Showing posts with label NFC. Show all posts
Showing posts with label NFC. Show all posts

Wednesday, December 5, 2018

BLE Module Firmware Development Q&A: NFC pins creates “Error 404 – signal not found” (technically)

When you start developing your firmware for your Nordic nRF52832 solution-based Raytac BLE module, you will (like on most other projects) bump into some difficulties.
The other day, we had yet another case where a simple thing caused major difficulties for even some of the brightest people – a customer couldn’t get their GPIO direction bit to work.
Although not too difficult to solve, it’s a common error that most customers end up having on our modules and that is because Pin 0.09 & 0.10 are set to NFC per Nordic’s default settings. In order to be able to use these pins as normal GPIOs, you will have to change those settings.
The two pins I am talking about are the ones linked to the NFC-part to the far left in the circuit example below:
So, to convert these two pins to normal GPIOs, here’s what you need to do:
In SES, you’ll need to add CONFIG_NFCT_PINS_AS_GPIOS.






Pic 1
Right-click on the project and click “Edit Options”
Pic 2
Select “Common”, click on “Preprocessor” under “Code” and then click “CONFIG_NFCT_PINS_AS_GPIOS”

Check out the link below for a reference example on Nordic’s DevZone.
Reference link: Nordic DevZone – NFC pins into GPIOs




Raytac Corporation


A Bluetooth Low Energy module maker based on Nordic Solutions!

www.raytac.com          email: cs@raytac.com          


Tuesday, April 25, 2017

Friday, March 31, 2017

Guess What? Raytac is ready for nRF52840


Raytac now is ready for coming nRF52840 SoC with Bluetooth specification BT5.

The module’s mass production schedule will be ascertained after Nordic IC supplying schedule affirmed. (expected around 2017 Q4 or 2018 Q1)


Monday, February 6, 2017

New NFC feature on nRF52 Series: Read/write capable Type 4 Tag NFC library in nRF5 SDK.

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 & nRF52 solution 
(nRF51822 & nRF51422 & nRF52832 & nRF51802)
www.raytac.com            Tel: +886.2.3234.0208
email: service@raytac.com

NFC feature is an interesting function in nRF52 series which can help developers and consumers to extent the device flexibility and accessibility.
Mostly, people knows that the NFC for nRF52 can work for paring work only.
Here Nordic Developer Zone introduced the new features of nRF52 for Type 4 Tag in nRF5 SDK.
Thus, not only used as a standard tag type for storing a web link or a text to launch apps and secure BLE pairing as known as Type 2 Tag. (The library already in nRF5 SDK), but also supports more features which enhance a faster communication and exposing data (known as NFC Type 4 Tag). Thus, nRF52 now can even write data to a tag with an NFC Reader/Writer such as smartphone and used in many secure transactions systems.

For more detail information, you can continue the reading in below which quoted from original post, or simply visit Nordic Developer Zone



Friday, December 23, 2016

Nordic nRF52840 Overview

Raytac Corporation 

Bluetooth module maker based on Nordic nRF51 & nRF52 solution 
(Nordic nRF51822 & nRF51422 & nRF52832 & nRF52840)
Bluetooth Specification Version: BT4.0 & BT4.1 & BT4.2
Tel: +886.2.3234.0208
email: service@raytac.com
https://raytacblog.wordpress.com/

Quoted from Nordic


nRF52840

Advanced Multi-protocol SoC supporting Bluetooth 5 / ANT /802.15.4 / 2.4GHz Proprietary Acitve

The nRF52840 SoC is an advanced, highly flexible ultra-low power multiprotocol SoC ideally suited for ultra low-power wireless applications. The nRF52840 SoC is built around a 32-bit ARM® Cortex™-M4F CPU with 1MB flash and 256kB RAM on chip. The embedded 2.4GHz transceiver supports Bluetooth® low energy (Bluetooth 5), 802.15.4, ANT and proprietary 2.4GHz protocols. It is on air compatible with existing nRF52 Series, nRF51 Series, and nRF24 Series products from Nordic Semiconductor.



Bluetooth 5
The nRF52840 has hardware support on-chip for Bluetooth 5. This includes long range and high throughput capability. It supports all Bluetooth low energy physical layer bit rates and modulation schemes.

Processing Power
The nRF52840 incorporates a powerful Cortex-M4F processor running at 64 MHz enabling the most demanding applications with complex arithmetic requirements to be realized in a single chip solution. This CPU configuration supports DSP instructions, HW accelerated Floating Point Unit (FPU) calculations, single-cycle multiply and accumulate, and hardware divide for energy-efficient processing complex operations.
Multiprotocol Radio
The 2.4GHz radio supports multiple protocols including Bluetooth low energy, ANT, 802.15.4 and 2.4GHz proprietary. It supports Bluetooth low energy 2Mbs and 1Mbs and Bluetooth 5 long range (500kbs and 125kbs). The radio supports high resolution RSSI measurement and automated functions to reduce CPU load, including EasyDMA for direct memory access for packet data and assembly. Nordic provides protocol stacks for Bluetooth low energy. ANT protocol stacks are available from ANT.

Memory to expand
The nRF52840 has extensive on-chip memory in both flash (1MB) and RAM (256kB) offering powerful possibilities for today’s advanced wireless applications.

Power Efficiency
The nRF52840 SoC employs power and resource management to maximize application energy efficiency and battery life. The supply range between 1.7V and 5.5V supports primary and secondary cell battery technologies and direct USB supply without the need for external regulators. All peripherals have independent and automated clock and power management to ensure they are powered down when not required for task operation to keep power consumption to a minimum without the application having to implement and test complex power management schemes.The nRF52840 has a comprehensive system of automated and adaptive power management features. These features are built into all aspects of device operation from power supply switching, to peripheral bus/EasyDMA memory management, and automated shut down of all but the absolute essential peripherals required to perform a task.

ARM® TrustZone® Cryptocell-310
ARM Cryptocell-310 is a powerful on-chip cryptographic co-processor providing cryptographic functions and services to speed up operations significantly, save CPU processing time and reduce energy consumption. It incorporates a true random number generator (TRNG) and support for a wide range of asymmetric, symmetric and hashing cryptographic services for secure applications.
On-Chip NFC Tag
NFC™-A tag support is included on chip. NFC Type 2 and Type 4 tag emulation protocol stacks are provided by Nordic opening up a range of new applications, like NFC payment, and improved user experience for existing BLE applications with Out-of-Band (OOB) pairing. OOB pairing using NFC simplifies the process of authenticated pairing between two Bluetooth devices by exchanging authentication information over an NFC link.

USB 2.0
The nRF52840 has on-chip USB 2.0 (Full speed) support and on-chip VBUS regulation allowing for direct connection to USB hosts for data transfer and direct USB power for hosted applications.

Package Options
The nRF52840 is available in 7x7mm 73pin AQFN package with 48 available GPIO.

SoftDevices
The Nordic protocol stacks are known as SoftDevices. The nRF52840 is supported by the S140 SoftDevice. The S140 SoftDevice is a Bluetooth 5 pre-qualified Bluetooth low energy protocol stack.

More information on the nRF52840 can be found on Nordic's Infocenter

FEATURES

  • Advanced Single chip 2.4 GHz multi-protocol SoC
  • 32-bit ARM Cortex-M4F Processor
  • 1.7v to 5.5v operation
  • 1MB flash + 256kB RAM
  • Bluetooth 5 support for long range and high throughput
  • 802.15.4 radio support
  • On-chip NFC
  • PPI –Programmable Peripheral Interconnect
  • Automated power management system with automatic power management of each peripheral
  • Configurable I/O mapping for analog and digital I/O
  • 48 x GPIO
  • 1 x QSPI
  • 4 x Master/Slave SPI
  • 2 x Two-wire interface (I²C)
  • I²S interface
  • 2 x UART
  • 4 x PWM
  • USB 2.0 controller
  • ARM TrustZone CryptoCell-310 Cryptographic and security module
  • AES 128-bit ECB/CCM/AAR hardware accelerator
  • Digital microphone interface (PDM)
  • Quadrature decoder
  • 12-bit ADC
  • Low power comparator
  • On-chip 50Ω balun
  • On-air compatible with nRF52, nRF51 and nRF24 Series

APPLICATIONS

  • Advanced high performance wearables
  • Wearables for secure payments
  • Virtual Reality/Augmented Reality systems
  • Smart Home sensor networks
  • Smart city sensor networks
  • High performance HID controllers
  • Internet of Things (IoT) sensor networks
  • Smart door locks
  • Smart lighting networks
  • Connected white goods


Wednesday, December 7, 2016

Bluetooth 5-ready Nordic nRF52840 multi-protocol SoC released!

Raytac Corporation 

Bluetooth module maker based on Nordic nRF51 & nRF52 solution 
(Nordic nRF51822 & nRF51422 & nRF52832 & nRF52840)
Bluetooth Specification Version: BT4.0 & BT4.1 & BT4.2
Tel: +886.2.3234.0208
email: service@raytac.com
https://raytacblog.wordpress.com/

Quoted from Nordic Press released!
https://www.nordicsemi.com/eng/News/News-releases/Product-Related-News/Bluetooth-5-ready-SoC-from-Nordic-redefines-scope-for-smart-home-IoT-and-wearables-by-delivering-4x-range-2x-bandwidth-and-best-in-class-security


Nordic Semiconductor has today released the new nRF52840 multi-protocol SoC with on-chip support for the upcoming Bluetooth 5 specification. In addition to Bluetooth 5 the nRF52840 also introduces on-chip support for the 802.15.4 standard. With Bluetooth 5’s new high throughput and long range modes and 802.15.4, it offers unparalleled development opportunities for connected devices for IoT. These opportunities include advanced single-chip wearables, wearables with payment options and connected home devices.


Bluetooth 5 will undergo ratification by the Bluetooth SIG beginning December 6th 2016. Upon completion, we will provide Bluetooth 5-ready SoftDevices to support nRF52840 and the nRF52832 (high-throughput mode only).



Bluetooth 5-ready nRF52840 multi-protocol SoC released!
Highlights
  • Bluetooth 5 support
  • 802.15.4 support
  • ANT/2.4GHz RF support
  • 1MB/256kB flash/RAM
  • Cortex-M4F
  • ARM® CryptoCell cryptographic accelerator
  • USB 2.0 on-chip
  • 48 configurable GPIO
  • NFC
  • QSPI
  • Extended range of digital interfaces
  • Dual-channel PDM digital microphone input
  • 5v to 1.7v operation
The nRF52840 is available in a 73-pin 7x7mm AQFN package, and supported by the nRF52840 Preview Development Kit. View the Product Specification for more details!
Click below to view the product on our website, download the product specification or check out the nRF52840 Preview DK:



Wednesday, May 25, 2016

6 wireless technologies for wearables

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 & nRF52 solution 
(nRF51822 & nRF51422 & nRF52832 & nRF51802)
Tel: +886.2.3234.0208
email: service@raytac.com  
 https://raytacblog.wordpress.com/

Quoted from Nordic Blog

Which one of these wireless technologies is best for your wearable product?



Are you creating a wearable product, but not sure of what wireless technology to choose? The way modern APIs work, developers don’t necessarily need to know the technical details. But having a basic understanding of the underlying technology will help you make apps that are more efficient, more responsive and easier to use.
Which solution is best for your wearable product? This depends on your requirements for bandwidth, power considerations and range. Here’s a brief overview of the 6 most common wireless technologies to consider.


Near Field Communication (NFC)



NFC works best for wearables that require low power consumption. It involves the transfer of tiny amounts of data over a very short range, essentially by touching two devices together. The devices will switch between two different modes: Active and passive. The power consumption for NFC is similar to what we see in Bluetooth Low Energy, although higher when communicating with a passive tag.

If you need your wearable to transfer data over a longer range, you should look for other options.

Bluetooth Low Energy (BLE)



Today, most wearables are running on Bluetooth Low Energy (BLE, formerly called Bluetooth Smart).
This technology is known as an easy to implement, low-cost option that requires very little power from your wearable. Your product can be powered by a coin cell battery for months - even years in some cases. But BLE comes with a compromise: Your data throughput will be limited. As most wearables generally transfer very little data, product owners can usually live with this.
The BLE chip is small, and fits nicely into an esthetically pleasing wearable that is convenient for the user to wear. A line-of-sight range of up to 100 meters is possible.

Using BLE requires your device to be paired with a host, most usually a cellphone with an app activated.

If you plan for your wearable to transfer higher amounts of data frequently,Bluetooth Low Energy may not be the best choice. Limited data transfer capacity makes this technology unsuitable for audio and video streaming, for example.

ANT



The wireless network technology ANT is a good option for sports wearables. A subsidiary of Garmin, ANT is huge in the sports and fitness segment where it is typically used for monitoring of heart rate, cycling power, distance and speed. Many of today’s cycling and fitness brands use ANT for their wearables. In fact, it has almost become a de facto standard in cycling.

The sensors and other nodes will act as either slaves or masters within a wireless network. Each node can transmit, receive or even function as a repeater to increase the range of the network. You can configure the network to spend long periods in low-power sleep mode, consuming extremely little power.

Bluetooth Classic



Initially a standard intended to cover a lot of use cases for wireless communication, Bluetooth Classic (originally named slimply 'Bluetooth', of course) found its niche in audio. Today it is the de facto standard for audio streaming, whether from your smartphone to a headset, speaker or in-car multimedia system.
Compared to BLE, Bluetooth Classic requires much higher bandwith and therefore more power. The network topology is limited and not suitable for large sensor networks.

Wi-Fi


If your wearable needs to transfer a lot of data with as little lag as possible, Wi-Fi is your best option. The technology is best when streaming huge amounts of data, like video, but its main drawback is high power consumption that will require daily battery charging.


By using Wi-Fi, your wearable product can connect directly to the Internet via a Wi-Fi Access point.
Google Glass uses Wi-Fi to transfer graphics at high data rates for a better user experience. But the high power consumption of the display, and the high CPU load, requires the consumer to charge the device frequently. Be aware that such charging requirements will be a very important factor in overall customer satisfaction.

Cellular



In a similar way to how your smartphone operates, using a cellular radio means that your wearable device can talk directly to the cellular network. Although convenient, as there is no need for a bridge device such as a smart phone to access the cloud, today’s cellular technologies are not suitable for small wearable devices. Power consumption is high and the physical dimensions are usually rather large. In the future, we will see new cellular technologies that are more competitive in the wearable space. But we're not there yet.

The best of all worlds?



Some wearables combine different wireless technologies to take advantage of different aspects of each method. The Apple Watch uses Bluetooth Classic, BLE, Wi-Fi, and even NFC for mobile payments. Nordic Semiconductor is currently the only manufacturer delivering chips that support both ANT and Bluetooth Low Energy (BLE), as well as NFC - all in one low power, 'system on chip' solution.

Hopefully, you’re now a little clearer on which wireless technology is best for you. If you’re still struggling, consider your product priorities. Is it size, power consumption, user experience, cost, or something else? Once you're clear on the priorities for your wearable, your wireless communication options become a lot clearer, too.

Tuesday, May 17, 2016

Nordic nRF52 Module Ready For Evaluation

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 & nRF52 solution 
(nRF51822 & nRF51422 & nRF52832 & nRF51802)
Tel: +886.2.3234.0208
email: service@raytac.com  
 https://raytacblog.wordpress.com/


Raytac's nRF52 module <MDBT42Q series> now is ready to ship for customer's evaluation.
Customers may access to Raytac's email for further request.

Part No.: MDBT42Q-512K







Tuesday, December 22, 2015

Raytac Released nRF52 Module (P/N: MDBT42-512 / MDBT42-P512)

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 & nRF52 solution 
(nRF51822 & nRF51422 & nRF52832 & nRF51802)
Tel: +886.2.3234.0208
email: service@raytac.com
https://raytacblog.wordpress.com/

Raytac is pleased to released latest module based on Nordic nRF52 (nRF52832) solution for BT4.2.

Part No.P/N: MDBT42-512  (Chip Antenna Version)P/N: MDBT42-P512 (Printed Antenna Version)

GPIO: 32
Dimension: 13.8 x 8.8 x 1.9 mm (L x W x H)
Expected Transmission: Over 80M (Chip Antenna) / 60M (Printed Antenna)
Expected MP schedule: 2016 1Q
RF regulation Certification completed: 2016 2Q


Part No.P/N: MDBT42Q-512  (Chip Antenna Version)P/N: MDBT42Q-P512 (Printed Antenna Version)

GPIO: 32
Dimension: 16.0 x 10.0 x 2.2 mm (L x W x H)
Expected Transmission: Over 80M (Chip Antenna) / 60M (Printed Antenna)
Expected MP schedule: 2016 1Q
RF regulation Certification completed: 2016 2Q












Thursday, November 26, 2015

How to use NFC to pair your devices – by Nordic Semiconductor

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 & nRF52 solution 
(nRF51822 & nRF51422 & nRF52832 & nRF51802)
Tel: +886.2.3234.0208
email: service@raytac.com

This is the easiest way to automatically pair two mobile devices! The only thing you need is a mobile device with ‪#‎NFC‬ interface, and the latest ‪#‎Nordic‬ ‪#‎nRF52‬ Series SoC which integrates with‪#‎ARMCortexM4‬‪#‎BluetoothSmart‬, and #NFC


Monday, September 21, 2015

Nordic Global Tech Tour Asia 2015~Don't miss this unique opportunity to meet the future!

Raytac Corporation
A BT4.1 & BT4.2 module maker based on Nordic nRF51 solution 
(nRF51822 & nRF51422 & nRF52832)

www.raytac.com
Tel: +886.2.3234.0208
email: service@raytac.com



Please register in below link
http://www.nordicsemi.com/eng/Events/Global-Tech-Tour-2015/Asia-Pacific


Don't miss this unique opportunity to meet the nRF52 Series experts in person. Kickstart your project development in a day!


Agenda


  • Introduction to nRF52 family
  • Radio and Layout
  • Power management
  • Softdevices
  • SDK
  • PPI and GPIOTE; Demo use of the PPI and GPIOTE and EasyDMA
  • The nRF52 flavor of standard peripherals like: Timers, RTCs, TWIs, SPIs, ADC and how to use them efficiently in low power designs
  • Advanced peripherals for Audio and control: I2S, PDM and PWM
  • Near Field Communication, NFC, and how it can ease secure pairing and commissioning in wireless system
  • Breakdown of a full Bluetooth Smart application built using the S132 Softdevice, SDK example code and snippets from the code examples covered so far. This will be demonstrated with mobile apps and PC tools for solution testing and development
  • Solutions to support the growing IoT market
  • Wrap up with Q&A

Wednesday, July 15, 2015

Nordic nRF52832 Module Design In Process

Raytac Corporation
A BT4.1 module maker based on Nordic nRF51 solution (nRF51822 & nRF51422)
www.raytac.com
Tel: +886.2.3234.0208
email: service@raytac.com

https://raytacblog.wordpress.com/


Nordic nRF52 series (nRF52832) Module design work kick off!!

Raytac Part No.: MDBT42