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  <channel>
    <title>topic Power &amp; BTU Information for the Matrix N-Series in FAQs</title>
    <link>https://community.extremenetworks.com/t5/faqs/power-btu-information-for-the-matrix-n-series/m-p/48532#M533</link>
    <description>Article ID: 5181 &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Products&lt;/B&gt;&lt;BR /&gt;
Matrix N-Series&lt;BR /&gt;
DFE &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Protocols/Features&lt;/B&gt;&lt;BR /&gt;
Power&lt;BR /&gt;
BTU &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Solution&lt;/B&gt; &lt;BR /&gt;
&lt;BR /&gt;
Matrix N7 power supplies (up to two per 7C107 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 6C207-1      1000.0    1462.9    1429.0    170.0 (max 40A per slot)&lt;BR /&gt;
 6C207-3      1566.0    1602.7    2036.0    280.0 (max 40A per slot)See also: &lt;A href="http://bit.ly/1cTYft0" target="_blank" rel="nofollow noreferrer noopener"&gt;5003&lt;/A&gt;. &lt;BR /&gt;
&lt;BR /&gt;
Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;The 6C407 fan tray (has 6 fans) consumes 60W, generating 204.8 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N5 power supplies (up to two 7C205-1, and four N-POE-1200W (3 + 1&lt;BR /&gt;
                          redundancy), per 7C105-P chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V/48V&lt;BR /&gt;
 7C205-1      1196.0    1173.0    1540.0    170.0 (max 40A @ 5V per slot)&lt;BR /&gt;
 N-POE-1200W  1200.0     695.6    1404.0     25.0 (max 25A @ 48V per slot)See also: &lt;A href="http://bit.ly/1g4roH4" target="_blank" rel="nofollow noreferrer noopener"&gt;12137&lt;/A&gt;. &lt;BR /&gt;
&lt;BR /&gt;
Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;The 5V system power for this chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;The 48V PoE power for this chassis is designed to be operated in N+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure system redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant chassis power configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;For a N+1 redundant PoE power configuration it is only necessary to tally the BTU/hr for the N number of supplies. 
&lt;/LI&gt;&lt;LI&gt;The 7C405 fan tray (has 6 fans) consumes 60W, generating 204.8 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N3 power supplies (up to two per 7C103 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 7C203-1       863.0    1261.7    1233.0    155.0 (max 40A per slot)Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;The 7C403 fan tray (has 4 fans) consumes 40W, generating 136.5 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N1 power supplies (two integrated per 7C111 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 7C111         250.0     375.1     360.0     40.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This unit is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the utilized supplies. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;The stated BTU/hr is applicable to both non-redundant and 1+1 redundant scenarios. 
&lt;/LI&gt;&lt;LI&gt;The 7C111 has 6 integrated fans, and fan power considerations are included above.&lt;/LI&gt;&lt;/OL&gt;Matrix NSA (N-Standalone) power supplies (two integrated per 2G4072-52)&lt;BR /&gt;
 &lt;BR /&gt;
                         BTU/hr    ACVA&lt;BR /&gt;
 2G4072-52               647.9     190.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This unit is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the utilized supplies. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;The stated BTU/hr is applicable to both non-redundant and 1+1 redundant scenarios.&lt;/LI&gt;&lt;/OL&gt;Chassis-based Switching/Routing modules&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
*Uplinks*&lt;BR /&gt;
 7G-6MGBIC(-A)  11.5      39.2      15.0      2.3&lt;BR /&gt;
 7G-6MGBIC-B    12.0      40.9      15.6      2.4&lt;BR /&gt;
 7K-2XFP-6MGBIC 36.5     124.5      47.5      7.3&lt;BR /&gt;
 &lt;BR /&gt;
 MGBIC-02        1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-08        1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC01      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC03      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC09      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-MT01      1.0       3.4       1.3       .2&lt;BR /&gt;
 &lt;BR /&gt;
 10GBASE-32-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 10GBASE-ER      4.0      13.6       5.2       .8&lt;BR /&gt;
 10GBASE-ER-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 10GBASE-LR      3.0      10.2       3.9       .6&lt;BR /&gt;
 10GBASE-LX4     6.5      22.2       8.5      1.3&lt;BR /&gt;
 10GBASE-SR      4.5      15.3       5.9       .9&lt;BR /&gt;
 10GBASE-SR-XFP  1.5       5.1       2.0       .3&lt;BR /&gt;
 10GBASE-ZR      7.5      25.6       9.8      1.5&lt;BR /&gt;
 10GBASE-ZR-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Gold*&lt;BR /&gt;
 4G4202-60     118.5     404.1     154.1     23.7&lt;BR /&gt;
 4G4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 4G4205-72     139.0     474.0     180.7     27.8&lt;BR /&gt;
 4G4282-41      95.5     325.7     124.2     19.1&lt;BR /&gt;
 4G4282-49      90.5     308.6     117.7     18.1&lt;BR /&gt;
 4G4285-49      93.5     318.8     121.6     18.7&lt;BR /&gt;
 4H4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 4H4203-72      93.5     318.8     121.6     18.7&lt;BR /&gt;
 4H4282-49      82.0     279.6     106.6     16.4&lt;BR /&gt;
 4H4283-49      68.0     231.9      88.4     13.6&lt;BR /&gt;
 4H4284-49     132.0     450.1     171.6     26.4&lt;BR /&gt;
 4H4285-49     118.0     402.4     153.4     23.6&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Platinum*&lt;BR /&gt;
 2G4082-25      49.0     167.1      63.7      9.8&lt;BR /&gt;
 7G4202-30     110.0     375.1     143.0     22.0&lt;BR /&gt;
 7G4202-60     118.5     404.1     154.1     23.7&lt;BR /&gt;
 7G4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 7G4205-72     139.0     474.0     180.7     27.8&lt;BR /&gt;
 7G4270-09      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4270-10      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4270-12      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4280-19      93.0     317.1     120.9     18.6&lt;BR /&gt;
 7G4282-41      99.0     337.6     128.7     19.8&lt;BR /&gt;
 7G4282-49      90.5     308.6     117.7     18.1&lt;BR /&gt;
 7G4285-49      95.0     324.0     123.5     19.0&lt;BR /&gt;
 7H4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 7H4203-72      93.5     318.8     121.6     18.7&lt;BR /&gt;
 7H4284-49     132.0     450.1     171.6     26.4&lt;BR /&gt;
 7H4382-25      72.5     247.2      94.3     14.5&lt;BR /&gt;
 7H4382-49      87.5     298.4     113.8     17.5&lt;BR /&gt;
 7H4383-49     121.0     412.6     157.3     24.2&lt;BR /&gt;
 7H4385-49     121.0     412.6     157.3     24.2&lt;BR /&gt;
 7K4290-02     102.5     349.5     133.3     20.5&lt;BR /&gt;
 7K4297-02     120.0     409.2     156.0     24.0&lt;BR /&gt;
 7K4297-04     140.0     477.4     182.0     28.0&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Diamond*&lt;BR /&gt;
 7GR4202-30    101.0     344.4     131.3     20.2&lt;BR /&gt;
 7GR4270-12     97.5     332.5     126.8     19.5&lt;BR /&gt;
 7GR4280-19     99.0     337.6     128.7     19.8&lt;BR /&gt;
 7KR4290-02    103.5     352.9     134.6     20.7&lt;BR /&gt;
 7KR4297-02    120.0     409.2     156.0     24.0&lt;BR /&gt;
 7KR4297-04    140.0     477.4     182.0     28.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum power draw per module. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the module as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply plus the total BTU/hr for all installed modules. 
&lt;/LI&gt;&lt;LI&gt;ACVA (AC Volt-Amps = Watts / Power Factor) is the estimated AC power draw as a function of efficiency.&lt;/LI&gt;&lt;/OL&gt;
For more about Power over Ethernet options, please refer to &lt;A href="http://bit.ly/1beCPHq" target="_blank" rel="nofollow noreferrer noopener"&gt;5635&lt;/A&gt;. &lt;BR /&gt;
See also: &lt;A href="http://bit.ly/1pOV93L" target="_blank" rel="nofollow noreferrer noopener"&gt;2404&lt;/A&gt;.</description>
    <pubDate>Wed, 04 Dec 2013 08:03:00 GMT</pubDate>
    <dc:creator>FAQ_User</dc:creator>
    <dc:date>2013-12-04T08:03:00Z</dc:date>
    <item>
      <title>Power &amp; BTU Information for the Matrix N-Series</title>
      <link>https://community.extremenetworks.com/t5/faqs/power-btu-information-for-the-matrix-n-series/m-p/48532#M533</link>
      <description>Article ID: 5181 &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Products&lt;/B&gt;&lt;BR /&gt;
Matrix N-Series&lt;BR /&gt;
DFE &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Protocols/Features&lt;/B&gt;&lt;BR /&gt;
Power&lt;BR /&gt;
BTU &lt;BR /&gt;
&lt;BR /&gt;
&lt;B&gt;Solution&lt;/B&gt; &lt;BR /&gt;
&lt;BR /&gt;
Matrix N7 power supplies (up to two per 7C107 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 6C207-1      1000.0    1462.9    1429.0    170.0 (max 40A per slot)&lt;BR /&gt;
 6C207-3      1566.0    1602.7    2036.0    280.0 (max 40A per slot)See also: &lt;A href="http://bit.ly/1cTYft0" target="_blank" rel="nofollow noreferrer noopener"&gt;5003&lt;/A&gt;. &lt;BR /&gt;
&lt;BR /&gt;
Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;The 6C407 fan tray (has 6 fans) consumes 60W, generating 204.8 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N5 power supplies (up to two 7C205-1, and four N-POE-1200W (3 + 1&lt;BR /&gt;
                          redundancy), per 7C105-P chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V/48V&lt;BR /&gt;
 7C205-1      1196.0    1173.0    1540.0    170.0 (max 40A @ 5V per slot)&lt;BR /&gt;
 N-POE-1200W  1200.0     695.6    1404.0     25.0 (max 25A @ 48V per slot)See also: &lt;A href="http://bit.ly/1g4roH4" target="_blank" rel="nofollow noreferrer noopener"&gt;12137&lt;/A&gt;. &lt;BR /&gt;
&lt;BR /&gt;
Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;The 5V system power for this chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;The 48V PoE power for this chassis is designed to be operated in N+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure system redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant chassis power configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;For a N+1 redundant PoE power configuration it is only necessary to tally the BTU/hr for the N number of supplies. 
&lt;/LI&gt;&lt;LI&gt;The 7C405 fan tray (has 6 fans) consumes 60W, generating 204.8 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N3 power supplies (up to two per 7C103 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 7C203-1       863.0    1261.7    1233.0    155.0 (max 40A per slot)Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This chassis is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the installed supplies. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply. 
&lt;/LI&gt;&lt;LI&gt;The 7C403 fan tray (has 4 fans) consumes 40W, generating 136.5 BTU/hr.&lt;/LI&gt;&lt;/OL&gt;Matrix N1 power supplies (two integrated per 7C111 chassis)&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
 7C111         250.0     375.1     360.0     40.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This unit is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the utilized supplies. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;The stated BTU/hr is applicable to both non-redundant and 1+1 redundant scenarios. 
&lt;/LI&gt;&lt;LI&gt;The 7C111 has 6 integrated fans, and fan power considerations are included above.&lt;/LI&gt;&lt;/OL&gt;Matrix NSA (N-Standalone) power supplies (two integrated per 2G4072-52)&lt;BR /&gt;
 &lt;BR /&gt;
                         BTU/hr    ACVA&lt;BR /&gt;
 2G4072-52               647.9     190.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum available power per supply. 
&lt;/LI&gt;&lt;LI&gt;This unit is designed to be operated in 1+1 redundancy mode. 
&lt;/LI&gt;&lt;LI&gt;Each supply requires its own circuit capable of providing the maximum ACVA (AC Volt-Amps = Watts / Power Factor). 
&lt;/LI&gt;&lt;LI&gt;A UPS should be sized to be capable of providing the maximum ACVA for the utilized supplies. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the supply as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;The stated BTU/hr is applicable to both non-redundant and 1+1 redundant scenarios.&lt;/LI&gt;&lt;/OL&gt;Chassis-based Switching/Routing modules&lt;BR /&gt;
 &lt;BR /&gt;
               Watts     BTU/hr    ACVA   Amps @ 5V&lt;BR /&gt;
*Uplinks*&lt;BR /&gt;
 7G-6MGBIC(-A)  11.5      39.2      15.0      2.3&lt;BR /&gt;
 7G-6MGBIC-B    12.0      40.9      15.6      2.4&lt;BR /&gt;
 7K-2XFP-6MGBIC 36.5     124.5      47.5      7.3&lt;BR /&gt;
 &lt;BR /&gt;
 MGBIC-02        1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-08        1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC01      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC03      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-LC09      1.0       3.4       1.3       .2&lt;BR /&gt;
 MGBIC-MT01      1.0       3.4       1.3       .2&lt;BR /&gt;
 &lt;BR /&gt;
 10GBASE-32-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 10GBASE-ER      4.0      13.6       5.2       .8&lt;BR /&gt;
 10GBASE-ER-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 10GBASE-LR      3.0      10.2       3.9       .6&lt;BR /&gt;
 10GBASE-LX4     6.5      22.2       8.5      1.3&lt;BR /&gt;
 10GBASE-SR      4.5      15.3       5.9       .9&lt;BR /&gt;
 10GBASE-SR-XFP  1.5       5.1       2.0       .3&lt;BR /&gt;
 10GBASE-ZR      7.5      25.6       9.8      1.5&lt;BR /&gt;
 10GBASE-ZR-XFP  3.5      11.9       4.6       .7&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Gold*&lt;BR /&gt;
 4G4202-60     118.5     404.1     154.1     23.7&lt;BR /&gt;
 4G4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 4G4205-72     139.0     474.0     180.7     27.8&lt;BR /&gt;
 4G4282-41      95.5     325.7     124.2     19.1&lt;BR /&gt;
 4G4282-49      90.5     308.6     117.7     18.1&lt;BR /&gt;
 4G4285-49      93.5     318.8     121.6     18.7&lt;BR /&gt;
 4H4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 4H4203-72      93.5     318.8     121.6     18.7&lt;BR /&gt;
 4H4282-49      82.0     279.6     106.6     16.4&lt;BR /&gt;
 4H4283-49      68.0     231.9      88.4     13.6&lt;BR /&gt;
 4H4284-49     132.0     450.1     171.6     26.4&lt;BR /&gt;
 4H4285-49     118.0     402.4     153.4     23.6&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Platinum*&lt;BR /&gt;
 2G4082-25      49.0     167.1      63.7      9.8&lt;BR /&gt;
 7G4202-30     110.0     375.1     143.0     22.0&lt;BR /&gt;
 7G4202-60     118.5     404.1     154.1     23.7&lt;BR /&gt;
 7G4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 7G4205-72     139.0     474.0     180.7     27.8&lt;BR /&gt;
 7G4270-09      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4270-10      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4270-12      90.0     306.9     117.0     18.0&lt;BR /&gt;
 7G4280-19      93.0     317.1     120.9     18.6&lt;BR /&gt;
 7G4282-41      99.0     337.6     128.7     19.8&lt;BR /&gt;
 7G4282-49      90.5     308.6     117.7     18.1&lt;BR /&gt;
 7G4285-49      95.0     324.0     123.5     19.0&lt;BR /&gt;
 7H4202-72      97.5     332.5     126.8     19.5&lt;BR /&gt;
 7H4203-72      93.5     318.8     121.6     18.7&lt;BR /&gt;
 7H4284-49     132.0     450.1     171.6     26.4&lt;BR /&gt;
 7H4382-25      72.5     247.2      94.3     14.5&lt;BR /&gt;
 7H4382-49      87.5     298.4     113.8     17.5&lt;BR /&gt;
 7H4383-49     121.0     412.6     157.3     24.2&lt;BR /&gt;
 7H4385-49     121.0     412.6     157.3     24.2&lt;BR /&gt;
 7K4290-02     102.5     349.5     133.3     20.5&lt;BR /&gt;
 7K4297-02     120.0     409.2     156.0     24.0&lt;BR /&gt;
 7K4297-04     140.0     477.4     182.0     28.0&lt;BR /&gt;
 &lt;BR /&gt;
*DFE Diamond*&lt;BR /&gt;
 7GR4202-30    101.0     344.4     131.3     20.2&lt;BR /&gt;
 7GR4270-12     97.5     332.5     126.8     19.5&lt;BR /&gt;
 7GR4280-19     99.0     337.6     128.7     19.8&lt;BR /&gt;
 7KR4290-02    103.5     352.9     134.6     20.7&lt;BR /&gt;
 7KR4297-02    120.0     409.2     156.0     24.0&lt;BR /&gt;
 7KR4297-04    140.0     477.4     182.0     28.0Notes:&lt;OL&gt; 
&lt;LI&gt;These figures represent the maximum power draw per module. 
&lt;/LI&gt;&lt;LI&gt;To ensure redundancy: Add the 5V current draw of each module to be installed in the chassis and verify it does not exceed the maximum 5V current available from one supply. 
&lt;/LI&gt;&lt;LI&gt;BTU/hr represents the heat released from the module as a function of efficiency. 
&lt;/LI&gt;&lt;LI&gt;In a 1+1 redundant configuration it is only necessary to tally the BTU/hr for a single supply plus the total BTU/hr for all installed modules. 
&lt;/LI&gt;&lt;LI&gt;ACVA (AC Volt-Amps = Watts / Power Factor) is the estimated AC power draw as a function of efficiency.&lt;/LI&gt;&lt;/OL&gt;
For more about Power over Ethernet options, please refer to &lt;A href="http://bit.ly/1beCPHq" target="_blank" rel="nofollow noreferrer noopener"&gt;5635&lt;/A&gt;. &lt;BR /&gt;
See also: &lt;A href="http://bit.ly/1pOV93L" target="_blank" rel="nofollow noreferrer noopener"&gt;2404&lt;/A&gt;.</description>
      <pubDate>Wed, 04 Dec 2013 08:03:00 GMT</pubDate>
      <guid>https://community.extremenetworks.com/t5/faqs/power-btu-information-for-the-matrix-n-series/m-p/48532#M533</guid>
      <dc:creator>FAQ_User</dc:creator>
      <dc:date>2013-12-04T08:03:00Z</dc:date>
    </item>
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