2017
DOI: 10.1088/1674-4926/38/6/065003
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A new sensitivity model with blank space for layout optimization*

Abstract: As the technology scales advancing into the nanometer region, the concept of yield has become an increasingly important design metric. To reduce the yield loss caused by local defects, layout optimization can play a critical role. In this paper, we propose a new open sensitivity-based model with consideration of the blank space around the net, and study the corresponding net optimization. The proposed new model not only has a high practicability in the selection of nets to be optimized but also solves the issu… Show more

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Cited by 3 publications
(3 citation statements)
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“…Wang et al, 2010), (Rehm et al, 2011), (J. Wang, Wu, Liu, & Xing, 2017), (Guldi, 2004), (Egger, Griitzner, Burmer, & Dudkiewicz, 2007), (Gil et al, 2017), (Chertkov, Disyuk, Pimenov, & Aksenova, 2017), (Luka et al, 2016), (Chuang & Lee, 2004) Business Economics 48 (4,29%) (Isack, Mutingi, Kandjeke, Vashishth, & Chakraborty, 2018), (Mahendrawathi, Zayin, & Pamungkas, 2017), (Samopa, Astuti, & Lestari, 2017), (Wieczerniak, Cyplik, & Milczarek, 2017), (Richter, Aymelek, & Mattfeld, 2017), (Usman & Rendy, 2017), (Aligula, Kok, & Sim, 2017), (Sawalha, 2017), (Claxton & Campbell-Allen, 2017), (Markopoulos & Vanharanta, 2017) Optics 33 (2,95%) (X. Wang et al, 2010), (Giollo, Lam, Gkorou, Liu, & van Haren, 2017), (Schulz, Egodage, Tabbone, Ehrlich, & Garetto, 2017), (Xie, Venkatachalam, Lee, Chen, & Zafar, 2017), (Horvath, Krkos, & Dubravec, 2017), (Tchikoulaeva, Holfeld, Arend, & Foca, 2008), (Mora et al, 2016), (Gutjahr et al, 2016), (McCroskey, Abell, & Chidester, 2000),…”
Section: Primary Objectivementioning
confidence: 99%
“…Wang et al, 2010), (Rehm et al, 2011), (J. Wang, Wu, Liu, & Xing, 2017), (Guldi, 2004), (Egger, Griitzner, Burmer, & Dudkiewicz, 2007), (Gil et al, 2017), (Chertkov, Disyuk, Pimenov, & Aksenova, 2017), (Luka et al, 2016), (Chuang & Lee, 2004) Business Economics 48 (4,29%) (Isack, Mutingi, Kandjeke, Vashishth, & Chakraborty, 2018), (Mahendrawathi, Zayin, & Pamungkas, 2017), (Samopa, Astuti, & Lestari, 2017), (Wieczerniak, Cyplik, & Milczarek, 2017), (Richter, Aymelek, & Mattfeld, 2017), (Usman & Rendy, 2017), (Aligula, Kok, & Sim, 2017), (Sawalha, 2017), (Claxton & Campbell-Allen, 2017), (Markopoulos & Vanharanta, 2017) Optics 33 (2,95%) (X. Wang et al, 2010), (Giollo, Lam, Gkorou, Liu, & van Haren, 2017), (Schulz, Egodage, Tabbone, Ehrlich, & Garetto, 2017), (Xie, Venkatachalam, Lee, Chen, & Zafar, 2017), (Horvath, Krkos, & Dubravec, 2017), (Tchikoulaeva, Holfeld, Arend, & Foca, 2008), (Mora et al, 2016), (Gutjahr et al, 2016), (McCroskey, Abell, & Chidester, 2000),…”
Section: Primary Objectivementioning
confidence: 99%
“…Wang et al, 2010), (Rehm et al, 2011), (J. Wang, Wu, Liu, & Xing, 2017), (Guldi, 2004), (Egger, Griitzner, Burmer, & Dudkiewicz, 2007), (Gil et al, 2017), (Chertkov, Disyuk, Pimenov, & Aksenova, 2017), (Luka et al, 2016), (Chuang & Lee, 2004) Business Economics 48 (4,29%) (Isack, Mutingi, Kandjeke, Vashishth, & Chakraborty, 2018), (Mahendrawathi, Zayin, & Pamungkas, 2017), (Samopa, Astuti, & Lestari, 2017), (Wieczerniak, Cyplik, & Milczarek, 2017), (Richter, Aymelek, & Mattfeld, 2017), (Usman & Rendy, 2017), (Aligula, Kok, & Sim, 2017), (Sawalha, 2017), (Claxton & Campbell-Allen, 2017), (Markopoulos & Vanharanta, 2017) Optics 33 (2,95%) (X. Wang et al, 2010), (Giollo, Lam, Gkorou, Liu, & van Haren, 2017), (Schulz, Egodage, Tabbone, Ehrlich, & Garetto, 2017), (Xie, Venkatachalam, Lee, Chen, & Zafar, 2017), (Horvath, Krkos, & Dubravec, 2017), (Tchikoulaeva, Holfeld, Arend, & Foca, 2008), (Mora et al, 2016), (Gutjahr et al, 2016), (McCroskey, Abell, & Chidester, 2000),…”
Section: Primary Objectivementioning
confidence: 99%
“…Wang et al, 2010), (Rehm et al, 2011), (J. Wang, Wu, Liu, & Xing, 2017), (Guldi, 2004), (Egger, Griitzner, Burmer, & Dudkiewicz, 2007), (Gil et al, 2017), (Chertkov, Disyuk, Pimenov, & Aksenova, 2017), (Luka et al, 2016), (Chuang & Lee, 2004) Business Economics 48 (4,29%) (Isack, Mutingi, Kandjeke, Vashishth, & Chakraborty, 2018), (Mahendrawathi, Zayin, & Pamungkas, 2017), (Samopa, Astuti, & Lestari, 2017), (Wieczerniak, Cyplik, & Milczarek, 2017), (Richter, Aymelek, & Mattfeld, 2017), (Usman & Rendy, 2017), (Aligula, Kok, & Sim, 2017), (Sawalha, 2017), (Claxton & Campbell-Allen, 2017), (Markopoulos & Vanharanta, 2017) Optics 33 (2,95%) (X. Wang et al, 2010), (Giollo, Lam, Gkorou, Liu, & van Haren, 2017), (Schulz, Egodage, Tabbone, Ehrlich, & Garetto, 2017), (Xie, Venkatachalam, Lee, Chen, & Zafar, 2017), (Horvath, Krkos, & Dubravec, 2017), (Tchikoulaeva, Holfeld, Arend, & Foca, 2008), (Mora et al, 2016), (Gutjahr et al, 2016), (McCroskey, Abell, & Chidester, 2000),…”
Section: Primary Objectivementioning
confidence: 99%