{"id":14145,"date":"2026-07-28T00:08:57","date_gmt":"2026-07-27T16:08:57","guid":{"rendered":"https:\/\/sunhyings.com\/blog\/how-many-oxygen-sensors-does-a-car-have\/"},"modified":"2026-08-01T12:15:33","modified_gmt":"2026-08-01T04:15:33","slug":"how-many-oxygen-sensors-does-a-car-have","status":"publish","type":"post","link":"https:\/\/sunhyings.com\/fr\/blog\/how-many-oxygen-sensors-does-a-car-have\/","title":{"rendered":"Combien de capteurs d'oxyg\u00e8ne une voiture poss\u00e8de-t-elle ?"},"content":{"rendered":"<style>.sunhy-o2{--ink:#17232d;--blue:#123b5d;--orange:#b45309;--line:#d9e1e7;--soft:#f4f7f9;max-width:1120px;margin:auto;color:var(--ink);font-size:17px;line-height:1.72}.sunhy-o2 *{box-sizing:border-box}.sunhy-o2 .sh-hero{padding:34px 0 20px;border-bottom:1px solid var(--line)}.sunhy-o2 .sh-kicker{font-weight:700;color:var(--orange)}.sunhy-o2 .sh-lead{font-size:20px;max-width:900px}.sunhy-o2 nav{padding:18px 0}.sunhy-o2 nav a{display:inline-block;margin:0 16px 8px 0}.sunhy-o2 .sh-toc{background:var(--soft);padding:18px}.sunhy-o2 .sh-toc strong{display:block;margin-bottom:8px}.sunhy-o2 a{color:var(--blue)}.sunhy-o2 h2{font-size:30px;line-height:1.25;margin:42px 0 14px}.sunhy-o2 h3{font-size:22px}.sunhy-o2 .sh-answer,.sunhy-o2 .sh-cta{background:var(--soft);border-left:4px solid var(--orange);padding:22px;margin:24px 0}.sunhy-o2 table{width:100%;border-collapse:collapse;margin:20px 0}.sunhy-o2 th,.sunhy-o2 td{border:1px solid var(--line);padding:12px;text-align:left;vertical-align:top}.sunhy-o2 th{background:var(--soft)}.sunhy-o2 figure{margin:28px 0}.sunhy-o2 img{display:block;width:100%;height:auto}.sunhy-o2 figcaption{font-size:14px;color:#56636d;margin-top:8px}.sunhy-o2 .sh-flow{display:flex;gap:10px;align-items:center;flex-wrap:wrap;background:var(--soft);padding:18px}.sunhy-o2 .sh-flow span{background:#fff;border:1px solid var(--line);padding:8px 12px}.sunhy-o2 details{border-top:1px solid var(--line);padding:14px 0}.sunhy-o2 summary{font-weight:700;cursor:pointer}.sunhy-o2 .sh-byline{font-size:14px;color:#56636d}@media(max-width:700px){.sunhy-o2{font-size:16px}.sunhy-o2 h2{font-size:25px}.sunhy-o2 table{display:block;overflow-x:auto}.sunhy-o2 .sh-lead{font-size:18px}}.sunhy-page.sunhy-o2{padding-left:20px;padding-right:20px}.sunhy-page.sunhy-o2 .sunhy-toc{display:flex;flex-wrap:wrap;gap:8px 16px;align-items:center}.sunhy-page.sunhy-o2 .sunhy-toc strong{flex-basis:100%}.sunhy-page.sunhy-o2 .sunhy-table-wrap{width:100%;overflow-x:auto;-webkit-overflow-scrolling:touch;margin:20px 0}.sunhy-page.sunhy-o2 .sunhy-table{min-width:680px;margin:0}.sunhy-page.sunhy-o2 .sunhy-table th{background:#123b5d!important;color:#fff!important}.sunhy-page.sunhy-o2 .sunhy-figure{margin:28px 0}.sunhy-page.sunhy-o2 .sunhy-hero-figure{margin-top:24px}.sunhy-page.sunhy-o2 .sunhy-cta a{display:inline-flex;min-height:44px;align-items:center;padding:10px 14px;background:#123b5d;color:#fff;text-decoration:none}.sunhy-page.sunhy-o2 .sunhy-cta a:focus-visible{outline:3px solid #b45309;outline-offset:3px}@media(max-width:700px){.sunhy-page.sunhy-o2{padding-left:16px;padding-right:16px}.sunhy-page.sunhy-o2 .sunhy-table{min-width:620px}}<\/style><article class=\"sunhy-page sunhy-o2\" data-content-stage=\"11-final\" data-completion-status=\"complete-from-11\" data-internal-link-status=\"complete\" data-last-updated=\"2026-08-01\" data-image-status=\"complete\" data-product-line=\"automotive-components\" data-page-type=\"supporting-blog\" data-primary-keyword=\"how many oxygen sensors does a car have\" data-canonical=\"https:\/\/sunhyings.com\/blog\/how-many-oxygen-sensors-does-a-car-have\/\"><header class=\"sh-hero sunhy-hero\"><p class=\"sh-kicker\">Oxygen Sensor Technical Guide<\/p><p class=\"sh-lead\">Most modern vehicles use multiple oxygen sensors, but the exact count depends on engine banks, exhaust layout, catalysts, model year and emissions configuration.<\/p><p class=\"sh-byline\">Author: Sunhy \u00b7 Technical review: Sunhyings content team \u00b7 Last updated August 1, 2026<\/p><figure class=\"sunhy-figure sunhy-hero-figure\" data-image-slot=\"H01\" data-image-status=\"complete\"><img fetchpriority=\"high\" src=\"https:\/\/sunhyings.com\/wp-content\/uploads\/2026\/07\/how-many-oxygen-sensors-does-a-car-have-decision-checkpoints.webp\" width=\"1200\" height=\"900\" loading=\"eager\" fetchpriority=\"high\" decoding=\"async\" alt=\"Method for determining oxygen sensor count from engine banks catalysts and exhaust paths decision checkpoints\" title=\"Method for determining oxygen sensor count from engine banks catalysts and exhaust paths decision checkpoints\"><figcaption>Sensor count comes from the exact exhaust architecture, not cylinder count or a generic model rule. The checkpoints summarize the evidence to confirm before the next decision.<\/figcaption><\/figure><\/header><nav aria-label=\"Related oxygen sensor resources\"><a href=\"https:\/\/sunhyings.com\/blog\/oxygen-sensor-guide\/\">Complete oxygen sensor guide<\/a><a href=\"https:\/\/sunhyings.com\/blog\/upstream-vs-downstream-oxygen-sensor\/\">Upstream vs Downstream Oxygen Sensor: Key Differences<\/a><a href=\"https:\/\/sunhyings.com\/blog\/bank-1-sensor-1-vs-sensor-2\/\">Bank 1 Sensor 1 vs Sensor 2: O2 Sensor Positions<\/a><a href=\"https:\/\/sunhyings.com\/blog\/how-to-choose-oxygen-sensor\/\">How to Choose the Right Oxygen Sensor for Your Vehicle<\/a><a href=\"https:\/\/sunhyings.com\/technical-guides\/\">Browse technical guides<\/a><a href=\"https:\/\/sunhyings.com\/contact-us\/\">Submit fitment data<\/a><\/nav><nav class=\"sh-toc sunhy-toc\" aria-label=\"On this page\"><strong>On this page<\/strong><a href=\"#layouts\">Common layouts, without assuming exact fitment<\/a><a href=\"#bank\">Bank 1, Bank 2, Sensor 1 and Sensor 2<\/a><a href=\"#find\">Three reliable ways to find the exact count<\/a><a href=\"#code\">Why one code does not reveal the total count<\/a><a href=\"#replace\">Should all sensors be replaced together?<\/a><a href=\"#count-architecture\">Count exhaust-monitoring positions, not cylinders<\/a><a href=\"#single-bank-layout\">Single-bank layouts<\/a><a href=\"#two-bank-layout\">Two-bank layouts<\/a><a href=\"#count-by-vin\">Use VIN and build data correctly<\/a><a href=\"#count-by-code\">Why codes and scan-tool lists can mislead<\/a><a href=\"#physical-count\">Physical inspection without creating a safety risk<\/a><a href=\"#count-ordering\">Count is not enough to order parts<\/a><a href=\"#count-scenario\">Composite scenario: a catalog result is mistaken for quantity<\/a><a href=\"#count-record\">Create a position inventory<\/a><a href=\"#count-after-repair\">Verify the inventory after repair<\/a><a href=\"#count-no-universal-rule\">There is no universal sensor count by cylinder count<\/a><a href=\"#count-method\">Six-step method to determine the actual count<\/a><a href=\"#count-layouts\">Count sensors by monitored exhaust path<\/a><a href=\"#count-position-names\">Bank and Sensor names are identifiers, not a counting formula<\/a><a href=\"#count-not-identical\">More than one sensor does not mean more than one identical part<\/a><a href=\"#count-diagnostic-use\">Why count matters during diagnosis<\/a><a href=\"#count-case-three\">Composite case: a two-bank engine has three sensors<\/a><a href=\"#count-case-extra\">Composite parts case: model-level catalog misses an additional sensor<\/a><a href=\"#count-purchase-record\">Purchase record when more than one sensor is needed<\/a><a href=\"#count-emissions-boundary\">Never reduce the count by defeating the system<\/a><a href=\"#count-physical-inspection\">Physical inspection checklist for confirming the count<\/a><a href=\"#count-kit-risk\">Why &#8220;complete sensor kits&#8221; need position-by-position evidence<\/a><a href=\"#count-repair-scope\">Decide how many sensors to replace, not only how many exist<\/a><a href=\"#count-fleet-catalog\">Fleet and distributor control for vehicles with several positions<\/a><a href=\"#count-return-analysis\">Return analysis when the claimed count or kit is wrong<\/a><a href=\"#count-conflict-resolution\">When sources disagree on the sensor count<\/a><\/nav><section class=\"sh-answer sunhy-quick-answer\"><h2 id=\"quick-answer\">Quick answer<\/h2><p>A modern car commonly has two or four oxygen sensors, but there is no count that applies to every vehicle. A single-bank engine often has at least one sensor before and one after the catalyst. A V engine with two monitored banks often has an upstream and downstream sensor for each bank. Additional catalysts, split exhaust systems and emissions variants can change the number.<\/p><\/section>\n      <h2 id=\"layouts\">Common layouts, without assuming exact fitment<\/h2><div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Generic layout<\/th><th>Common count<\/th><th>Reason to verify<\/th><\/tr><\/thead><tbody><tr><td>Single bank, one monitored catalyst<\/td><td>Often 2<\/td><td>Some older or special systems use a different arrangement.<\/td><\/tr><tr><td>Two banks, one catalyst path per bank<\/td><td>Often 4<\/td><td>Shared or additional catalysts can change the count.<\/td><\/tr><tr><td>Older pre-OBD-II application<\/td><td>May use 1 or another layout<\/td><td>Model year and market rules vary.<\/td><\/tr><tr><td>Complex multi-catalyst exhaust<\/td><td>Can exceed 4<\/td><td>Service diagrams and VIN-based catalogs are required.<\/td><\/tr><\/tbody><\/table><\/div>\n      <p>Engine cylinder count alone is not enough. A four-cylinder can have more than two sensors, and a V6 or V8 does not automatically have exactly four. Exhaust routing and monitoring strategy determine the installed positions.<\/p>\n      <h2 id=\"bank\">Bank 1, Bank 2, Sensor 1 and Sensor 2<\/h2><p>Bank 1 is the side containing cylinder 1; Bank 2 is the other bank on engines with two banks. Sensor 1 is commonly before the catalyst and Sensor 2 after it for that bank. Driver-side and passenger-side shortcuts are unreliable because engine orientation differs.<\/p>\n      <figure class=\"sunhy-figure\" data-image-slot=\"B01\" data-image-status=\"complete\"><img loading=\"lazy\" src=\"https:\/\/sunhyings.com\/wp-content\/uploads\/2026\/07\/oxygen-sensor-bank-sensor-upstream-downstream-location-1.webp\" width=\"1200\" height=\"900\" loading=\"lazy\" decoding=\"async\" alt=\"Generic Bank 1 Bank 2 Sensor 1 Sensor 2 oxygen sensor layout\" title=\"Generic Bank 1 Bank 2 Sensor 1 Sensor 2 oxygen sensor layout\"><figcaption>A generic four-sensor layout. It is an identification aid, not a vehicle-specific fitment diagram.<\/figcaption><\/figure>\n      <h2 id=\"find\">Three reliable ways to find the exact count<\/h2><ol><li>Use the VIN and engine information in current manufacturer service information.<\/li><li>Review the emissions label and an application catalog that distinguishes market and emissions package.<\/li><li>Inspect the complete exhaust system only when the vehicle is cool and safely supported, tracing every connector and sensor position.<\/li><\/ol>\n      <h2 id=\"code\">Why one code does not reveal the total count<\/h2><p>A code such as Bank 1 Sensor 2 identifies one monitored circuit, not every sensor installed on the vehicle. Scan tools may also display unsupported data identifiers. Confirm the engine and exhaust diagram before concluding that a displayed position physically exists.<\/p>\n      <h2 id=\"replace\">Should all sensors be replaced together?<\/h2><p>Not automatically. Diagnose the identified fault, inspect common power or ground circuits, and consider age and access only as planning factors. Replacing functioning sensors adds cost and can introduce connector, thread or routing problems without fixing the root cause.<\/p>\n    <h2 id=\"count-architecture\">Count exhaust-monitoring positions, not cylinders<\/h2>\n    <p>Sensor count follows the exhaust and catalyst architecture. Cylinder count can suggest whether an engine has one or two banks, but it does not show whether banks merge before a catalyst, whether each bank has separate catalysts or whether additional monitored catalysts are installed. Start with an exhaust diagram, not a rule such as \u201cfour-cylinder equals two sensors.\u201d<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Architecture question<\/th><th>Why it changes count<\/th><th>Evidence source<\/th><\/tr><\/thead><tbody>\n    <tr><td>How many engine banks?<\/td><td>Each bank may need an upstream feedback position<\/td><td>Engine cylinder numbering\/service data<\/td><\/tr>\n    <tr><td>Where do exhaust paths merge?<\/td><td>Shared paths can change sensor and catalyst arrangement<\/td><td>Exhaust diagram<\/td><\/tr>\n    <tr><td>How many monitored catalysts?<\/td><td>Each monitored path may have downstream sensing<\/td><td>Emissions\/service information<\/td><\/tr>\n    <tr><td>Are there regional variants?<\/td><td>Federal, California or other packages may differ<\/td><td>Emissions label and VIN-based catalog<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"single-bank-layout\">Single-bank layouts<\/h2>\n    <h3>One upstream and one downstream position<\/h3>\n    <p>A single-bank engine with one monitored catalyst commonly has two sensors: Sensor 1 before the catalyst and Sensor 2 after it. This is a common pattern, not a universal count. Older systems, close-coupled plus underfloor catalysts or market-specific configurations can differ.<\/p>\n    <h3>Additional catalyst stages<\/h3>\n    <p>An engine can have more than one catalyst stage or additional sensing positions. The label \u201cSensor 3\u201d or manufacturer-specific naming requires the exact diagram. Do not assume that every sensor after the first catalyst is interchangeable.<\/p>\n\n    <h2 id=\"two-bank-layout\">Two-bank layouts<\/h2>\n    <h3>Separate catalyst paths<\/h3>\n    <p>A V engine with one upstream and one downstream sensor per bank commonly has four. Bank 1 is the side containing cylinder 1, not a universal driver or passenger side. Each circuit must be matched to its physical connector.<\/p>\n    <h3>Merged or complex exhaust paths<\/h3>\n    <p>Banks can merge, catalysts can be shared or additional catalysts can be monitored. As a result, a V6 or V8 may not have exactly four sensors. Model year, engine and emissions configuration control the answer.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Generic pattern<\/th><th>Possible positions<\/th><th>Do not assume<\/th><\/tr><\/thead><tbody>\n    <tr><td>Single bank \/ one catalyst<\/td><td>B1S1 and B1S2<\/td><td>Every inline engine has only two<\/td><\/tr>\n    <tr><td>Two banks \/ separate catalysts<\/td><td>B1S1, B1S2, B2S1, B2S2<\/td><td>Every V engine has exactly four<\/td><\/tr>\n    <tr><td>Multiple catalyst stages<\/td><td>Additional manufacturer-defined positions<\/td><td>Sensor 3 naming is identical across brands<\/td><\/tr>\n    <tr><td>Older\/market-specific system<\/td><td>Fewer or different positions<\/td><td>Modern OBD layout applies retroactively<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-by-vin\">Use VIN and build data correctly<\/h2>\n    <p>The VIN helps identify vehicle, engine and configuration when decoded by current manufacturer or catalog data. It is not a self-contained sensor-count answer. Production date or VIN breakpoint may separate exhaust variants. Record the sales market and emissions label because a catalog may otherwise return the wrong regional arrangement.<\/p>\n\n    <h2 id=\"count-by-code\">Why codes and scan-tool lists can mislead<\/h2>\n    <p>A code naming Bank 1 Sensor 2 proves that the control system monitors that named circuit; it does not list every installed sensor. Generic scan tools may display unsupported PIDs or labels for positions not used by the vehicle. Confirm data activity and service documentation before turning the menu into a physical count.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Evidence<\/th><th>Useful for<\/th><th>Limitation<\/th><\/tr><\/thead><tbody>\n    <tr><td>DTC description<\/td><td>Identifying one circuit\/monitor path<\/td><td>Does not enumerate all sensors<\/td><\/tr>\n    <tr><td>Scan-tool PID list<\/td><td>Viewing supported operating data<\/td><td>Generic list can include unsupported labels<\/td><\/tr>\n    <tr><td>Parts catalog<\/td><td>Finding candidates by application<\/td><td>May show alternatives or supersessions, not quantity<\/td><\/tr>\n    <tr><td>Service exhaust diagram<\/td><td>Mapping every physical position<\/td><td>Must match engine, market and build<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"physical-count\">Physical inspection without creating a safety risk<\/h2>\n    <p>Inspect only when the exhaust is cool and the vehicle is supported with approved equipment. Trace each sensor body to its connector and note whether it is before or after a catalyst. Heat shields, undertrays and close-coupled catalysts can hide positions. Do not crawl under a vehicle supported only by a jack, pull on wiring or confuse exhaust-temperature sensors with oxygen sensors.<\/p>\n\n    <h2 id=\"count-ordering\">Count is not enough to order parts<\/h2>\n    <p>Even when the vehicle has four sensors, the four parts may not be identical. Upstream positions can use wideband\/A\/F designs while downstream positions use narrowband designs; Bank 1 and Bank 2 leads or clips can differ. Verify the OE reference, exact position, technology, connector and cable for each replacement.<\/p>\n\n    <h2 id=\"count-scenario\">Composite scenario: a catalog result is mistaken for quantity<\/h2>\n    <p><strong>Composite parts scenario:<\/strong> a catalog returns three part-number options for one model. The buyer assumes the vehicle has three sensors. The service diagram shows four physical positions, with one part number used in two positions and different numbers for the others. This composite example shows why catalog-result count and installed quantity are separate questions.<\/p>\n\n    <h2 id=\"count-record\">Create a position inventory<\/h2>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Record field<\/th><th>Example format<\/th><th>Purpose<\/th><\/tr><\/thead><tbody>\n    <tr><td>Position<\/td><td>Bank 1 Sensor 1<\/td><td>Separates physical circuits<\/td><\/tr>\n    <tr><td>Catalyst relation<\/td><td>Pre-catalyst<\/td><td>Confirms upstream\/downstream role<\/td><\/tr>\n    <tr><td>OE number<\/td><td>Read or verified catalog value<\/td><td>Anchors part selection<\/td><\/tr>\n    <tr><td>Connector\/lead<\/td><td>Photo, pins, length and clips<\/td><td>Prevents interface mismatch<\/td><\/tr>\n    <tr><td>Diagnostic status<\/td><td>Tested \/ not tested<\/td><td>Avoids replacing all sensors by count alone<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n    <p>Replace only the position supported by diagnosis unless the vehicle procedure or a documented repair plan justifies more work. Age and shared access can inform planning, but they do not prove that every sensor has failed.<\/p>\n    <h2 id=\"count-after-repair\">Verify the inventory after repair<\/h2>\n    <p>When a sensor is replaced, update the position inventory with the installed part number, lot or date code, connector\/routing photos and diagnostic result. Confirm that every retained connector is locked and every cable remains clear of hot or moving parts. Work near one sensor can disturb an adjacent harness, especially where bank connectors share clips or a heat shield.<\/p>\n    <p>Use scan data to confirm the repaired physical position, not to recount the system from scratch. Observe the named circuit under valid conditions and complete the applicable monitor procedure. If a different position sets a code afterward, diagnose it independently instead of concluding that all sensors should have been replaced together.<\/p>\n    <h3>Quantity for distributor orders<\/h3>\n    <p>Installed quantity per vehicle and purchase quantity are different fields. A distributor forecast must account for application population, position-specific demand, returns and packaging, not multiply one generic sensor by the count. Approve each part number&#8217;s coverage and position before building a kit or paired offer.<\/p>\n    <p>Kit descriptions should list every included position and part number and state the engine, market and emissions scope. \u201cComplete four-sensor kit\u201d is unsafe when the count or interchangeability has not been confirmed. A missing or extra sensor in a kit is a catalog-control problem, not an installation workaround.<\/p>\n  \n    <h2 id=\"count-no-universal-rule\">There is no universal sensor count by cylinder count<\/h2>\n    <p>A four-cylinder engine can have two sensors in a simple single-catalyst layout, but additional catalyst stages or market-specific emissions systems can change the count. A V engine can have separate upstream and downstream sensors for each bank, yet merged exhaust or different monitor architecture can change that pattern. Cylinder count is an orientation clue, not a purchase quantity.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Vehicle description<\/th><th>Common assumption<\/th><th>Why verification is still required<\/th><\/tr><\/thead><tbody>\n      <tr><td>Inline four-cylinder<\/td><td>One upstream and one downstream<\/td><td>May have close-coupled plus underfloor catalyst or extra sensor<\/td><\/tr>\n      <tr><td>V6\/V8 with two banks<\/td><td>Four sensors<\/td><td>Exhaust paths can merge; catalyst stages and market variants differ<\/td><\/tr>\n      <tr><td>Turbocharged engine<\/td><td>Two sensors near turbo\/catalyst<\/td><td>Packaging, wideband feedback and aftertreatment layout vary<\/td><\/tr>\n      <tr><td>Hybrid vehicle<\/td><td>Same count as non-hybrid engine<\/td><td>Engine family, calibration and exhaust system may differ<\/td><\/tr>\n      <tr><td>Same model\/year<\/td><td>One count for all trims<\/td><td>Engine, drivetrain, emissions market and build breakpoint can differ<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-method\">Six-step method to determine the actual count<\/h2>\n    <ol>\n      <li><strong>Identify the exact vehicle.<\/strong> Record VIN, year, make, model, engine and sales\/emissions market.<\/li>\n      <li><strong>Find the engine bank layout.<\/strong> Determine whether there is one bank or multiple banks and locate cylinder 1.<\/li>\n      <li><strong>Trace each exhaust path.<\/strong> Identify manifolds, merge points, catalyst stages and outlet paths.<\/li>\n      <li><strong>Locate every sensor position.<\/strong> Use the component-location diagram and wiring connector list, not visibility alone.<\/li>\n      <li><strong>Reconcile scan\/catalog data.<\/strong> Match Bank\/Sensor labels and OE\/application records to physical locations.<\/li>\n      <li><strong>Count only verified positions.<\/strong> Record technology and part identity for each; do not assume one SKU fits all.<\/li>\n    <\/ol>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Source<\/th><th>What it confirms<\/th><th>Limitation<\/th><\/tr><\/thead><tbody>\n      <tr><td>OEM service component diagram<\/td><td>Physical positions and exhaust relationships<\/td><td>Must match exact engine\/market<\/td><\/tr>\n      <tr><td>Wiring diagram<\/td><td>Sensor circuits, connectors and shared supplies<\/td><td>May require separate location view<\/td><\/tr>\n      <tr><td>Parts catalog<\/td><td>Candidate OE\/application mappings<\/td><td>Can contain supersessions or data conflicts<\/td><\/tr>\n      <tr><td>VIN\/build\/emissions label<\/td><td>Vehicle configuration<\/td><td>Does not alone draw exhaust layout<\/td><\/tr>\n      <tr><td>Physical inspection<\/td><td>Installed bungs, sensors, routes and prior repairs<\/td><td>Installed system may have been modified or repaired incorrectly<\/td><\/tr>\n      <tr><td>Scan data\/DTC list<\/td><td>Controller-recognized bank\/sensor channels<\/td><td>No-code sensor can still exist; labels need physical mapping<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-layouts\">Count sensors by monitored exhaust path<\/h2>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Generic layout<\/th><th>Possible sensor roles<\/th><th>Counting caution<\/th><\/tr><\/thead><tbody>\n      <tr><td>One bank, one catalyst<\/td><td>Sensor 1 before and Sensor 2 after catalyst<\/td><td>Confirm no additional downstream stage<\/td><\/tr>\n      <tr><td>Two banks, two catalysts<\/td><td>B1S1\/B1S2 and B2S1\/B2S2<\/td><td>Do not assign sides without cylinder numbering<\/td><\/tr>\n      <tr><td>Two banks merge before one catalyst<\/td><td>Bank-specific upstream plus shared downstream<\/td><td>Bank count does not equal downstream count<\/td><\/tr>\n      <tr><td>Close-coupled and underfloor catalysts<\/td><td>Sensor before\/between\/after stages<\/td><td>Sensor 3 or manufacturer-specific naming may appear<\/td><\/tr>\n      <tr><td>Dual exhaust after shared engine path<\/td><td>Monitoring depends on catalyst architecture<\/td><td>Tailpipe count does not define sensor count<\/td><\/tr>\n      <tr><td>Modified exhaust<\/td><td>Installed count may differ from designed system<\/td><td>Restore legal configuration; do not normalize deletes\/spacers<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-position-names\">Bank and Sensor names are identifiers, not a counting formula<\/h2>\n    <p>Bank 1 contains cylinder 1. Sensor 1 is usually before the monitored catalyst; Sensor 2 is usually after it. Additional sensors may be named Sensor 3 or represented with manufacturer-specific terminology. A list containing B1S1 and B1S2 does not prove there is a Bank 2, and a V engine does not prove both banks use separate downstream sensors.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Identifier<\/th><th>Typical meaning<\/th><th>Question still open<\/th><\/tr><\/thead><tbody>\n      <tr><td>B1S1<\/td><td>Pre-catalyst sensor on cylinder 1 bank<\/td><td>Technology, connector and exact physical route<\/td><\/tr>\n      <tr><td>B1S2<\/td><td>Post-catalyst sensor on Bank 1 path<\/td><td>Which catalyst stage and part identity<\/td><\/tr>\n      <tr><td>B2S1<\/td><td>Pre-catalyst sensor on opposite bank<\/td><td>Physical side and interchangeability with B1S1<\/td><\/tr>\n      <tr><td>B2S2<\/td><td>Post-catalyst sensor on Bank 2 path<\/td><td>Whether exhaust remains bank-separated<\/td><\/tr>\n      <tr><td>Sensor 3<\/td><td>Additional downstream\/intermediate position<\/td><td>Exact manufacturer layout and role<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-not-identical\">More than one sensor does not mean more than one identical part<\/h2>\n    \n  <figure class=\"sunhy-figure\" data-image-slot=\"P06\" data-image-status=\"complete\">\n    <img loading=\"lazy\" src=\"https:\/\/sunhyings.com\/wp-content\/uploads\/2026\/07\/direct-fit-oxygen-sensor-long-lead.jpg\" width=\"1206\" height=\"905\" loading=\"lazy\" decoding=\"async\" alt=\"Direct-fit oxygen sensor with a long protected cable, keyed connector and routing clips\" title=\"Direct-fit oxygen sensor with a long protected cable, keyed connector and routing clips\">\n    <figcaption>A correct sensing element is not enough: lead length, connector keying and routing provisions must match the exact exhaust position.<\/figcaption>\n  <\/figure>\n    <p>Upstream positions may use wideband\/A\/F technology while downstream positions use narrowband. Bank 1 and Bank 2 parts can differ in lead length, connector keying or clips even when sensing strategy is similar. A four-sensor vehicle can therefore require several part numbers. Verify each position separately.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Comparison<\/th><th>Evidence required for interchangeability<\/th><\/tr><\/thead><tbody>\n      <tr><td>Technology\/electrical<\/td><td>Same specified sensing strategy, heater and circuit<\/td><\/tr>\n      <tr><td>Application position<\/td><td>Current catalog explicitly approves both positions<\/td><\/tr>\n      <tr><td>Connector\/pins<\/td><td>Keying, terminals and pin assignment agree<\/td><\/tr>\n      <tr><td>Lead\/route<\/td><td>Length, insulation, clips and strain relief suit both routes<\/td><\/tr>\n      <tr><td>Thread\/shield<\/td><td>Mechanical and exposure geometry match specification<\/td><\/tr>\n      <tr><td>Validation<\/td><td>Part-level evidence covers claimed application positions<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-diagnostic-use\">Why count matters during diagnosis<\/h2>\n    <p>A code naming Bank 2 Sensor 1 is useful only if the physical layout and connector are mapped correctly. Shared heater supplies can affect multiple sensors. Crossed connectors after repair can make scan data appear to belong to the wrong bank. Counting and mapping the complete system prevents the technician from testing the first visible sensor.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Diagnostic pattern<\/th><th>Count\/map question<\/th><th>Next check<\/th><\/tr><\/thead><tbody>\n      <tr><td>Two heater codes<\/td><td>Do sensors share power, fuse or ground\/control?<\/td><td>Loaded common-circuit test<\/td><\/tr>\n      <tr><td>Opposite-bank response<\/td><td>Are connectors crossed or labels mis-mapped?<\/td><td>Wiring\/location reconciliation<\/td><\/tr>\n      <tr><td>P0420\/P0430<\/td><td>Which sensors monitor the named catalyst path?<\/td><td>Complete bank engine\/exhaust\/catalyst diagnosis<\/td><\/tr>\n      <tr><td>One missing scan parameter<\/td><td>Is sensor\/channel supported and enabled?<\/td><td>Service data and tool capability<\/td><\/tr>\n      <tr><td>Repeated wrong-part return<\/td><td>Was quantity used instead of position identity?<\/td><td>Audit application rows and order fields<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-case-three\">Composite case: a two-bank engine has three sensors<\/h2>\n    <p><strong>Composite diagnostic scenario:<\/strong> a technician expects four sensors because the engine has two banks. The exact exhaust diagram shows two bank-specific upstream sensors and one downstream sensor after the exhaust merges. The order is changed from a guessed B2S2 to the verified shared post-catalyst position.<\/p>\n    <p>This is a generic composite pattern, not a universal three-sensor rule and not a Sunhyings customer case.<\/p>\n\n    <h2 id=\"count-case-extra\">Composite parts case: model-level catalog misses an additional sensor<\/h2>\n    <p><strong>Composite parts scenario:<\/strong> a model\/year search returns two sensors, but the vehicle emissions configuration uses an additional catalyst-stage sensor. VIN\/build and service data reveal the extra position and a different connector. The team splits the application row rather than shipping a two-sensor &#8220;kit.&#8221;<\/p>\n    <p>The case shows why model\/year and cylinder count cannot control quantity. It is composite and contains no verified make\/model claim.<\/p>\n\n    <h2 id=\"count-purchase-record\">Purchase record when more than one sensor is needed<\/h2>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Position<\/th><th>Record separately<\/th><\/tr><\/thead><tbody>\n      <tr><td>Vehicle application<\/td><td>VIN\/YMME, engine, market\/emissions and build breakpoint<\/td><\/tr>\n      <tr><td>Location<\/td><td>Bank, Sensor number and catalyst-relative position<\/td><\/tr>\n      <tr><td>Part identity<\/td><td>OE candidate, supplier part and revision<\/td><\/tr>\n      <tr><td>Technology<\/td><td>Narrowband, titania or wideband\/A\/F plus electrical requirements<\/td><\/tr>\n      <tr><td>Interface<\/td><td>Connector, pins, lead, clips, thread and shield<\/td><\/tr>\n      <tr><td>Reason<\/td><td>Diagnostic evidence for replacing that position<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n    <p>Do not replace every sensor solely because one code exists or one sensor failed. Diagnose and approve each position. Sunhyings can review a position-by-position part list for sourcing feasibility; exact fitment, stock and commercial terms require confirmation.<\/p>\n\n    <h2 id=\"count-emissions-boundary\">Never reduce the count by defeating the system<\/h2>\n    <p>A missing sensor, simulator, spacer, delete or software-suppressed monitor does not establish the correct designed count. Use service information to restore the legal configuration. &#8220;Off-road use&#8221; is not a universal exemption, and bypass instructions are outside responsible diagnosis and procurement.<\/p>\n    <h2 id=\"count-physical-inspection\">Physical inspection checklist for confirming the count<\/h2>\n    <p>Inspect only with the exhaust cool and the vehicle supported at approved points when underbody access is required. Use lighting and a camera or mirror rather than placing hands near an uncertain hot surface. Count sensor bodies and bungs, then follow each lead to its connector so an unused bung, temperature sensor or other exhaust device is not misidentified.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Inspection point<\/th><th>What to capture<\/th><th>Why<\/th><\/tr><\/thead><tbody>\n      <tr><td>Manifold outlets<\/td><td>Each bank\/path and pre-catalyst sensor<\/td><td>Establishes upstream count<\/td><\/tr>\n      <tr><td>Catalyst stages<\/td><td>Inlet\/outlet and sensor relationship<\/td><td>Separates Sensor 2 from additional positions<\/td><\/tr>\n      <tr><td>Merge\/split points<\/td><td>Where bank-specific exhaust becomes shared<\/td><td>Explains shared downstream count<\/td><\/tr>\n      <tr><td>Connectors and clips<\/td><td>Lead destination and branch identity<\/td><td>Confirms physical-to-electrical mapping<\/td><\/tr>\n      <tr><td>Unused bungs\/modifications<\/td><td>Caps, welds, spacers or missing devices<\/td><td>May indicate prior exhaust change<\/td><\/tr>\n      <tr><td>Labels\/part marks<\/td><td>Readable number with position context<\/td><td>Supports separate part identity<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n    <p>Do not infer that every threaded exhaust device is an oxygen sensor. Exhaust-temperature and NOx sensors can have different functions and circuits. Verify component identity from service information and connector\/wiring data.<\/p>\n\n    <h2 id=\"count-kit-risk\">Why &#8220;complete sensor kits&#8221; need position-by-position evidence<\/h2>\n    <p>A kit advertised for a vehicle can be convenient only when it lists every included part, exact position and controlled application coverage. A quantity of two or four is not a technical specification. One incorrect sensor in a kit can create a forced connector, wrong lead route or unnecessary replacement even if the other parts fit.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Kit field<\/th><th>Required content<\/th><th>Reject or hold condition<\/th><\/tr><\/thead><tbody>\n      <tr><td>Application<\/td><td>YMME, engine, market\/emissions and breakpoint<\/td><td>Model\/year only<\/td><\/tr>\n      <tr><td>Position map<\/td><td>Every Bank\/Sensor and catalyst relationship<\/td><td>&#8220;Front and rear set&#8221; without bank detail<\/td><\/tr>\n      <tr><td>Part list<\/td><td>Unique SKU\/revision for each position<\/td><td>Loose unlabeled sensors<\/td><\/tr>\n      <tr><td>Technology<\/td><td>Part-specific narrowband\/wideband\/titania data<\/td><td>All sensors treated as one type<\/td><\/tr>\n      <tr><td>Interface<\/td><td>Connector, lead, clips, thread and shield by position<\/td><td>Installer expected to adapt<\/td><\/tr>\n      <tr><td>Reason for replacement<\/td><td>Diagnostic basis for each changed position<\/td><td>Replace all solely because one code exists<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-repair-scope\">Decide how many sensors to replace, not only how many exist<\/h2>\n    <p>The vehicle may contain several sensors while evidence supports replacing only one. Replace additional sensors only when their own condition, access strategy or a documented service recommendation justifies it. Do not claim that all sensors have the same life or must be changed as a set. When shared access could affect labor, disclose the trade-off without turning convenience into a diagnosis.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Decision<\/th><th>Evidence<\/th><th>Boundary<\/th><\/tr><\/thead><tbody>\n      <tr><td>Replace one named sensor<\/td><td>Position-specific failure and exact fitment<\/td><td>Verify other shared circuits\/root causes<\/td><\/tr>\n      <tr><td>Replace multiple sensors<\/td><td>Independent failures or supported repair scope<\/td><td>No universal paired-replacement rule<\/td><\/tr>\n      <tr><td>Repair harness\/shared supply<\/td><td>Common circuit fault affects several sensors<\/td><td>New sensors cannot repair vehicle power\/control<\/td><\/tr>\n      <tr><td>Correct engine\/exhaust condition<\/td><td>Sensors report a real shared condition<\/td><td>Do not replace responsive sensors<\/td><\/tr>\n      <tr><td>Continue diagnosis<\/td><td>Count\/position or test evidence conflicts<\/td><td>Do not order to test the hypothesis<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n\n    <h2 id=\"count-fleet-catalog\">Fleet and distributor control for vehicles with several positions<\/h2>\n    <p>Store one row per vehicle configuration, sensor position and approved part. Preserve source, revision and supersession history. A catalog architecture that stores only vehicle plus quantity cannot distinguish a wrong bank, lead or technology and cannot explain which row caused a return.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Data field<\/th><th>Purpose<\/th><\/tr><\/thead><tbody>\n      <tr><td>Vehicle\/configuration key<\/td><td>Separates engine, emissions market and breakpoint<\/td><\/tr>\n      <tr><td>Position key<\/td><td>Defines Bank\/Sensor and catalyst stage<\/td><\/tr>\n      <tr><td>Approved part\/revision<\/td><td>Prevents family-level substitution<\/td><\/tr>\n      <tr><td>Source\/revision<\/td><td>Supports audits and corrections<\/td><\/tr>\n      <tr><td>Interface\/technology<\/td><td>Checks physical and electrical consistency<\/td><\/tr>\n      <tr><td>Status<\/td><td>Approved, blocked, superseded or under review<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n    <p>When an application correction changes the count, review published content, open orders, labels, kits and inventory together. Fixing only the web listing leaves warehouse and customer-service errors active.<\/p>\n\n    <h2 id=\"count-return-analysis\">Return analysis when the claimed count or kit is wrong<\/h2>\n    <ul><li>Preserve order, catalog revision, labels, part and lot\/date.<\/li><li>Capture exact VIN\/YMME, engine and emissions configuration.<\/li><li>Provide exhaust-layout and connector-route photographs.<\/li><li>List which positions installed, conflicted or were not present.<\/li><li>Separate catalog, packing, picking, product and vehicle-modification causes.<\/li><li>Block affected rows until the evidence conflict is resolved.<\/li><\/ul>\n    <p>A distributor should not close the case by refund alone. Correct the source data and review whether other customers or inventory are affected. A buyer should not modify the harness or install a spacer to accommodate an incorrect kit because that destroys evidence and can compromise emissions compliance.<\/p>\n    <h2 id=\"count-conflict-resolution\">When sources disagree on the sensor count<\/h2>\n    <p>Place the application in a blocked state and identify the exact configuration each source covers. Check VIN\/build data, engine code, emissions label, catalyst layout, service-document revision and installed-system history. A physical count can reveal what is present, but it may reflect a prior modified or incorrect exhaust; the legal designed configuration remains the target.<\/p>\n    <div class=\"sunhy-table-wrap\"><table class=\"sunhy-table\" aria-label=\"Technical comparison and decision table\"><thead><tr><th>Conflict<\/th><th>Resolution evidence<\/th><\/tr><\/thead><tbody>\n      <tr><td>Catalog says two, service diagram shows three<\/td><td>Confirm engine\/emissions applicability and catalog revision<\/td><\/tr>\n      <tr><td>Vehicle has fewer than designed<\/td><td>Inspect modification history and restore compliant configuration<\/td><\/tr>\n      <tr><td>Two diagrams use different Sensor numbers<\/td><td>Use exact document\/calibration and catalyst relationship<\/td><\/tr>\n      <tr><td>Scan tool lists a channel with no visible sensor<\/td><td>Check tool support, hidden location and wiring diagram<\/td><\/tr>\n      <tr><td>OE and aftermarket quantity differ<\/td><td>Review supersession, kit composition and each position row<\/td><\/tr>\n    <\/tbody><\/table><\/div>\n    <p>Record the final count, source and date. Do not publish the number as universal for a model family. The correct answer belongs to the exact vehicle\/engine\/emissions configuration and exhaust design.<\/p>\n    <h3>Count, position and part number are separate fields<\/h3>\n    <p>The number tells how many devices exist; position tells where each serves; part number tells what fits that position. Keep all three in the repair and purchasing record. Converting one field into another is the main source of oversimplified answers.<\/p>\n    <p>If the count is needed only to buy one replacement, do not order the full quantity. Identify and diagnose the named position, then select its verified part. Count supports system understanding; it is not a blanket replacement recommendation.<\/p>\n  <section class=\"sh-cta sunhy-cta\"><h2 id=\"request\">Prepare a fitment or sourcing request<\/h2><p>Send the OE number, year\/make\/model, engine or VIN details, market and emissions package, exact bank\/sensor position, connector and old-part photos, quantity and any packaging or approval requirements. Sunhyings will review the supplied data for capability and sourcing feasibility; fitment is not confirmed until application evidence is matched.<\/p><p><a href=\"https:\/\/sunhyings.com\/contact-us\/\">Contact Sunhyings with your fitment data<\/a><\/p><\/section><section><h2 id=\"faq\">Frequently asked questions<\/h2><details><summary>Do all cars have two oxygen sensors?<\/summary><p>No. Two is common for a single-bank system with one monitored catalyst, but vehicle layouts vary.<\/p><\/details><details><summary>Does a V6 always have four O2 sensors?<\/summary><p>No. Four is common for two-bank systems, but shared or additional catalysts and emissions variants can change the count.<\/p><\/details><details><summary>Can the VIN tell me how many sensors are fitted?<\/summary><p>The VIN helps identify the engine and configuration when used with current service or catalog data; the VIN string alone must be decoded correctly.<\/p><\/details><details><summary>Is Bank 1 always the driver side?<\/summary><p>No. Bank 1 is the bank containing cylinder 1, and its physical side varies by engine and installation.<\/p><\/details><details><summary>Should I replace every sensor if one fails?<\/summary><p>Not by default. Diagnose the affected circuit and replace only parts supported by evidence and service guidance.<\/p><\/details><\/section><section><h2 id=\"references\">Technical references<\/h2><ul><li><a href=\"https:\/\/www.denso-am.eu\/products\/engine-management-systems\/lambda-sensors\" target=\"_blank\" rel=\"nofollow noopener noreferrer\">DENSO lambda sensor operation, installation and fault finding<\/a><\/li><li><a href=\"https:\/\/www.ngkntk.com\/products\/oxygen-lambda-sensors\/\" target=\"_blank\" rel=\"nofollow noopener noreferrer\">NTK \/ Niterra oxygen and lambda sensors<\/a><\/li><li><a href=\"https:\/\/www.boschaftermarket.com\/xrm\/media\/images\/country_specific\/sg\/services_and_support_6\/downloads_18\/lambda_sensors.pdf\" target=\"_blank\" rel=\"nofollow noopener noreferrer\">Bosch lambda sensor technology, diagnosis and replacement<\/a><\/li><li><a href=\"https:\/\/www.epa.gov\/sites\/default\/files\/2020-12\/documents\/tamperinganddefeatdevices-enfalert.pdf\" target=\"_blank\" rel=\"nofollow noopener noreferrer\">U.S. EPA enforcement alert on tampering and defeat devices<\/a><\/li><\/ul><p class=\"sh-byline\">References accessed July 28, 2026. Vehicle service information takes priority for application-specific diagnosis and installation.<\/p><\/section><\/article><script type=\"application\/ld+json\">{\"@context\":\"https:\/\/schema.org\",\"@type\":\"FAQPage\",\"mainEntity\":[{\"@type\":\"Question\",\"name\":\"Do all cars have two oxygen sensors?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"No. Two is common for a single-bank system with one monitored catalyst, but vehicle layouts vary.\"}},{\"@type\":\"Question\",\"name\":\"Does a V6 always have four O2 sensors?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"No. Four is common for two-bank systems, but shared or additional catalysts and emissions variants can change the count.\"}},{\"@type\":\"Question\",\"name\":\"Can the VIN tell me how many sensors are fitted?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"The VIN helps identify the engine and configuration when used with current service or catalog data; the VIN string alone must be decoded correctly.\"}},{\"@type\":\"Question\",\"name\":\"Is Bank 1 always the driver side?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"No. Bank 1 is the bank containing cylinder 1, and its physical side varies by engine and installation.\"}},{\"@type\":\"Question\",\"name\":\"Should I replace every sensor if one fails?\",\"acceptedAnswer\":{\"@type\":\"Answer\",\"text\":\"Not by default. Diagnose the affected circuit and replace only parts supported by evidence and service guidance.\"}}]}<\/script>","protected":false},"excerpt":{"rendered":"<p>La plupart des v\u00e9hicules modernes utilisent plusieurs sondes \u00e0 oxyg\u00e8ne, mais le nombre exact d\u00e9pend des bancs moteur, de la disposition de l'\u00e9chappement, des catalyseurs, de l'ann\u00e9e mod\u00e8le et de la configuration des \u00e9missions.<\/p>","protected":false},"author":1,"featured_media":14181,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[1],"tags":[],"class_list":["post-14145","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-technical-guides"],"_links":{"self":[{"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/posts\/14145","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/comments?post=14145"}],"version-history":[{"count":0,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/posts\/14145\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/media\/14181"}],"wp:attachment":[{"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/media?parent=14145"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/categories?post=14145"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/sunhyings.com\/fr\/wp-json\/wp\/v2\/tags?post=14145"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}