Owner s Manual for the DQP-1300 DRV11 Option Module for NuVAX and NuPDPq. DQP-1300-OM Revision A

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Owner s Manual for the DQP-1300 DRV11 Option Module for NuVAX and NuPDPq DQP-1300-OM Revision A

Owner's Manual for the DQP-1300 DRV11 Option Module for NuVAX and NuPDPq

Document Number DQP-1300-OM Revision A, May 2007 VMS is a trademark of Hewlett Packard Corporation. The material in this manual is for informational purposes only and is subject to change without notice.

Contents 1 Installation... 1 1. Set the switches on the DQP-1300 controller... 2 2. Open the system enclosure... 3 3. Install the DQP-1300 module... 4 4. Cable the DQP-1300 to the Bus Adapter... 5 5. Cable the DQP-1300 to the adapter panel... 6 6. Cable the CPX-1303 adapter to user equipment... 8 7. Close the system enclosure... 9 8. Verify installation in a NuVAX system... 10 9. Verify installation in a NuPDPq system... 11 2 General Description... 13 Specifications... 15 Appendix A PCI Local Bus Interface Connector Pin Assignments... 17 Appendix B CPX-1303 Adapter Panel Connectors... 19 Illustrations Figure 1-1: DQP-1300 Module... 1 Figure 1-2: Device Address Switch Settings... 2 Figure 1-3: Vector Address Switch Settings... 2 Figure 1-4: Inserting the Board into the Option Slot... 4 Figure 1-5: Cabling the DQP-1300 and the Bus Adapter... 5 Figure 1-6: CPX-1303 Adapter Panel... 6 Figure 1-7: Cabling the Option Module to the Adapter Panel... 7 Figure 1-8: Cabling the CPX-1303 Adapter Panel to User Equipment... 8 i

Contents ii

1 Installation This chapter lists the steps involved in installing the DQP-1300 hardware. References throughout this chapter tell you where to look for more detailed information. The DQP-1300 module is shown in Figure 1-1. Refer to this figure as you follow the steps outlined below. Connector for Additional Option Cards P1 Bus Adater Interface Connector P2 LED Indicators U3 - Vector U8 - Address 100-Pin Interface Connector Status Indicators: Red indicates that there is a problem with the board. Green indicates Qbus activity. Figure 1-1: DQP-1300 Module 1

Installation 1. Set the switches on the DQP-1300 controller The DQP-1300 contains two ten-pin DIP switch-packs that allow the user to select device and interrupt addresses and 18 or 22-bit addressing mode. Device Address Selection Use switch-pack U8 to select the device address for the DQP-1300 as shown in Figure 1-2. For the standard address of 17767770, switch position 1 is set open; switch positions 2 through 10 are set closed. CLOSED (ON) =1 OPEN (OFF) =0 Match to One Switch-pack U8 1 2 3 4 5 6 7 8 9 10 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 1 1 1 1 1 0 1 1 1 1 1 1 1 1 1 0 0 x 1 6 7 7 7 Device Address (167770) To set a switch position open, press down on the side marked "Open" (depressed side shown in black). Fixed 0 0 CSR 0 1 DR OUT 1 0 DR IN 1 1 Not Used Figure 1-2: Device Address Switch Settings Interrupt Vector Address Selection Vector addresses 0-1774 8 are reserved for Qbus system users. The DQP-1300 is assigned vector address 0300 8. Use switch-pack U3 to select the interrupt vector address for the DQP-1300 as shown in Figure 1-3. For the standard vector of 300, switch positions 1, 2, 5, 6, and 7 are set open; positions 3 and 4 are set closed. CLOSED (ON) =1 OPEN (OFF) =0 Switch-pack U3 1 2 3 4 5 6 7 8 9 10 To set a switch position open, press down on the side marked "Open" (depressed side shown in black). Always Zero Generated by Board 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 0 0 0 0 0 0 0 0 0 0 1 1 0 0 0 0 0 0 0 0 0 3 0 0 Standard Vector Address 300 Figure 1-3: Vector Address Switch Settings 2

2. Open the system enclosure Installation To open the NuVAX or NuPDPq system enclosure: A. If the system is running, shut down the system software as described in the system manual. B. Remove power to the system unit. C. Open the enclosure by removing two thumb screws and sliding the cover towards the rear and lifting. Replace the two thumb screws into the chassis rear panel. D. Remove the PCI card retainer rail by first lifting the black release knob and then lifting the rail up and out. Note: Use the anti-static wrist strap supplied with your system unit to prevent damage to the equipment. Clip the free end of the strap to the metal frame of the enclosure. 3

Installation 3. Install the DQP-1300 module The DQP-1300 is installed in an option slot next to the bus adapter or other option module. A. If the back of the system unit has a metal cover plate over the opening of the PCI slot, remove the anchor screw that holds the cover in place then slide the cover out of the slot. Retain the anchor screw. B. Position the DQP-1300 with the high density connector toward the slot opening. Gently rock the module into the PCI connector while you fit the metal bulkhead into the slot opening. Be sure that the connectors are firmly seated. Note: If the enclosure contains RFI clips along the slot, take care when inserting the module not to push the clips out of alignment. C. Dress any cable away from the PCI slot. D. Secure the DQP-1300 using the anchor screw that you removed in Step A. Retain the cover plate for future use. Figure 1-4: Inserting the Board into the Option Slot D. Remove the anti-static wrist strap, replace the cover on the enclosure and secure. You are now ready to connect the data cables. 4

4. Cable the DQP-1300 to the Bus Adapter Installation Use the supplied CAB-5011-1 cable to connect the first option module to the BQP-230x or BPQ-230x bus adapter as shown in Figure 1-5. Additional DQP-1300 or other option modules are added using the CAB-5011-1 as shown in the figure. Align the arrow on the connectors with the red line on the cable. Option Modules Bus Adapter Figure 1-5: Cabling the DQP-1300 and the Bus Adapter NOTE: Use care when removing the 60-pin ribbon cable. Use the pull tab and pull the cable straight out from the connector to avoid damage to the connector. 5

Installation 5. Cable the DQP-1300 to the adapter panel The CPX-1303 adapter panel is shown in Figure 1-6. DQP-1300 Connector 1 40-Pin DR11 Connectors J2 1 J3 J1 1 Figure 1-6: CPX-1303 Adapter Panel Use the supplied 8-foot cable to connect the workstation to the DQP-1300 adapter panel. The adapter panel is provided with screw slots for RETMA rack mount or wall mount. It has no-mar feet for desktop or floor use. 6

Installation Option Module Adapter cable Adapter Panel Figure 1-7: Cabling the Option Module to the Adapter Panel 7

Installation 6. Cable the CPX-1303 adapter to user equipment Use two 40-pin cables to connect the user equipment to the DQP-1300 adapter panel. The function of each interface signal is described in Chapter 2. J1 and J2 on the CPX-1303 adapter panel correspond to J1 and J2 on Digital's DRV11. Connect user cables to the adapter the same as you would connect to a DRV11. If you are unsure, refer to the connector pin assignments in Appendix B. Be sure to align the triangles on each connector with pin 1. To NuVAX or NuPDPq System J3 J1 J2 J1 J2 User equipment Figure 1-8: Cabling the CPX-1303 Adapter Panel to User Equipment 8

7. Close the system enclosure Installation Replace the PCI card retainer rail and the system cover. 9

Installation 8. Verify installation in a NuVAX system For a NuPDPq installation, skip to Step 8. Digital Equipment diagnostics are not available for the DRV11 or DQP-1300 when installed in a NuVAX. Consult with the customer for diagnostics they may use with their existing DRV11. 10

9. Verify installation in a NuPDPq system Installation Loop-back cable CAB-1301-12 must be installed between J1 and J2 when running the module and system level diagnostics. Note that the cable is built to install with a 180 degree twist. The following conventions are used below: output In examples, computer output is shown in this type. user input In examples, user input is shown in bold type. A. NuPDP is shipped and configured to use a DEC standard, VT100-style terminal and requires CAB-2009-18 or CAB-2010-18 as an adapter cable between the NuPDP serial port and the DEC terminal cable. Terminal emulators or simple character terminals can plug directly into the NuPDP DE9 COM port using a standard crossover cable and do not require an adapter cable. B. Open the drive access door and ensure that the system drive cartridge is locked. Keys to the cartridge are supplied with the system. C. Power up the system. The console displays: Type y to boot XXDP else the OS boots in 4 seconds [Y,N]?Y BOOTING UP XXDP-XM EXTENDED MONITOR XXDP-XM EXTENDED MONITOR XXDP V2.5 REVISION: F0 BOOTED FROM DL0 124KW OF MEMORY NON-UNIBUS SYSTEM RESTART ADDRESS: 152000 TYPE H FOR HELP!. D. To run the diagnostic type:.r VKAFE0 The diagnostic begins and displays: VKAFE0.BIN CVKAFE0 DRV11 DIAGNOSTIC If no errors occur the program will start displaying END PASS # messages. Allow a minimum of 10 error free passes. 11

Installation If any error is reported, check to ensure that the loop-back cable is installed correctly. If the loop-back cable and DQP-1300 are both installed correctly and an error is reported, please contact customer support with error information. E. To exit the diagnostic: 1) Restart the system by pressing the Reset button or cycling power, or 2) Type CTRL P to display the NuPDP prompt, type HALT to stop the diagnostic. To restart XXDP, type Boot DL0 12

2 General Description The DQP-1300 option module is a general purpose interface for transferring data directly between the NuVAX or NuPDPq system and a user's device. The DQP-1300 is signal and pin compatible with Digital's DRV11 and DR11-C controllers. The DQP-1300 is contained on a standard short PCI card. The controller contains a 100-pin, high density connector for external connection to user input and output signals. An 8-foot cable connects the DQP-1300 controller to an external adapter panel. The adapter panel provides two DRV11 and DR11-C compatible 40-pin flat ribbon connectors used to connect to user equipment. The DQP-1300 controller contains four internal registers that provide the necessary controls and status to perform data transfers to or from the system and to transfer 16-bit data between the DQP-1300 and external user equipment. The four internal registers are a control and status register (CSR), a data output register (DOUT), a data input register (DIN), and a timer register (TMR). Table 2-1 lists the interface signals used by the DRV11 and DR11-C. DR11-C signals are shown in parenthesis when different from DRV11. 13

General Description Mnemonic OUT00-H - OUT15-H IN00-H - IN15-H NEWDARDY-H (NEWDATARDY-H) DATRANS-H (DATA TRANS-H) CSR1-H CSR0-H INIT-H (AINIT-H) INITV2-H (BINIT-H) REQA-H REQB-H Description Output data lines to user device. High true, one = high. These lines transmit the current contents of the DOUT register to the user device. Input data lines from the user device. High true, one = high. These lines transmit information from the user device when host software reads the DIN register. Output signal to the user device. High true. This pulse is sent to inform the user device that new data has been written into the output data register and is available on the output data lines. The DQP-1300 may change the data after the trailing edge of the signal. The duration of this pulse is controlled by the TMR register. Output signal to the user device. High true. This pulse is sent to inform the user device that the input data buffer is being read and the DQP-1300 is ready to accept data on the input data lines. The user device can change the data after the trailing edge of the signal. The duration of this pulse is controlled by the TMR register. Output signal to the user device. High true, one = high. This signal is controlled by the host software by writing into bit 01 of the CSR and the function is user defined. Output signal to the user device. High true, one = high. This signal is controlled by the host software by writing into bit 00 of the CSR and the function is user defined. Output signal to the user device. High true. Set when the PCI reset signal is set. Output signal to the user device. High true. Set when the PCI reset signal is set. Input signal from the user device. High true. This signal is controlled by the user device and is host software readable as bit 07 of the CSR. When asserted, a PCI interrupt request is generated if IEA (CSR bit 06) is set. Input signal from the user device. High true. This signal is controlled by the user device and is host software readable as bit 15 of the CSR. When asserted, a PCI interrupt request is generated if IEB (CSR bit 05) is set. Table 2-1: User Interface Signals 14

General Description Specifications Dimensions Standard PCI short card measuring 6.875 inches by 4.2 inches (17.46 cm by 10.67 cm). Interface DQP-1300-A Controller 100-pin high density connector CPX-1303 Panel Cable (CAB-1104-8) Provides user connection to two 40-pin DRV11 and DR11-C style connectors. 8-foot terminated with 100-pin connector at both ends. Electrical Power Required: +5 volts 0.5 amps +3.3 volts 0.4 amps Performance Throughput Up to 200K 16-bit words per second (operating system overhead will reduce performance) Environmental Operating Conditions: Temperature 5 to 50 C (41 to 122 F) Relative Humidity 20% to 80% non-condensing Storage Conditions: Temperature -40 to 66 C (-40 to 150 F) Relative Humidity 10% to 95% non-condensing 15

General Description 16

Appendix A PCI Local Bus Interface Connector Pin Assignments This appendix lists the pin assignments for the PCI bus interface. Pin Signal Pin Signal A1 TRST-L B1-12V A2 +12V B2 TCK-H A3 TMS-H B3 GND A4 TDI-H B4 TDO-H A5 +5V B5 +5V A6 INTA-L B6 +5V A7 INTC-L B7 INTB-L A8 +5V B8 INTD-L A9 B9 PRSNT1-L A10 +5V B10 A11 B11 PRSNT2-L A12 GND B12 GND A13 GND B13 GND A14 B14 A15 RST-L B15 GND A16 +5V B16 CLK-H A17 GNT-L B17 GND A18 GND B18 REQ-L A19 B19 +5V A20 AD30-H B20 AD31-H A21 +3.3V B21 AD29-H A22 AD28-H B22 GND A23 AD26-H B23 AD27-H A24 GND B24 AD25-H A25 AD24-H B25 +3.3V A26 IDSEL-H B26 C/BE3-L A27 +3.3V B27 AD23-H A28 AD22-H B28 GND A29 AD20-H B29 AD21-H A30 GND B30 AD19-H 17

PCI Local Bus Interface Connector Pin Assignments Pin Signal Pin Signal A31 AD18-H B31 +3.3V A32 AD16-H B32 AD17-H A33 +3.3V B33 C/BE2-L A34 FRAME-L B34 GND A35 GND B35 IRDY-L A36 TRDY-L B36 +3.3V A37 GND B37 DEVSEL-L A38 STOP-L B38 GND A39 +3.3V B39 LOCK-L A40 SDONE-H B40 PERR-L A41 SBO-L B41 +3.3V A42 GND B42 SERR-L A43 PAR-H B43 +3.3V A44 AD15-H B44 C/BE1-L A45 +3.3V B45 AD14-H A46 AD13-H B46 GND A47 AD11-H B47 AD12-H A48 GND B48 AD10-H A49 AD09-H B49 GND A50 KEYWAY B50 KEYWAY A51 KEYWAY B51 KEYWAY A52 C/BE0-L B52 AD08-H A53 +3.3V B53 AD07-H A54 AD06-H B54 +3.3V A55 AD04-H B55 AD05-H A56 GND B56 AD03-H A57 AD02-H B57 GND A58 AD00-H B58 AD01-H A59 +5V B59 +5V A60 REQ64-L B60 ACK64-L A61 +5V B61 +5V A62 +5V B62 +5V 18

Appendix B CPX-1303 Adapter Panel Connectors This appendix lists the pin assignments for the CPX-1303 connectors. The CPX-1303 contains two 40-pin connectors for DRV11 and DR11-C interface connection. The connector used for DRV11 and DR11-C interfaces is a 40-pin receptacle, 3M part number 2540-6002-UB. It and the mating cable connector are shown below. 2 4 6 36 38 40 1 3 5 35 37 39 40-pin Ribbon Cable Receptacle 1 3 5 35 37 39 2 4 6 36 38 40 40-pin Ribbon Cable Plug

CPX-1303 Adapter Panel Connectors Connector J1 3M Berg Berg 3M Signal Pin Pin Pin Pin Signal NEW DATA RDY 1 VV UU 2 GND 3 TT SS 4 GND OUT02H 5 RR PP 6 GND OUT02 H 7 NN MM 8 GND REGA H 9 LL KK 10 GND OUT15 H 11 JJ HH 12 OUT14 H OUT13 H 13 FF EE 14 GND CSR1 H 15 DD CC 16 GND OUT12 H 17 BB AA 18 OUT11 H OUT10 H 19 Z Y 20 GND OUT09 H 21 X W 22 OUT08 H GND 23 V U 24 OUT03 H OUT07 H 25 T S 26 GND OUT06 H 27 R P 28 INIT H OUT05 H 29 N M 30 GND OUT04 H 31 L K 32 OUT01 H GND 33 J H 34 35 F E 36 37 D C 38 OUT00 H 39 B A 40 20

Connector J2 CPX-1303 Adapter Panel Connectors 3M Berg Berg 3M Signal Pin Pin Pin Pin Signal 1 VV UU 2 GND IN00 H 3 TT SS 4 GND INITV2 H 5 RR PP 6 GND INITV2 H 7 NN MM 8 GND IN01 H 9 LL KK 10 IN04 H GND 11 JJ HH 12 IN05 H 13 FF EE 14 IN06 H GND 15 DD CC 16 IN07 H IN03 H 17 BB AA 18 GND IN08 H 19 Z Y 20 IN09 H GND 21 X W 22 IN10 H IN11 H 23 V U 24 IN12 H GND 25 T S 26 REQB H GND 27 R P 28 IN13 H IN14 H 29 N M 30 IN15 H GND 31 L K 32 CSR0 H GND 33 J H 34 IN02 H 35 F E 36 IN02 H 37 D C 38 DATA TRANS H 39 B A 40 21

75 Gateway Blvd. The Logical Company Telephone: +1 541-942-3610 Cottage Grove, Oregon 97424 USA Fax: +1 541-942-3640 http://www.logical-co.com E-mail: sales@logical-co.com