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<title>Specifications for PCR60 - Flat-Pack, Hybrid (analog & switched) Proximity Device
w/remote sensing capability</title>
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Mechanical Specifications and Wiring</font></td>
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<td align="center" valign="center" bgcolor="#ffffd2" rowspan="2"><img src="images/PCR60_dim.gif" height="150" width="225" alt="PCR60 Dimensions - Top View" border="0"></td>
<td align="center" valign="center" bgcolor="#ffffd2"><img src="images/PCR60_wir.gif" height="72" width="197" alt="PCR60 Wiring Diagram - switched output" border="0"></td>
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<td align="center" valign="center" bgcolor="#ffffd2"><img src="images/PCR60_ana.gif" height="72" width="189" alt="PCR60 Wiring Diagram - amplified analog output" border="0"></td>
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<td align="center" valign="center" bgcolor="#ffffd2"><img src="images/PCR60_sid.gif" height="64" width="230" alt="PCR60 Dimensions - Front View" border="0"></td>
<td align="center" valign="center" bgcolor="#ffffd2"><img src="images/PCR60_anu.gif" height="72" width="197" alt="PCR60 Wiring Diagram - unamplified analog output" border="0"></td>
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<td align="left" valign="center" bgcolor="#ffffd2"><font size="2"><strong>Housing : </strong>
molded ABS w/ screw-on cover <br>Triaxial connector, for remote sensing element<br>
<br>
<strong>Encapsulation : </strong> none<br>
<br>
<strong>Power/Output Cable: </strong> 2 meters ( 3 wires ), standard<br>
<strong>Sensor Cable: </strong> 3 meters ( triaxial ), sold separately<br>
<br>
<strong>Coarse Adjustment: </strong> 3-position dip switch ( interior )<br>
<strong>Fine Adjustment: </strong> 15-turn potentiometer ( exterior )<br>
<br>
<strong>Output Indicator: </strong> LED<br>
<strong>Switched: </strong> LED lit when output is conducting<br>
<strong>Analog: </strong> LED lit when output is center range<br></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><img src="images/PCR60_oc.gif" height="130" width="217" alt="PCR60 Analog Output Characteristics" border="0"></td>
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<td align="center" valign="center" bgcolor="#000000"><font size="3" color="#ffffff"><strong>Mechanical Specifications</strong></font></td>
<td align="center" valign="center" bgcolor="#000000"><font size="3" color="#ffffff"><strong>Wiring Diagrams<br>Analog Output Characteristics</strong></font></td>
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<br><a name="specs"></a>
<br>
<table cellspacing="5" cellpadding="5" background="images/bk21.gif" border="2" bordercolorlight="#d0e0e7" bordercolordark="#2626a6" width="99%">
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<td align="center" background="images/gp%20tartan.gif" height="50" colspan="6"><font color="#efef00" size="5">Electrical Specifications - In Common</font></td>
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<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Input Voltage</strong></font><br><font size="2"> </font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Supply Ripple</strong></font><br><font size="2"> </font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Range Adjustment</strong></font><br><font size="2">in pF</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Temperature<br>Range</strong></font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Relative<br>Humidity</strong></font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Environment</strong></font></td>
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<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>10-30 VDC</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>10%</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>0 - 50</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>+ 50<sup>o</sup> F to + 130<sup>o</sup> F
<br>+ 10<sup>o</sup> C to + 55<sup>o</sup> C</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>0 - 95%</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>unaffected by normal<br>
factory conditions<br>of dirt, grease and vibration</strong></font></td>
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<td align="center" background="images/gp%20tartan.gif" height="40" colspan="6"><font color="#efef00" size="5">Electrical Specifications - N.O. Switched Output</font></td>
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<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Operating Current</strong></font><br><font size="2">nominal</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong> </strong></font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Output Current</strong></font><br><font size="2">maximum</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Leakage Current</strong></font><br><font size="2">maximum</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Alarm Indicator</strong></font><br><font size="2">lit when output is conducting</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Circuit<br>Protection</strong></font></td>
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<td align="center" valign="center" bgcolor="#000000" height="7" colspan="6"></td>
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<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>12 mA</strong></font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="2"><strong> </strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>100 mA</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>2 uA</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>LED</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>reverse polarity</strong></font></td>
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<td align="center" background="images/gp%20tartan.gif" height="40" colspan="6"><font color="#efef00" size="5">Electrical Specifications - Analog Outputs</font></td>
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<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Operating Current</strong></font><br><font size="2">nominal</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Sensitivity</strong></font><br><font size="2">amplified<br>output in<br>V/pF</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Sensitivity</strong></font><br><font size="2">unamplified<br>output in<br>V/pF</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Output Voltage</strong></font><br><font size="2">amplified<br>unamplified</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Output Current</strong></font><br><font size="2">maximum</font></td>
<td align="center" valign="center" bgcolor="#ffff92"><font size="3"><strong>Circuit<br>Protection</strong></font></td>
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<td align="center" valign="center" bgcolor="#000000" height="7" colspan="6"></td>
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<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>10 mA</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>2 - 6</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>. 054 - . 162</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>1 - 6 VDC<br>3 - 5 VDC</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>10 mA</strong></font></td>
<td align="center" valign="center" bgcolor="#ffffd2"><font size="2"><strong>reverse polarity
<br>and<br>current limiting</strong></font></td>
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<td align="center" background="images/gp%20tartan.gif" height="50" colspan="6"></td>
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<br><a name="install"></a>
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<td align="center" background="images/gp%20tartan.gif" height="10%" colspan="3"><font color="#efef00" size="5">Installation/Setup Procedures</font></td>
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<td align="center" valign="center" bgcolor="#000000" width="50%"><font size="3" color="#ffffff"><strong>Mechanical Installation</strong></font></td>
<td align="center" valign="center" width="1"></td>
<td align="center" valign="center" bgcolor="#000000" width="49%"><font size="3" color="#ffffff"><strong>Electrical Installation</strong></font></td>
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<td align="left" valign="top" bgcolor="#ffffd2"><font size="3"><strong>
Use the sensor's two mounting holes, which are .187"
( 4.75 mm ) in diameter and spaced on 3.80" ( 96.52 mm ) centers, to fasten the
sensor securely to a bulkhead or bracket.<br>
<br>The remote sensing element must be constructed and secured in a way that prohibits movement of the
element, with respect to ground or the object to be detected.<br></font>
<br><font color="#ff0000">Note :</font><font color="#000000"> For new installations, you may require an
optional <a href="12A907.htm">12A907</a> Triaxial Bulkhead Connector, to interface with your remote sensing element.<br>
<br>As a general rule, remote sensing elements must be spaced a minimum of the sensor diameter away from each other.</strong></font></td>
<td align="center" valign="center" width="1"></td>
<td align="left" valign="top" bgcolor="#ffffd2"><font size="3"><strong>
Your sensor's electrical connections must agree with those shown in the
<a href="PCR60_specs.htm#wire">wiring diagram</a> above.</strong></font></td>
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<td align="center" valign="center" bgcolor="#000000" colspan="3"><font size="3" color="#ffffff"><strong>
Setup Procedure for Switched Output</strong></font></td>
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<td align="left" valign="top" bgcolor="#ffffd2" colspan="3"><font size="3"><strong>
<br>The following procedures must be performed any time the dip switch settings are changed. The instruction
label on the inside of the cover explains the dip switch settings.<br>
<br>
Apply power.<br>
<br>
With no target present, turn the adjustment potentiometer CW until an alarm
condition exists <br>( Normally Open - LED is lit ).<br>
<br>
Then, turn the pot CCW until the alarm just resets. This is the point of maximum possible sensitivity;<br>
this is not the recommended operating point, however, as temperature fluctuations
may cause false alarms or detection failures.<br>
<br>
For the optimum setting, put a target at the desired detection point and ensure that the switch is alarmed.
Turn the pot CCW until the unit just resets, noting the number of turns to reset.
Return CW half this number of turns.</strong></font>
<br>
<br><font color="#ff0000"><strong>Note:</strong></font><font size="3" color="#000000"><strong> A minimum of � turn CW is recommended to ensure stable operation.</strong></font></td>
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<td align="center" valign="center" bgcolor="#000000" colspan="3"><font size="3" color="#ffffff"><strong>Setup Procedure for Analog Outputs</strong></font></td>
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<td align="left" valign="top" bgcolor="#ffffd2" colspan="3"><font size="3"><strong>
<br>The following procedures must be performed any time the dip switch settings are changed. The instruction
label on the inside of the cover explains the dip switch settings.<br>
<br>
Connect a DC voltmeter between the amplified analog output lead of the sensor and ground.<br>
<br>With no target present, turn the adjustment potentiometer fully clockwise (CW).
The voltmeter should read greater than 6 volts.
Then, turn the pot counterclockwise (CCW) until the voltage drops to approximately 3 volts.<br>
<br>Place the intended target material in the sensing field and adjust for the desired voltage outputs,
with respect to the variations you wish to monitor.</strong></font></td>
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<td align="center" bgcolor="#ffffd2" width="20%"><font size="2"><em>phone: </em><br><strong>+1 800. 315. 9233</strong></font></td>
<td align="center" bgcolor="#ffffd2" width="30%"><font size="2"><em>email: </em><br></font>
<a href="mailto:[email protected]"><strong>[email protected]</strong></a></td>
<td align="center" bgcolor="#ffffd2" width="20%"><font size="2"><em>fax: </em><br><strong>+1 203. 775. 1162</strong></font></td>
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