SOLAR POWERFLAT

Art.-Nr.
A36-MO9051
As low as CHF 18.35
without advertising Price when buying 1000 pieces. Our prices shown are excluding transport and VAT. Respective costs are displayed transparently during checkout. No additional costs occure. Deliveries are DDP.
Price excl. VAT and shipping costs
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1 x SOLAR POWERFLAT
CHF 18.35
Grand Total Net Price when buying 1000 pieces. Our prices shown are excluding transport and VAT. Respective costs are displayed transparently during checkout. No additional costs occure. Deliveries are DDP.
CHF 18.35
Unit Price Net
CHF 18.35
Price excl. VAT and shipping costs
Product description
Power bank 8000 mAh in aluminium and solar panel. Capacity for smartphone use, output current DC5V/1A and DC5V/2A. Includes indicating light and USB cable with micro usb plug.

Delivery times

The delivery time depends heavily on the quantity ordered.
The average delivery time is:

With logo: ca. 12 working days*

Without logo: ca. 5 working days

*After print approval

Solar power bank 8000 mAh
Article number
A36-MO9051
Weight (KG)
0.000000
new on our page
New
Customs Tariff Number
8501 7100
Product category
Technologie / Telefon- & Tablet-Accessoires / Powerbanks
Brand
midocean
Product Origin
China
Material
Aluminium
max X eco Produkte
eco material
Capacity (mAh)
8000
Product Size
7,5X15X1 CM
GTIN
8719941002951

Pad printing

Pad printing is an indirect gravure printing process in which the ink is transferred from the printing form to the substrate by an elastic pad made of silicone rubber. The ink is transferred to the material by pressing against it in different thicknesses. The advantage of this print transfer is the deformability of the pad, which makes it possible to print on curved surfaces. The printed image is transferred to the printing body. Due to the silicone oil in the pad, ink transfer to the substrate is almost 100%. In addition, a wide range of sizes can be printed in a wide range of colors. In the pad printing process, full colors can be printed according to PANTONE or HKS.

Screen printing

Screen printing is a printing process in which the ink is printed through a fine mesh fabric onto the material to be printed using a rubber squeegee. At those points of the fabric where no ink is to be printed according to the printed image, the mesh openings of the fabric are made impermeable to ink by a stencil. The advantage of screen printing is that the ink application can be varied by using different mesh finenesses, so that high ink layer thicknesses can be achieved. Compared to other printing processes, however, the printing speed is relatively low. Screen printing is mainly used in advertising and lettering, textile and ceramic printing, and industrial applications. Screen printing can be used to print solid colors according to PANTONE or HKS.

Digital printing

Digital printing refers to a group of printing processes in which the printed image is transferred directly from a file or data stream from a computer to a printing press without using a static printing form. Digital printing complements classic printing processes such as offset, gravure, flexographic or screen printing in all their areas of application where it would no longer be economical to print the desired low run lengths down to one-offs, and its dynamic print image generation opens up the possibility of various types of customizing. The digital printing process also makes it easy to print images on products.

Transfer printing

Transfer printing refers to a printing process in which the dye is transferred to a substrate. Transfer papers and foils as well as dyes or special inks are used for this purpose. The ink is then transferred to the product to be printed by means of the transfer foil. First, a special foil is printed with suitable dyes (side-inverted) and then transferred to the substrate using a press in the transfer printing process. The main advantages of transfer printing are that different materials can be printed in photo quality, the comparatively low costs and better environmental compatibility. Binding agents and solvents, which can be present in the fiber in other printing processes and would have to be washed out, can be dispensed with. In addition, the print is highly resistant to UV radiation and other environmental influences.

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