Waferpedia

Esec

2100 FC

Packaging & BondingEsec 2100 FC family
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Provisional entry — research in progress

This page was generated automatically from cited public sources and hasn't completed the full research pass yet. Every specification shown carries its source; more detail is added as research completes.

The Esec 2100 FC hS is a flip chip die bonder. The Esec 2100 FC hS achieves a bonding accuracy of 8 µm at 3 sigma. The Esec 2100 FC hS supports wafer sizes from 4 to 12 inches.[1][2]

Esec2100 FC
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What it is

The Esec 2100 FC is a flip chip bonder used in packaging and bonding.[3][5]

How it works

The Esec 2100 FC uses flip chip bonding.[1][3][4]

The Esec 2100 FC hS reports a bonding accuracy of 8 µm at 3 sigma in high accuracy mode.[1][3]

The Esec 2100 FC hS reports a minimum cycle time of 240 ms including dip fluxing, and the Esec 2100 FC plus reports a minimum cycle time of 400 ms.[1][4]

Where it fits in the process flow

The Esec 2100 FC hS supports wafer sizes from 4 inches to 12 inches, frame sizes of 6 inches, 8 inches, and 12 inches, and strip dimensions up to 500 mm by 125 mm.[1][3][4]

Applications

The Esec 2100 FC hS is intended for FCOL, FC-MIS, FC-SIP, FCCSP, FCBGA, and CSP-LED applications.[1]

The Esec 2100 FC hS supports die sizes from 0.2 mm to 20 mm and die thickness at or above 0.05 mm, and the Esec 2100 FC plus reports die sizes from 0.5 mm to 20 mm and die thickness at or above 0.1 mm.[1][4]

Why won't it start?

Documented failure modes, common issues, and field considerations.

  • Multiple missing parts are listed in the source.
  • Missing parts: Output indexing clamp cable, Bond Z motor, Bond Z timing belt, Bond Z encoder, Bond Z encoder flat cable, Input pusher timing belt, Frame pusher Y direct motor, Hammer board, Bond head, Dispenser stepper motor X axis.

What do the numbers mean?

Wafer handling3

Wafer size
4” to 12”[1]
Accurate?
Wafer flip chip placement speed
Up to 12000 UPH[3]
Accurate?
Wafer flip chip without dipping placement speed
Up to 16000 UPH[3]
Accurate?

Performance1

Bonding accuracy
8 μm @3s (High Accuracy Mode)[1]
Accurate?

Dimensions & facilities4

Strip dimensions
Length up to 500 mm, Width up to 125 mm (flat boats up to 137 mm)[1]
Accurate?
Machine dimensions (W x D x H)
1430 x 1440 x 1400 mm[1]
Accurate?
Weight
Approx. 1,400 kg / 3,000 lb[1]
Accurate?
Machine dimensions
1430 x 1440 x 1400 mm (W x D x H)[1]
Accurate?

Configuration & options10

Bonding method
Flip Chip[1]
Accurate?
Min. cycle time
240 ms (incl. dip fluxing)[1]
Accurate?
Frame size
6", 8” and 12”[1]
Accurate?
Die size
0.2 (with small die kit) to 20 mm[1]
Accurate?
Die thickness
≥ 0.05 mm / ≥ 2 mils (thinner on request)[1]
Accurate?
Bond force (min)
0.2 N[3]
Accurate?
Number of pick and place stations
Single[2]
Accurate?
Die size
0.2 to 20 mm[1]
Accurate?
Die thickness
≥ 0.05 mm / ≥ 2 mils[1]
Accurate?
Bond force
0.2 N[3]
Accurate?

Vintage & configurations

Documented models & variants

DesignationGenerationVintageChangesSource
Esec 2100 FC plus——Bonding accuracy down to 10 µm (3σ); min. cycle time 400 ms; die size 0.5 … 20 mm; die thickness ≥ 0.1 mm.micro-power.com.hk[4]
Esec 2100 FC hS3rd generation——besi.com[1]
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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

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Frequently asked questions

What typical die sizes and substrate sizes can a flip chip bonder of this class handle?General reference — not yet source-verified

Flip chip bonders are designed to accommodate a range of die sizes, from very small (mm-scale) to large (tens of mm), and substrates can vary from small carrier strips to large panel substrates, depending on the specific model's work area and tooling capabilities. The class generally supports multiple formats with changeable chucks and collets.

How is die-to-substrate alignment accuracy achieved?General reference — not yet source-verified

Most flip chip bonders use dual vision systems (one directed at the die, one at the substrate) to capture alignment marks, then calculate positional offsets. The placement head adjusts X, Y, and theta in real time, enabling placement accuracy typically within a few micrometers. Some systems also use a split-field microscope or through-the-lens illumination to see through the die for transparent substrates.

What types of bumps are compatible with this class of machine?General reference — not yet source-verified

The class generally supports solder bumps, gold stud bumps, copper pillars, and other contact bump types. The bonder may include a flux dipping or flux spray station to prepare the bumps for soldering. The placement tooling is designed to handle various bump geometries and pitches.

Does the bonder perform reflow, or is a separate reflow oven needed?General reference — not yet source-verified

Some flip chip bonders integrate a heated stage to reflow the solder immediately after placement, while others require a separate reflow oven for the assembled substrate. The choice depends on the machine configuration and process requirements; the class includes both options.

What are typical throughput capabilities for machines of this class?General reference — not yet source-verified

Throughput varies widely based on die size, accuracy requirements, and process complexity, but flip chip bonders generally achieve from several hundred to several thousand placements per hour. Multi-head designs and automation features (e.g., wafer mapping, substrate pre-alignment) can increase throughput for high-volume applications.

Not publicly documented

The following facts about the 2100 FC 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 2100 FC are on record.

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

  • The control-system platform and OS era of the 2100 FC are not on record.

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

  • The process node or technology generation of the 2100 FC is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

  • No publicly documented compatible parts, consumables, or accessories for the 2100 FC are on record.

    Answerable by: an OEM parts catalog or a service engineer

  • No publicly hosted manuals, SOPs, or datasheets for the 2100 FC are on record.

    Answerable by: university cleanroom staff or an OEM application specialist

Sources & citations

Sources (6)Every fact above is drawn from these public sources
  1. [1]besi.com — besi.combesi.com
  2. [2]waferpedia.com — waferpedia.comwaferpedia.com
  3. [3]semiconductor.directory — semiconductor.directorysemiconductor.directory
  4. [4]micro-power.com.hk — micro-power.com.hkmicro-power.com.hk
  5. [5]2100 FC Flip Chip — Esec | Specs, Sourcing & Service | Waferpedia — waferpedia.comwaferpedia.com
  6. [6]Equipment inventory listing
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Last updated Oct 2, 2026.

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