{"id":394,"date":"2026-06-05T09:27:16","date_gmt":"2026-06-05T00:27:16","guid":{"rendered":"https:\/\/stag.club-phi.ulvac-phi.com\/phi-nanotof3\/"},"modified":"2026-06-30T17:14:08","modified_gmt":"2026-06-30T08:14:08","slug":"phi-nanotof3","status":"publish","type":"page","link":"https:\/\/www.ulvac-phi.com\/en\/products\/phi-nanotof3\/","title":{"rendered":"PHI nanoTOF 3+"},"content":{"rendered":"\n<section class=\"p-phiNanoTof3Feature is-alt\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">TRIFT Analyzer<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">Triple Focusing Electrostatic Analyzer for Complex Sample Geometries<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">TRIFT Analyzer for a Wide Range of Sample Geometries, Wide Bandpass Energy, and Wide Acquisition Angle<\/h3>\n                <p>In exactly the same mass will have different flight times in the analyzer. This is particularly noticeable for samples with height differences or uneven surfaces.<\/p>\n                <p><a href=\"https:\/\/stag.club-phi.ulvac-phi.com\/surface-analysis\/topics\/trift-analyzer\/\">The Triple Ion Focusing Time-of-flight (TRIFT) spectrometer<\/a> is able to simultaneously compensate for differences in flight time caused by differences in energy and emission angle. This is a key feature of the TRIFT spectrometer, which achieves high mass resolution and high detection sensitivity, as well as imaging with reduced shadows as demonstrated in the examples below.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual\">\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature01_01en.png\" alt=\"TRIFT Analyzer Configuration Diagram and Micro Ball Measurement Examples\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">Primary Ion Gun<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">Primary Ion Gun for High-Precision Analysis<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">Advanced Ion Beam Technology Achieves High Spatial Resolution and High Mass Resolution<\/h3>\n                <p>PHI nanoTOF 3+ offers TOF-SIMS analysis with a high spatial resolution of < 500 nm in high mass resolution mode and < 50 nm in high spatial resolution mode.<\/p>\n                <p>The combination of a high brightness ion source, a high precision pulse mechanism and a high resolution spectrometer ensures low noise, high sensitivity and high resolution measurements. In both modes, measurements are completed within a few minutes.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual is-stack\">\n                <figure class=\"p-phiNanoTof3Feature__figure\">\n                    <figcaption class=\"p-phiNanoTof3Feature__cap is-between\">\n                        <span>High spatial resolution pulsed. beam <50nm<\/span>\n<span>PHI nanoTOF3 [conventional]<\/span>\n<span>PHI nanoTOF3&#8242;<\/span>\n                    <\/figcaption>\n                    <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature02_01en.png\" alt=\"45 nm Spatial Resolution Measurement Example\" width=\"700\" height=\"240\" loading=\"lazy\" decoding=\"async\"\/>\n                <\/figure>\n                <figure class=\"p-phiNanoTof3Feature__figure\">\n                    <figcaption class=\"p-phiNanoTof3Feature__cap\">TOF-SIMS images from medicine<\/figcaption>\n                    <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature02_02.png\" alt=\"Chemical Imaging Measurement Example by m\/z\" width=\"700\" height=\"240\" loading=\"lazy\" decoding=\"async\"\/>\n                <\/figure>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature is-alt\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">Unattended Measurement<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">The first-ever automated unattended TOF-SIMS analysis of multiple insulating samples<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__blocks\">\n            <div class=\"p-phiNanoTof3Feature__block\">\n                <div class=\"p-phiNanoTof3Feature__text\">\n                    <p>With the newly developed auto sample bias adjustment feature, it is now possible to perform unattended TOF-SIMS measurements on samples including insulating samples. The process is thoroughly simplified; 1) taking an intro photo, 2) selecting the analysis points on the intro photo, and 3) pressing the start button. In the past, skilled operators had to be dedicated to the instrument for analysis, but now the high quality data can be obtained regardless of operator skill.<\/p>\n                <\/div>\n                <div class=\"p-phiNanoTof3Feature__visual\">\n                    <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature03_01.png\" alt=\"Unattended Multi-Sample Measurement of Insulating Materials (Sample Holder)\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n                <\/div>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__block\">\n                <div class=\"p-phiNanoTof3Feature__text\">\n                    <h3 class=\"p-phiNanoTof3Feature__subhead\">Automated Sample Transport System and Parking Position as Standard<\/h3>\n                    <p>The instrument is equipped with an automatic sample transfer system that has been proven in more than 300 XPS Q-Series units. Sample sizes of up to 100 mm \u00d7 100 mm are possible, and the analysis chamber has a built-in parking position as standard. The system allows continuous automated unattended analysis of large numbers of samples.<\/p>\n                <\/div>\n                <div class=\"p-phiNanoTof3Feature__visual\">\n                    <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature03_02en.png\" alt=\"Fully Automated Sample Transfer Stage\" width=\"700\" height=\"350\" loading=\"lazy\" decoding=\"async\"\/>\n                <\/div>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">Ion Beam Technology<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">Unique Ion Beam Technology<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">New Pulsed Argon Ion Gun for Complete Turnkey Charge Neutralization<\/h3>\n                <p>The pulsed low-energy electrons and argon ions can easily neutralize surface charge for both positive and negative ion polarities regardless of the type and shape of the insulating sample.<br\/>* For Ar ion gun option is selected.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual\">\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature04_01en.png\" alt=\"Schematic Diagram of Turnkey Charge Neutralization\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature is-alt\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">FIB<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">FIB Fabrication Followed by Cross-section Imaging within a Single LMIG<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">FIB Function with Standard LMIG<\/h3>\n                <p>FIB processing function has newly been added to LMIG for primary ion source. This makes it possible to perform from FIB processing to cross-sectional TOFSIMS imaging with a single ion gun. Stage rotation is involved from processing to observation, but the Eucentric function allows the stage to return to the same field of view after rotation, easy identifying the FIB position.<br\/>To achieve 3D tomography, the dedicated Ga-FIB option is recommended. The Ga-FIB may be further optioned to operate as a second analysis beam.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual\">\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature05_01en.png\" alt=\"Eucentric Rotation and FIB-TOF imaging of Battery Materials\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">Parallel Imaging MS\/MS<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">Molecular Structure Analysis based on Parallel Imaging MS\/MS (Option)<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">Simultaneous Acquisition of MS1 and MS2 Data<\/h3>\n                <p>By combining a tandem mass spectrometer (MS2) with a conventional TOF-SIMS analyzer (MS1), MS1 and MS2 data can be acquired simultaneously in the same measurement field with high sensitivity and speed.<br\/>The MS1 spectrum can be complex due to the large number of mass peaks generated by all components and fragments. Conversely, the MS2 spectrum, which is extracted and segmented by the precursor selector, has a much simpler spectral pattern. This provides information about the molecular structure, such as terminal groups, linear chains, or double bonds, and enables specific molecular structure imaging.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual is-cols\">\n                <img class=\"is-full\" src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature06_03.png\" alt=\"Peak Assignment by MS\u00b9 and MS\u00b2 Spectra (Benzalkonium \u00b7 Tinuvin 770)\" width=\"650\" height=\"349\" loading=\"lazy\" decoding=\"async\"\/>\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature06_01.png\" alt=\"MS\u00b9\/MS\u00b2 Spectra Comparison\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature06_02en.png\" alt=\"TOF-SIMS Images from polymer surface\" width=\"700\" height=\"450\" loading=\"lazy\" decoding=\"async\"\/>\n            <\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__actions\">\n            <p class=\"p-phiNanoTof3Feature__optionNote\">Detail of the parallel imaging MS\/MS option detail is in the following links.<\/p>\n            <a class=\"p-phiNanoTof3Feature__optionBtn\" href=\"https:\/\/www.ulvac-phi.com\/ja\/products\/tof-sims\/nanotof2\/\" target=\"_blank\" rel=\"noopener noreferrer\">\n What is Parallel Imaging MS\/MS Option ?\n                <svg class=\"p-phiNanoTof3Feature__optionBtnArrow\" viewbox=\"0 0 24 24\" fill=\"none\" stroke=\"currentColor\" stroke-width=\"2\" aria-hidden=\"true\"><path d=\"M5 12h14M13 6l6 6-6 6\"><\/path><\/svg>\n            <\/a>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Feature is-alt\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Feature__head\">\n            <span class=\"p-phiNanoTof3Feature__en\">Remote Access<\/span>\n            <h2 class=\"p-phiNanoTof3Feature__title\">Reliable Remote Access for Measurements and Diagnostics, Even Away from the Instrument<\/h2>\n            <div class=\"p-phiNanoTof3Feature__rule\"><\/div>\n        <\/div>\n        <div class=\"p-phiNanoTof3Feature__grid\">\n            <div class=\"p-phiNanoTof3Feature__text\">\n                <h3 class=\"p-phiNanoTof3Feature__subhead\">Remote Access Function Allows the Instrument to be Controlled Remotely<\/h3>\n                <p>The PHI nanoTOF 3+ allows you to access the instrument via your company&#8217;s local area network or the internet. Once the sample holder is mounted in the intro chamber, functions such as transferring the sample into the analysis chamber, sample holder exchange with the parking position, setting of the measurement conditions (including all options), and data acquisition can all be performed remotely. Diagnostics of the instrument hardware and electronics can also be accessed remotely.<br\/>* For more information on remote diagnostics, please contact our Customer Service Department.<\/p>\n            <\/div>\n            <div class=\"p-phiNanoTof3Feature__visual\">\n                <img src=\"\/wp-content\/themes\/ulvac-phi\/assets\/img\/page\/phi-nanotof3\/pg_nanotof3_feature07_01en.png\" alt=\"Remote Access Connection Diagram\" width=\"700\" height=\"500\" loading=\"lazy\" decoding=\"async\"\/>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Options\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Options__head\">\n            <span class=\"p-phiNanoTof3Options__en\">Options<\/span>\n            <h2 class=\"p-phiNanoTof3Options__title\">Optional Accessories<\/h2>\n            <div class=\"p-phiNanoTof3Options__rule\"><\/div>\n        <\/div>\n        <ul class=\"p-phiNanoTof3Options__list\">\n            <li>Parallel Imaging MS\/MS<\/li>\n            <li>Ar Gas Cluster Ion Beam Gun (GCIB)<\/li>\n            <li>C60 Ion Gun<\/li>\n            <li>Cs Ion Gun<\/li>\n            <li>Ar\/ O2 Gas Gun<\/li>\n            <li>Hot\/Cold Sample Stage Module<\/li>\n            <li>High Temperature Sample Stage Module<\/li>\n            <li>Transfer Vessel<\/li>\n            <li>Oxygen Flood Module<\/li>\n            <li>Focused Ion Beam (FIB) Gun<\/li>\n            <li>Preparation Chamber<\/li>\n            <li>Various Special Holders<\/li>\n            <li>Off-line Data Reduction Software<\/li>\n            <li>Static SIMS Library<\/li>\n        <\/ul>\n        <a class=\"p-phiNanoTof3Feature__back\" href=\"https:\/\/stag.club-phi.ulvac-phi.com\/en\/products\/\">\u2190 Back to Product List<\/a>\n    <\/div>\n<\/section>\n\n<section class=\"p-phiNanoTof3Info\">\n    <div class=\"l-inner\">\n        <div class=\"p-phiNanoTof3Info__links\">\n            <div class=\"p-phiNanoTof3Info__col\">\n                <h4 class=\"p-phiNanoTof3Info__colTitle\">TOF-SIMS Related Information<\/h4>\n                <ul class=\"p-phiNanoTof3Info__list\">\n                    <li><a href=\"https:\/\/stag.club-phi.ulvac-phi.com\/surface-analysis\/tof-sims\/\">Surface Analysis Information: What is TOF-SIMS? \u2192<\/a><\/li>\n                    <li><a href=\"\/surface-analysis\/topics\/\">Surface Analysis Topics: About the TRIFT Analyzer \u2192<\/a><\/li>\n                    <li><a href=\"https:\/\/stag.club-phi.ulvac-phi.com\/surface-analysis\/applications\/\">Application \u2192<\/a><\/li>\n                    <li><a href=\"\/events\/?event_cat=events_report&#038;event_sort=event_date\">Event\uff1aEvent report \u2192<\/a><\/li>\n                <\/ul>\n            <\/div>\n        <\/div>\n    <\/div>\n<\/section>\n","protected":false},"excerpt":{"rendered":"<p>TRIFT Analyzer Triple Focusing Electrostatic Analyzer for Complex Sample Geometries TRIFT Analyzer for a Wide Range of Sample Geometries, Wide Bandpass Energy, and Wide Acquisition Angle In exactly the same mass will have different flight times in the analyzer. This is particularly noticeable for samples with height differences or uneven surfaces. The Triple Ion Focusing Time-of-flight (TRIFT) spectrometer is able to simultaneously compensate for differences in flight time caused by differences in energy and emission angle. This is a key feature of the TRIFT spectrometer, which achieves high mass resolution and high detection sensitivity, as well as imaging with reduced shadows as demonstrated in the examples below. Primary Ion Gun [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":459,"menu_order":40,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-394","page","type-page","status-publish","hentry"],"acf":[],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 4.9.9 - aioseo.com -->\n\t<meta name=\"description\" content=\"TRIFT Analyzer Triple Focusing Electrostatic Analyzer for Complex Sample Geometries TRIFT Analyzer for a Wide Range of Sample Geometries, Wide Bandpass Energy, and Wide Acquisition Angle In exactly the same mass will have different flight times in the analyzer. This is particularly noticeable for samples with height differences or uneven surfaces. The Triple Ion Focusing\" \/>\n\t<meta name=\"robots\" content=\"max-image-preview:large\" \/>\n\t<link rel=\"canonical\" href=\"https:\/\/www.ulvac-phi.com\/en\/products\/phi-nanotof3\/\" \/>\n\t<meta name=\"generator\" content=\"All in One SEO (AIOSEO) 4.9.9\" \/>\n\t\t<meta property=\"og:locale\" content=\"en_US\" \/>\n\t\t<meta property=\"og:site_name\" content=\"ULVAC PHI\u3000\u30a2\u30eb\u30d0\u30c3\u30af\u30fb\u30d5\u30a1\u30a4\u682a\u5f0f\u4f1a\u793e - \u8868\u9762\u5206\u6790\u88c5\u7f6e\uff08XPS\u30fbAES\u30fbTOF-SIMS\uff09\u30e1\u30fc\u30ab\u30fc\" \/>\n\t\t<meta property=\"og:type\" content=\"article\" \/>\n\t\t<meta property=\"og:title\" content=\"PHI nanoTOF 3+ - ULVAC PHI \u30a2\u30eb\u30d0\u30c3\u30af\u30fb\u30d5\u30a1\u30a4\u682a\u5f0f\u4f1a\u793e\" \/>\n\t\t<meta property=\"og:description\" content=\"TRIFT Analyzer Triple Focusing Electrostatic Analyzer for Complex Sample Geometries TRIFT Analyzer for a Wide Range of Sample Geometries, Wide Bandpass Energy, and Wide Acquisition Angle In exactly the same mass will have different flight times in the analyzer. 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This is particularly noticeable for samples with height differences or uneven surfaces. 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