PIXUS PS1300 SERIES CPCI BACKPLANES

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Details

Part Number PS1300 SERIES CPCI BACKPLANES
Manufacturer PIXUS
Category Uncategorized
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Description

Common sizes include 4, 5, 6, and 8 slots. 3U CompactPCI backplanes in 32-bit and 64-bit configurations.

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Our Process

Our Process: Preparation
Preparation

Once you accept your quote and confirm your order, we prepare by retrieving related parts and components from our inventory. Anything we do not currently have in stock is sourced.

Our Process: Receiving
Receiving

Upon receipt, all parts are visually inspected for damage and then photographed to document their condition. Parts acquired from vendors must meet our quality standards.

Our Process: Initial Testing
Initial Testing

Industrial computer boards and other parts we are equipped to evaluate are tested to verify functionality and discover possible damage.

Our Process: Refurbishment
Refurbishment

Industrial computer boards have all components with low MTBF numbers (such as capacitors and connectors) replaced and are washed in our PCB cleaner to remove dust and grime.

Our Process: Repair
Repair

Industrial computer boards are fully diagnosed and repaired by our engineers. Logs of the problems encountered and solutions implemented are recorded.

Our Process: Final Testing
Final Testing

Industrial computer boards have all I/O connections rigorously tested to ensure that everything is working properly before the board is certified as ready to ship.

Our Process: Shipping
Shipping

After photos are taken to document the exterior condition of the part, it is packaged and sent to the customer. ESD-safe materials are used to protect sensitive equipment on its journey.

Who We Are

IPC Station is a website of GID Industrial, an ISO 9001:2015-certified company that has specialized in servicing industrial computer boards and providing other industrial products for sectors including manufacturing, defense, aerospace, entertainment, healthcare, and more by utilizing our combined skills and vast international network of trusted suppliers since our founding in 2015.

Do you need a PS1300 SERIES CPCI BACKPLANES? We can help you find it at a competitive price!

Specifications

Slots 2 to 8, 3U single wide (4HP) CompactPCI slots

Features

  • Any slot count is achieved by connecting backplanes with bridge modules (PS1130)
  • 2 to 8, 3U single wide (4HP) CompactPCI slots
  • +5 V, 33 MHz PCI bus interface
  • 32-bit or 64-bit buses available
  • PICMG 2.0 R2.1 CompactPCI and pre-2.1 compatible
  • User-definable geographic address for each physical slot
  • PICMG 2.1 R1.0 CompactPCI Hot Swap Specification compliant
  • ATX-compliant power connectors

Datasheet

Download "cPCI-Backplane-3U-Datasheet.pdf" (738 KiB)

Extracted Text

Section 2_52-103 4/6/04 4:34 PM Page 20 General CompactPCI Backplane Information ■ Modular Series Combination Tables ■ 3U: PS1300 Series CompactPCI Backplanes Slots Configuration Backplanes required Bridges required Model No. required PS1320 CompactPCI backplane (beginning segment) 22 slot backplane PS1361 None 33 slot backplane PS1360 None 44 slot backplane PS1350 None 55 slot backplane PS1340 None 66 slot backplane PS1330 None 77 slot backplane PS1320 None 88 slot backplane PS1300 None 9 6+3 slots PS1330+PS1360 1 10 7+3 or 6+4 slots PS1320+PS1360 or PS1330+PS1350 1 11 7+4 or 6+5 slots PS1320+PS1350 or PS1330+PS1340 1 12 6+6 or 7+5 slots 2X PS1330 or PS1320+PS1340 1 13 7+6 slots PS1320+PS1330 1 14 7+7 slots 2X PS1320 1 15 6+6+3 slots 2X PS1330 + PS1360 2 16 6+6+4 slots 2X PS1330 + PS1350 2 PS1330 CompactPCI backplane PS1221 power supply backplane 17 6+6+5 slots 2X PS1330 + PS1340 2 (end segment) 18 6+6+6 slots 3X PS1330 2 19 7+6+6 slots PS1320 + 2X PS1330 2 20 7+6+7 slots 2X PS1320 + PS1330 2 21 6+6+6+3 slots 3X PS1330 + PS1360 3 22 6+6+6+4 slots 3X PS1330+ PS1350 3 23 6+6+6+5 slots 3X PS1330+ PS1340 3 24 6+6+6+6 slots 4X PS1430 3 25 7+6+6+6 slots 3X PS1430+ PS1420 3 6U: PS1400 Series 6U: PS4400 Series CompactPCI Backplanes CompactPCI Backplanes PS1420B CompactPCI backplane PS4422B cPCI/H.110 backplane (end segment) (beginning alone segment) PS1420B CompactPCI backplane PS4422B cPCI/H.110 backplane (stand alone segment) (beginning alone segment) PS1260 power supply backplane PS1260 power supply backplane Slots Configuration Backplanes required Bridges Slots Configuration Backplanes required Bridges required Model No. required required Model No. required 3 3-slot backplane PS4460B None 22 slot backplane PS1461 None 4 4-slot backplane PS4450B None 33 slot backplane PS1460 None 5 5-slot backplane PS4440B None 44 slot backplane PS1450 None 55 slot backplane PS1440 None 6 6-slot backplane PS4430B None 66 slot backplane PS1430 None 7 7-slot backplane PS4420B None 77 slot backplane PS1420 None PS4400B (right host slot) or 8 8-slot backplane None PS1400 (right host slot) or PS1405 & PS4407B for left 88 slot backplane None PS1406 for left 9 6+3 slots PS4432B + PS4460B 1 9 6+3 slots PS1430+PS1460 1 10 7+3 or 6+4 slots PS4432B + PS4460B or PS4430B 1 10 7+3 or 6+4 slots PS1420+PS1460 or PS1430+PS1450 1 + PS4450B 11 7+4 or 6+5 slots PS1420+PS1450 or PS1430+PS1440 1 PS4432B + PS4450B or PS4430B 1 11 7+4 or 6+5 slots 12 6+6 or 7+5 slots 2X PS1430 or PS1420+PS1440 1 + PS4440B 13 7+6 slots PS1420+PS1430 1 12 6+6 or 7+5 slots 2X PS4432B or PS4420B + PS4440B 1 14 7+7 slots 2X PS1420 1 13 7+6 slots PS4432B + PS4430B 1 14 7+7 slots 2X PS4420B 1 15 6+6+3 slots 2X PS1430 + PS1460 2 15 6+6+3 slots 2X PS4432B + PS4460B 2 16 6+6+4 slots 2X PS1430 + PS1450 2 16 6+6+4 slots 2X PS4432B + PS4450B 2 17 6+6+5 slots 2X PS1430 + PS1440 2 18 6+6+6 slots 3X PS1430 2 17 6+6+5 slots 2X PS4432B + PS4440B 2 19 7+6+6 slots PS1420 + 2X PS1430 2 18 6+6+6 slots 3X PS4432B 2 20 7+6+7 slots 2X PS1420 + PS1430 2 19 7+6+6 slots PS4432B + 2X PS4430B 2 21 6+6+6+3 slots 3X PS1430 + PS1460 3 20 7+6+7 slots 2X PS4432B + PS4430B 2 22 6+6+6+4 slots 3X PS1430+ PS1450 3 21 6+6+6+3 slots 3X PS4432B + PS4460B 3 23 6+6+6+5 slots 3X PS1430+ PS1440 3 24 6+6+6+6 slots 4X PS1430 3 25 7+6+6+6 slots 3X PS1430+ PS1420 3 71 Section 2_52-103 4/6/04 4:34 PM Page 21 Ordering CompactPCI Backplanes ■ PS1300 Modular Series For 3U CompactPCI Boards Power Inputs PS1300: 8 slot, 3.5U, 64-bit **Width throughout modular series is 4HP per slot (see configuration chart). PS1300(Front) using a series of screws along the top subrack is not desired, the grounded General Description: Specifications and bottom edges of the backplanes. mounting screws can be left uninstalled. The PS1300 series of 3.5U 64/32-bit Electrical: Approximately every other mounting On all backplanes, the mounting holes backplane components allows the PCI Local Bus Specification Rev 2.1 hole along the top and bottom is in the four corners of the board are not construction of CompactPCI systems PICMG 2.0 R2.1 cPCI Specification connected to digital ground. These grounded, so these screws may always with any number of slots. Each holes provide a return to the subrack be installed. PICMG 2.1 R1.0 cPCI Hotswap backplane in the family contains from the digital PCI ground planes, and Specification between 2 and 8 slots, and can operate are identified by a ground symbol on in stand-alone mode with a host CPU Mechanical: the rear of the backplane. In situations board and power supply. Multiple IEEE 1101.1-1991 where connecting digital ground to the backplanes can be linked together using rear-mounting CompactPCI IEEE 1101.10-1996 bridge modules (PS1130). In this case, Order No. Model No. Related products Mechanical: only the rightmost backplane operates 3686571 PS1130 Right rear pallet bridge module (see page 83) with a host CPU board in the system The PS1300 backplanes are 8-layer 3686679 PS1241 Power supply backplane (see page 87) slot. A bridge module drives the bus of PCBs which are 3.5U (150.9 mm) tall 3686684 PS1250 Power supply backplane (see page 87) the adjacent backplane, which does and 0.125" thick (see configuration not contain a host CPU module. chart for widths). Two layers are 3688601 PS1260 Power supply backplane (see page 87) dedicated as ground layers. The 3686570 PS1600 Cable assembly (see page 87) Features: backplanes are attached to the subrack ■ Any slot count is achieved by connecting backplanes with bridge modules (PS1130) Order Model Slot Bus Physical ATX Pwr. Slot Geographic Hot No. No. count width width conn. expansion addressing swap ■ 2 to 8, 3U single wide (4HP) CompactPCI slots 3686546 PS1300* 8 64-bit 32HP 3 S • • ■ +5 V, 33 MHz PCI bus interface 3687859 PS1301 8 32-bit 32HP 3 S NA • ■ 32-bit or 64-bit buses available 3688419 PS1315B** 8true 32-bit 32HP 3 S NA • ■ PICMG 2.0 R2.1 CompactPCI and 3686547 PS1320 7 64-bit 28HP 2 SBE • • pre-2.1 compatible 3687860 PS1321 7 32-bit 28HP 2 SBE • • ■ User-definable geographic address 3688420 PS1322B 7true 32-bit 28HP 2 SBE • • for each physical slot 3686548 PS1330 6 64-bit 24HP 2 SBME • • ■ PICMG 2.1 R1.0 CompactPCI Hot 3687861 PS1331 6 32-bit 24HP 2 SBME • • Swap Specification compliant 3686575 PS1340 5 64-bit 20HP 2 SBE • • ■ ATX-compliant power connectors 3687862 PS1341 5 32-bit 20HP 2 SBE • • Power Inputs: 3686576 PS1350 4 64-bit 16HP 1 SBE • • Each of the PS1300 Series has at least 3687863 PS1351 4 32-bit 16HP 1 SBE • • 1 ATX header, providing power and 3686578 PS1360 3 64-bit 12HP 1 SBE • • measuring voltages on the backplane. 3687864 PS1361 2 64-bit 12HP 1 SBE • • The ATX connector can be found on newer PC motherboards and power 3687865 PS1362 3 32-bit 12HP 1 SBE • • supplies. The backplanes may either Legend S=Stand alone B=Beginning segment M=Middle segment E=Ending segment 1 HP=0.200" (4HP = 1 single slot width) be used with a standard “PC ATX” NA=Not Applicable *These backplanes require the PS1140 diode termination module. **These backplanes feature true 32-bit user I/O supply or they may be used with the on the J2 slot, meaning J2 peripheral slots are passthrough only. modular series of power backplanes. 72 CPCI Backplanes, technical specifications 32-bit pin assignment 9) 9) P2 connector P1 connector 6) 6) Pin Z AB C D E F Pin Z AB C D E F 5) 5) 5) 5) 5) 22 GND GA4 GA3 GA2 GA1 GAO GND 25 GND 5 V REQ64# ENUM# 3.3 V 5 V GND 3) 21 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 24 GND AD(1) 5 V V(I/O) AD(O) ACK64# GND 20 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 23 GND 3.3 V AD(4) AD(3) 5 V AD(2) GND 19 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 22 GND AD(7) GND 3.3 V AD(6) AD(5) GND 3) 18 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 21 GND 3.3 V AD(9) AD(8) M66EN C/BE(0)# GND 3) 17 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 20 GND AD(12) GND V(I/O) AD(11) AD(10) GND 16 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 19 GND 3.3 V AD(15) AD(14) GND AD(13) GND 15 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 18 GND SERR# GND 3.3 V PAR C/BE(1)# GND 14 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 17 GND 3.3 V SDONE SBQ# GND PERR# GND 1)3) 13 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 16 GND DEVSEL GND V(I/O) STOP# LOCK# GND 2) 12 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 15 GND 3.3 V FRAME# IRDY GND TRDY# GND 11 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 12 – 14 KEY AREA GND 10 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 11 GND AD(18) AD(17) AD(16) GND C/BE(2)# GND 9 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 10 GND AD(21) GND 3.3 V AD(20) AD(19) GND 8 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 9 GND C/BE(3)# IDSEL AD(23) GND AD(22) GND 3) 7 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 8 GND AD(26) GND V(I/O) AD(25) AD(24) GND 6 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 7 GND AD(30) AD(29) AD(28) GND AD(27) GND 5 GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 6 GND REQ# GND 3.3 V CLK AD(31) GND 4GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 5 GND BRSVP1A5 BRSVP1B5 RST# GND GNT# GND 3) 3GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 4 GND BRSVP1A4 GND V(I/O) INTP INTS GND 2GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 3 GND INTA# INTB# INTC# 5 V INTD# GND B 1GND BP(I/O) BP(I/O) BP(I/O) BP(I/O) BP(I/O) GND 2 GND TCK 5 V TMS TDO TDI GND 1 GND 5 V –12 V TRST# +12 V 5 V GND 3.2 32-bit and 64-bit backplane – Technical specifications: 64-bit CompactPCI pin assignments – Technical specifications: The CPCI specifications define both 32-bit and 64-bit versions. Both With the 64-bit CompactPCI, both P1 and P2 connectors are fully versions may be implemented on a 3 U daughterboard. However, assigned with signals. User-defined I/O signal pins are not availa- the 32-bit version allows the complete P2/J2 connector to be used ble. I/O signals are only available with 6 U boards on connectors P3, for user-defined I/O signals (slots 2 – 8). Slot 1 (system slot) uses P4 and P5. separate P2/J2 pins for functions such as clock, arbitration, (grant/ requests) and other system functions. These pins are printed in bold in the table. In 32-bit systems the P2/J2 connection may optionally be populated at the rear with 16 mm long pins and a transfer frame. Signals can be picked off or I/O boards connected at the rear. 64-bit pin assignment 9) 9) P2 connector P1 connector 7) 7) Pin Z AB C D E F Pin Z AB C D E F 6) 6) 6) 6) 6) 22 GND GA4 GA3 GA2 GA1 GAO GND 25 GND 5 V REQ64# ENUM# 3.3 V 5 V GND 3) 21 GND CLK6 GND RSV RSV RSV GND 24 GND AD(1) 5 V V(I/O) AD(0) ACK64# GND 8) 20 GND CLK5 GND RSV GND RSV GND 23 GND 3.3 V AD(4) AD(3) 5 V AD(2) GND 8) 19 GND GND GND RSV RSV RSV GND 22 GND AD(7) GND 3.3 V AD(6) AD(5) GND 8) 4)5) 18 GND BRSVP2A18 BRSVP2B18 BRSVP2C18 GND BRSVP2E18 GND 21 GND 3.3 V AD(9) AD(8) M66EN C/BE(0) GND 8) 3) 17 GND BRSVP2A17 GND PRST# REQ6# GNT6# GND 20 GND AD(12) GND V(I/O) AD(11) AD(10) GND 8) 16GNDBRSVP2A16BRSVP2B16 DEG# GND BRSVP2E16 GND 19 GND 3.3 V AD(15) AD(14) GND AD(13) GND 15 GND BRSVP2A15 GND FAL# REQ5# GNT5# GND 18 GND SERR# GND 3.3 V PAR C/BE(1)# GND 14 GND AD(35) AD(34) AD(33) GND AD(32) GND 17 GND 3.3 V SDONE SBO# GND PERR# GND 3) 1)3) 13 GND AD(38) GND V(I/O) AD(37) AD(36) GND 16 GND DEVSEL# GND V(I/O) STOP# LOCK# GND 2)3) 12 GND AD(42) AD(41) AD(40) GND AD(39) GND 15 GND 3.3 V FRAME# IRDY# GND TRDY# GND 3) 11 GND AD(45) GND V(I/O) AD(44) AD(43) GND 12 – 14 KEY AREA 10 GND AD(49) AD(48) AD(47) GND AD(46) GND 11 – AD(18) AD(17) AD(16) GND C/BE(2)# GND 3) 9 GND AD(52) GND V(I/O) AD(51) AD(50) GND 10 GND AD(21) GND 3.3 V AD(20) AD(19) GND 8 GND AD(56) AD(55) AD(54) GND AD(53) GND 9 GND C/BE(3)# IDSEL AD(23) GND AD(22) GND 3) 7 GND AD(59) GND V(I/O) AD(58) AD(57) GND 8 GND AD(26) GND V(I/O) AD(25) AD(24) GND 6 GND AD(63) AD(62) AD(61) GND AD(60) GND 7 GND AD(30) AD(29) AD(28) GND AD(27) GND 3) 5 GND C/BE(5)# GND V(I/O) C/BE(4)# PAR64 GND 6 GND REQ# GND 3.3 V CLK AD(31) GND 3) 4 GND V(I/O) BRSVP2B4 C/BE(7)# – C/BE(6)# GND 5 GND BRSVA5 BRSVB 5 RST# GND GNT# GND 3) 3 GND CLK4 GND GNT3# – GNT4# GND 4 GND BRSVA4 GND V(I/O) INTP INTS GND 3) 4) 2 GND CLK2 CLK3 SYSEN# – REQ3# GND 3 GND INTA# INTB# INTC 5 V INTD# GND 3) 1 GND CLK1 GND REQ1# – REQ2# GND 2 GND TCK 5 V TMS TDO TDI GND 1 GND 5 V –12 V TRST# +12 V 5 V GND The signals printed in bold are only assigned in the system slot 1) 2) 3) 4) 5) “Early mate” pin “Late mate” pin +3.3 V or 5 V Earthed with system slot GND for 33 MHz backplane, bussed in 66 MHz systems 6) 7) 8) Each slot may have its own address code (see CPCI specifications) Not for daughtercards Not for CPCI cards after version 1.0 9) All Rittal standard CPCI backplanes are designed for 64-bit applications on the layout side. With 32-bit versions, the P2/J2 connectors are populated on request. Rittal Catalogue 32/Electronic Packaging 511 CPCI

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