Leora Peltz
Boeing Phantom Works
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Publication
Featured researches published by Leora Peltz.
IEEE Aerospace and Electronic Systems Magazine | 2012
Troy D. England; Ryan M. Diestelhorst; Eleazar W. Kenyon; John D. Cressler; Mike Alles; Robert A. Reed; Richard W. Berger; R. Garbos; Benjamin J. Blalock; Alan Mantooth; M. Barlow; Fa Foster Dai; Wayne Johnson; C. Ellis; Jim Holmes; C. Webber; Patrick McCluskey; Mohammad Mojarradi; Leora Peltz; Robert V. Frampton; C. Eckert
We have presented the architecture, simulation, packaging, and over-temperature and radiation testing of a complex, 16-channel, extreme environment capable, SiGe Remote Electronics Unit containing the Remote Sensor Interface ASIC that can serve a wide variety of space-relevant needs as designed. These include future missions to the Moon and Mars, with the additional potential to operate in other hostile environments, including lunar craters and around the Jovian moon, Europa. We have expanded on the previous introduction of the RSI to show the validity of the chip design and performance over an almost 250 K temperature range, down to 100 K, under 100 krad TID radiation exposure, with SEL immunity and operability in a high-flux SET environment.
IEEE Aerospace and Electronic Systems Magazine | 2012
Ryan M. Diestelhorst; Troy D. England; Richard W. Berger; Ray Garbos; Chandradevi Ulaganathan; B.J. Blalock; Kimberly Cornett; Alan Mantooth; Xueyang Geng; Foster F. Dai; Wayne Johnson; Jim Holmes; Mike Alles; Robert A. Reed; Patrick McCluskey; Mohammad Mojarradi; Leora Peltz; Robert V. Frampton; Cliff Eckert; John D. Cressler
We have described the modeling, circuit design, system integration, and measurement of a Remote Sensor Interface (Figure 20) that took place over a span of 5 years and 8 fabrication cycles. It was conceived as part of the Multi-Chip Module (MCM) shown in Figure 21, which also includes a digital control chip for clocking, programming, and read-out. Further work beyond the scope of this was performed to validate the RSI for the extreme environmental conditions of a lunar mission, and individual blocks are presently.
AIAA SPACE 2015 Conference and Exposition | 2015
Leora Peltz; Robert V. Frampton
Boeing has been developing the concept and preliminary design for a set of small landing Pods that could be deployed from a spacecraft bus orbiting a Near Earth Asteroid (NEA) to address the set of “Strategic Knowledge Gaps” (SKG) that would address the specific goals for investigation prior to crewed missions to NEAs or the moons of Mars.
Proceedings of SPIE, the International Society for Optical Engineering | 2009
Jie Yao; Irina Mokina; Feng Liu; Sean Wang; Jack Zhou; Michael J. Lange; Weiguo Yang; Patrick J. Gardner; Leora Peltz; Robert V. Frampton; Jeffrey H. Hunt
Miniaturized field-deployable spectrometers used for the rapid analysis of chemical and biological substances require high-sensitivity photo detectors. For example, in a Raman spectroscopy system, the receiver must be capable of high-gain, low-noise detection performance due to the intrinsically weak signals produced by the Raman effects of most substances. We are developing a novel, high-gain hetero-junction phototransistor (HPT) detector which employs two nano-structures simultaneously to achieve 100 times higher sensitivity than InGaAs avalanche photodiodes, the most sensitive commercially available photo-detector in the near infrared (NIR) wavelength range, under their normal operation conditions. Integrated into a detector array, this technology has application for Laser-Induced Breakdown Spectroscopy (LIBS), pollution monitoring, pharmaceutical manufacturing by reaction monitoring, chemical & biological transportation safety, and bio-chemical analysis in planetary exploration.
Proceedings of SPIE | 2009
Patrick J. Gardner; Jie Yao; Sean Wang; Jack Zhou; Ken Li; Irina Mokina; Michael R. Lange; Weiguo Yang; Leora Peltz; Robert V. Frampton; Jeffrey H. Hunt; Jill Becker
Miniaturized field-deployable spectrometers used for the rapid analysis of chemical and biological substances require high-sensitivity photo detectors. For example, in a Raman spectroscopy system, the receiver must be capable of high-gain, low-noise detection performance due to the intrinsically weak signals produced by the Raman effects of most substances. We are developing a novel, high-gain hetero-junction phototransistor (HPT) detector which employs two nano-structures simultaneously to achieve 100 times higher sensitivity than InGaAs avalanche photodiodes, the most sensitive commercially available photo-detector in the near infrared (NIR) wavelength range, under their normal operation conditions. Integrated into a detector array, this technology has application for Laser- Induced Breakdown Spectroscopy (LIBS), pollution monitoring, pharmaceutical manufacturing by reaction monitoring, chemical & biological transportation safety, and bio-chemical analysis in planetary exploration.
Archive | 2006
John W. Behrens; Thomas L. Kessler; Leora Peltz; Jeffrey J. Cronick; Glenn N. Caplin; Frank O. Chandler; Robert V. Frampton; Daniel E. Rivera
Archive | 2007
John W. Behrens; Thomas L. Kessler; Leora Peltz; Jeffrey J. Cronick; Glenn N. Caplin; Frank O. Chandler; Robert V. Frampton; Daniel E. Rivera
ieee aerospace conference | 2008
Richard W. Berger; Raymond Garbos; John D. Cressler; Mohammad Mojarradi; Leora Peltz; Benjamin J. Blalock; Wayne Johnson; Guofu Niu; Foster F. Dai; Alan Mantooth; Jim Holmes; Mike Alles; Patrick McClusky
Archive | 2007
Thomas L. Andrews; Leora Peltz; Robert V. Frampton
Archive | 2010
John W. Behrens; Thomas L. Kessler; Leora Peltz; Jeffrey J. Cronick; Glenn N. Caplin; Frank O. Chandler; Robert V. Frampton; Daniel E. Rivera