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Introduction 

 

 

SC3015 

– Thirty-Two-Channel Single Ended Digital Input Card  

The SC3015/ Thirty-Two Channel Single Ended Digital Input Card provides two sinking 
voltage options.  The SC3015/00 is used with 120 VDC digital inputs.  The SC3015/02 
card is used with 48 VDC digital inputs.  Immunity to noise is enhanced with a single pole 
low pass filter.  Further filtering (e.g. removing contact bounce effects of relays) can be 
performed in software using the Bool Hold Open Hold Closed (HOHC) object. 

Analog to digital conversion is performed by a 16-bit switched capacitor successive 
approximation A/D converter.  A precision voltage source provides a self-test function for 
the card’s amplifiers and A/D converter and can be used to verify accuracy in user 
application logic.  No field adjustments are necessary after the initial factory setup. 

I/O bus checking diagnostics, card address tests, and configuration tests are performed 
each time the controller accesses the card.  All data and control transfers are performed 
twice, once using the actual data and then using the inverted data.  Both versions of the 
data are compared to verify that all I/O bus data bits are functioning properly.  The 
configuration code from the card is compared to the I/O configuration to check that the 
correct card is installed in the rack.  I/O Bus slot address and control signal contention 
tests also are performed.  Any fault detected sets status bits in an error detection variable 
returned to the user application program. 

An indicator LED, located near the top of the front panel, indicates the overall health 
status of the card.  If this LED is on, the card is functioning normally; if it is off, the card 
has detected an error or is offline.  If this LED is on, but the card is shown in red on the 

SC3015 

Summary of Contents for SC3015

Page 1: ...Technical Manual SC3015 32 Channel Digital Input Cards...

Page 2: ...ectual property of RTP Corp unless otherwise indicated and are to be considered RTP Corp confidential This intellectual property is made available solely for the direct use of potential or licensed RT...

Page 3: ...8 NETARRAYS CONFIGURATION 9 Card Properties 9 Mode 9 Proof Testing 9 Float Cal High 00 9 Float Cal High 01 10 Float Cal High 02 10 Integer Error Detection 10 Integer Channel Error Status 00 11 Integer...

Page 4: ...are necessary after the initial factory setup I O bus checking diagnostics card address tests and configuration tests are performed each time the controller accesses the card All data and control tra...

Page 5: ...1 98 mA Common Points between Channels All channels share a single common return Type of Digital Input Type 1 Logic 1 Signal Detection 79 VDC Logic 0 signal Detection 46 VDC Sample Repetition Rate 1...

Page 6: ...annel 8 15 Channel 6 16 Channel 4 17 Channel 2 18 Channel 0 19 Not Used 20 Common Return 21 Channel 31 22 Channel 29 23 Channel 27 24 Channel 25 25 Channel 23 26 Channel 21 27 Channel 19 28 Channel 17...

Page 7: ...gic 0 signal Detection 10 5 VDC Sample Repetition Rate 1 millisecond 1000 scans per second Sample Duration Settling Time 21 5 microseconds Input Filter characterization Order First Order Transition 3...

Page 8: ...Channel 8 15 Channel 6 16 Channel 4 17 Channel 2 18 Channel 0 19 Not Used 20 Common Return 21 Channel 31 22 Channel 29 23 Channel 27 24 Channel 25 25 Channel 23 26 Channel 21 27 Channel 19 28 Channel...

Page 9: ...igh 00 is a floating point voltage equal to 9 0 volts 0 09V It is derived from a fixed calibration voltage source on the card This input can be used to test the card s calibration and performance NetA...

Page 10: ...used bits will always equal zero 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 ERR LTCH FAULT ERR DATA ERR DATA INV CARD ID CARD ERR CAL HIGH CAL LOW CH FAIL TIME OUT Bit 14 Card Error Latch This status bit i...

Page 11: ...gh 15 For the SC3015 this register is always zero Integer Channel Error Status 01 The channel Error Status 01 is an Int Variable that returns fault indications for channels 16 through 31 For the SC301...

Page 12: ...iable as shown below This input value is accessed by the Int Variable object with the same Tag Reconfigure the Tag as required to match the Module Form Int Value object that is used to monitor the car...

Page 13: ...up the assigned Tag I O Tag Each input point value is accessed by the Bool Variable object NetArrays assigns a Tag to each input channel when the card is added to the I O configuration Reconfigure the...

Page 14: ...enclosure doors and side panels which are locked or require a tool to open To assure compliance with the EMC requirements the equipment must be housed in an enclosure equipment cabinet rack that prov...

Page 15: ...vironment These materials may include but are not limited to lead in solder and lithium in batteries 11 Prior to storage or shipping the equipment must be packaged in accordance with the following gui...

Page 16: ...thernet Line Surge Immunity 2 kV IEC 61000 4 5 Ethernet Line Conducted RF Immunity 150 kHz to 80 MHz at 10 V IEC 61000 4 6 Pulsed Magnetic Field 300 A m IEC 61000 4 9 Modules can be ordered with optio...

Page 17: ...in creating a hazard SERVICE PERSONNEL are assumed reasonably careful in dealing with obvious hazards CE Conformit Europ enne EMC Electro Magnetic Compatibility EMI Electro Magnetic Interference EC Eu...

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