Use it when OE number, vehicle, frequency and validation inputs must be turned into a reviewable service path.
Problem-Solving Expert / Resource Center
TPMS OE Cross-Reference Topic Cluster
A focused topic cluster for OE number meaning, vehicle fitment, 315MHz / 433MHz frequency, programmable sensors, activation, reading and relearn validation.
We publish solution paths, not just articles
XSD Precision is a TPMS and automotive precision engineering solution partner. The Resource Center presents problem logic, engineering review paths, quality-validation boundaries and project-input requirements in a customer-facing website voice.
- Problem-solving expert
- Brand owner and service partner
- Solution provider
- Engineering and quality support
Scope: published article records in the current English resource library only; product catalog pages, brochure downloads, training videos, confidential project files, drafts and other-language versions are not included. Engineering Guide and Case Study figures are category labels and are not additive with the article total.
Convert OE Clues Into Fitment Review Inputs
Prepare OE number, vehicle year, target market, 315MHz / 433MHz frequency, original sensor information, tool route, sample-validation purpose and expected quantity. Public resources do not replace tool or vehicle validation.
Turn OE number clues into validated TPMS fitment inputs
This topic is for sourcing, channel, shop-service and engineering teams that need to connect OE numbers, vehicle year, market, frequency, programming, activation/read results and relearn validation.
Best Fit
- TPMS sourcing
- Channel distributors
- Shop-service teams
- Fitment engineering
Review Questions
- Does the OE number match the target market and vehicle year?
- Are 315MHz / 433MHz, protocol and tool route aligned?
- Do writing, activation, reading and relearn form a closed validation loop?
RFQ Inputs
- OE number, vehicle year and target market
- Frequency, valve type and original sensor information
- Tool route, sample-validation purpose and expected volume
TPMS Sensor Selection Guide for Buyers
Purchasing priority: RFQ / sample / PPAP input. A buyer-focused engineering guide to selecting TPMS sensors by vehicle protocol, RF frequency, pressure accuracy, battery life, valve structure, reliability, certification, and supplier control.
TPMS Wire Antenna Engineering Guide for 315MHz and 433MHz Sensors
Control bent-wire antenna geometry, detuning, matching, RF performance, and production consistency for TPMS sensors.
XSD Precision TPMS Invention Patent Portfolio: VIN Programming, BLE Recognition and AI Relearn
XSD Precision TPMS invention patent portfolio covering VIN automatic programming, BLE vehicle recognition, AI Relearn recommendation, cloud updates and OTA strategies.
Resource previewPA-101 OE replacement sensor brochure
Use: project evaluation and discussion preparation. Download or training resource managed by the XSD Precision Resource Center.
TPMS Service Strengths for Difficult Vehicles and Edge Cases
TPMS Service Strengths for Difficult Vehicles and Edge Cases: sensor compatibility, frequency and protocol coverage, programming workflow, validation evidence, and after-sales.
Why Some Vehicles Are Picky About Aftermarket TPMS Sensors
Why Some Vehicles Are Picky About Aftermarket TPMS Sensors: sensor compatibility, frequency and protocol coverage, programming workflow, validation evidence, and after-sales.