NFC-enabled chip
High-frequency RFID chip with NFC functionality – can be read and written with all common NFC-enabled smartphones.
MODERN CYBORG
Radio-Frequency Identification (RFID) implants are subdermal devices inserted under the skin using a hollow needle. The transponder is encased in a glass capsule, also called a “tag.”
Each RFID system (with an antenna in a data carrier) contains a globally unique identification number that can be read using a reader (consisting of an antenna and a decoder). Magnetic or electromagnetic fields are used to read the transponder. This type of identification is permanent (removal is difficult) and not visible from the outside.
Due to numerous inquiries from our clients, we want to make it clear that tracking and monitoring by third parties is not possible!
RFID transponders generally do not have a power source. They are passive and therefore have a very short range. The chip can only be read at a short distance of about 5 to 20 cm between the reader and the skin.
Are microchip implants suitable for sensitive data? Data that must never be read “secretly”? The first or current generation of microchip implants is not designed for this type of information.
Let’s take a closer look at the types of implants and chips:
The first unencrypted access cards / key fobs / implants (low-frequency systems, e.g., 125 kHz) have been and still are used to open doors and contain only a single unique number. Their main function was and is to store this number, which can be read by the corresponding reader (e.g., access system). “Security” consists of physically having the card and being in close contact with a reader. Compared to the card, the implant (e.g., xEM or xDW) has the advantage that it cannot be lost, lent, or stolen. Secretly reading someone’s hand is much more complicated and would be noticed.
The next level of security is called Advanced Encryption Standard (AES). Here, the user ID is cryptographically secured in a symmetric manner. Symmetric encryption is similar to the old codes children used in school to encode and decode secret messages. Two people need the same key for communication. This works until someone cracks or steals the code. Most common access cards also rely on this system (including microchip implants like xNT or flexNT).
Beyond that, there are PKI systems (Public Key Infrastructure). The VivoKey in its smallest variant uses this approach. PKI systems allow asymmetric identification and authentication of people. The emphasis is on asymmetric, which provides a much stronger security level than symmetric systems. In asymmetric authentication, each person has two keys – a public key and a private key. Anyone can access the public keys. If someone wants to send information, they use the recipient’s public key, but only the corresponding private key can decrypt the data sent via the public key. For VivoKey users, these keys lie subcutaneously under the skin.
To bridge long reading distances (several meters), the RFID transponders have a power supply (battery).
The RFID transponders do not have their own power supply.
The energy is generated by the reader (reading distances up to approx. 60 cm).
The new era of communication – the “Digital Transformation 2.0 – Human Edition.” For everyone who is serious and wants to shape technological change from the start – the NFC implant with one-touch technology. With a writable RFID chip (Radio-Frequency Identification) under the skin, the possibilities are virtually limitless.
The RFID chip is implanted between the thumb and index finger using an implantation syringe. Instead of PINs or passwords, you simply move your hand over the scanner device. The chip is no larger than a grain of rice and can be “programmed” via NFC apps.
Through NFC technology (Near Field Communication, a wireless communication method), the data on the chip can be read and processed. Our RFID chips come from the U.S. company “Dangerous Things.” They offer the highest quality and safety and are considered state-of-the-art in this field, incomparable to cheap competitor products (often from Asia).
The xNTi set we use contains an ISO/IEC 14443-A NTAG216 RFID chip set. This chip set offers 100% NFC Type 2 compatibility. Inside the 2 x 12 mm cylindrical Schott 8625 biocompatible glass casing is the chip set.
The xNT can be read and written by the most common 13.56 MHz RFID systems as well as all NFC-compatible readers/writers, including NFC-enabled Android smartphones. It currently does not work with Apple iOS products. For programming the chip, we recommend the NFC TagWriter from NXP, the Dangerous NFC Writer, or TapUnlocker. Each chip is tested by Dangerous Things before delivery.
We do not stock RFID chips in-house; they must be ordered externally and brought to the appointment.
The costs refer only to the implantation of the chips by our studio.
Hier ist die englische Übersetzung deines Satzes:
Texts based on the German description from “digiwell.de”.