RF-HZMTY80M-112/2K
Superisys
| Availability: | |
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| Quantity: | |
By adding or embedding RFID tags into work-in-progress items, tooling fixtures, clamps, auxiliary parts, etc., and deploying RFID reading and writing equipment at automated node workstations.
Interaction with the work-in-progress items can be achieved. This enables a1. production method of multiple varieties on a large scale, achieving real-time automatic
identification of individual products.
It automatically connects automated equipment and robots, realizes personalized transmission of processes, defines parameters automatically, and supports scenarios of automated equipment inspection.
Support Embedded metal or Metal Surface.
| product model | RF-HZMTY80M-112 | RF-HZMTY80M-2K |
| working frequency | 13.56MHz | |
| Air port agreement | ISO 15693 | |
| Read distance | 0-8mm(Related to read head) | |
| User memory | 112 Bytes | 2000 Bytes |
| Memory type | EEPROM | FRAM |
| Rewrite cycle | 100,000 times | 10 Billion times |
| Data storage time | 10 years | 10 years |
| size | φ8*4.5mm | |
| Housing material | PBT | |
| Fixed mode | Glueing | |
| IP rating | IP68 | |
| Operating temperature | -40~70℃ | |
| Storage temperature | -40~+125℃ | |
| Metal resistance | Embedded metal or Metal Surface | |
By adding or embedding RFID tags into work-in-progress items, tooling fixtures, clamps, auxiliary parts, etc., and deploying RFID reading and writing equipment at automated node workstations.
Interaction with the work-in-progress items can be achieved. This enables a1. production method of multiple varieties on a large scale, achieving real-time automatic
identification of individual products.
It automatically connects automated equipment and robots, realizes personalized transmission of processes, defines parameters automatically, and supports scenarios of automated equipment inspection.
Support Embedded metal or Metal Surface.
| product model | RF-HZMTY80M-112 | RF-HZMTY80M-2K |
| working frequency | 13.56MHz | |
| Air port agreement | ISO 15693 | |
| Read distance | 0-8mm(Related to read head) | |
| User memory | 112 Bytes | 2000 Bytes |
| Memory type | EEPROM | FRAM |
| Rewrite cycle | 100,000 times | 10 Billion times |
| Data storage time | 10 years | 10 years |
| size | φ8*4.5mm | |
| Housing material | PBT | |
| Fixed mode | Glueing | |
| IP rating | IP68 | |
| Operating temperature | -40~70℃ | |
| Storage temperature | -40~+125℃ | |
| Metal resistance | Embedded metal or Metal Surface | |
| Minimum Order Quantity | one |
| Price | A large amount is negotiable |
| Delivery Time | 5-8 Work Days |
| Stock | In Stock |
| Payment Terms | T/T, Western Union |
| Supply Ability | 1000 per day |
Precision Fixtures and Pallet Identification:
Embedded within zero-point positioning system pallets, precision vises, or specialized fixture bases.
Enabling Flexible Manufacturing Systems (FMS): Upon pallet entry into the workstation, the machine tool automatically identifies the workpiece model and invokes the corresponding machining program.
High-Value Workpiece Traceability During Manufacturing:
Machine a small process hole and embed a label on workpieces such as aero-engine blades, medical implant blanks, and high-end molds.
Achieving seamless data binding and traceability throughout the entire process, from roughing, heat treatment, and finishing to inspection, meeting the stringent regulatory requirements of the aerospace and medical industries.
| Minimum Order Quantity | one |
| Price | A large amount is negotiable |
| Delivery Time | 5-8 Work Days |
| Stock | In Stock |
| Payment Terms | T/T, Western Union |
| Supply Ability | 1000 per day |
Precision Fixtures and Pallet Identification:
Embedded within zero-point positioning system pallets, precision vises, or specialized fixture bases.
Enabling Flexible Manufacturing Systems (FMS): Upon pallet entry into the workstation, the machine tool automatically identifies the workpiece model and invokes the corresponding machining program.
High-Value Workpiece Traceability During Manufacturing:
Machine a small process hole and embed a label on workpieces such as aero-engine blades, medical implant blanks, and high-end molds.
Achieving seamless data binding and traceability throughout the entire process, from roughing, heat treatment, and finishing to inspection, meeting the stringent regulatory requirements of the aerospace and medical industries.