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Last $12.90 USD
Change Today -0.14 / -1.07%
Volume 7.6M
ONNN On Other Exchanges
Symbol
Exchange
Munich
As of 8:10 PM 03/6/15 All times are local (Market data is delayed by at least 15 minutes).

on semiconductor corp (ONNN) Key Developments

ON Semiconductor Corp. Announces Unaudited Consolidated Earnings Results for Fourth Quarter and Full Year Ended December 31, 2014 ; Provides Guidance for the First Quarter of 2015

ON Semiconductor Corp. announced unaudited consolidated earnings results for fourth quarter and full year ended December 31, 2014. For the quarter, the company reported revenues of $864.2 million, operating income of $20.1 million, income before income taxes of $9.2 million, net income attributable to company of $4.9 million or $0.01 per diluted share, non-gaap operating income of $88.7 million, non-gaap net income of $76.3 million or $0.17 per diluted share compared to the revenues of $718 million, operating income of $59.8 million, income before income taxes of $48.8 million, net income attributable to company of $37.8 million or $0.08 per diluted share, non-gaap operating income of $82.8 million, non-gaap net income of $71 million or $0.16 per diluted share for the same quarter a year ago. Adjusted EBITDA was $143.2 million compared to the $128.0 million for the same quarter year ago. For the year, the company reported revenues of $3,161.8 million, operating income of $234.4 million, income before income taxes of $197.4 million, net income attributable to company of $195.2 million or $0.44 per diluted share, non-gaap operating income of $384.8 million, non-gaap net income of $334.3 million or $0.75 per diluted share compared to the revenues of $2,782.7 million, operating income of $208.9 million, income before income taxes of $170 million, net income attributable to company of $150.4 million or $0.33 per diluted share, non-gaap operating income of $281.4 million, non-gaap net income of $240.7 million or $0.53 per diluted share for the previous year. Adjusted EBITDA was $578.4 million compared to the $458.4 million for the previous year. The company expected first quarter 2015 revenue to be between $840 million to $880 million. For the first quarter of 2015, on GAAP basis, the company expected gross margin to be between 33.4% to 35.4%, operating expenses to be between $231 million to $244 million, net interest expense/other expenses to be between $7 million to $9 million, tax to be between $7 million to $10 million. For the first quarter of 2015, on non-GAAP basis, the company expected gross margin to be between 33.4% to 35.4%, operating expenses to be between $200 million to $210 million, net interest expense/other expenses to be between $7 million to $9 million, tax to be between $5 million to $8 million. The company expected total capital expenditures of approximately $65 million to $75 million in the first quarter of 2015.

ON Semiconductor Corp. to Report Q4, 2014 Results on Feb 05, 2015

ON Semiconductor Corp. announced that they will report Q4, 2014 results at 5:00 PM, US Eastern Standard Time on Feb 05, 2015

ON Semiconductor Corp., Q4 2014 Earnings Call, Feb 05, 2015

ON Semiconductor Corp., Q4 2014 Earnings Call, Feb 05, 2015

Primoceler and ON Semiconductor Partnering to Deliver CMOS Sensor Solutions to European Space Agency

Primoceler announced a new contract with the European Space Agency to design and manufacture complete CMOS sensor packages for orbital missions. Working with Primoceler on this contract will be ON Semiconductor. Based on Semiconductor's HAS3 hermetic design, CMOS sensors are encased in an impermeable seam of glass using laser welding technology, which helps to avoid any problems due to thermal changes, ensuring long-time stability. The primary challenge with orbital missions is fabricating hardware that can protect sensitive electronics for the long term while also enduring rapid temperature and pressure changes, not to mention the vacuum of space. Primoceler's glass welding more than meets those demands. Glass offers a fully hermetic seal of all components, along with an extremely small heat affected zone during the welding process. Meanwhile, the finished seam requires no adhesives and provides excellent mechanical properties and durability.

ON Semiconductor Introduces Two New Series of PFC Offline Ac-Dc Drivers

ON Semiconductor has introduced two new series of power factor corrected, or PFC, offline Ac-Dc drivers for LED lighting applications. Extending the NCL3008x family of products, the NCL30085, NCL30086 and NCL30088 address single stage design implementations up to 60 watts (W) that require high power factor. The NCL30030 broadens the existing solutions which support higher power (up to 150 W) two stage topologies that require low optical ripple and wide LED forward voltage variation. The NCL30085, NCL30086 and NCL30088 utilize a power factor corrected current control algorithm which makes them suitable for flyback buck-boost, and SEPIC topologies. By operating in quasi-resonant mode these devices are able to deliver optimum efficiency across wide line and load levels. The non-dimmable NCL30088 is complemented by the NCL30086, which is smart-dimmable, supporting analog and/or pulse-width modulation (PWM) dimming with a single input that controls the average LED current. Completing the series is the NCL30085 which supports three levels of log step dimming (70%, 25% and 5%). As a consequence, it permits light output reduction by toggling the AC switch on/off to signal the controller to lower the LED current point. All three devices feature user configurable current thermal fold-back mechanisms that help prevent overheating and enable manufacturers to support longer lifetime warranties. The NCL30085 and NCL30088 are offered in SOIC-8 packages, while the NCL30086 is offered in SOIC-10 package with pricing of the series starting at $0.35 per unit in 10,000 unit quantities. The NCL30030 is a two stage PFC controller plus quasi-resonant flyback controller optimized for medium and high power LED lighting applications up to 150 W. This device is best suited for commercial lighting such as lowbay, highbay and streetlighting. The NCL30030 makes use of a proprietary multiplier architecture to achieve low harmonic distortion and near-unity power factor while operating in critical conduction mode (CrM).

 

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