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APX

® 

1000 Universal Gateway

 

 
 

 
Hardware Technical Specifications 

 
8. 

Physical Dimensions 

    14.8” (D) x 17.2” (W) x 5.20” (H) (3 rack units) 3RU 
    Loaded system weight: 39 lbs. (approximate) 
 
9. 

Chassis Architecture 

    6 slots total 
    1 dedicated slot for system controller module 
    1 dedicated slot for channel ingress card 
    4 general purpose slots for port processing, circuit and  
    packet modules 
 
10. 

Universal Port Density 

      576 voice/data calls – via Channelized T1 
      672 voice/data calls – via Channelized DS3 
      720 voice/data calls – via Channelized E1 
 
11. 

Serviceability/Redundancy 

      Packet, circuit and processing modules hot-swappable 
      All modules and fan tray field-replaceable 
      Three (3) independent cooling fans with system     
      monitored fan-fail signals removable fan tray 
      AC and DC power supply units 

- Hot-swappable, 1+1 redundant, load sharing, AC    

      input and DC input power supplies 

   - Mixed AC & DC supplies supported in the same   
   chassis 
 

12. 

APX

® 

1000 Universal Gateway Module Options 

     WAN Access Modules 

     Circuit switching (ingress) 
     – 24-port Channelized T1/E1 
     – 8-port Channelized E1 
     – 8-port Channelized T1 
     – 1-port Channelized DS3 
     Packet switching (egress) 
     – 1-port OC3/STM-1 ATM (copper or short-haul fiber or 
     long-haul fiber) 
     – 2- and 4-port 10/100 fast Ethernet 

    Processor Modules/CODEC Support 

    288-port MultiDSP / G.711, G.729 (a and b), G.723.1 
    240-port MultiDSP / G.711, G.729 (a and b), G.723.1 
    96-port MultiDSP / G.711, G.729 (a and b) 
    2nd- generation HDLC 

 

 
 
 
 
 
 
 
 
 
 
 

 
 
 
 
 
 
13. 

Power Requirements 

      Power budget AC 

     Total typical values per fully loaded chassis: 

      Input power per chassis: 381 W 
      Heat dissipation: 959 BTU/h 
      Current intake @ 100Vac input: 9.6 A* 
      Current intake @ 115Vac input: 7.0 A* 
      Current intake @ 230Vac input: 3.5 A* 

      Recommendations: 

      Input power per chassis: 337 W 
      Heat dissipation: 1150 BTU/h 
      Current intake @ 100Vac Input: 9.6 A* 
      Current intake @ 115Vac Input: 8.5 A* 
      Current intake @ 230Vac Input: 4.2 A* 
      Power budget DC 

      Total typical values per fully loaded chassis: 

      Input power per chassis: 301 W 
      Heat dissipation: 1027 BTU/h 
      Current intake @ -48Vdc input: 16.0 A* 
      Current intake @ -40Vdc input: 20.0 A* 

      Recommendations: 

      Input power per chassis: 361 W 
      Heat dissipation: 1233 BTU/h 
      Current intake @ -48Vdc input: 20.0 A* 
      Current intake @ -40Vdc input: 24.0 A* 
      Configuration: 
      1 x controller module, 3 x 288-port MultiDSP modules,   
      1 x DS3, 
      1 x Ethernet, 1 fan tray 
 

       * Per power supply

 

 
14. 

Operating Characteristics 

      Ambient operating temperature: 
      -0 C to 40 C (-5c to +55c for short term per GR63-  
      CORE) 
      Ambient storage temperature: 
      -40 C to +65 C 
      Relative humidity: 
      10% to 95% non-condensing 
      Operating altitude: 
       to 10,000 feet (3,050 M) 
 
15. 

Regulatory Compliance 

     NEBS: 

Level 3 compliant, GR-63-CORE, GR-1089-   

     CORE, CLEI coded, available in TIRKS database 

     EMC/EMI: 

FCC 15 Class A, R&TTE Directive (EN   

     55022, EN 300 386), Class A, EN 61000-3-2, EN     
     61000-3-3, AS/NZS 3548, Class A, CISPR 22 Class A,  
     VCCI Class A, CNS 13438 Class A 

     Safety: 

CSA NRTL (UL 1950, Third Edition), CSA  

     C22.2, No. 950, Third Edition, R&TTE Directive EN  
     60950 Including Amendments 1, 2, 3, 4, 11, IEC  
     60950 including Amendments 1, 2, 3, 4 

     Telecom: 

FCC Part 68, IC CS 03, JATE 

 

Summary of Contents for APX 1000

Page 1: ... and high port density in a Universal port technology for any service any port small footprint optimize CO space utilization any time versatility Carrier class network reliability redundant Uniform capacity for consistent application components maximize uptime and serviceability performance and density up to platform s stable carrier proven TAOS helps sustain high maximum port capacity availabilit...

Page 2: ...r QoS with VoIP client RIP RIP2 OSPF BGP4 IGMP Applications VPN tunneling ATMP L2TP IP in IP L2F PPTP Virtual Routers 4 Bandwidth Management and Data Compression SS7 call control and signaling MLPPP MP MP MPPC BACP TCP header IPDC E1 T1 tunneling using IPDC H 248 compression ATM traffic shaping STAC MS STAC Non SS7 call control and signaling STAC 9 H 323v2 SIP M2UA IUA Fax over IP modem over IP 5 ...

Page 3: ... 13 Power Requirements Power budget AC Total typical values per fully loaded chassis Input power per chassis 381 W Heat dissipation 959 BTU h Current intake 100Vac input 9 6 A Current intake 115Vac input 7 0 A Current intake 230Vac input 3 5 A Recommendations Input power per chassis 337 W Heat dissipation 1150 BTU h Current intake 100Vac Input 9 6 A Current intake 115Vac Input 8 5 A Current intake...

Page 4: ...y or supplement any warranties which may be made by Lucent Technologies relating to the products and or services described herein The publication of information contained in this document does not imply freedom from patent or other protective rights of Lucent Technologies or third parties APX True Access and MAX TNT are registered trademarks and MAX and NavisAccess are trademarks of Lucent Technol...

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