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18-22
System 3
PM2Relay Power Multiplexer
designed to use a bit-code pattern from an RP2 Real-Time Processor or RV8
Barracuda Processor.
RP
Control
Input
The male DB25 connector on the left is the interface to the RP2. A blue ribbon
connector is used to directly connect the RP2 and the PM2R. The PM2R uses all
the bit outputs from the RP2. If you require additional bit outs, TDT recommends
purchasing an RV8.
In addition, any System 3 processor that has at least eight digital outputs, including
the RX family of devices, can be used to control the PM2R (a special connector
may be required).
Signal
In
The BNC connector is the powered signal input. The maximum power input is a two
amp, 15 Volt continuous signal or approximately 30 watts of continuous power.
Signal
Out
The female DB25 connector on the right is the interface for the powered signal
output. Users can also connect the PM2R output to the patch panel (PP16)
connector labeled for the RP2 for easy BNC access to the powered signal.
Channel...
Sixteen LEDs indicate which channel is active. One channel can be active at a time.
It is also possible to inactivate all channels.
PM2R
Bitcode
Pattern
The bitcode pattern from the RP2 consists of an 8-bit word that contains the
following information; the device ID, the channel ID, and a set-bit. A final bit shuts
off all channels. To control the PM2R, generate the bitcode pattern associated with
the device and channel then send out the set-bit to change the channels. Be aware
that the relays on the PM2R have a transition time of around one millisecond.
Bits 0 - 3
identify the channel number. Integer 0, or bitpattern (xxxx
0000), is channel 0 and integer 15, or bitpattern (xxxx
1111), is channel 15.
Bits 4 and 5
identify the device number. Integer value 0, or bit pattern
(xx00xxxx), is device number 0 and integer value 48, or
bit pattern (xx11xxxx), is device number 3. The device
number is set internally for each PM2R and allows for an
RP2 to control up to four PM2R modules. If only one PM2R
is being used, it should have device number 0.
Bit 6
is the set-bit. When this bit is set high, the channel and
device from the previous six bits is activated.
Bit 7
deactivates all channels across only the specified device.
Summary of Contents for RZ2
Page 1: ...System 3 Manual Updated 5 8 18...
Page 7: ...Part 1 RZ Z Series Processors...
Page 8: ...1 2 System 3...
Page 40: ...1 34 System 3 RZ5P Fiber Photometry Processor...
Page 56: ...1 50 System 3 RZ6 Multi I O Processor...
Page 68: ...1 62 System 3 RZ5 BioAmp Processor...
Page 96: ...1 90 System 3 RZ UDP Communications Interface...
Page 97: ...Part 2 Data Streamers...
Page 98: ...1 2 System 3...
Page 122: ...2 26 System 3 RS4 Data Streamer...
Page 133: ...Part 3 RX Processors...
Page 134: ...3 2 System 3...
Page 156: ...3 24 System 3 RX6 Multifunction Processor...
Page 177: ...Part 4 RP Processors...
Page 178: ...4 2 System 3...
Page 184: ...4 8 System 3 RP2 1 Real Time Processor...
Page 199: ...Part 5 RM Mobile Processors...
Page 200: ...5 2 System 3...
Page 209: ...Part 6 Preamplifiers...
Page 210: ...1 2 System 3...
Page 238: ...6 30 System 3 PZ5 NeuroDigitizer...
Page 266: ...6 58 System 3 PZ5M Medically Isolated NeuroDigitizer...
Page 274: ...6 66 System 3 PZ2 PreAmp...
Page 296: ...6 88 System 3 RA16PA RA4PA Medusa PreAmps...
Page 315: ...Part 7 Stimulus Isolator...
Page 316: ...1 2 System 3...
Page 334: ...7 20 System 3 IZ2 IZ2H Stimulator...
Page 346: ...7 32 System 3 IZ2M IZ2MH Stimulator...
Page 368: ...7 54 System 3 MS4 MS16 Stimulus Isolator...
Page 369: ...Part 8 Video Processor...
Page 370: ...1 2 System 3...
Page 388: ...8 20 System 3 RV2 Video Processor...
Page 406: ...8 38 System 3 RVMap Software for RV2...
Page 407: ...Part 9 MicroElectrode Array Interface...
Page 408: ...1 2 System 3...
Page 415: ...Part 10 High Impedance Headstages...
Page 416: ...1 2 System 3...
Page 442: ...10 28 System 3 ZIF Clip ZCD Digital Headstages...
Page 474: ...10 60 System 3 SH16 Switchable Headstages...
Page 475: ...Part 11 Low Impedance Headstages...
Page 476: ...1 2 System 3...
Page 483: ...Part 12 Adapters and Connectors...
Page 484: ...1 2 System 3...
Page 512: ...12 30 System 3 Splitters...
Page 519: ...Part 13 Microwire Arrays...
Page 520: ...1 2 System 3...
Page 526: ...13 8 System 3 ZIF Clip Based Microwire Arrays...
Page 531: ...System 3 13 13 Suggestions for Microwire Insertion...
Page 532: ...13 14 System 3 Suggestions for Microwire Insertion...
Page 545: ...Part 14 Attenuator...
Page 546: ...1 2 System 3...
Page 558: ...14 14 System 3 PA5 Programmable Attenuator...
Page 559: ...Part 15 Commutators...
Page 560: ...1 2 System 3...
Page 578: ...15 20 System 3 ACO32 ACO64 Motorized Commutators...
Page 579: ...Part 16 Transducers and Amplifiers...
Page 580: ...1 2 System 3...
Page 586: ...16 8 System 3 MF1 Multi Field Magnetic Speakers...
Page 592: ...16 14 System 3 EC1 ES1 Electrostatic Speaker...
Page 597: ...System 3 16 19 HB7 Headphone Buffer...
Page 598: ...16 20 System 3 HB7 Headphone Buffer...
Page 601: ...System 3 16 23 MA3 Microphone Amplifier Frequency Response Diagram...
Page 602: ...16 24 System 3 MA3 Microphone Amplifier...
Page 604: ...16 26 System 3 MS2 Monitor Speaker...
Page 610: ...16 32 System 3 SA8 Eight Channel Power Amplifier...
Page 614: ...16 36 System 3 FLYSYS FlashLamp System...
Page 619: ...Part 17 Subject Interface...
Page 620: ...1 2 System 3...
Page 659: ...Part 18 Signal Handling...
Page 660: ...1 2 System 3...
Page 691: ...Part 19 PC Interfaces...
Page 692: ...19 2 System 3...
Page 697: ...System 3 19 7 PO5 PO5e Optibit Interface Dimensions PO5e PO5...
Page 700: ...19 10 System 3 UZ3 USB 3 0 Interface for Optibit...
Page 704: ...19 14 System 3 LO5 ExpressCard to zBus Interface...
Page 707: ...Part 20 The zBus and Power Supply...
Page 708: ...20 2 System 3...
Page 714: ...20 8 System 3 ZB1 Device Caddie and PS25F Power Supply...
Page 715: ...Part 21 System 3 Utilities...
Page 716: ...21 2 System 3...
Page 728: ...21 14 System 3 Corpus System 3 Hardware Emulator...
Page 729: ...Part 22 Computer Workstation...
Page 730: ...22 2 System 3...