Waferpedia

Aixtron

2600 G 3 HT IC MOCVD Reactor

DepositionAixtron AIX 2600 family
Research Quality: 50% complete

The Aixtron 2600 G 3 HT IC MOCVD Reactor is a deposition reactor. The Aixtron 2600 G 3 HT IC MOCVD Reactor is configured for InGaN MOCVD epitaxy. The Aixtron 2600 G 3 HT IC MOCVD Reactor supports 6 x 6-inch wafers.[1][2]

2600 G 3 HT IC MOCVD Reactor — Inventory photo
Fig. 012600 G 3 HT IC MOCVD ReactorInventory photo[1]

Vacuum

Custom Built Exhaust System[1]

Gas delivery

Individual GFR Control for Each Puck[1]

What it is

The Aixtron 2600 G 3 HT IC MOCVD Reactor is a metal-organic chemical vapor deposition reactor used in semiconductor deposition.[1][2]

The tool is part of the Aixtron AIX 2600 family.[2]

How it works

The Aixtron 2600 G 3 HT IC MOCVD Reactor uses an RF coil heating system with a Trumpf Huttinger RF generator, gas foil rotation with individual control for each puck, and in-situ pyrometry as an available option.[1][2]

The tool includes a custom built automatic ceiling loader, a glove box, a custom built exhaust system, process pumps, reactor chillers, purifiers, filters, and abatement.[1][2]

Where it fits in the process flow

The Aixtron 2600 G 3 HT IC MOCVD Reactor is configured for InGaN MOCVD epitaxy on six by six inch wafers.[1][2]

Applications

The Aixtron 2600 G 3 HT IC MOCVD Reactor is used for InGaN MOCVD epitaxy.[1][2]

The tool uses metal-organic sources including TMIn, TMGa, TMAl, and CP2Mg, and hydride sources including ammonia and silane in argon.[1][2]

What do the numbers mean?

Power & electrical1

Heating System
RF Coil with Trumpf Huttinger RF Generator BIG 120/50[1]
Accurate?

Vacuum & pumping4

Custom Built Exhaust System[1]
Accurate?
Process Pump
Ebara ESA 70 W or ESA 80 W[1]
Accurate?
DOR & Glove Box Pumps
Adixen ACP-15(G) x 2[1]
Accurate?
Vacuum/exhaust
Custom Built Exhaust System[2]
Accurate?

Wafer handling2

Wafer
6 x 6"[1]
Accurate?
Ceiling Temperature Control, Custom Built Automatic Ceiling Loader[1]
Accurate?

Gas & chemistry2

Gas Foil Rotation (GFR)
Individual GFR Control for Each Puck[1]
Accurate?
Spare Channels
23 Spare MFC Channels & 10 Spare Valve output Channels[1]
Accurate?

Control & software4

Software Version; AIXACT 7.4.1.9[1]
Accurate?
PLC
3.12.1[1]
Accurate?
Glove Box
MBraun Nitrogen Glovebox with Controller[1]
Accurate?
Software version
AIXACT 7.4.1.9[1]
Accurate?

Configuration & options17

SLC[2]
Accurate?
Process
InGaN MOCVD Epitaxy[1]
Accurate?
Metal organic Sources
TMIn x 3, TMGa x 2, TMAl x 1, CP2Mg x 1, Future x 3[1]
Accurate?
Hydride Sources
NH3 x 3, 100 ppm SiH4 in AR x 2, Future x 2[1]
Accurate?
Concentration Monitors
Epison4 x 3 for TMln, Epison 4 x 1 for TMAl[1]
Accurate?
Chiller Baths (6 available for MO Sources)[1]
Accurate?
Purifiers
Entegris Getters for NH3, H2 & N2[1]
Accurate?
Filters[1]
Accurate?
Abatement
Unisem UN2000A-WHG (single or shared across 2 reactors)[1]
Accurate?
Reactor Chillers
Tek-Temp Recirculating Closed Lop Chiller[1]
Accurate?
In-Situ Pyrometry (available)[1]
Accurate?
OEM
Aixtron[1]
Accurate?
Model
2600 G 3 HT IC[1]
Accurate?
Category
Deposition[2]
Accurate?
Tool type
MOCVD Reactor[1]
Accurate?
Reactor chiller
Tek-Temp Recirculating Closed Lop Chiller[1]
Accurate?
In-situ pyrometry
available[1]
Accurate?
Interested in this tool?
Need help with this tool?Embed spec card

What does it need to run?

Site utility requirements, footprint, and infrastructure needed to install and operate this tool. Sourced from public records.

  • Heating SystemRF Coil with Trumpf Huttinger RF Generator BIG 120/50[1]
  • ConfigurationCustom Built Exhaust System[1]
  • Process PumpEbara ESA 70 W or ESA 80 W[1]
  • DOR & Glove Box PumpsAdixen ACP-15(G) x 2[1]
  • Vacuum/exhaustCustom Built Exhaust System[2]
  • Gas Foil Rotation (GFR)Individual GFR Control for Each Puck[1]
  • Spare Channels23 Spare MFC Channels & 10 Spare Valve output Channels[1]

Where are the manuals?

Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.

Not publicly documented

Field notes

No research found yet — worked with this tool? Share what you know.

Worked with this tool? Help preserve its knowledge →

Not publicly documented

The following facts about the 2600 G 3 HT IC MOCVD Reactor are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.

  • No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the 2600 G 3 HT IC MOCVD Reactor are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • No publicly documented variants, configuration options, or revision breakpoints of the 2600 G 3 HT IC MOCVD Reactor are on record.

    Answerable by: an OEM product catalog or an engineer who ordered or specified the tool

  • The control-system platform and OS era of the 2600 G 3 HT IC MOCVD Reactor are not on record.

    Answerable by: an engineer who operated it or OEM installation records

  • No publicly documented failure modes or field errata for the 2600 G 3 HT IC MOCVD Reactor are on record.

    Answerable by: a field service engineer, process engineer, or maintenance technician

  • The process node or technology generation of the 2600 G 3 HT IC MOCVD Reactor is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

No research found yet — worked with this tool? Share what you know.

Sources & citations

Sources (2)Every fact above is drawn from these public sources
  1. [1]Inventory photo
  2. [2]waferpedia.com — waferpedia.comwaferpedia.com
Was this page accurate?

Last updated Oct 11, 2026.

Compare with similar tools

View all →