AbstractPattern Transfer Printing (PTPTM) is a patented novel non-contact printing technology developed and commercialized by Utilight for advanced front side metallization of c-Si PV solar cells. As PTPTM is based on laser induced deposition from a polymer substrate, the geometry of the printed features is not restricted by the characteristics of a printing screen, allowing for much finer, higher and uniform fingers. We present the results achieved by printing the front side finger lines and bus bars of mono- and multi-crystalline solar cells with PTPTM technology and compare these with results of neighboring cells manufactured by state-of-the-art screen printing technology. Finger lines with high aspect ratio and uniform line shape down t...
AbstractRotational flexographic printing is a promising high-throughput technology for the front sid...
Within this work, we present actual results in the field of screen printing front side metallization...
One of the main challenges within Si solar cell production is the increase of throughput rates. With...
AbstractPattern Transfer Printing (PTPTM) is a patented novel non-contact printing technology develo...
AbstractIn this paper the latest applications of screen printing technology for solar cell metalliza...
Next generation printing technologies for solar cell front side metallization have to allow for narr...
This thesis work demonstrates the feasibility to fabricate high-efficiencycrystalline silicon solar ...
Rotational screen printing (RSP) has recently attracted attention as a highly promising high-through...
Crystalline silicon photovoltaic (PV) technology dominates 85% of the PV share due to its ease proce...
AbstractIn this paper, we investigate and compare three different fine line printing techniques for ...
AbstractFlexographic printing is a high-throughput rotational relief printing method and represents ...
Most crystalline silicon solar cells feature a front and rear side metallisation, which is usually a...
Front metallization is an expensive, fundamental step in the fabrication of solar cells. Laser addit...
AbstractLaser Induced Forward Transfer (LIFT) enables a non-contact, mask-less and high-resolution/h...
A dispensing process was developed, allowing for a single step, contactless front side metallization...
AbstractRotational flexographic printing is a promising high-throughput technology for the front sid...
Within this work, we present actual results in the field of screen printing front side metallization...
One of the main challenges within Si solar cell production is the increase of throughput rates. With...
AbstractPattern Transfer Printing (PTPTM) is a patented novel non-contact printing technology develo...
AbstractIn this paper the latest applications of screen printing technology for solar cell metalliza...
Next generation printing technologies for solar cell front side metallization have to allow for narr...
This thesis work demonstrates the feasibility to fabricate high-efficiencycrystalline silicon solar ...
Rotational screen printing (RSP) has recently attracted attention as a highly promising high-through...
Crystalline silicon photovoltaic (PV) technology dominates 85% of the PV share due to its ease proce...
AbstractIn this paper, we investigate and compare three different fine line printing techniques for ...
AbstractFlexographic printing is a high-throughput rotational relief printing method and represents ...
Most crystalline silicon solar cells feature a front and rear side metallisation, which is usually a...
Front metallization is an expensive, fundamental step in the fabrication of solar cells. Laser addit...
AbstractLaser Induced Forward Transfer (LIFT) enables a non-contact, mask-less and high-resolution/h...
A dispensing process was developed, allowing for a single step, contactless front side metallization...
AbstractRotational flexographic printing is a promising high-throughput technology for the front sid...
Within this work, we present actual results in the field of screen printing front side metallization...
One of the main challenges within Si solar cell production is the increase of throughput rates. With...