107PS11604 ELMA | Alldatasheet

Document overview

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Technical content

Features

  • Conforms to PICMG 2.16 specifi cation
  • Conforms to PICMG basic specifi cation 2.0 R3.0
  • Moves data via switched Ethernet fabric (10/100/1000 Mbit/s)
  • Star and Dual Star topologies
  • Versions with and without H.110 telephony bus
  • Power studs between slots to save space
  • Optional power supply connectors or power bugs
  • Supports existing SBCs, Ethernet cards, and line cards
  • Controlled impedance stripline design

Description

The performance of CompactPCI is vastly improved with the cPSB (PICMG 2.16) protocol. It provides the ideal solution for thirdgeneration wireless, Internet protocol, voice over IP (VoIP), and other applications that require high processing power and data rates. CPSB increases system performance by moving data traffi c off the shared bus, and onto an embedded switched Ethernet network fabric (10/100/1000 Mbit/s), accessed via the P3 connector. The 4-slot, 6-slot, and (one of the) 8-slot backplanes have 1 fabric slot, with the rest of the slots as node slots with the CompactPCI bus. Elma Bustronic also offers an 8-slot version with 2 fabric slots, with the rest of the node slots with the CompactPCI bus and with or without the H.110bus. The 16-slot PICMG 2.16 backplane has 2 fabric slots, with the rest of the node slots with the cPCI bus. The cPCI bus segments are bridged (See cPCI Bridge Datasheet). All of Bustronic's standard PICMG 2.16 backplanes offer one slot that is convertible to a system slot via a CPU Enable jumper. With the power studs and power blades dispersed throughout key locations in the backplanes, the overall widths are a true 4-slot, 6-slot, and 8-slot size. (Many CompactPCI backplanes have power bugs on the side ofthe backplane, adding a slot size of width to the dimensions.) This allows the 4-slot, 6-slot, and 8-slot backplanes to fi t within 2U, 3U, and 4U horizontal chassis respectively. Further, the use of 6/32 power studs gives the backplanes modularity, allowing power interface boards in various confi gurations to be mounted to the backplane. Bustronic offers design services for various other confi gurations of PICMG 2.16. The backplanes have several 6/32 power studs for 3.3V, 5V, V I/O, and GND and fast-on blades for +/- 12V. Per the specifi cation, the shelf geographical addressing is located in the P3 section of the backplane and is confi gurable. The DEG (derate/degrade) and FAIL headers can be run from the power supply to the CPU board for power supply monitoring. A PRST (power on reset pin) is also included. Some cPSB versions include a 20-pin header with pins for the Intelligent Platform Management Bus (IPMB) for shelf management. The cPSB backplane is composed of Node Slots , Fabric Slots, and the Links that interconnect them. The cPSB topology is a star topology (not a bus). Each line interconnecting a Node Slot and Fabric Slot represents a Link that is a 10/100/1000 Mbps full-duplex Ethernet connection. Node Boards communicate by transferring/receiving packets to/from the Fabric Board, which transfers the packet to/from one or more Node Boards. Thus, every Node Board can communicate with every other Node Board and form a fabric. A cPSB backplane can have up to twenty Node Slots (with one or two Link Ports) per chassis; and up to two Fabric Slots. The differential pairs are routed as close together as possible and kept on the same layer. The outside layers are ground for EMI protection and suppression. The signal layers are alternated with power or ground layers for controlled impedance and to minimize crosstalk. Power and ground planes are 2 oz. copper. High and low frequency decoupling capacitors are distributed generously across the backplane. Mechanical Specifi cations

  • 6U height
  • 4, 6, 8, and 16 slot sizes standard
  • Ethernet and cPCI compatible Board Specifi cations
  • 10-layer board (H.110 14-layer board)
  • 2 oz. copper power and ground
  • PCB UL recognized 94V-0
  • PCB FR-4 or equivalent
  • PCB .134" thick (4, 6, & 8 slot w/o H.110), .152” thick (8 & 16 slot w/ H.110) Close-up of 6-32 Power Studs

Compact Packet Switching (cPSB) Backplane Line Drawing ORDER INFORMATION Total Slots Fabric Slots Node Slots Height Width Part Number 4 1 2 w/cPCI, 1 node/sys slot w/cPCI 10.32 in. 3.16 in. 107PS11604 w/cPCI 6 1 4 w/cPCI , 1 node/sys slot w/cPCI 10.32 in. 4.78 in. 107PS11606 slot w/cPCI 8 1 6 w/cPCI, 1 node/sys slot w/cPCI 10.32 in. 6.38 in. 107PS11608 8 2 5 w/cPCI, 1 node/sys slot w/ cPCI, 10.32 in. 6.38 in. 107PS21608 IPM Sentry shelf mgmt. connector slot w/cPCI 16 2 13 w/cPCI, 1 node/sys slot w/cPCI, 10.32 in. 15.967 in. 107PS22616 bridged 10.32 0.000 4.78 4.411 0.368

Compact Packet Switching (cPSB) Backplane Product Confi gurations (Example: 107PS11608-0157R) 107 = PICMG 2.16 Compliant 108 = PICMG 2.16 with CTEL, H.110 compatible Product PS = Compact Packet Switching Backplane Fabric Slots 1 = 1 Fabric Slot 2 = 2 Fabric Slots System Slots 1-9 Form 6 = 6U height 02-21 = Slots Configuration Power Interface 0 = 6-32 studs, fast-on blades for +/- 12V Connectors for P1 & P2 0 = P1 short, P2 long 1 = P1 short, P2 short 2 = P1 short, No P2 X = Not applicable Connectors for P3, P4 & P5 0 = Not applicable 1 = Not applicable 2 = Not applicable 3 = Not applicable 4 = Not applicable 5 = P3 & P5 long type AB, P4 long type A X = Not applicable Shrouds 0 = P2 only 1 = Not applicable 2 = Not applicable 3 = Not applicable 4 = Not applicable 5 = Not applicable 6 = Not applicable 7 = P4 type A , P3 & P5 type AB □ X = Not applicable RoHS R = RoHS compliant 107 -_ _ _ _ _Configuration Product □ Form SlotsFabric Slots System Slots -0157 -0257 -0157R -0257R Common Confi gurations Examples

Compact Packet Switching (cPSB) Backplane 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 N O D E S Y S S L O T N O D E N O D E N O D E N O D E N O D E N O D E N O D E N O D E S Y S S L O T N O D E N O D E N O D E N O D E N O D E N O D E N O D E N O D E N O D E N O D E S Y S S L O T F A B R I C S L O T A F A B R I C S L O T B PICMG 2.16 Backplane Standard Confi guration CPSB backplanes can come in various confi gurations. The CompactPCI and H.110 buses can be implemented or not adopted. One (Star topology) or two (Dual Star) fabric slots can be used. Also, there are various implementations of the system slots, alarm cards, power interfaces, etc. Consult Elma Bustronic for help in developing your confi guration. Pinouts for Compact Switching Backplane The following pinout tables of the cPSB backplane are for the fabric board slots in P5 and P3, and the node board slots in P3. The P1 and P2 areas of the backplane See the CompactPCI Reference Sheet on any CompactPCI page on the Elma Bustronic Web site for other pinouts. GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND BP(I/O) LPa_DA+ LPa_DB+ LPb_DA+ LPb_DB+ BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) (1,3) (1,3) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) BP(I/O) LPa_DA- LPa_DB- LPb_DA- LPb_DB- BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) (1,3) (1,3) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) BP(I/O) GND GND GND GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) (1,3) (1,3) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) BP(I/O) LPa_DC+ LPa_DD+ LPb_DC+ LPb_DD+ BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) (1,3) (1,3) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) BP(I/O) LPa_DC- LPa_DD- LPb_DC- LPb_DD- BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) (1,3) (1,3) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) (1,16) P C O N N E C T O R Pin Z A B C D EF (5) (6) Node Board P3 Pin Assignment

Compact Packet Switching (cPSB) Backplane GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND P C O N N E C T O R Pin Z A B C D E F (5) (6) LP19_DA+ LP19_DB+ LP18_DA+ LP18_DB+ LP17_DA+ LP17_DB+ LP16_DA+ LP16_DB+ LP15_DA+ LP15_DB+ LP14_DA+ LP14_DB+ LP13_DA+ LP13_DB+ LP12_DA+ LP12_DB+ LP11_DA+ LP11_DB+ LP10_DA+ LP10_DB+ LP9_DA+ LP9_DB+ LP19_DA- LP19_DB- LP18_DA- LP18_DB- LP17_DA- LP17_DB- LP16_DA- LP16_DB- LP15_DA- LP15_DB- LP14_DA- LP14_DB- LP13_DA- LP13_DB- LP12_DA- LP12_DB- LP11_DA- LP11_DB- LP10_DA- LP10_DB- LP9_DA- LP9_DB- GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND LP19_DC+ LP19_DD+ LP18_DC+ LP18_DD+ LP17_DC+ LP17_DD+ LP16_DC+ LP16_DD+ LP15_DC+ LP15_DD+ LP14_DC+ LP14_DD+ LP13_DC+ LP13_DD+ LP12_DC+ LP12_DD+ LP11_DC+ LP11_DD+ LP10_DC+ LP10_DD+ LP9_DC+ LP9_DD+ LP19_DC- LP19_DD- LP18_DC- LP18_DD- LP17_DC- LP17_DD- LP16_DC- LP16_DD- LP15_DC- LP15_DD- LP14_DC- LP14_DD- LP13_DC- LP13_DD- LP12_DC- LP12_DD- LP11_DC- LP11_DD- LP10_DC- LP10_DD- LP9_DC- LP9_DD- GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND SGA4 LPf_DA+ LPf_DB+ LP8_DA+ LP8_DB+ LP7_DA+ LP7_DB+ LP6_DA+ LP6_DB+ LP5_DA+ LP5_DB+ LP4_DA+ LP4_DB+ LP3_DA+ LP3_DB+ LP2_DA+ LP2_DB+ LP1_DA+ LP1_DB+ (4) (4) SGA2 GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND (4) (4) (4) P C O N N E C T O R Pin Z A B C D EF (5) (6) (18) (18) SGA3 LPf_DA- LPf_DB- LP8_DA- LP8_DB- LP7_DA- LP7_DB- LP6_DA- LP6_DB- LP5_DA- LP5_DB- LP4_DA- LP4_DB- LP3_DA- LP3_DB- LP2_DA- LP2_DB- LP1_DA- LP1_DB- (18) (18) SGA1 LPf_DC+ LPf_DD+ LP8_DC+ LP8_DD+ LP7_DC+ LP7_DD+ LP6_DC+ LP6_DD+ LP5_DC+ LP5_DD+ LP4_DC+ LP4_DD+ LP3_DC+ LP3_DD+ LP2_DC+ LP2_DD+ LP1_DC+ LP1_DD+ SGA0 LPf_DC+ LPf_DD+ LP8_DC+ LP8_DD+ LP7_DC+ LP7_DD+ LP6_DC+ LP6_DD+ LP5_DC+ LP5_DD+ LP4_DC+ LP4_DD+ LP3_DC+ LP3_DD+ LP2_DC+ LP2_DD+ LP1_DC+ LP1_DD+ (18) (18) (18) (18) GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND Fabric Board P5 Pin Assignment Fabric Board P3 Pin Assignment

Compact Packet Switching (cPSB) Backplane Related Products from Elma Electronic:

  • System Platforms – need a chassis for your backplane?
  • cPCI Embedded Computing Products – SBCs, Switches, Storage, and More Did you know we also offer with this cPCI backplane:
  • cPCI Extenders, load boards, RTMs, test modules
  • Customization, integration GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND P C O N N E C T O R Pin Z A B C D E F (5) (6) LP19_DA+ LP19_DB+ LP18_DA+ LP18_DB+ LP17_DA+ LP17_DB+ LP16_DA+ LP16_DB+ LP15_DA+ LP15_DB+ LP14_DA+ LP14_DB+ LP13_DA+ LP13_DB+ LP12_DA+ LP12_DB+ LP11_DA+ LP11_DB+ LP10_DA+ LP10_DB+ LP9_DA+ LP9_DB+ LP19_DA- LP19_DB- LP18_DA- LP18_DB- LP17_DA- LP17_DB- LP16_DA- LP16_DB- LP15_DA- LP15_DB- LP14_DA- LP14_DB- LP13_DA- LP13_DB- LP12_DA- LP12_DB- LP11_DA- LP11_DB- LP10_DA- LP10_DB- LP9_DA- LP9_DB- GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND LP19_DC+ LP19_DD+ LP18_DC+ LP18_DD+ LP17_DC+ LP17_DD+ LP16_DC+ LP16_DD+ LP15_DC+ LP15_DD+ LP14_DC+ LP14_DD+ LP13_DC+ LP13_DD+ LP12_DC+ LP12_DD+ LP11_DC+ LP11_DD+ LP10_DC+ LP10_DD+ LP9_DC+ LP9_DD+ LP19_DC- LP19_DD- LP18_DC- LP18_DD- LP17_DC- LP17_DD- LP16_DC- LP16_DD- LP15_DC- LP15_DD- LP14_DC- LP14_DD- LP13_DC- LP13_DD- LP12_DC- LP12_DD- LP11_DC- LP11_DD- LP10_DC- LP10_DD- LP9_DC- LP9_DD- GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND SGA4 LPf_DA+ LPf_DB+ LP8_DA+ LP8_DB+ LP7_DA+ LP7_DB+ LP6_DA+ LP6_DB+ LP5_DA+ LP5_DB+ LP4_DA+ LP4_DB+ LP3_DA+ LP3_DB+ LP2_DA+ LP2_DB+ LP1_DA+ LP1_DB+ (4) (4) SGA2 GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND GND (4) (4) (4) P C O N N E C T O R Pin Z A B C D EF (5) (6) (18) (18) SGA3 LPf_DA- LPf_DB- LP8_DA- LP8_DB- LP7_DA- LP7_DB- LP6_DA- LP6_DB- LP5_DA- LP5_DB- LP4_DA- LP4_DB- LP3_DA- LP3_DB- LP2_DA- LP2_DB- LP1_DA- LP1_DB- (18) (18) SGA1 LPf_DC+ LPf_DD+ LP8_DC+ LP8_DD+ LP7_DC+ LP7_DD+ LP6_DC+ LP6_DD+ LP5_DC+ LP5_DD+ LP4_DC+ LP4_DD+ LP3_DC+ LP3_DD+ LP2_DC+ LP2_DD+ LP1_DC+ LP1_DD+ SGA0 LPf_DC+ LPf_DD+ LP8_DC+ LP8_DD+ LP7_DC+ LP7_DD+ LP6_DC+ LP6_DD+ LP5_DC+ LP5_DD+ LP4_DC+ LP4_DD+ LP3_DC+ LP3_DD+ LP2_DC+ LP2_DD+ LP1_DC+ LP1_DD+ (18) (18) (18) (18) GND GND GND GND GND GND GND GND (2) (2) (2) GND GND GND GND GND GND GND GND Fabric Board P3 Pin AssignmentFabric Board P5 Pin Assignment