VARIAN E17031380 Faraday Assembly – R100U-15 Ion Implanter
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Key Product Information
Core fields for model confirmation and RFQ routing. Detailed product narrative remains below.
- Brand
- Varian
- Primary Part Number
- R100U-15
- Product Type
- Faraday Assembly
- Product Family
- Other series
- Country of Origin
- United States
- Catalog Category
- Industrial Automation Spares
- Warranty
- 12 months from date of shipment
VARIAN E17031380 Faraday Assembly – Precision Ion Beam Current Measurement for R100U-15 Implanters
The VARIAN E17031380 Faraday Assembly is a beam diagnostics component engineered for ion current interception and dose quantification within the VARIAN R100U-15 ion implantation platform. Positioned downstream of the analyzing magnet in the beam line, this assembly intercepts the ion beam at a defined aperture, converts the collected charge into a measurable DC current signal, and feeds that signal directly into the implanter’s closed-loop dose control electronics. The accuracy of this measurement chain determines whether each wafer receives the specified dopant dose within the process window — typically ±0.5% dose uniformity for production-grade implants.
Cross-referenced under part numbers E17010650, E17010570, E11001320, R100U-15, 0010-18042, and 414501, this assembly covers multiple VARIAN documentation revisions and service generations. All cross-references are dimensionally and functionally equivalent; the correct selection depends solely on the service manual revision applicable to the target system serial number range.
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Technical Parameters
| Primary Part Number | E17031380 |
| Cross-Reference Part Numbers | E17010650 / E17010570 / E11001320 / R100U-15 / 0010-18042 / 414501 |
| OEM Manufacturer | VARIAN (Applied Materials Ion Beam Products Division) |
| Component Classification | Faraday Assembly — Beam Current Measurement |
| Platform Compatibility | VARIAN R100U-15 Ion Implanter Series |
| Wafer Process Node | 200 mm / 300 mm production lines |
| Electrode Material | High-purity graphite / precision metal alloy (per OEM specification) |
| Measurement Function | Ion beam current interception → DC signal output to dose controller |
| Dose Accuracy Contribution | ±0.5% dose uniformity (system-level, per OEM process spec) |
| Operating Environment | High-vacuum beam line (≤1×10⁻⁶ Torr typical) |
| Mounting Interface | OEM-specified flange / bracket — direct drop-in replacement |
| HS Code | 8543.70.99 |
| Country of Origin | United States |
| Condition | New OEM / Certified Refurbished (specify at inquiry) |
| Warranty | 12 months from date of shipment |
| Lead Time | Subject to real-time stock — contact for confirmation |
Hardware Logical Analysis
The Faraday assembly operates on the principle of charge collection: ions traveling through the beam aperture strike the graphite electrode surface and deposit their charge. The resulting current — typically in the range of microamperes to milliamperes depending on beam energy and species — is routed via a shielded coaxial feedthrough to the dose measurement electronics. The graphite electrode is selected for its low secondary electron emission coefficient, which is critical for measurement accuracy; materials with high secondary emission would cause charge loss and systematic dose underestimation.
The assembly’s mechanical geometry defines the beam acceptance aperture. Any dimensional deviation from OEM specification — whether from wear, contamination, or non-OEM replacement — directly alters the effective collection area and introduces a systematic offset into the dose calculation. This is why dimensional conformance to the E17031380 OEM drawing is a non-negotiable requirement for process-qualified replacements.
EMC integrity is maintained through the coaxial signal path and the grounded outer shield of the feedthrough assembly. The signal conductor is isolated from the vacuum chamber ground to prevent ground loop currents from superimposing noise onto the beam current signal. In high-current implant modes (e.g., high-dose arsenic or phosphorus implants), beam-induced RF noise can reach several millivolts; the shielded feedthrough design attenuates this interference to below the dose controller’s noise floor, typically specified at <1 µA equivalent input noise.
The graphite electrode surface undergoes gradual erosion and contamination from sputtered material during implant operations. Accumulated deposits alter the work function of the collection surface and can introduce charge trapping effects that degrade measurement linearity at low beam currents. Scheduled replacement at OEM-recommended intervals — or when dose alarm frequency increases — restores measurement baseline and prevents process excursions.
System Integration Benefits
- Closed-Loop Dose Control Integrity: Provides the primary feedback signal to the implanter’s dose controller, enabling real-time adjustment of scan speed and beam exposure to maintain target dose within specification across the full wafer area.
- Multi-PN Consolidation: A single E17031380 unit covers six cross-reference part numbers, reducing spare parts SKU count and simplifying procurement across multiple VARIAN service documentation revisions.
- Deterministic Replacement Cycle: OEM-specified replacement intervals allow maintenance teams to schedule Faraday assembly swaps within planned PM windows, eliminating unplanned downtime caused by measurement drift or electrode failure.
- Vacuum Compatibility: All materials and surface treatments are qualified for sustained operation in high-vacuum environments (≤1×10⁻⁶ Torr), preventing outgassing-induced beam contamination or pressure excursions.
- Diagnostic Transparency: Degradation of the Faraday assembly manifests as increasing dose alarm frequency and widening dose uniformity sigma — measurable indicators that allow engineering teams to correlate process data with component condition before yield impact occurs.
- Zero System Modification: Drop-in dimensional equivalence to OEM specification means no beam line realignment, aperture adjustment, or electronics recalibration is required after replacement — reducing maintenance labor hours per PM event.
- Signal Noise Floor Preservation: The shielded coaxial feedthrough design maintains the dose controller’s input noise floor specification, ensuring measurement accuracy is not degraded by beam-induced RF interference during high-current implant recipes.
- Yield Protection: Maintaining Faraday assembly condition within OEM specification directly protects wafer yield by preventing systematic dose errors that would cause out-of-spec implant profiles and downstream electrical parameter failures.
- Traceability Documentation: Certificate of Conformance (CoC) and material traceability records are available upon request, supporting fab quality management system (QMS) requirements for critical spare parts.
Quality Assurance & Global Logistics
Every E17031380 unit dispatched from our Xiamen, China facility undergoes a pre-shipment inspection protocol covering dimensional conformance, electrode surface condition, feedthrough insulation resistance, and packaging integrity. OEM-sourced units are accompanied by original VARIAN part documentation where available. Certified refurbished units are processed through a defined cleaning, inspection, and functional verification sequence before being released to stock.
Our Xiamen logistics hub provides direct access to major international freight carriers, supporting air freight dispatch to semiconductor fabs in North America, Europe, Southeast Asia, South Korea, Japan, and Taiwan within 24–72 hours of order confirmation. For urgent unplanned downtime situations, same-day dispatch is available for in-stock units when orders are confirmed before the daily freight cutoff. All shipments include commercial invoice, packing list, and export compliance documentation. End-user statements and export license documentation are prepared as required for EAR-regulated destinations.
A 12-month warranty from the date of shipment covers manufacturing defects and dimensional non-conformance. Warranty claims are processed with a target response time of one business day. Replacement units are dispatched on a priority basis to minimize fab downtime impact.
Contact Information
Email: [email protected]
WhatsApp: +86 18359268345
Web: siemensplc.com
Location: Xiamen, China
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