InfinitePack Door Hanger Bags for Door Knob Flyers Promotion Coupon 6x12 Clear Plastic Poly Hanging Bag for Mail Doorknob Bags 1.25 mil Protects Rain Dirt Newspaper Bags Hanger 100 literature Drop Bag
POLY BAG WITH DIE CUT HANDLE: Our clear bag comes up with a die-cut handle so you can easily hang anything.
HIGH-QUALITY MATERIAL: Clear doorknob bags are made from 1.25 mil thickness which lasts very long & can easily carry the weight.
EASY TO USE: Our bags have the perfect size of bag opening for easy stuffing of printouts and items. It built-in holes for hanging on doors.
MULTIPLE USAGE: Door hanger bags can be used in marketing, small food, promo items, newsletters, letter-size paper etc.
PROTECT WHAT MATTERS - Why spend a ton of money on promotional materials or print flyers, only to have them ruined by a rainstorm? Our protective bags come with a 100% satisfaction guarantee
Description
InfinitePack 6x12 Clear Doorknob Bags - Pack of 100
Our clear bags are made from 1.25 mil thick material that will not easily rip, tear, split, break, or rupture. It has die cut handle for easy hanging & comes in pack of 100.
InfinitePack controls their supply chain down to the factory level, which allows them to deliver the most affordable price in the industry while still delivering the highest quality mil bag out there. InfinitePack has innovative solutions that focus on delivering remarkable packaging at unbeatable prices, so you can save money. Door hanger bags even easier to tear off, yet the cardboard holder keeps the pack all together for easy hanging and transporting. As convenient as it gets when it comes to using our clear door hanger bags. These bags feature a secure bottom seal, and are heat sealable and food safe. These bags are made from LDPE to the highest standards in the industry and engineered to provide the best value at the best price. Easily slip your information inside the bag and place over a door knob, perfect for keeping promotions within hands' reach. Packaged in an outer bag for easy storage and to prevent scattering