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ON Semiconductor Introduces Industry’s Smallest MOSFETs in Highly Compact, Low Profile Packages

17th October 2012
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ON Semiconductor has introduced the new NTNS3193NZ and NTNS3A91PZ MOSFETs, which are considered the industry’s most compact small-signal MOSFETs as they are housed in a tiny 0.62 mm x 0.62 mm x 0.4 mm XLLGA3 package. The MOSFETs are optimized for space-constrained portable consumer electronics such as tablet computers, smart phones, GPS systems, digital media players and portable games consoles.

“As portable electronics continue to decrease in size while the number of on-board features continue to increase, there is, and will continue to be, an ongoing need for ultra small, high performance components to make feature-rich on-the-go devices energy efficient and highly functioning,” said Paul Leonard, vice president of ON Semiconductor’s MOSFET products division. “The NTNS3193NZ and NTNS3A91PZ do just this by enabling design engineers to specify a device that has the necessary features and functionality while still allowing sleek, stylish designs that consumers have now come to expect.”

With a total surface mount area of only 0.38 mm², the XLLGA3 package is the ideal solution for the ever shrinking environments of portable electronics, and easily replaces competitive products offered in much bigger packages such as SOT-883 (with a surface mount area of 0.6mm²) or the SOT-723 (with mount area of 1.44mm²).

The NTNS3193NZ is a 20 volt (V), single N−channel, 0.75 ohms typical on resistance at ±4.5 voltage gate to source (VGS) device. This is complemented by the NTNS3A91PZ -20 V, single P−channel device, which has 1.3 ohms typical on resistance at ±4.5 V.

With low RDS(on), low threshold voltage, and 1.5 V gate drive capability, these new MOSFETs greatly reduce power consumption when incorporated in portable electronic products making both devices ideally suited for small signal load switches, analog switches and high speed interfacing. Both devices are fully Pb-free, halogen-free and are RoHS compliant.

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