IR2101STRPBF

Symbol Micros: UIIR2101s
Contractor Symbol:
Case : SOP08
High+Low Side Non-Inv. Driver, Vmax 600V, Io+/Io- 130/270mA, tON/OFF 160/150ns IR2101STRPBF; IR2101SPBF; IR2101S;
Parameters
Supply voltage range: 10V~20V
Case: SOP08
Current: 0,36A
Manufacturer: Infineon Technologies
Integrated circuit type: Driver
Operating temperature (range): -40°C ~ 125°C
Number of channels: 0
Manufacturer:: Infineon Manufacturer part number: IR2101STR RoHS Case style: SOP08t/r  
In stock:
2111 pcs.
Quantity of pcs. 1+ 5+ 20+ 100+ 400+
Net price (EUR) 1,1989 0,8392 0,7121 0,6522 0,6306
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Packaging:
2500
Manufacturer:: Infineon Manufacturer part number: IR2101SPBF Case style: SOP08  
External warehouse:
7730 pcs.
Quantity of pcs. 5+ (Need a significantly larger quantity? Ask for price).
Net price (EUR) 0,8036
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Packaging:
5
Delivery within 4-7 business days.
Minimum order amount
must exceed 20 Euro.
Supply voltage range: 10V~20V
Case: SOP08
Current: 0,36A
Manufacturer: Infineon Technologies
Integrated circuit type: Driver
Operating temperature (range): -40°C ~ 125°C
Number of channels: 0
Detailed description

IR2101STR is a fast and reliable driver, an integrated circuit designed for controlling MOSFET and IGBT transistors in high-voltage applications. It features two independent output channels – for the high-side and low-side transistors – with matched signal delay times of typically 160ns during turn-on and 150ns during turn-off. This ensures precise control and minimizes the risk of cross-conduction.

The circuit supports supply voltages in the range of 10 to 20V and includes protective mechanisms such as undervoltage lockout (UVLO), which protects transistors from damage in case of insufficient supply voltage. Additionally, the floating channel allows high-side transistor control, enabling operation with floating voltages up to 600V.

IR2101STR is available in a compact SOP08 package, ensuring easy mounting on printed circuit boards and saving space. It is a reliable and efficient integrated circuit, ideal for applications requiring fast and precise power management.