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PHORMIC · Wafer-scale platform for Photonic Programmable Multipurpose Integrated Circuits
PHORMIC establishes a European platform for next-generation programmable photonic chips with a low adoption threshold for product developers in diverse application domains. The PHORMIC platform consists of three tiers. The first tier is a 200 mm wafer-scale fabrication flow that augments an established world-class silicon photonics platform with transfer-printed III-V optical amplifiers, electro-optic materials in the form of molecular glasses, and compact low-power MEMS actuators. The devices are encapsulated in wafer-scale hermetically sealed cavities that will also be used for on-chip gas cells to calibrate the tunable lasers built in PHORMIC. The combination of high-speed silicon photonics, Pockels-based modulators, broadband optical gain and low-power MEMS tuners is a true enabler for new applications. The process flow will be supported by a design kit for building complex photonic circuits. The second tier supplements the photonic chips with modular packaging processes and driver electronics (including high-speed drivers), and the packaging and connectivity logic are integrated in the design kit. This provides a low-threshold entry point for building complex photonic chip-based systems with active control and programmability. The third tier builds on this to create a multipurpose programmable photonic processor, which can control the flow of light in an analogue way through a software interface. This chip, together with its electronics and programming framework, forms a true “photonics development kit”. This enables an off-the-shelf use model like that of electronic FPGAs, reducing prototyping time for new concepts from >1 year to weeks. The PHORMIC consortium has all expertise to establish a full supply chain, including a migration path to a European industrial 200 mm foundry. The application potential of the three tiers of the platform is validated through three demonstrators, in datacenter communication, sensing and mm-wave wireless beamforming. For each case, a custom-designed chip will be compared to the multipurpose photonic processor.
Consortium · 11 organisations
INTERUNIVERSITAIR MICRO-ELECTRONICA CENTRUM
BE · €1,753,542
KUNGLIGA TEKNISKA HOEGSKOLAN
SE · €766,241
X-FAB MEMS FOUNDRY GmbH
DE · €268,300
ASM AMICRA MICROTECHNOLOGIES GMBH
DE · €261,475
VLC PHOTONICS SL
ES · €226,750
X-FAB GLOBAL SERVICES GMBH
DE
MELLANOX TECHNOLOGIES LTD - MLNX
IL · €224,925
SENTEA
BE · €239,906
LATVIJAS UNIVERSITATES CIETVIELU FIZIKAS INSTITUTS
LV · €545,938
III-V LAB
FR · €519,423
UNIVERSITY COLLEGE CORK - NATIONAL UNIVERSITY OF IRELAND, CORK
IE · €787,631
Research fields
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