Data Sheet. Ver Nano WiReach SMT.

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Transcription:

Nano WiReach SMT Data Sheet Ver. 1.50 International: Connect One Ltd. 20 Atir Yeda Street Kfar Saba 44643, Israel Phone: +972-9-766-0456 Fax: +972-9-766-0461 Email: sales@connectone.com www.connectone.com Pub. No. 11-4500-06, Copyright Connect One, 2012. All rights reserved.

Information provided by Connect One Ltd. is believed to be accurate and reliable. However, Connect One assumes no responsibility for its use, nor any infringement of patents or other rights of third parties, which may result from its use. No license is granted by implication or otherwise under any patent rights of Connect One other than for circuitry embodied in Connect One s products. Connect One reserves the right to change circuitry at any time without notice. This document is subject to change without notice. The software described in this document is furnished under a license agreement and may be used or copied only in accordance with the terms of such a license agreement. It is forbidden by law to copy the software on any medium except as specifically allowed in the license agreement. No part of this document may be reproduced or transmitted in any form or by any means, electronic or mechanical, including but not limited to photocopying, recording, transmitting via fax and/or modem devices, scanning, and/or information storage and retrieval systems for any purpose without the express written consent of Connect One. WARNING: THE Nano WiReach SMT IS AN RF MODULE INTENDED FOR EMBEDDING IN A HOST DEVICE. LOCAL RELEVANT RF REGULATIONS SUCH AS ALLOWED FREQUENCIES AND USAGE IN COMMERCIAL FLIGHTS MUST BE OBSERVED. SAFETY INSTRUCTIONS MUST BE INCLUDED IN THE MANUALS OF THE HOST DEVICE. CONNECT ONE ASSUMES NO LIABILITY FOR CUSTOMER FAILURE TO COMPLY WITH THESE PRECAUTIONS. " Under Industry Canada regulations, this radio transmitter may only operate using an antenna of a type and maximum (or lesser) gain approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type and its gain should be so chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for successful communication." " Conformément à la réglementation d'industrie Canada, le présent émetteur radio peut fonctionner avec une antenne d'un type et d'un gain maximal (ou inférieur) approuvé pour l'émetteur par Industrie Canada. Dans le but de réduire les risques de brouillage radioélectrique à l'intention des autres utilisateurs, il faut choisir le type d'antenne et son gain de sorte que la puissance isotrope rayonnée équivalente (p.i.r.e.) ne dépasse pas l'intensité nécessaire à l'établissement d'une communication satisfaisante." " This radio transmitter (SM2144N2 BIO) has been approved by Industry Canada to operate with the antenna types listed below with the maximum permissible gain and required antenna impedance for each antenna type indicated. Antenna types not included in this list, having a gain greater than the maximum gain indicated for that type, are strictly prohibited for use with this device." " Le présent émetteur radio (SM2144N2 BIO) a été approuvé par Industrie Canada pour fonctionner avec les types d'antenne énumérés ci dessous et ayant un gain admissible maximal et l'impédance requise pour chaque type d'antenne. Les types d'antenne non inclus dans cette liste, ou dont le gain est supérieur au gain maximal indiqué, sont strictement interdits pour l'exploitation de l'émetteur." " This device complies with Industry Canada license exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device." " Le présent appareil est conforme aux CNR d'industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement." Antennas: Air Wave (EA 79F); Tekfun C. (M04 SR); YC Communication (Q24 24W); Pulse (W1030). Maximum Gain all: 2dBi. ichip, Nano WiReach SMT, IP Communication Controller, SerialNET, AT+i and Connect One are trademarks of Connect One Ltd. Copyright 2012 Connect One Ltd. All rights reserved. Nano WiReach SMT Data Sheet ii

Revision History Revision History 11-4500-05 Version Date Description 1.00 February 2011 Initial preliminary version 1.10 April 2011 Fixed Pinout table 1.20 April 2011 Updated Definitions 1.30 April 2011 Misc. Editing 1.35 May 2011 Updated Temperature Range 1.40 June 2011 Added FCC and Regulatory Notices 1.50 March 2012 Added Recommended Soldering Profile Nano WiReach SMT Data Sheet iii

Contents Contents 1 Introduction...1-1 1.1 General Description...1-1 1.2 Hardware Description...1-1 1.3 Performance Specifications...1-1 2 Features...2-1 2.1 Security...2-1 2.2 Protocols...2-1 2.3 Additional Features...2-1 3 Typical Applications...3-1 4 Connector Pin Description...4-1 4.1 Pin Numbers...4-1 5 Interfaces...5-1 5.1 Serial Interface...5-1 5.2 SPI Interface...5-1 5.3 USB 1.1 Device Interface...5-1 5.4 RMII Interface...5-2 5.5 USB 1.1 Host Interface...5-2 6 Electrical Specifications...6-1 6.1 Absolute Maximum Ratings...6-1 6.2 DC Operating Characteristics...6-1 6.3 AC Operating Characteristics...6-2 6.4 Tx Specifications...6-2 6.5 Rx Specifications...6-2 7 On-Board Antenna...7-3 8 Mechanical Dimensions...8-1 8.1 Antenna Clearance Recommendation...8-2 Nano WiReach SMT Data Sheet iv

Contents 9 Recommended PCB Footprint...9-1 10 Evaluation Board...10-1 11 Ordering Information...11-1 12 Internet Protocol Compliance...12-1 13 Recommended Soldering Profile...13-2 Nano WiReach SMT Data Sheet v

Figures Figures Figure 3-4-1: Pin-out for Nano WiReach SMT(Bottom view)...4-1 Figure 6-1: SPI Interface Waveforms...6-2 Figure 5-8-1: Mechanical Dimensions...8-1 Figure 5-9-1: Recommended PCB Footprint...9-1 Nano WiReach SMT Data Sheet vi

Tables Tables Table 3-1: Connector Signal Description...4-2 Table 4-1: Absolute Maximum Ratings...6-1 Table 4-2: DC Operating Characteristics...6-1 Table 4-3: Tx Specifications...6-2 Table 4-4: Rx Specifications...6-2 Table 12-1: Internet Protocol Compliance...12-1 Nano WiReach SMT Datasheet vi

Introduction 1 Introduction 1.1 General Description Nano WiReach SMT is a secure serial-to- Wireless-LAN device server module that also acts as a bridge to connect serial devices to 802.11b/g Wireless LANs. It includes the ichip CO2144 IP Communication Controller chip and Marvell 88W8686 WiFi chipset. It is packaged in RoHS-compliant ultra-slim form factor and uses an industry standard pin-out. The Nano WiReach SMT can also be interfaced to a 10/100BaseT wired LAN and a USB cellular modem with some external components and glue logic. Nano WiReach SMT offers much more than many other device servers on the market. It acts as a security gap between the application and the network; supports up to 10 simultaneous TCP/UDP sockets; two listening sockets; a web server with two websites; SMTP and POP3 clients; MIME attachments; FTP and TELNET clients, and SerialNET mode for serial-to-ip bridging. Nano WiReach SMT supports the SSL3/TLS1 protocol for secure sockets, HTTPS and FTPS, WEP, WPA and WPA2 WiFi encryption. Nano WiReach SMT minimizes the need to redesign the host device hardware. It features a standard economical SMT footprint providing for low-cost placement on a host PCB with provisions for an on-board or external antenna. Minimal or no software configuration is needed for Nano WiReach SMT to access the Wireless LAN. Connect One s high-level AT+i API eliminates the need to add WiFi drivers, security and networking protocols and tasks to the host application. The AT+i SerialNET operating mode offers a true plug-and-play mode that eliminates any changes to the host application. Nano WiReach SMT firmware the IP stack and Internet configuration parameters are stored in an external flash memory. The module is power-efficient: the core operates at 1.2V, while I/Os operate at 3.3V. Power Save mode further reduces power consumption. The II-EVB-365SMT evaluation board provides an easy environment for testing the Nano WiReach SMT prior to designing it into your product. 1.2 Hardware Description Size: 37.0 x 20.0 x 2.5 mm Core CPU: 32-bit RISC ARM7TDMI, lowleakage, 0.13 micron, running at 48MHz Operating Voltage: +3.3V+/-10% Operating Humidity: 90% maximum (noncondensing) Operating Temperature Range: -10 to 65 C (14 to 149 F) Power Consumption: Transmit 250mA @16dbm 235mA @12dbm (typical) Receive 190mA (typical) Power Save mode 8mA Optional : On-Board antenna Optional: U.FL connector Connection: 44 SMT pads Host Interface: TTL Serial, SPI and USB 1.1 device. A/D Input (see AT+I programmers manual) Cellular Modem Interface: USB 1.1 Host 10/100BaseT LAN Interface: RMII (w/ext. PHY) RoHS-compliant; lead-free 1.3 Performance Specifications Host Data Rate: up to 3Mbps in serial mode Serial Data Format (AT+i mode): Asynchronous character; binary; 8 data bits; no parity; 1 stop bit SerialNET mode: Asynchronous character; binary; 7 or 8 data bits; odd, even, or no parity; 1 stop bit Flow Control: Hardware (-RTS, -CTS) and software flow control. Nano WiReach SMT Datasheet 1-1

Introduction Internet Protocols ARP, ICMP, IP, UDP, TCP, DHCP, DNS, NTP, SMTP, POP3, MIME, HTTP, FTP and TELNET Security Protocols SSL3/TLS1, HTTPS, FTPS, RSA, AES-128/256, 3DES, RC-4, SHA-1, MD-5, WEP, WPA and WPA2 Protocols Accelerated in HW AES, 3DES and SHA Application Program Interface Connect One s AT+i protocol SerialNET mode for transparent serial datato-internet bridging Wireless Specifications Standards Supported: IEEE 802.11b, IEEE 802.11g Frequency: Europe 2.412-2.472GHz USA 2.412-2.462GHz Japan 2.412 2.484GHz Channels: Europe 13 channels USA 11 channels Japan 14 channels Recommended Antenna (for U.FL option) iw-ant2-bl Antenna: 2.4GHz, 2.0dBi, 50Ω, omni-directional, 1/4 wavelength dipole configuration, VSWR 2.0, height - 82.5mm, weight 6.3 grams Certifications: Radio & EMC: - USA o FCC Modular Approval o CFR Title 47 FCC Part 15, Subpart B and C - Canada o Industry Canada Module Approval o Industry Canada ICES-003, RSS-Gen, RSS-210 - EU o EN 300 328 (R&TTE Directive 1999/5/EC) o EN 301 489 (EMC Directive 2004/108/EC) Safety: o UL 60950 o CAN/CSA-C22.2 No. 60950 o EN 60950, Low Voltage Directive (2006/95/EC) 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, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDESIRED OPERATION.(*) Installation Requirements The Nano WiReach SMT must be installed within a full-enclosure device that is safety certified. Warranty One year (*) NOTE: THE MANUFACTURER IS NOT RESPONSIBLE FOR ANY RADIO OR TV INTERFERENCE CAUSED BY UNAUTHORIZED MODIFICATIONS TO THIS EQUIPMENT. SUCH MODIFICATIONS COULD VOID THE USER S AUTHORITY TO OPERATE THE EQUIPMENT Nano WiReach SMT Datasheet 1-2

Features 2 Features 2.1 Security Acts as a security gap between the host application and the network One secure SSL3/TLS1 socket Provides WEP, WPA and WPA2 Wireless LAN security Supports multiple Certificate Authorities and both client-side and server-side authentication Secure FTP and HTTP clients (over SSL3) Includes a true hardware random number generator AES, 3DES and SHA accelerated in hardware 2.2 Protocols Up to 10 simultaneous TCP/UDP sockets and two listening sockets HTTP client HTTP web server with two on-chip websites: configuration site and application site FTP and TELNET clients DHCP client and server Sending and receiving textual email and binary email with MIME attachments 2.3 Additional Features Non-volatile, on-chip operational parameter database Supports infrastructure and ad-hoc Wireless LAN networks SerialNET mode for serial-to-ip bridging (port server mode) Local firmware update Remote configuration and firmware update over the Internet Retrieval of time data from a Network Time Server Note: For a detailed description of all available features, see the AT+i Programmer s Manual. Nano WiReach SMT Datasheet 2-1

Typical Applications 3 Typical Applications Adding IP communications over WiFi to serial embedded devices. Replacing a LAN cable with a WiFi connection. Adding SSL security to M2M solutions. Nano WiReach SMT supports several operational modes: LAN to WiFi Bridge - allowing transparent bridging of LAN over WiFi, using direct RMII connection to existing MAC hardware or direct PHY-to-PHY connection. Microcontroller PHY-to-PHY WiFi SMT EMAC Ethernet PHY Ethernet PHY Microcontroller EMAC MAC-to-MAC RMII WiFi SMT SerialNet TM Serial to WiFi Bridge - allowing transparent bridging of Serial over WiFi, using a 3Mbps fast UART. This is a true plug-and-play mode that eliminates any changes to the host application. PPP modem emulation allowing existing (i.e. modem) designs currently using PPP to connect transparently over WiFi. Full Internet Controller mode allowing simple MCU to use the Nano WiReach SMT s rich protocol and application capabilities to perform complex Internet operations such as E-mail, FTP, SSL, embedded Web server and others. It also acts as a firewall, providing a security gap between the application and the network. LAN/WiFi Cellular Router allowing local systems, communicating over LAN and/or WiFi, to gain WAN access to the Internet via a cellular modem. This mode includes a DHCP server and NAT to support multiple local systems communicating over a single cellular link. WiFi Cellular Modem Internet Nano WiReach SMT Datasheet 3-1

Pin Descriptions 4 Connector Pin Description The Nano WiReach SMT module includes the ichip CO2144 IP Communication Controller and the Marvell 88W8686 802.11b/g WiFi chipset mounted on a socket form-factor module. 4.1 Pin Numbers 10 11 12 13 14 15 16 17 18 19 20 21 22 9 8 7 6 5 4 3 2 1 23 24 25 26 27 28 29 30 31 44 43 42 41 40 39 38 37 36 35 34 33 32 Figure 3-4-1: Pin-out for Nano WiReach SMT(Bottom view) Nano WiReach SMT Datasheet 4-1

Pin Descriptions Pin Functional Description Pin Signal type Description 1 GND Power 2 HDM Analog USB Host negative 3 HDP Analog USB Host positive 4 nreset Input Reset Module. Pull LOW for 100mSec to Reset 5 PIOC4 I/O General In/Output Port 6 MSEL Input Mode select. Used for inducing rescue mode and forced local Firmware-update. 7 DATA_RDY Output Data ready. Signals incoming Internet data. 8 ETX_EN Output RMII Transmit Enable 9 REFCLK Input RMII Reference Clock 50Mhz 10 ETX0 Output RMII transmit Data 0 11 ETX1 Output RMII transmit Data 1 12 CRSDV Input RMII Carrier sense and Data Valid 13 ERX0 Input RMII Receive Data 0 14 ERX1 Input RMII Receive Data 1 15 ERXER Input RMII Receive Error 16 EMDC Output Management data Clock 17 EMDIO I/O Management data I/O 18 PIOC5 I/O General In/Output Port 19 VBUS Output VBUS for USB Host 20 Readiness Output ichip Ready status line. See AT+I programmers manual. 21 PIOC3 I/O General In/Output Port 22 VDD Power 3.3V 23-31 GND Power 32 nrf_led Output RF LED indicator 33 ACH Input Analog Input 34 SPI1_CLK Input SPI 1 clock for host (Max 12MHz) 35 nspi1_cs Input SPI 1 chip select for host 36 SPI1_MISO Output SPI 1 slave out for host master in 37 SPI1_MOSI Input SPI 1 slave in for host master out 38 SPI1_INT Output SPI 1 have data on his buffer 39 TXD0 Output UART 0 transmit 40 RXD0 Input UART 0 receive 41 ncts0 Input UART 0 clear to send 42 nrts0 Output UART 0 request to send 43 DDM Analog USB device negative 44 DDP Analog USB device positive Table 3-1: Connector Signal Description Nano WiReach SMT Datasheet 4-2

Interfaces 5 Interfaces 5.1 Serial Interface RXD0 TXD0 ncts0 nrts0 40 39 41 42 Nano WiReach SMT pins 5.2 SPI Interface nspi1 CS SPI1_CLK SPI1_MISO SPI1 MOSI SPI1_INT 35 34 36 37 38 Nano WiReach SMT pins 5.3 USB 1.1 Device Interface 3 2 4 DDP DDM 27 27 44 43 USB-B 15pF 15pF Nano WiReach SMT pins Nano WiReach SMT Datasheet 5-1

Interfaces 5.4 RMII Interface ETX_EN REFCLK CRSDV ERXER EMDIO EMDC ERX0 ERX1 ETX0 ETX1 8 9 12 15 17 16 13 14 10 11 Nano WiReach SMT pins 5.5 USB 1.1 Host Interface POWER SWITCH FOR USB + 5 6 Vout Vout 4 FLG AP2171 GND 1 U5 2 Vin EN 3 EP EP VDD VBUS 19 100UF//6.3V FOR USB MODEM USB A J2 1 2 3 4 GND 15K GND GND GND GND 27 47PF 27 HDM HDP 2 3 15K 47PF Nano WiReach SMT pins GND GND Nano WiReach SMT Datasheet 5-2

Electrical Specifications 6 Electrical Specifications 6.1 Absolute Maximum Ratings Parameter Voltage at any pin with respect to ground Operating temperature Storage temperature Rating -0.3V to +3.6V -10 C to 65 C (14 F to 149 F) -65 C to 125 C (-85 F to 257 F) Table 4-1: Absolute Maximum Ratings 6.2 DC Operating Characteristics Parameter Min Typical Max Units VDD 3.0 3.3 3.6 Volts High-level Input 2.0 VDD I/O+0.3 Volts Low-level Input -0.3 0.8 Volts High-level Output @2mA VDD I/O-0.4 Volts High-level Output @0mA VDD I/O-0.2 Volts Low-level Output @2mA 0.4 Volts Low-level Output @0mA 0.2 Volts Input leakage current 10 µa Power supply current from VDD (Transmit Mode) Power supply current from VDD (Receive Mode) Power supply current from VDD (Power Save Mode) 260 280 ma 190 210 ma 8* ma Input Capacitance 5.3 pf Radio Frequency Range (subject to local regulation) 2.412 2.484 GHz Table 4-2: DC Operating Characteristics (*) Note: Power supply current as measured in firmware version i2128d722b05. Nano WiReach SMT Datasheet 6-1

Electrical Specifications 6.3 AC Operating Characteristics Figure 6-1: SPI Interface Waveforms 6.4 Tx Specifications Item Condition Min Typ Max Unit Transmit Power Levels Transmit Spectrum Mask Transmit Center Frequency Tolerance 11b 15 dbm 11g 15 dbm 11b Fc+/-11MHz 40 dbc Fc+/-22MHz 60 dbc 11g Fc+/-11MHz 30 dbc Fc+/-20MHz 40 dbc Fc+/-30MHz 50 dbc Temperature=25 C ±10 ppm Table 4-3: Tx Specifications 6.5 Rx Specifications Item Condition Min Typ Max Unit Receiver Minimum Input Level Sensitivity Adjacent Channel Rejection Desired channel is 3dB above sensitivity 802.11b Data Rate=11Mbps, PER<8% 802.11g Data Rate=54Mbps, PER<10% 802.11b Data Rate=11Mbps, PER<8% 802.11g Data Rate=54Mbps, PER<10% -88 dbm -74 dbm 48 dbc 15 dbc Table 4-4: Rx Specifications PER(%)=(Number of all packets Number of received packets)/(number of all packetsx100) Nano WiReach SMT Datasheet 6-2

Electrical Specifications 7 On-Board Antenna Designed for 2.4Ghz operation Peak Gain: 2.1 dbi Average efficiency: 75% Max return loss: -11dBi Max VSWR: 1.8:1 Antenna Patterns: Nano WiReach SMT Datasheet 7-3

Mechanical Dimensions 8 Mechanical Dimensions N ote: All measures are in millimeters +/- 0.2 mm Figure 5-8-1: Mechanical Dimensions Nano WiReach SMT Datasheet 8-1

Mechanical Dimensions 8.1 Antenna Clearance Recommendation The striped area below should be clear of metal, ground planes and wiring: NanoWiReachSMT E1 18.01 Host-PCB 8.24 Figure 5-8-2: Antenna Clearance Nano WiReach SMT Datasheet 8-2

Recommended Footprint 9 Recommended PCB Footprint Figure 5-9-1: Recommended PCB Footprint Nano WiReach SMT Datasheet 9-1

Evaluation Board 10 Evaluation Board The II-EVB-365smt evaluation board enables you to evaluate the Nano WiReach SMT without changing anything in your current development environment. Using a simple Windows-based application on a PC, you can issue AT+i commands to the ichip CO2144 and get responses. Note: The evaluation board supports serial host data rates of up to 1Mbps. AT+i commands are used to configure parameter values into ichip s flash memory and activate Internet tasks such as email send, sockets, FTP sessions, configuration, and more. A full description of AT+i commands can be found in the AT+i Programmer s Manual on Connect One s website at: http://www.connectone.com/support.asp?did=35 To help you evaluate the Nano WiReach SMT, Connect One supplies the ichip Config Utility. This is a Windows-based application that contains intuitive dialog boxes to fully configure ichip CO2144. It doesn t require any knowledge of AT+i commands. It also contains local firmware update functionality. The ichip Config Utility allows you to perform specific Internet communication tasks such as sending and receiving emails, activating ichip s websites, entering SerialNET mode, and more. The latest ichip Config Utility version and user manual can be found on Connect One s website under the Support section. On board connectors allow a choice of Host interfaces: RS232 COM port SPI USB Device Nano WiReach SMT Datasheet 10-1

Ordering Information 11 Ordering Information Ordering Information Part Number iw- SM214 4SMT-EX iw- SM2144SMT-OB II-EVB-365SMT iw-cab-150 iw-ant2-bl Description Nano WiReach SMT module, External Antenna Nano WiReach SMT module, On-board Antenna Evaluation board for Nano WiReach SMT module, On-board Antenna Miniature coaxial w/ pigtail cable. UFL-SMA connectors. 150mm length. 2.4GHz WiFi antenna, 2.0dBi, 50Ω, omni-directional, 1/4 wavelength dipole configuration Nano WiReach SMT Datasheet 11-1

Protocol Compliance 12 Internet Protocol Compliance Nano WiReach SMT complies with the Internet standards listed in the following table. RFC 768 User datagram protocol (UDP) RFC 791 Internet protocol (IP) RFC 792 ICMP Internet control message protocol RFC 793 Transmission control protocol (TCP) RFC 821 Simple mail transfer protocol (SMTP) RFC 822 Standard for the format of ARPA Internet text messages RFC 826 Ethernet address resolution protocol (ARP) RFC 959 File transfer protocol (FTP) RFC 854 TELNET protocol specification RFC 857 Telnet ECHO option RFC 858 Telnet suppress go-ahead option RFC 1034 Domain names (DNS) - concepts and facilities RFC 1035 Domain names (DNS) - implementation and specification RFC 1073 Telnet window size option RFC 1091 Telnet terminal type option RFC 1321 MD5 message digest algorithm RFC 1939 Post office protocol - version 3 (POP3) RFC 1957 Some observations on the implementations of the post office protocol (POP3) RFC 2030 Simple network time protocol (SNTP) RFC 2045 Multipurpose Internet mail extensions (MIME) part one: internet message body format RFC 2046 MIME part two: media types RFC 2047 MIME part three: message header extensions for non-ascii text RFC 2048 MIME part four: registration procedures RFC 2049 MIME part five: conformance criteria and examples RFC 2068 Hypertext transfer protocol HTTP/1.1 RFC 2131 Dynamic host configuration protocol (DHCP) RFC 2132 DHCP options (only relevant parts) RFC 2228 FTP security extensions RFC 2246 The TLS protocol version 1.0 Table 12-1: Internet Protocol Compliance Nano WiReach SMT Datasheet 12-1

Recommended Soldering Profile 13 Recommended Soldering Profile

Wed Apr 13 2011 11:32:07 Company: Connect One Site: Oven Name: SEHO MR3 Process Window Name: LEAD FREE Setpoints (Celsius) Zone 1 2 3 4 5 6 7 8 9 10 Top 115 140 160 170 170 185 185 265 265 240 Bottom 115 140 160 170 170 185 185 265 265 240 Conveyor Speed ( cm/min ): 90.0 300 250 200 Celsius 150 100 50 0 Z1 Z2 Z3 Z4 Z5 Z6 Z7 Z8 Z9 Z10 0 50 100 150 200 250 300 U2 U9 U1 Delta PWI= 88% Seconds Max Rising Slope Soak Time 110-180C Reflow Time /220C Peak Temp 1.90-5% 100.54 35% 44.41 44% 237.10-72% 2.24 12% 99.50 32% 48.80 88% 240.56-26% 1.83-8% 102.53 42% 43.42 34% 236.62-78% 0.41 3.03 5.38 3.94 Process Window: Solder Paste: LEAD FREE Statistic Name Low Limit High Limit Units Max Rising Slope (Target=2.0) 0 4 Degrees/Second (Calculate Slope over 20 Seconds) Soak Time 110-180C 60 120 Seconds Time Above Reflow - 220C 30 50 Seconds Peak Temperature 235 250 Degrees Celsius Description: KIC San Diego, CA USA Profiled Using KIC 2000 Technology Tel: +1 858 673 6050 Fax: +1 858 673 0085 www.kicthermal.com tech@kicmail.com

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