PAN1780 (nRF52840)

ENW89854A1KF

The PAN1780 is a Bluetooth® 5.3 Low Energy Module based on the Nordic nRF52840 single-chip controller. The Bluetooth® 5.3 feature enables a higher symbol rate of 2 Mbps using the high-speed LE 2M PHY. Furthermore, the new LE advertising extensions allow for much larger amounts of data to be broadcasted in connectionless scenarios. In addition to Bluetooth® 5.3, the qualified Bluetooth® mesh profile stack supports 802.15.4 and NFC-A. Also available is the PAN1780-AT, a variant with additional AT Command Set. 

With its ARM® Cortex®-M4F a 1MB Flash and a 256kb RAM, the PAN1780 offers high design flexibility. It can easily be used in standalone mode, thereby eliminating the need for an external processor - saving complexity, space and cost.

Technical Specification

Item

Performance characteristics

Order number ENW89854A1KF (Standard)
ENW89854A4KF (APPProtect)
Production status Mass production
RF category Bluetooth® 5.3 Low Energy, IEEE® 802.15.4, NFC
Software nRF Connect SDK based on Zephyr
Used IC nRF52840
Rx sensitivity -95 dBm @1Mb/s,-103 dBm @125kb/s
Tx power max +8 dBm
Antenna option Ceramic Antenna
Size (l x w x h) [mm] 15.6 x 8.7 x 2.0
Power supply [V] 1.7 to 5.5
Power consumption Tx 4.8 mA @0dBm (3.3V)
Power consumption Rx 4.8 mA (3.3V)
Power consumption sleep <1 µA
Interfaces GPIO, UART, QSPI, I2C, I2S, PDM, ADC, PWM, NFC-A, USB2.0
Microcontroller ARM® Cortex®-M4F
Memory 1MB Flash and 256kB RAM
Speciality Integrated 32kHZ Crystal
Evaluation kit Evaluation Board (ENW89854AUKF)
Certification CE RED / FCC / ISED / MIC / KCC / RCM / SRRC
Operating temperature -40 to +85 °C
Standard packaging QTY 1500 pcs

 

Evaluation Boards

New Evaluation Board for PAN1780 with Arduino form factor Panasonic Industry

The evaluation board for PAN1780 features

  • PAN1780 module
  • Segger J-Link on-board Debugger
  • FTDI UART-USB converter
  • 4 User Buttons
  • 4 User LEDs
  • Native USB interface
  • NFC interface
  • Access to all GPIOs
  • Arduino UNO R3 pinheader
     
P/N Package includes Stock Search
ENW89854AUKF 1x PAN1780 Evaluation Board Arduino form factor BUY

 

Get Started!

For hardware design requirements please have a look at the Module Integration Guide. It is intended to support the easy integration of the module into a product and to ensure the compliance with regulatory requirements.

PAN1780 EVB documentation

Man_notebook

Get all the technical information on the PAN1780 Evaluation Board here!

Contents of the Wireless Connectivity Development Hub:

  • User Manual for the PAN1780 EVB
  • Downloadable schematics of the Evaluation Boards (EVBs) as reference design

Click here: PAN1780 - Wireless Connectivity Development Hub (panasonic.de)

Cooperation with Finnish mesh connectivity provider Wirepas

Wireless connectivity Wirepas landing page Teaser Panasonic Industry

Find out more about the Wirepas Massive stack for reliable and scalable meshed solutions and how our PAN1780s can be used as Wirepas Nodes.

  • based on 2.4 GHz
  • over 100.000 devices per network
  • AES-128 encryption
  • interference optimization

Datasheet

Name File type Size Date Language
PDF WM PAN1780 Product Flyer Flyer, Leaflet 373 KB 02.06.2020 English
PDF WM PAN1780 Product Specification Data sheet 1 MB 02.08.2023 English

Guides

Name File type Size Date Language
PDF WM PAN1780 Application Note Manual 1 MB 19.10.2020 English
PDF WM PAN1780 Module Integration Guide Manual 4 MB 19.11.2020 English

Environmental

Name File type Size Date Language
PDF WM REACh Environmental, REACh 3 MB 16.08.2024 English
PDF WM RoHS Environmental, RoHS 3 MB 16.08.2024 English

Others

Name File type Size Date Language
PDF Wireless Connectivity Product Leaflet Flyer, Leaflet 2 MB 16.09.2024 English
PDF Building Automation - Energy Management Solutions Catalog, Brochure 1 MB 01.03.2022 English
PDF EV Charging Solutions from Panasonic Industry.pdf Catalog, Brochure 3 MB 25.10.2023 English
PDF Moving forward with Bluetooth Low Energy Whitepaper 1 MB 10.12.2024 English
PDF Modules for a wireless world Whitepaper 795 KB 24.07.2020 English

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