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Programmable Hardware Manual (PHM)
© Tibbo Technology Inc.
Compact dimensions, innovative space-saving "vertical slice" mechanical design, low
power consumption, and patented
dual-function LED control lines
make the module
an excellent fit for miniature, cost-sensitive IoT designs.
The EM510 is fully supported by TIDE software and a dedicated EM510 platform that
covers all hardware facilities of the device (see TIDE, TiOS, Tibbo BASIC, and Tibbo
C Manual). For convenient testing and evaluation Tibbo offers the
development system.
The EM510 can be ordered standalone or in combination with an industry-standard
RJ45 jack and other discrete components required to complete a working circuit.
EM510 advantages over the EM500 module
The EM510 is a higher-performance upgrade to our
. Here is a small list
of important improvements:
·
32-bit architecture (vs. 8-bit architecture of the EM500).
·
17 to 33 times better performance, depending on the calculations and variable
types.
·
8 times faster GPIO manipulation.
·
2.3 times lower power consumption (110mA vs. 260mA).
·
Added support for BLE (Bluetooth Low Energy) communications (this requires the
·
Added suppport for WPA and WPA2 Wi-Fi security modes (Wi-Fi communications
rely on the
·
SSI (SPI and I2C communications) object included.
·
The ability to update TiOS firmware and compiled Tibbo BASIC/C app over-the-air
(this requires the
and an iOS or Android device).
·
20
o
C lower internal running temperature (52
o
C vs. 73
o
C).
·
Industrial operating temperature range (-40 ~ +85C).
Hardware features
·
32-bit architecture.
·
Powered by Tibbo OS (TiOS).
·
10/100BaseT auto-MDIX Ethernet port (automatic detection of "straight" and
"cross" cables). Standard Ethernet magnetics are
NOT
integrated into the module.
·
Optional Wi-Fi interface (requires the
).
·
Optional BLE (Bluetooth Low Energy) interface (requires the
add-on
module to be
).
·
One serial port (CMOS-level):
- Baudrates of up to 460,800bps;
- None*/even/odd/mark/space parity modes;
- 7*/8 bits/character;
- Full-duplex mode with RTS/CTS and XON/XOFF flow control;
- Half-duplex mode with direction control;
- Encoding and decoding of Wiegand and clock/data streams.