Powerbackplane 3 U variant L2 P47 connector
Powerbackplane 3 U variant L2 P47 connector

 

 

Hartmann Elektronik

Powerbackplane 3 U variant L2 P47 connector

The backplane is designed for all CompactPCI power supply units which comply with the PICMG 2.11 Power Interface Specification and are equipped with the P47 power plug-in connector.
The backplane is designed for connection to all Hartmann backplanes.

The backplane is designed for installation in a 19" rack with 3 U. It can be mounted directly on the profile rail of the rack.

The installation width is 8 HP. The backplanes can be mounted in this mounting grid without any gap.

HOT-SWAP operation is possible.

Hartmann backplanes are preassembled and operational. The user normally does not have to carry out any modifications or adjustments.

Attention:

After connecting the input voltage, dangerous voltages may be present at the backplane.

When connecting the backplane, please observe the relevant countryspecific or international standards for interaction with dangerous voltages.

The cover panels AB1 and AB2 may not be removed. They protect against accidental contact during access by qualified technicians.

Mains voltage plug-in connector X0

The feed of supply voltage takes place through the MATE-N-LOK plug X0.

Current supply connections

For connection of the operating voltages of a backplane, which are +5V, +3.3 V and GND, three M3 screw connections are provided next to one another at a distance of 10.16 mm (.4").
A bus bar is already mounted on these screw connections. The auxiliary operating voltages +12 V and –12 V are output through M3 screw connections.

Chassis-GND connection X70

A continuous, electrically conductive chassis-GND surface is affixed in the installation area of the backplane on the rack. An M3 screw connection is available for connection of the housing ground. Through the additional installation of a connection bar, the chassis-GND can be connected to GND with low resistance. In smaller systems this connection can be made as a neutral point for the housing ground. In larger systems a suitable place for the neutral point for the housing ground must be found.

By standard, a capacitor which couples CHA-GND with LOGIC-GND is wired next to the fastening bores at each slot. A 1 MΩ resistor ensures the discharge of the capacitors and the discharge of electrostatic currents.

This enables an EMC proof installation of the backplane on the rack.

Jumpers

The jumper J1 applies the signal EN- (X1-27 and X2-27), which is connected to PS-ON (X12-14 and X19-14) to GND. In doing so, the power supply unit automatically starts. If this should not be desired, the jumper J1 must be disconnected and the power supply unit must be started through external wiring.
+12 V Sense is connected directly to +12 V on the power backplane through the jumper J4.
Pin 8 of X12 is connected to DEGthrough the jumper J8.
Pin 9 of X19 is connected to DEGthrough the jumper J9.

Testing points

Since INH- is not used, Pin 39 of X1 is only connected to the testing point TP1 and Pin 39 of X2 to testing point TP2.
Since PRST- is not available on the plug-in connector X1, PRST- was only carried to the testing point TP7 by X11 and X13. From there, additional wiring can be implemented.
Since +5 V STDBY of X12 is not used, Pin 9 of X12 is only connected to the testing point TP6 and Pin 9 of X19 to testing point TP4.
Since -5 V of X12 is not used, Pin 18 of X12 is only connected to the testing point TP3 and Pin 18 of X19 to testing point TP5.

Switches X66 and X67

DEG- of power supply unit 1 and/or power supply unit 2 can be applied to Pin 3 and 4 of plug-in connector X11 with switch X66, to Pin 3 of plug-in connector X13 and through jumper J8 or J9 to Pin 8 of ATX plug-in connector X12 and 14.
FAL- of power supply unit 1 and/or power supply unit 2 can be applied with switch X67 to Pin 5 and 6 of plug-in connector X11 and Pin 2 of plug-in connector X13.

Backplane addressing with SW1 and SW2

Through the DIP switches SW1 and SW2, a logical address which is set with the switches GA0-GA2 can be assigned to each backplane in the system.

Power supply units which support the System Management Bus can forward this information.

Switches 1 to 3 are to be configured appropriately for setting the address. The address which is in this manner is available to the power supply unit for further analysis.

The possibility of geographic localisation of equivalent components, which arises through this, is of great importance with redundant systems in HOT-SWAP operation, in particular.

Switch Assignments SW1 and SW2

Switch
1
2
3

GA0
GA1
GA2

Power supply Geographic Addressing

Power Supply Slot No.
GA2
GA1
GA0
1
GND
GND
GND
2
GND
GND
Open
3
GND
Open
GND
4
GND
Open
Open
5
Open
GND
GND
6
Open
GND
Open
7
Open
Open
GND
8
Open
Open
Open

Pin Assignments X1 and X2

V1 (typically +5 V)
V2 (typically +3.3 V)
V3 (typically +12 V)
V4 (typically –12 V)
RTN (GND)
Pin
Signal
Pin
Signal
Pin
Signal
1
V1


2
V1
3
V1


4
V1
5
RTN


6
RTN
7
RTN


8
RTN
9
RTN


10
RTN
11
RTN


12
RTN
13
V2


14
V2
15
V2


16
V2
17
V2


18
V2
19
RTN


20
V3
21
V4
22
RTN
23
Reserved
24
RTN
25
GA0
26
Reserved
27
EN-
28
GA1
29
V1ADJ
30
V1 Sense
31
GA2
32
V2ADJ
33
V2 Sense
34
S RTN
35
V1 Share
36
V3 Sense
37
IPMB_SCL
38
DEG-
39
INH-
40
IPMB_SDA
41
V2 Share
42
FAL-
43
IPMB_PWR
44
V3 Share




45
CGND
46
ACN/+DC IN








47
ACL/-DC IN

Pin Assignments

1): via jumper J3 to DEG-
2): to TP
3): via jumper J1 to GND
Pin
X0
X11
X12
X13
X14
X15
X19
1
PE
PRST-
+3.3 V
PRST-
+12 V
IPMB_SCL
+3.3 V
2
ACN
PRST-
+3.3 V
FAL-
GND
GND
+3.3 V
3
ACL
DEG-
GND
DEG-
GND
IPMB_SDA
GND
4
PE
DEG-
+5 V
+3.3 V Sense
+5 V
IPMB_PWR
+5 V
5
ACN
FAL-
GND
+3.3 V

unused
GND
6
ACL
FAL-
+5 V
GND Sense


+5 V
7

+5 V
GND
+5 V


GND
8

+5 V Sense
PW-OK1)
+5 V Sense


PW-OK1)
9

GND
+5 V SB2)
GND


+5 V SB2)
10

GND Sense
+12 V
GND Sense


+12 V
11

+3.3 V
+3.3 V



+3.3 V
12

+3.3 V Sense
-12 V



-12 V
13

GND
GND



GND
14

GND Sense
PS-ON3)



PS-ON3)
15


GND



GND
16


GND



GND
17


GND



GND
18


-5 V2)



-5 V2)
19


+5 V



+5 V
20


+5 V



+5 V

Mating connector and pins (e. g.)

mating connectors to connector housing pins
P47 connector X1 and X2

Positronic
FC116N2-1565.0
Power Supply X0
AMP 350715-4
AMP 926893-1
Utility connector X11 AMP 1-215911-4


ATX connector X12 and X19
Molex 39-01-2200
Molex 39-00-0039
Utility connector X13
FCI 90311-010
FCI 77138-001
Auxiliary Power Output connector X14
TKP8851-04
TKP8851T
IPMB connector X15
Molex 51021-0500
Molex 50079-8100

Available versions:

With the version L2, all components, as described above, are wired by standard.
The standard slot distance is 8 HP. Other slot distances are available on request.

Powerbackplane 3 HE Variante L2 P47 Steckverbinder
Powerbackplane 3 U variant L2 P47 connector
Fond de panier d’alimentation électrique 3 U variante L2 Connecteur P47
Силовая объединительная плата 3 U, модель L2 коннектор P47

33L2000014 CPCI Power-Backplane 2*P47 3 HE
ATX + M + Bolzen 2 Slot
Variante L2
CPCI power backplane 2*P47 3 U
ATX + M + bolts 2 slot
version L2
Fond de panier d'alimentation électrique CPCI 2*P47 3 U
ATX + M + boulon 2 slots
Variante L2
Силовая объединительная плата CPCI Power 2*P47 3 U
ATX + M + болты, 2 слота
Вариант L2

Powerbackplane 3 HE Variante L2 P47 Steckverbinder - Zubehör
Powerbackplane 3 U variant L2 P47 connector - Accessories
Fond de panier d’alimentation électrique 3 U variante L2 Connecteur P47 - Accessoires
Силовая объединительная плата 3 U, модель L2 коннектор P47 - Принадлежности

F006.00225
Kabel für ATX-Stromversorgung, l = 25 cm cables for ATX power supply, l = 25 cm Câble pour alimentation électrique ATX, l = 25 cm Кабель для электропитания ATX, длина 25 см
F006.00240
Kabel für ATX-Stromversorgung, l = 40 cm cables for ATX power supply, l = 40 cm Câble pour alimentation électrique ATX, l = 40 cm Кабель для электропитания ATX, длина 40 см
F006.00845
Kabel für Utility-Steckverbinder 10polig, l = 45 cm
cables for 10-pin Utility connector, l = 45 cm Câble pour connecteur enfichable Utility 10 pôles, l = 45 cm Кабель для сервисного штепсельного соединителя 10-контактный, длина 45 см