Router-E and Router-E-PA Wireless Router Product Manual

Telegesis™
TG-RouterE-PM-008-102
Router-E, Router-E-PA
Product Manual 1.02
Telegesis™ is a trademark of Silicon Laboratories Inc.
Router-E and Router-E-PA Wireless Router
PRODUCT MANUAL
©2016 Silicon Labs
Router-E Product Manual (Rev 1.02)
ROUTER-E
Table of Contents
1
1.1
INTRODUCTION ................................................................................................................. 3
Installation Requirements ................................................................................................. 3
2
ABSOLUTE MAXIMUM RATINGS ..................................................................................... 4
3
OPERATING CONDITIONS ................................................................................................ 4
4
DEVICE INSTALLATION AND OPERATION ..................................................................... 5
5
FIRMWARE CHANGES AND UPGRADES ........................................................................ 5
6
SCHEMATICS .................................................................................................................... 5
7
ORDERING INFORMATION ............................................................................................... 7
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ROUTER-E
1 Introduction
The Router-E wireless mesh networking router consists of a Telegesis ETRX2 module on a carrier
board together with power supply circuitry. It is ideally suited if an existing network of ETRX2’s
needs to be extended in order to bridge a greater distance between nodes and to form a more
reliable mesh network by extending the routing backbone.
The on-board SIF interface also allows the Router-E to be used as a platform for firmware
development and debugging.
The Router-E also supports the use of Ember’s EZSP (Ember ZigBee® Serial Protocol) instead of
the Telegesis AT Command interface software.
1.1


Installation Requirements
5V-7V Power Supply (supplied separately)
Mains Socket
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ROUTER-E
2 Absolute Maximum Ratings
Parameter
Supply Voltage Vdd
Storage Temperature range
Min.
-0.3
-40
Max.
201
85
Units
V
°C
Condition
Table 1: Absolute Maximum Ratings
The absolute maximum ratings given above should under no circumstances be violated.
Exceeding one or more of the limiting values may cause permanent damage to the device.
3 Operating Conditions
Typical values at 25°C.
Parameter
Supply Voltage, Vdd
Supply Current
Router-E
Supply Current
Router-E-PA
Operating ambient
temperature range
Min.
4.5
Typ.
5
36
36
110
36
25
0
Max.
7
Units
V
mA
mA
mA
mA
°C
70
Condition
TX +3dBm
RX
TX +17dBm
RX
Table 2: Operating Conditions
For radio features please refer to the ETRX2 and ETRX2-PA product manuals.
Dimensions: 114mm x 74mm x 25mm
Weight: TBA
1
Thermal shutdown may occur when exceeding the operating conditions. The unit will become operational
again after allowing it to cool down.
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ROUTER-E
4 Device Installation and Operation
In order to install the device connect the Router-E to a suitable power supply with the positive
supply in the centre of the plug.
The embedded ETRX2 is in factory default state therefore it will join the first best network which
allows joining. This network can then be used to configure the Router-E over the air as required by
the individual application.
For most applications the default settings will be sufficient and the router can be deployed straight
out of the box with no additional configuration.
5 Firmware changes and upgrades
The firmware which is loaded onto the integrated ETRX2 Module can be upgraded over the air or
via the serial port, which is accessible using PCB pads after removing the cover. There is no
external data connector.
Please note that level conversion circuitry is required in order to connect the Router-E to a
PC’s serial Port.
In addition to this, access to the SIF programming interface is possible by removing the cover of
the Router-E. You can also use this interface for custom firmware development and real time
debugging of your custom firmware.
Finally with the event of EmberZNet3.x it is now possible to download the Ember EZSP (Ember
ZigBee® Serial Protocol) as described in section 6 of the EM260 manual to the Router-E. In case
you
require
an
Router-E
with
pre-loaded
EZSP
firmware
please
contact
www.silabs.com/telegesissupport.
6 Schematics
The schematic of the Router-E is shown on the next page for reference.
It is identical to the schematic of the EAP-E Ethernet Access Point, with the only exception that IC3
is not mounted.
LED1 and the beeper are future options, which are not fitted either. The serial port including the
handshaking lines as well as the reset and A/D2 lines can be accessed via labelled pads.
X2 is the SIF connector, which allows programming and custom firmware development and real
time debugging in conjunction with the Ember InSight Adaptors and the accompanying
development toolchain.
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©2016 Silicon Labs
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7 Ordering Information
Ordering/Product Code
Description
Router-E
Router based on standard ETRX2

Router-E-PA
Router based on ETRX2-PA

ETRX2DVKA
Integrated 2.4GHz Antenna
Development Kit with:






ETRX2
Integrated 2.4GHz Antenna
1 x ETRX2HW Module with Board to Board Connector
1 x ETRX2DV Development Board
2 x ETRX2 Modules soldered to
2 x ETRX2MCB Module Carrier Boards
2 x AA Battery Holders with Leads & Connector Plugs
1 x USB Cable
Telegesis Wireless Mesh Networking Module with Ember
ZigBee® Technology:

 Telegesis AT Style Command Interpreter and
 Ember’s EmberZNet2.x stack
 Integrated 2.4GHz Antenna
Notes:



Customers’ PO’s must state the Ordering/Product Code.
There is no “blank” version of the ETRX2 Module available. All Modules carry both the
EmberNet Stack and the Telegesis AT style Command Layer. Where customers wish to
program custom firmware they can simply overwrite the existing firmware
Please contact Telegesis if you require additional AT style commands or specific integration
assistance.
Table 11. Ordering Information
©2016 Silicon Labs
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Router-E Product Manual (Rev 1.02)
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Silicon Laboratories intends to provide customers with the latest, accurate, and in-depth documentation of all peripherals and modules available for system and software implementers using
or intending to use the Silicon Laboratories products. Characterization data, available modules and peripherals, memory sizes and memory addresses refer to each specific device, and
"Typical" parameters provided can and do vary in different applications. Application examples described herein are for illustrative purposes only. Silicon Laboratories reserves the right to
make changes without further notice and limitation to product information, specifications, and descriptions herein, and does not give warranties as to the accuracy or completeness of the
included information. Silicon Laboratories shall have no liability for the consequences of use of the information supplied herein. This document does not imply or express copyright licenses
granted hereunder to design or fabricate any integrated circuits. The products are not designed or authorized to be used within any Life Support System without the specific written consent
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