Electroglas 4080X: Difference between revisions
No edit summary |
No edit summary |
||
| Line 1: | Line 1: | ||
{{Under review|This article was generated with assistance from a large language model (LLM) and is currently under human review and editing. Content may contain inaccuracies, unverified claims, or other issues. Please help improve it.}} | |||
== About == | == About == | ||
[[File:Electroglas-4080X-full-view.jpg|thumb|300px|Electroglas Horizon 4080X Automated Wafer Prober ( | [[File:Electroglas-4080X-full-view.jpg|thumb|300px|Electroglas Horizon 4080X Automated Wafer Prober (typical configuration with hot chuck and vision system)]] | ||
[[File:Electroglas-4080X-chuck-detail.jpg|thumb|300px|Close-up of the gold-plated vacuum chuck and wafer stage area (hot chuck configuration)]] | [[File:Electroglas-4080X-chuck-detail.jpg|thumb|300px|Close-up of the gold-plated vacuum chuck and wafer stage area (hot chuck configuration)]] | ||
[[File:Electroglas-4080X-wafer-loaded.jpg|thumb|300px|Wafer loaded on the chuck, ready for vision alignment and probing (showing probe card interface area)]] | [[File:Electroglas-4080X-wafer-loaded.jpg|thumb|300px|Wafer loaded on the chuck, ready for vision alignment and probing (showing probe card interface area)]] | ||
The Electroglas 4080X is an automated wafer prober used for wafer-level electrical testing. It accurately places a wafer under a probe card, uses vision for alignment, and steps across die sites so a tester can measure devices and record/sort results. | |||
Typical systems are modular (handler + prober control + vision), often configured for 150 mm or 200 mm wafers, with common options such as a hot chuck (temperature probing) and GPIB/serial I/O for integration with parametric/test equipment. | |||
DCM-2 (display/control), MHM (material handler), PCM (prober control), PRM-3 | |||
Configured for 200 mm (8") wafers with a hot chuck option | |||
'''Key Features:''' | '''Key Features:''' | ||
| Line 12: | Line 18: | ||
* Chuck type & temp: Gold-plated vacuum chuck, ambient → +130 °C with TC-2000 controller (standard “hot chuck”) | * Chuck type & temp: Gold-plated vacuum chuck, ambient → +130 °C with TC-2000 controller (standard “hot chuck”) | ||
* Indexing accuracy/repeatability: ±4 µm X-Y, Z-resolution 0.25 mil (6.3 µm) | * Indexing accuracy/repeatability: ±4 µm X-Y, Z-resolution 0.25 mil (6.3 µm) | ||
* Throughput: ≤ 1.5 s die-to-die at 5 mm step; lot-level ≈ 60 wph (150 mm) | * Throughput: ≤ 1.5 s die-to-die at 5 mm step; lot-level throughput ≈ 60 wph (150 mm) | ||
* Vision/alignment: PRM-3 CCD camera, Self-Teach Auto Alignment (STAA), optional OCR & Probe-Mark-Inspection (PMI) | * Vision/alignment: PRM-3 CCD camera, Self-Teach Auto Alignment (STAA), optional OCR & Probe-Mark-Inspection (PMI) | ||
* Interfaces: GPIB-IEEE 488, RS-232, Ethernet, EG-Commander/ProberBench software | * Interfaces: GPIB-IEEE 488, RS-232, Ethernet, EG-Commander/ProberBench software | ||
| Line 21: | Line 27: | ||
* Temperature-controlled probing for device performance at elevated temps | * Temperature-controlled probing for device performance at elevated temps | ||
* High-accuracy die-to-die positioning in production monitoring flows | * High-accuracy die-to-die positioning in production monitoring flows | ||
== Detailed Specifications == | == Detailed Specifications == | ||
Model: Electroglas 4080X Automated Wafer Prober | Model: Electroglas 4080X Automated Wafer Prober | ||
Location: [Specify lab bay if known, e.g., Test Bay] | Configured for 200 mm (8") wafers with a hot chuck option | ||
Wafer size | Location: [Specify lab bay if known, e.g., Test Bay] | ||
Chuck | |||
'''Capability''' → '''Typical value/option''' | |||
Vision | * Wafer size → 100 mm (4″) – 200 mm (8″) standard; ring-carrier adapters up to 300 mm available | ||
* Chuck type & temp. → Gold-plated vacuum chuck, ambient → +130 °C with TC-2000 controller (standard “hot chuck”) | |||
* Indexing accuracy/repeatability → ±4 µm X-Y, Z-resolution 0.25 mil (6.3 µm) | |||
* Throughput → ≤ 1.5 s die-to-die at 5 mm step; lot-level throughput ≈ 60 wph (150 mm) | |||
* Vision/alignment → PRM-3 CCD camera, Self-Teach Auto Alignment (STAA), optional OCR & Probe-Mark-Inspection (PMI) | |||
* Interfaces → GPIB-IEEE 488, RS-232, Ethernet, EG-Commander/ProberBench software | |||
Restrictions: Mechanical handling/alignment only (no electrical measurements); requires external tester | Restrictions: Mechanical handling/alignment only (no electrical measurements); requires external tester | ||
Other: Modular design for cleanroom use; compatible with various probe cards | Other: Modular design for cleanroom use; compatible with various probe cards | ||
| Line 42: | Line 52: | ||
Process Control: Use consistent alignment routines; verify probe contact/scrub marks | Process Control: Use consistent alignment routines; verify probe contact/scrub marks | ||
Notes: Interface with tester for full automation (GPIB/RS-232/Ethernet commands). Monitor chuck temp via TC-2000. | Notes: Interface with tester for full automation (GPIB/RS-232/Ethernet commands). Monitor chuck temp via TC-2000. | ||
Latest revision as of 13:41, 17 February 2026
About



The Electroglas 4080X is an automated wafer prober used for wafer-level electrical testing. It accurately places a wafer under a probe card, uses vision for alignment, and steps across die sites so a tester can measure devices and record/sort results.
Typical systems are modular (handler + prober control + vision), often configured for 150 mm or 200 mm wafers, with common options such as a hot chuck (temperature probing) and GPIB/serial I/O for integration with parametric/test equipment.
DCM-2 (display/control), MHM (material handler), PCM (prober control), PRM-3
Configured for 200 mm (8") wafers with a hot chuck option
Key Features:
- Wafer size: 100 mm (4″) – 200 mm (8″) standard; ring-carrier adapters up to 300 mm available
- Chuck type & temp: Gold-plated vacuum chuck, ambient → +130 °C with TC-2000 controller (standard “hot chuck”)
- Indexing accuracy/repeatability: ±4 µm X-Y, Z-resolution 0.25 mil (6.3 µm)
- Throughput: ≤ 1.5 s die-to-die at 5 mm step; lot-level throughput ≈ 60 wph (150 mm)
- Vision/alignment: PRM-3 CCD camera, Self-Teach Auto Alignment (STAA), optional OCR & Probe-Mark-Inspection (PMI)
- Interfaces: GPIB-IEEE 488, RS-232, Ethernet, EG-Commander/ProberBench software
Applications:
- Wafer loading, precise alignment, and stepping for parametric/TEG testing
- Integration with external testers (e.g., Keithley S530) for automated electrical characterization
- Temperature-controlled probing for device performance at elevated temps
- High-accuracy die-to-die positioning in production monitoring flows
Detailed Specifications
Model: Electroglas 4080X Automated Wafer Prober Configured for 200 mm (8") wafers with a hot chuck option Location: [Specify lab bay if known, e.g., Test Bay]
Capability → Typical value/option
- Wafer size → 100 mm (4″) – 200 mm (8″) standard; ring-carrier adapters up to 300 mm available
- Chuck type & temp. → Gold-plated vacuum chuck, ambient → +130 °C with TC-2000 controller (standard “hot chuck”)
- Indexing accuracy/repeatability → ±4 µm X-Y, Z-resolution 0.25 mil (6.3 µm)
- Throughput → ≤ 1.5 s die-to-die at 5 mm step; lot-level throughput ≈ 60 wph (150 mm)
- Vision/alignment → PRM-3 CCD camera, Self-Teach Auto Alignment (STAA), optional OCR & Probe-Mark-Inspection (PMI)
- Interfaces → GPIB-IEEE 488, RS-232, Ethernet, EG-Commander/ProberBench software
Restrictions: Mechanical handling/alignment only (no electrical measurements); requires external tester Other: Modular design for cleanroom use; compatible with various probe cards
Documentation
Training required – contact lab staff (Chandan Ramakrishnaiah or Shivakumar Bhaskaran) Check lab resources for manuals (e.g., EG-Commander/ProberBench guides); no dedicated SOP listed – consider creating one
Recipes & Data
Standard Usage: Automated stepping for PCM/TEG lots; hot chuck for temp-dependent tests Process Control: Use consistent alignment routines; verify probe contact/scrub marks Notes: Interface with tester for full automation (GPIB/RS-232/Ethernet commands). Monitor chuck temp via TC-2000.