This document is primarily intended for solution providers, system integrators, application developers, and product marketers who want to evaluate and test the functionality provided by the OPTIGA Authenticate NBT. ™ User guide Please read the sections "Important notice" and "Warnings" at the end of this document Revision 2.1 www.infineon.com 2024-05-03...
OPTIGA Authenticate NBT ™ Development kit guide List of tables List of tables Table 1 NBT Secure Shield antenna connections ...........8 Table 2 NBT Secure Shield five-pin header (J1) to connect to microcontroller boards .
OPTIGA Authenticate NBT ™ Development kit guide List of figures List of figures Figure 1 OPTIGA Authenticate NBT Development Kit with its main components ..... . 5 ™...
OPTIGA Authenticate NBT ™ Development kit guide 1 Introduction Introduction The OPTIGA Authenticate NBT Development Kit (shown in Figure 1) is an assembly of hardware components ™ that allows to evaluate and develop applications for the OPTIGA Authenticate NBT. ™ Figure 1 OPTIGA Authenticate NBT Development Kit with its main components...
™ Difference to the OPTIGA Authenticate NBT Development Shield bundle ™ In addition to the OPTIGA Authenticate NBT Development Kit bundle, Infineon also offers the ™ OPTIGA Authenticate NBT Development Shield bundle (refer to the product page or user guide for more ™...
OPTIGA Authenticate NBT ™ Development kit guide 2 OPTIGA Authenticate NBT Development Kit bundle ™ Figure 2 Components of the OPTIGA Authenticate NBT Development Kit bundle ™ OPTIGA Authenticate NBT Shield ™ This section describes the OPTIGA Authenticate NBT Shield in detail. The shield consists of two primary ™...
Bluetooth and Wi-Fi wireless interfaces, various types of input buttons, and a few LEDs for output. These board features are used to debug and demonstrate the capabilities of the OPTIGA Authenticate NBT. This board's ™ specification can be found on Infineon's product website for the prototyping kit [5]. User guide Revision 2.1 2024-05-03...
OPTIGA Authenticate NBT ™ Development kit guide 2 OPTIGA Authenticate NBT Development Kit bundle ™ Figure 7 depicts the PSoC 62S2 Wi-Fi BT Prototyping Kit and highlights the pins used to connect the ™ OPTIGA Authenticate NBT Development Shield via its CY8CPROTO-062S2 Adapter (refer to Chapter 2.4).
OPTIGA Authenticate NBT ™ Development kit guide 2 OPTIGA Authenticate NBT Development Kit bundle ™ In its default configuration, the antenna contains 7 windings and is designed to produce a 13,56 MHz resonance frequency when used with the included 10 cm UMCC cable and the OPTIGA Authenticate NBT's input ™...
2 OPTIGA Authenticate NBT Development Kit bundle ™ Example applications Infineon Technologies provides host libraries to support the integration of the OPTIGA Authenticate NBT into ™ custom applications on different platforms. In addition, multiple example applications demonstrate the capabilities of the device in different use cases. These implementations utilize the host libraries to demonstrate...
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ OPTIGA Authenticate NBT Development Kit usage ™ This chapter describes how to use the OPTIGA Authenticate NBT Development Kit bundle to evaluate the ™ OPTIGA Authenticate NBT's example applications for various use cases. The general description is targeted ™...
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ OPTIGA Authenticate NBT devices in productive settings are configured in the PERSONALIZATION life cycle ™ state (for example, in the product assembly line). The configuration of the OPTIGA Authenticate NBT can be ™...
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ • Open the app on the mobile phone and select the target use case in the NBT Personalization app • To personalize, tap the mobile phone's NFC antenna to the OPTIGA Authenticate NBT Development ™...
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ The OPTIGA Authenticate NBT Development Shield must be connected to the PSoC host MCU ™ ™ board's respective pins. For example, via the adapter board (see Chapter 2.4) or via flying wires A micro-USB cable is required to power the PSoC...
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ Figure 15 Attaching the NBT Shield to a custom host microcontroller board using the five-pin jumper wire 3.3.2 Rework for flexible shield placement The provided five-pin cable can be used to connect to a custom microcontroller, additionally to position the OPTIGA Authenticate NBT Shield away from the microcontroller (for example, to allow easier access).
OPTIGA Authenticate NBT ™ Development kit guide 3 OPTIGA Authenticate NBT Development Kit usage ™ Figure 17 Class 6 shield antenna in its default configuration with the 10 cm UMCC cable (7 turns) In addition, the antenna board can be directly connected to the NBT Secure Shield's L and L connectors (J2) using the two-pin header (J2.1).
OPTIGA Authenticate NBT ™ Development kit guide Glossary Glossary bill of materials (BoM) Bluetooth (BT) A short-range wireless technology standard that is used for exchanging data between fixed and mobile devices over short distances. capability container (CC) inter-integrated circuit (I2C) integrated development environment (IDE) A software application that combines multiple tools used for software development into a single environment.
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OPTIGA Authenticate NBT ™ Development kit guide Glossary printed circuit board (PCB) PSoC microcontroller ™ A range of general-purpose MCUs built on an ultra-low-power architecture ideal for battery-operated, low- power applications including embedded IoT applications. serial clock line (SCL) serial data line (SDA) unique identifier (UID) UMCC ultraminiature coax connector (UMCC)
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