The Xstamper Classix Custom Message Stamp (XST P13) is a self-inking stamp designed for repetitive, high-volume use in business environments. It features a durable plastic body and a photopolymer die that produces sharp, consistent impressions. The stamp's self-inking mechanism eliminates the need for a separate ink pad, re-inking after each use to support efficient workflows. Alignment marks and a see-through base assist in precise message placement, while rubber feet and side ridges enhance stability and grip during operation. This stamp is suitable for applications requiring custom messages, such as return addresses or other routine administrative markings. It is a practical tool for organizations seeking to standardize and expedite document processing.
Classix Custom Stamp is housed in a rugged plastic body for durability. Alignment marks and see-through base help you put your message right where you want it. Rubber feet keep the stamp stable and decrease slippage. Ridges on the side of the mount offer a no-slip grip. Self-inking stamp does not require a separate ink pad because it re-inks after each impression, making it perfect for fast, repetitive use. Use rectangular stamp for addresses and other everyday uses. Photopolymer die provides sharp and fast impressions. Available in red, black, blue, green or purple ink. Contact customer service to customize self-inking stamp.
The Xstamper Classix Custom Message Stamp produces an impression with a width of 1 inch and a length of 2.50 inches.
No, this is a self-inking stamp that re-inks after each impression, eliminating the need for a separate ink pad.
The stamp is constructed from plastic for the body and rubber for the feet and the photopolymer die.
The stamp includes alignment marks and a see-through base for precise message placement. Rubber feet prevent slippage, and ridges on the side of the mount offer a no-slip grip for stability during use.
XST P13 - Shachihata Inc. U.s.a. Xstamper Classix Custom Address Stamps - Custom Message Stamp - 1 Impression Width x 2.