102990843

FiPy 1.0
With Sigfox, LoRa, WiFi, BLE and cellular LTE-CAT M1/NB1,
the FiPy is the latest Pycom MicroPython enabled micro
controller on the market today the perfect enterprise grade
IoT platform for your connected Things.
Create and connect your things everywhere. Fast.
FiPy Features
- Powerful CPU
- Five Networks: WiFi, BLE, cellular LTE-CAT M1/NB1, LoRa
and Sigfox
-1KM Wifi Range
- MicroPython enabled
- Fits in a standard breadboard (with headers)
- Ultra-low power usage: a fraction compared to other
connected micro controllers
Processing
- Espressif ESP32 SoC
- Dual processor + WiFi radio System on Chip.
- Network processor handles the WiFi connectivity and the
IPv6 stack
- Main processor is entirely free to run the user application
- An extra ULP-coprocessor that can monitor GPIOs, the
ADC channels and control most of the internal peripherals
during deep-sleep mode while only consuming 25uA
Interfaces
- 2 x UART, 2 x SPI, I2C, I2S, micro SD card
- Analog channels: 8x12 bit ADCs, 2x8 bit DAC
- Timers: 2x64 bit with PWM with up to 16 channels
- DMA on all peripherals
- GPIO: Up to 22
Use the Pymakr IDE
Super easy code editor to write your Python scripts
Quick Verification
For easy and fast debugging use the interactive shell
that is accessible through telnet or one of the serial ports
Easy Upload
Upload your scripts, and any other files you want to the FiPy
via the FTP server
Locally or remotely
Reset the SiPy (you can do it locally, or remotely via Telnet)
Distributed by Pycom Ltd.
Copyright © 2017 by Pycom Ltd. All rights reserved. No part of
this document may be reproduced, distributed, or transmitted in
any form or by any means, including photocopying, recording, or
other electronic or mechanical methods, without the prior
Mechanical
Size: 55mm x 20mm x 3.5mm
External WiFi and
4MB RAM
External LoRa and
Bluetooth antenna
ESP32 Dual Core
connector
Sigfox antenna
Microcontroller and
connector
WiFi/Bluetooth 4.2
RF switch
radio
Reset switch
WS2812
RGB LED
and
LoRa and Sigfox
3V3 Ultra-Low
Bluetooth Antenna
transceiver
-Noise switching
regulator
8MB flash memory
Nano SIM socket
LTE CAT M1 / NB1
LTE CAT M1 / NB1
transceiver
antenna connector
Hash / encryption
Security & Certifications
SHA, MD5, DES, AES
- SSL/TLS support up to 1.2
WiFi Networking
- WPA Enterprise security
802.11b/g/n 16mbps
- AES encryption engine
Memory
Bluetooth
- RAM: 4MB
Low energy and classic
- Flash Memory: 8MB
RTC
- GPIO: Up to 22
Running at 32KHz
- Hardware floating point
Range
acceleration
Node range: Up to 50km
- Python multi-threading
Power
- Voltage Input: 3.3V - 5.5V
- 3v3 output capable of sourcing up to 400mA
With dozens of ready to use templates and libraries soon to
be available on the Pycom Exchange, developing a new IoT
solution is now easier and faster.
written permission of Pycom Ltd, except in the case of
brief quotations embodied in critical reviews and certain
other noncommercial uses permitted by copyright law.
To order contact sales@pycom.io
FiPy 1.0 Network Specifications
Sigfox Operating Frequencies
LoRa Operating Frequencies
RCZ1 - 868MHz(Europe)
- 868MHz(Europe) at +14dBm maximum
RCZ2 - 902MHz (US, Canada and Mexico)
- 915MHz (North and South America, Australia and New Zea-
RCZ3 - (Japan and Korea)
land) at +20dBm maximum
RCZ4 - 920-922MHz (ANZ, Latin America and S-E Asia)
Sigfox Specifiction
- TI CC1125NarrowbandTransceiver
- Class 0 device. Maximum Tx power:
- +14dBm(Europe)
- +22dBm (America)
- +22dBm (Australia and New Zealand)
- Node range: Up to 50km
- Sigfox pre-certified (October 2016)
- Power
- Sigfox (Europe): 17mA in Rx mode, 47mA in Tx
mode and 0.5uA in standby
- Sigfox (Australia, New Zealand and South America):
24mA in rX mode, 257 mA in Tx mode and 0.5uA
in standby
Bluetooth Networking
- Low energy and classic
- Compliant with Bluetooth v4.2 BR/EDR and BLE specification
- Class-1, Class-2 and Class-3 transmitter without
external power amplifer
- Enhanced power control
- +10dBm transmitting power
- NZIF receiver with -98 dBm sensitivity
- Adaptive Frequency Hopping (AFH)
- Standard HCI based on SDIO/SPI/UART
- High speed UART HCI, up to 4 Mbps
- BT 4.2 controller and host stack
- Service Discover Protocol (SDP)
- General Access Profile (GAP)
- Security Manage Protocol (SMP)
- Bluetooth Low Energy (BLE)
- ATT/GATT
- HID
- All GATT-based profile supported
- SPP-Like GATT-based profile
-BLE Beacon
-A2DP/AVRCP/SPP, HSP/HFP, RFCOMM
- CVSD and SBC for audio codec
- Bluetooth Piconet and Scatternet
Distributed by Pycom Ltd.
Copyright © 2017 by Pycom Ltd. All rights reserved. No part of
this document may be reproduced, distributed, or transmitted in
any form or by any means, including photocopying, recording, or
other electronic or mechanical methods, without the prior
LoRa Specifiction
- Power consumption: 10mA Rx, 28mA Tx
- LoRaWAN stack - Class A and C devices
- Node range: Up to 40km
- Nano-gateway: Up to 22km (Capacity up to 100 nodes)
LTE-M Operating Frequencies
- 34 bands supports from 699Mhz to 2690Mhz (Total
world-wide support)
LTE-M Specification
- One single chip for both CAT M1 and NB1 (yes, only one chip)
- 3GPP release 13 LTE Advanced Pro
- Supports narrowband LTE UE categories M1/NB1
- Integrated baseband, RF, RAM memory and
power management
- Reduced Tx power class option
- Peak power estimations: TX current = 420mA peak
@1.5Watt RX current = 330mA peak @1.2Watt
- Data rates:
- 300 kbps DL
- 375 kbps UL (LTE Cat M1 in 1.4 Mhz, HD-FDD)
- 40 kbps DL
- 55 kbps UL (LTE Cat M2 in 200 kHz, HD-FDD)
WiFi Networking
- Up to 1km range
- 802.11b/g/n 16mbps
- Power: 12mA in active mode, 5uA in standby
written permission of Pycom Ltd, except in the case of
brief quotations embodied in critical reviews and certain
other noncommercial uses permitted by copyright law.
To order contact sales@pycom.io
EU Regulatory Conformance
Hereby, Pycom Ltd declares that this device is in compliance
with the essential requirements and other relevant provisions
of Directive 1999/5/EC
Federal Communication Commission Interference
Statement
This device complies with Part 15 of the FCC Rules. Operation
is subject to the following two conditions:
(1) This device may not cause harmful interference.
(2) This device must accept any interference received,
including interference that may cause undesired operation.
CAUTION: Changes or modifications not expressly approved by
the party responsible for compliance could void the user's
authority to operate the equipment.
NOTE: This equipment has been tested and found to comply with
the limits for a Class B digital device, pursuant to Part 15 of the
FCC Rules. These limits are designed to provide reasonable
protection against harmful interference in a residential installation.
This equipment generates uses and can radiate radio frequency
energy and, if not installed and used in accordance with
the instructions, may cause harmful interference to radio
communications.However, there is no guarantee that
interference will not occur in a particular installation. If this
equipment does cause harmful interference to radio or television
reception, which can be determined by turning the equipment off
and on, the user is encouraged to try to correct the interference
by one or more of the following measures:
- Reorient or relocate the receiving antenna.
- Increase the separation between the equipment and receiver.
- Connect the equipment into an outlet on a circuit different
from that to which the receiver is connected.
- Consult the dealer or an experienced radio/TV technician for help.
RF Warning Statement
To comply with FCC RF exposure compliance requirements, the
antennas used for this transmitter must be installed to provide a
separation distance of at least 20 cm from all persons and must
not be co-located or operating in conjunction with any other
antenna or transmitter.
This device is intended only for OEM
integrators under the following conditions:
1) The antenna must be installed such that 20 cm is
maintained between the antenna and users, and
2) The transmitter module may not be co-located with any
other transmitter or antenna.
As long as two conditions above are met, further transmitter test
will not be required. However, the OEM integrator is still
responsible for testing their end-product for any additional
compliance requirements required with this module installed. To
ensure compliance with all non-transmitter functions the host
manufacturer is responsible for ensuring compliance with the
module(s) installed and fully operational. For example, if a host
was previously authorized as an unintentional radiator under the
Declaration of Conformity procedure without a transmitter certified
module and a module is added, the host manufacturer is
responsible for ensuring that the after the module is installed and
operational the host continues to be compliant with the Part 15B
unintentional radiator requirements.
The module is limited to OEM installation ONLY.
The module is limited to installation in mobile or fixed application.
We hereby acknowledge our responsibility to provide guidance to
the host manufacturer in the event that they require assistance for
ensuring compliance with the Part 15 Subpart B requirements.
IMPORTANT NOTE: In the event that these conditions cannot be
met (for example certain laptop configurations or co-location with
another transmitter), then the FCC authorization is no longer
considered valid and the FCC ID cannot be used on the final
product. In these circumstances, the OEM integrator will be
responsible for reevaluating the end product(including the
transmitter) and obtaining a separate FCC authorization.
End Product Labeling
This transmitter module is authorized only for use in device where
the antenna may be installed such that 20 cm may be maintained
between the antenna and users. The final end product must be
labeled in a visible area with the following: “Contains FCC ID:
2AJMTFIPY1R”. The grantee's FCC ID can be used only when all
FCC compliance requirements are met.
The following FCC part 15.19 statement has to also be available
on the label:
This device complies with Part 15 of FCC rules. Operation is
subject to the following two conditions:
(1) this device may not cause harmful interference and
(2)this device must accept any interference received,
including interference that may cause undesired operation.
Manual Information to the End User
The OEM integrator has to be aware not to provide information to
the end user regarding how to install or remove this RF module in
the user’s manual of the end product which integrates this module.
In the user manual of the end product, the end user has to be
informed that the equipment complies with FCC radio-frequency
exposure guidelines set forth for an uncontrolled environment.
The end user has to also be informed that any changes or
modifications not expressly approved by the manufacturer could
void the user's authority to operate this equipment.
The end user manual shall include all required
regulatory information/warning as show in this manual.
The maximum operating ambient temperature of the
equipment declared by the manufacturer is
-20~+85C
Receiver category 3

102990843

Mfr. #:
Manufacturer:
Seeed Studio
Description:
Development Boards & Kits - Wireless FiPy - IoT Development Board
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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