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8-SOIC
Integrated Circuits (ICs)

EL7222CSZ

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Renesas Electronics Corporation

HIGH SPEED, DUAL CHANNEL POWER MOSFET DRIVERS

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8-SOIC
Integrated Circuits (ICs)

EL7222CSZ

Active
Renesas Electronics Corporation

HIGH SPEED, DUAL CHANNEL POWER MOSFET DRIVERS

Deep-Dive with AI

Technical Specifications

Parameters and characteristics for this part

SpecificationEL7222CSZ
Channel TypeIndependent
Current - Peak Output (Source, Sink) [custom]2 A
Current - Peak Output (Source, Sink) [custom]2 A
Driven ConfigurationLow-Side
Gate TypeN-Channel, P-Channel MOSFET
Input TypeNon-Inverting, Inverting
Mounting TypeSurface Mount
Number of Drivers2
Operating Temperature [Max]125 ¯C
Operating Temperature [Min]-40 °C
Package / Case8-SOIC
Package / Case [x]0.154 in
Package / Case [y]3.9 mm
Rise / Fall Time (Typ) [custom]10 ns
Rise / Fall Time (Typ) [custom]7.5 ns
Supplier Device Package8-SOIC
Voltage - Supply [Max]15 V
Voltage - Supply [Min]4.5 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 1$ 3.64
10$ 3.27
25$ 3.09
100$ 2.68
250$ 2.54
970$ 1.92
2910$ 1.83
NewarkEach 1$ 4.84
10$ 2.98
25$ 2.82
50$ 2.65
100$ 2.49
250$ 2.25

Description

General part information

EL7222 Series

The EL7202, EL7212, EL7222 ICs are matched dual-drivers that improve the operation of the industry standard DS0026 clock drivers. The Elantec versions are very High-Speed drivers capable of delivering peak currents of 2. 0 amps into highly capacitive loads. The High-Speed performance is achieved by means of a proprietary Turbo-Driver circuit that speeds up input stages by tapping the wider voltage swing at the output. Improved speed and drive capability are enhanced by matched rise and fall delay times. These matched delays maintain the integrity of input-to-output pulse-widths to reduce timing errors and clock skew problems. This improved performance is accompanied by a 10 fold reduction in supply currents over bipolar drivers, yet without the delay time problems commonly associated with CMOS devices. Dynamic switching losses are minimized with non-overlapped drive techniques.