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RFM23BP_83dca743edce69d8624555bae587be66_7.fzp
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RFM23BP_83dca743edce69d8624555bae587be66_7.fzp
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<?xml version='1.0' encoding='UTF-8'?>
<module fritzingVersion="0.5.2b.02.18.4756" moduleId="RFM23BP_83dca743edce69d8624555bae587be66_7" referenceFile="BMP085 Breakout-v13.fzp">
<version replacedby="RFM23BP">4</version>
<date>sam. mars 26 2016</date>
<author>le hoop</author>
<description><!DOCTYPE HTML PUBLIC "-//W3C//DTD HTML 4.0//EN" "http://www.w3.org/TR/REC-html40/strict.dtd">
<html><head><meta name="qrichtext" content="1" /><style type="text/css">
p, li { white-space: pre-wrap; }
</style></head><body style=" font-family:'Ubuntu'; font-size:11pt; font-weight:400; font-style:normal;">
<p style=" margin-top:12px; margin-bottom:12px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'MS Shell Dlg 2'; font-size:8pt; font-weight:600;">Description: </span><span style=" font-family:'sans-serif'; font-size:15px;">HopeRF's RFM23BP are highly integrated, low cost,433/868/915MHZ </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">wireless ISM transceivers module. </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">The low receive sensitivity</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif';">(–120dBm) </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">coupled with industry leading +30dBm output power ensures </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif';">extended </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">range and </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">improved link performance. Built-in antenna diversity and </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">support for frequency hopping can be us</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">ed to further extend range and enhance </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">performance. </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">Additional system features such as </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">an automatic </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">wake-up </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">timer, low </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">battery detector, 64 byte TX/RX FIFOs, </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">automatic packet handling, and preamble </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">detection reduce overall current consum</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">ption and allow the use of lower-cost </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">system MCUs. An integrated temperatur</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">e sensor, general purpose ADC, power- </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">on-reset (POR), and GPIOs further reduce overall system cost and size. </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">The RFM23BP digital receive archit ec</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">ture features a high-performance ADC </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">and DSP based modem which performs dem</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">odulation, filtering, and packet </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">handling for increased flexibility and performance. The direct digital transmit </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">modulation and automatic PA power rampin</span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">g ensure precise transmit modulation </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">and reduced spectral spreading ensuring compliance with global regulations </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">including FCC, ETSI. </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">An easy-to-use calculator is provided </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">to quickly configure the radio settings, </span></p>
<p style=" margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; -qt-block-indent:0; text-indent:0px;"><span style=" font-family:'sans-serif'; font-size:15px;">simplifying customer's system design and reducing time to market.</span></p></body></html></description>
<title>RFM23BP</title>
<url>www.lehoop.fr</url>
<tags>
<tag>433mhz</tag>
<tag>rfm23bp</tag>
<tag>ism</tag>
</tags>
<properties>
<property name="family">//obsolete//lehoop</property>
<property name="variant">variant 1</property>
<property name="layer"></property>
<property name="part number"></property>
</properties>
<views>
<breadboardView>
<layers image="breadboard/RFM23BP_28f0aeb1c8ab1c048f7c7ebd3fa05abe_1_breadboard.svg">
<layer layerId="breadboard"/>
</layers>
</breadboardView>
<schematicView>
<layers image="schematic/RFM23BP_28f0aeb1c8ab1c048f7c7ebd3fa05abe_1_schematic.svg">
<layer layerId="schematic"/>
</layers>
</schematicView>
<pcbView>
<layers image="pcb/RFM23BP_28f0aeb1c8ab1c048f7c7ebd3fa05abe_1_pcb.svg">
<layer layerId="copper1"/>
<layer layerId="silkscreen"/>
<layer layerId="copper0"/>
</layers>
</pcbView>
<iconView>
<layers image="icon/RFM23BP_28f0aeb1c8ab1c048f7c7ebd3fa05abe_1_icon.svg">
<layer layerId="icon"/>
</layers>
</iconView>
</views>
<connectors>
<connector type="male" id="connector5" name="ANT">
<description>ANT</description>
<views>
<breadboardView>
<p svgId="connector5pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector5pin" layer="schematic" terminalId="connector5terminal"/>
</schematicView>
<pcbView>
<p svgId="connector5pad" layer="copper0"/>
<p svgId="connector5pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector6" name="GND">
<description>GND</description>
<views>
<breadboardView>
<p svgId="connector6pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector6pin" layer="schematic" terminalId="connector6terminal"/>
</schematicView>
<pcbView>
<p svgId="connector6pad" layer="copper0"/>
<p svgId="connector6pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector7" name="SDO">
<description>SDO</description>
<views>
<breadboardView>
<p svgId="connector7pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector7pin" layer="schematic" terminalId="connector7terminal"/>
</schematicView>
<pcbView>
<p svgId="connector7pad" layer="copper0"/>
<p svgId="connector7pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector8" name="SDI">
<description>SDI</description>
<views>
<breadboardView>
<p svgId="connector8pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector8pin" layer="schematic" terminalId="connector8terminal"/>
</schematicView>
<pcbView>
<p svgId="connector8pad" layer="copper0"/>
<p svgId="connector8pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector9" name="SCK">
<description>SCK</description>
<views>
<breadboardView>
<p svgId="connector9pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector9pin" layer="schematic" terminalId="connector9terminal"/>
</schematicView>
<pcbView>
<p svgId="connector9pad" layer="copper0"/>
<p svgId="connector9pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector10" name="NSEL">
<description>NSEL</description>
<views>
<breadboardView>
<p svgId="connector10pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector10pin" layer="schematic" terminalId="connector10terminal"/>
</schematicView>
<pcbView>
<p svgId="connector10pad" layer="copper0"/>
<p svgId="connector10pad" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector11" name="NIRQ">
<description>NIRQ</description>
<views>
<breadboardView>
<p svgId="connector11pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector11pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector11pin" layer="copper0"/>
<p svgId="connector11pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector12" name="SDN">
<description>SDN</description>
<views>
<breadboardView>
<p svgId="connector12pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector12pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector12pin" layer="copper0"/>
<p svgId="connector12pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector14" name="GPIO_2">
<description>GPIO_2</description>
<views>
<breadboardView>
<p svgId="connector14pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector14pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector14pin" layer="copper0"/>
<p svgId="connector14pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector15" name="GPIO_1">
<description>GPIO_1</description>
<views>
<breadboardView>
<p svgId="connector15pin" layer="breadboard" terminalId="connector15terminal"/>
</breadboardView>
<schematicView>
<p svgId="connector15pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector15pin" layer="copper0"/>
<p svgId="connector15pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector16" name="GPIO_0">
<description>GPIO_0</description>
<views>
<breadboardView>
<p svgId="connector16pin" layer="breadboard" terminalId="connector16terminal"/>
</breadboardView>
<schematicView>
<p svgId="connector16pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector16pin" layer="copper0"/>
<p svgId="connector16pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector17" name="VCC">
<description>VCC</description>
<views>
<breadboardView>
<p svgId="connector17pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector17pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector17pin" layer="copper0"/>
<p svgId="connector17pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector18" name="RXON">
<description>RXON</description>
<views>
<breadboardView>
<p svgId="connector18pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector18pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector18pin" layer="copper0"/>
<p svgId="connector18pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector19" name="TXON">
<description>TXON</description>
<views>
<breadboardView>
<p svgId="connector19pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector19pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector19pin" layer="copper0"/>
<p svgId="connector19pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector20" name="GND">
<description>GND</description>
<views>
<breadboardView>
<p svgId="connector20pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector20pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector20pin" layer="copper0"/>
<p svgId="connector20pin" layer="copper1"/>
</pcbView>
</views>
</connector>
<connector type="male" id="connector21" name="GND">
<description>GND</description>
<views>
<breadboardView>
<p svgId="connector21pin" layer="breadboard"/>
</breadboardView>
<schematicView>
<p svgId="connector21pin" layer="schematic"/>
</schematicView>
<pcbView>
<p svgId="connector21pin" layer="copper0"/>
<p svgId="connector21pin" layer="copper1"/>
</pcbView>
</views>
</connector>
</connectors>
<buses>
<bus id="internal1"/>
<bus id="internal2">
<nodeMember connectorId="connector21"/>
<nodeMember connectorId="connector6"/>
<nodeMember connectorId="connector20"/>
</bus>
</buses>
</module>