🚀 Browse our open source reference applications to accelerate your IoT project!

Search
Documentation Results
End of results
Community Results
End of results
Support
Blues.io
Notehub.io
Shop
Sign In
Search
Documentation Results
End of results
Community Results
End of results
Support
Blues.io
Notehub.io
Shop
×
HomeHardware
Notecard Datasheet
Notecarrier DatasheetFunctional DescriptionPackage ConfigurationPower InformationGPS (GNSS) Antenna RequirementsHeader DescriptionsSpecificationsOrdering InformationDesign FilesTerms and ConditionsRevision HistoryContact Information
Swan Datasheet
Sparrow Datasheet
Application Notes
Notecarrier-A Series Solar JST Input
Notecard Host System Design Guide
Airnote
Airnote Datasheet
Airnote Quickstart
Rate this page  
  • ★
    ★
  • ★
    ★
  • ★
    ★
  • ★
    ★
  • ★
    ★
Can we improve this page? Send us feedbackRate this page
  • ★
    ★
  • ★
    ★
  • ★
    ★
  • ★
    ★
  • ★
    ★
© 2023 Blues Inc.Terms & ConditionsPrivacy
blues.ioTwitterLinkedInGitHubHackster.io
Disconnected
Notecard Disconnected
Having trouble connecting?

Try changing your Micro USB cable as some cables do not support transferring data. If that does not solve your problem, contact us at support@blues.com and we will get you set up with another tool to communicate with the Notecard.

Advanced Usage

The help command gives more info.

Connect a Notecard
Use USB to connect and start issuing requests from the browser.
Try Notecard Simulator
Experiment with Notecard's latest firmware on a Simulator assigned to your free Notehub account.

Don't have an account? Sign up

Blues Wireless Notecarrier® Datasheet

Select Hardware
Notecarrier-ANotecarrier-AANotecarrier-AENotecarrier-AFNotecarrier-ALNotecarrier-B v1.0Notecarrier-B v2.1Notecarrier-FNotecarrier-Pi

Companion development boards for easy prototyping and deployment.

Notecarriers are available in several form-factors to facilitate rapid prototyping. Depending upon the variant, a Notecarrier may be designed with direct host integration, size optimization, integrated cellular/Wi-Fi and GNSS antennas, or even to be soldered directly into a solution for low-volume production.

Functional Description

Notecarriers are designed to bridge the gap between prototype and production for the Notecard. The Notecard is designed to be socketed directly onto the circuit board using an edge connector socket, along with a customer's MCU, sensors, and controls. While such a model provides a highly modular configuration for the final product, it can make prototyping unnecessarily difficult.

Notecarriers offer breakout connections for the Notecard, as well as circuitry to provide power management, protection and signal amplification.

Features

  • Simple. Provides breadboard compatible pins or solderable mask for direct connections.
  • Compatible. Level shifters ensure compatibility with 3.3V or 5V equipment.
  • Convenient. Powered by a micro-USB connector (requires 2A supply).
  • GPS Ready. Models are either active GPS compatible, or feature a built-in antenna to enable GNSS connectivity.

Package Configuration

Notecarrier-A (Antenna)

Notecarrier-A (CARR-A) is designed for building battery-powered wireless applications.

View in Store

Notecarrier-A (front) Notecarrier-A (back)

  • Pre-soldered female Notecarrier-A 22-pin header for easy access to Notecard edge connector pins.
  • Notecard edge connector socket and mounting screw receptacle .
  • Micro-USB port to power Notecarrier and provide a USB Serial command interface to Notecard.
  • Onboard cellular/Wi-Fi and active GPS antennas.
  • External Nano-SIM slot for additional carrier connectivity.
  • JST PH connector for a LiPo battery.
  • JST PH connector for a solar panel.
  • Two Qwiic connectors for connecting I2C peripherals.
  • LiPo charging circuit.
  • PCB Dimensions: 68mm x 75mm
  • Center of Mounting Holes: 59mm x 66mm

Power Information

All Notecarriers can be powered by connecting directly to the Micro-USB port. However, most installations will not have USB power available, so several alternate power options are provided by the various Notecarrier models:

  • attaching a LiPo battery.

    The LiPo battery must be a single-cell 3.7V battery with a 2-pin JST PH connector.

  • attaching a solar cell (must be accompanied by LiPo).

    The solar charging circuit is designed for use with a 4.5-7V solar panel.

  • applying 2.5-5.5VDC to the V+ pin.

    Commonly provided via DC power supply or non-rechargeable battery.

warning

Typical USB ports may only be capable of supplying 500 mA of current, which might not be enough to power Notecard during a cellular connection to a GSM network (which can spike to 2A). In this situation, you're advised to supplement power to your Notecarrier with an external source (e.g. a LiPo battery).

GPS (GNSS) Antenna Requirements

All Notecarrier models are designed to support active GPS, and several Notecarrier models provide built-in antennas ready to be connected to a Cellular Notecard using the included U.FL cables.

Active GPS Onboard Antenna

The Notecarrier-A models feature built-in, active GPS antennas and are designed with a sufficient buffer to isolate the antenna and minimize interference with the other electronics. Notecarrier-A models do NOT support external GPS antennas.

Header Descriptions

Notecarrier-A 22-Pin Header

Samtec CES-122-01-T-S

Pin NameDirectionUsage
<VUSBIN/OUTAccess to VUSB pin of the USB jack
<BATIN/OUTAccess to battery voltage
<MAINOUTAccess to operating voltage (<VUSB, <BAT or V+)
<VIOOUTReference voltage for digital I/O
V+IN2.5-5.5V, <8uA idle, <500mA typical, 2A surge max (GPRS)
GNDINGround
ENIN>1.1v will power on the module, used for main product ON/OFF and for when product is being shipped to ensure that there is no communications attempted. If USB is active as power source, this pin is ignored, else it is required to be tied high or low.
RSTIN>0.8v pulse will cause hard-reset of the module. This pin is internally pulled low, so NC is acceptable.
SCLIN/OUTI2C clock request interface
SDAIN/OUTI2C data request interface
ATTNOUTConfigurable interrupt signal
AUXENIN/OUTAPI-selectable modes of operation
AUXRXIN/OUTAPI-selectable modes of operation
AUXTXIN/OUTAPI-selectable modes of operation
AUX1IN/OUTAPI-selectable modes of operation
AUX2IN/OUTAPI-selectable modes of operation
AUX3IN/OUTAPI-selectable modes of operation
AUX4IN/OUTAPI-selectable modes of operation
RXINUART serial receive request interface
TXOUTUART serial transmit request interface

Specifications

Electrical Characteristics

DC Characteristics

DescriptionMinimumMaximumUnit
Supply Voltage2.55.5V
Supply Current5002000mA
Solar JST Charging Range**3.947.18V

**For detailed information regarding the solar charging circuit calculations and behavior, please refer to the Blues Notecarrier-A Series Solar JST Input application note.

Absolute Maximum Ratings

DescriptionMinimumMaximumUnit
Storage temperature-3570°C
Solar JST Voltage018.18V
Solar JST Input Current-1250mA
note

Actual values may vary based on local conditions such as atmospheric conditions and distance to the cell tower.

Ordering Information

  • Notecarriers
  • Development Kits

Design Files

Open source hardware designs for all Notecarriers are maintained in the note-hardware GitHub repository.

Terms and Conditions

Visit Blues Hardware Terms & Conditions .

Revision History

AuthorDateSummary
Ray Ozzie2019-2020Document drafted
John Wiedey2020Various improvements
Sean Taylor2020Various improvements
Zachary J. Fields01 OCT 2020Updated information and translated to markdown
Brandon Satrom04 JAN 2021Added link to design resources
Greg Wolff13 JAN 2021Added BAT pin information to Notecarrier AF datasheet
Brandon Satrom07 APR 2022Added Notecarrier-A information
Zachary J. Fields20 JUL 2022Added Notecarrier-F information
Zachary J. Fields24 OCT 2022Added Notecarrier-B v2 information
Rob Lauer28 OCT 2022Added versioning for Notecarrier-B v1/v2
TJ VanToll05 JAN 2023Added Notecard Outboard Firmware Update information
Rob Lauer28 FEB 2023Re-labeling Notecarrier-B as "Basic"
Rob Lauer01 MAR 2023Added PCB/Mounting Hole Dimensions

Contact Information

Blues Inc.
https://blues.io
50 Dunham Ridge Suite 1650
Beverly, MA 01915
support@blues.io