MRSI
The MRSI-HVM1 is a 1-micron flip-chip die bonder for high volume manufacturing. The MRSI-HVM1 achieves 1 micron accuracy. The MRSI-HVM1 is developed from the MRSI-HVM platform.[1]

Die bonders are machines used in semiconductor assembly to pick individual dies from a wafer or carrier and place them onto a substrate, leadframe, or package, aligning them with accuracy before bonding them in place through eutectic, epoxy, or other attachment methods.
The MRSI HVM1 offers several process choices for die bonding, including eutectic bonding, epoxy stamping, UV epoxy dispensing, and in-situ UV curing. The machine is available in a conveyor version that includes an inline conveyor for single fixture or multiple cassette inputs, which can automatically transport large forms of carriers such as those used for Active Optical Cables (AOC) or chip-on-PCB applications, as well as gold-box packaging and chip-on-carrier assembly in fixtures.[1]
A heated head version of the MRSI HVM1 adds a heated head on the right side while the left side retains the standard head. The localized top heating can operate at a fixed temperature or with pulsed heating; this feature is specifically designed for eutectic bonding of multiple dies onto a common carrier without reflowing neighboring solder pads.[1]
In a semiconductor assembly line, a die bonder such as the MRSI HVM1 receives singulated dies after wafer dicing (typically on tape or in waffle packs) and places them onto the appropriate substrate, carrier, or package base. The bonded assembly then moves to downstream processes such as wire bonding, encapsulation, or further assembly steps.
The MRSI HVM1 is designed for specific assembly applications including Chip-on-Carrier (CoC), Chip-on-Submount (CoS), and Chip-on-Baseplate (CoB) bonding using eutectic or epoxy stamping methods. The machine also supports applications such as Active Optical Cables (AOC), gold-box packaging, and similar chip-on-PCB or fixture-based assemblies.[1]
| Designation | Generation | Vintage | Changes | Source |
|---|---|---|---|---|
| MRSI-HVM1 with conveyor | — | — | Equipped with an inline conveyor for single fixture or multiple cassette inputs that can automatically transport large forms of carriers of the dies. | web.archive.org[1] |
| MRSI-HVM1 heated head version | — | — | Includes a heated head on the right side while the left side has the same head as a typical MRSI-HVM1; localized top heating at a fixed temperature or with pulsed heating is described for eutectic bonding of multiple dies onto a common carrier. | web.archive.org[1] |
| Heated head version | — | — | Includes a heated head on the right side while the left side has the same head as a typical MRSI-HVM1. | web.archive.org[1] |
| MRSI-HVM1 with heated head | — | — | Includes a heated head on the right side while the left side has the same head as a typical MRSI-HVM1, providing localized top heating at a fixed temperature or with pulsed heating for eutectic bonding of multiple dies onto a common carrier without reflowing neighboring solder pads. | web.archive.org[1] |
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The MRSI-HVM1 achieves 1 micron accuracy.[1]
The MRSI-HVM1 supports eutectic die bonding, epoxy stamping, UV epoxy dispensing, and in-situ UV curing.[1]
The conveyor version uses an inline conveyor to transport carriers for active optical cable or similar chip-on-PCB applications, gold-box packaging, and chip-on-carrier in fixture.[1]
The heated head version provides localized top heating at a fixed temperature or with pulsed heating for eutectic bonding of multiple dies onto a common carrier without reflowing neighboring solder pads.[1]
The MRSI-HVM1 was developed from the MRSI-HVM platform.[1]
The following facts about the HVM1 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 HVM1 are on record.
Answerable by: OEM historical records or a trade-press announcement
The control-system platform and OS era of the HVM1 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 HVM1 are on record.
Answerable by: a field service engineer, process engineer, or maintenance technician
The process node or technology generation of the HVM1 is not on record.
Answerable by: an OEM datasheet or a fab qualification report
No publicly documented compatible parts, consumables, or accessories for the HVM1 are on record.
Answerable by: an OEM parts catalog or a service engineer
No research found yet — worked with this tool? Share what you know.
Last updated Oct 5, 2026.
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