically in half-bridge applications. The device operates with high voltage tolerance up to 600V, suitable for use in various automated systems. It features robust construction employing CMOS technology, which enhances reliability in demanding environments.

Features & Benefits


• Delivers peak output current of 0.5A for efficient switching

• Floating channel functionality enables bootstrap operation for enhanced performance

• Undervoltage lockout safeguards against low supply conditions

• Matched propagation delays ensure synchronised operation of output channels

• Internal deadtime prevents shoot-through, increasing system efficiency

Applications


• Ideal for driving high-side and low-side MOSFETs in half-bridge configurations

• Suitable for synchronised switching in power converters

• Utilised in industrial automation systems requiring high-speed control

• Effective in motor drive

What voltage supply range is compatible with this device?


The compatible supply voltage range for this device is from 10V to 20V, allowing flexibility in various applications.

How does the device prevent shoot-through conditions?


It includes internally set deadtime features that manage the timing between high-side and low-side drivers, effectively preventing shoot-through in half-bridge applications.

What are the benefits of using a floating channel in this driver?


The floating channel allows for bootstrap operation, enabling the driver to control high-side MOSFETs effectively, which is critical in high-voltage applications.

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