Infineon MOSFET Gate Driver 2, 2 A 14-Pin 600 V, PDIP

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Antal (1 rör med 25 enheter)*

823,30 kr

(exkl. moms)

1 029,125 kr

(inkl. moms)

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Enheter
Per enhet
Per Rør*
25 - 2532,932 kr823,30 kr
50 - 10028,981 kr724,53 kr
125 - 22527,006 kr675,15 kr
250 - 60025,357 kr633,93 kr
625 +23,381 kr584,53 kr

*vägledande pris

RS-artikelnummer:
260-5178
Tillv. art.nr:
IR2110PBF
Tillverkare / varumärke:
Infineon
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Brand

Infineon

Product Type

MOSFET

Output Current

2A

Pin Count

14

Fall Time

17ns

Package Type

PDIP

Driver Type

MOSFET

Rise Time

35ns

Minimum Supply Voltage

20V

Maximum Supply Voltage

600V

Number of Drivers

2

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

150°C

Series

IR2110/IR2113

Standards/Approvals

No

Mount Type

Surface

Automotive Standard

No

Infineon MOSFET Gate Driver, 20V Supply Voltage, 2.5A Output Current - IR2110PBF


This MOSFET gate driver is designed for powering high voltage applications, supporting high and low side configurations. It features a compact 14-lead PDIP package, facilitating easy integration into various circuits within the realm of power electronics. With a rise time of 25ns and fall time of 17ns, it ensures quick response times essential for effective power management.

Features & Benefits


• Designed for bootstrap operation with floating channel capability

• Operational voltage tolerance of up to 600V for high reliability

• Compatible with standard CMOS and LSTTL logic down to 3.3V

• Matched propagation delay simplifies high frequency applications

Applications


• Used in motor control systems for smooth operation

• Suitable for driving IGBTs in industrial

• Applied in renewable energy systems such as solar inverters

• Utilised in automation equipment for enhanced performance

What protections does this gate driver offer to enhance circuit safety?


The driver includes undervoltage lockout for both channels, preventing malfunction due to low supply voltage. It ensures safe operation and protects associated components from potential damage.

How does this driver assist in managing high frequency switching?


The matched propagation delay for both high and low side outputs is critical in maintaining timing accuracy, minimising cross-conduction, and ensuring efficient switching performance in high frequency environments.

What considerations should I make regarding power supply when using this driver?


The gate driver requires a power supply within the range of 10V to 20V for optimal performance. Additionally, a separate logic supply from 3.3V to 20V is crucial for proper operation, thereby accommodating diverse logic levels.

Can it be effectively used in systems operating beyond standard voltages?


Yes, this driver can operate effectively in systems with high voltage requirements, tolerating up to 600V, making it suitable for heavy-duty applications in various electrical systems.

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