Nikon
The Nikon NSR SF 155 is an i-line (365 nm) reduction projection stepper used for semiconductor photolithography. The NSR SF 155 uses a mercury lamp and 5× reduction optics to pattern wafers with resolution typically suited for ≥0.5 µm nodes. The NSR SF 155 is designed for 150 mm and 200 mm wafers.[1]

Power
7.5 KW (SUV 7500 NI)[2]
Gas delivery
FIA Modification for Colored Resist[2]
Optics
SRI 12 M 4 IL 2 SS[2]
The Nikon NSR SF 155 is a reduction projection stepper designed for semiconductor photolithography. The NSR SF 155 uses i-line ultraviolet light at a wavelength of 365 nanometers. The NSR SF 155 is classified as a wide-field stepper. The NSR SF 155 is intended for mature-node semiconductor production.[1][6]
The NSR SF 155 employs a 5× reduction projection lens as a common configuration. The NSR SF 155 is designed to handle 150 mm (6-inch) and 200 mm (8-inch) wafers depending on configuration. The NSR SF 155 uses a mercury lamp as its i-line (365 nm) light source.[1][7]
The NSR SF 155 operates on the principle of optical projection lithography. A photomask containing circuit patterns is illuminated by the i-line UV light source. Projection optics reduce the mask image, typically at 5:1 reduction. The reduced image is projected onto photoresist-coated wafers. The wafer stage moves step-by-step to expose multiple fields in a step-and-repeat process. The NSR SF 155 uses an optical alignment system with wafer mark detection for global and field alignment.[1]
The NSR SF 155 is used in power semiconductor manufacturing, including IGBT, MOSFET, and SiC device processing for non-critical layers. The NSR SF 155 is used in analog and mixed-signal IC fabrication, such as operational amplifiers, power management ICs, and sensor interface chips. The NSR SF 155 is used in MEMS fabrication for micro-sensors, actuators, and microfluidic devices. The NSR SF 155 is used for discrete devices including diodes, transistors, and RF components. The NSR SF 155 is used in research and development settings such as university labs, process development lines, and pilot production.[1]
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The NSR SF 155 is typically suitable for 0.5 µm and above process nodes, depending on resist processes and exposure conditions.[1]
Yes. The NSR SF 155 is widely used in mature-node semiconductor fabs, especially for power devices, analog ICs, and MEMS manufacturing.[1]
The most critical risks include optical lens condition, stage accuracy, and alignment performance, which directly affect overlay and yield.[1]
With proper maintenance and spare parts support, i-line steppers can operate reliably for many years or even decades.[1]
Yes. While advanced nodes require DUV or EUV, i-line remains essential for mature-node and specialty semiconductor production.[1]
The following facts about the NSR SF 155 i-Line are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.
No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the NSR SF 155 i-Line are on record.
Answerable by: OEM historical records or a trade-press announcement
No publicly documented variants, configuration options, or revision breakpoints of the NSR SF 155 i-Line are on record.
Answerable by: an OEM product catalog or an engineer who ordered or specified the tool
The control-system platform and OS era of the NSR SF 155 i-Line are not on record.
Answerable by: an engineer who operated it or OEM installation records
No publicly documented failure modes or field errata for the NSR SF 155 i-Line are on record.
Answerable by: a field service engineer, process engineer, or maintenance technician
The process node or technology generation of the NSR SF 155 i-Line is not on record.
Answerable by: an OEM datasheet or a fab qualification report
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Last updated Sep 24, 2026.
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