tms 374 cd 13
Abstract: Receiver Circuit Schematic 27mhz AN5007 gS1528 HOTLink C199 CY24130 CYV15G0404DXB GS1524 fpga "motion detection"
Text: Implementing Automatic Rate Detection Function for the SMPTE Rates of 270, 1483.5, and 1485 Mb/s using the HOTLinkII SERDES AN5007 1.0 Introduction rate detection circuit that detects the most common SDI rates: 270, 1483.5 and 1485 Mb/s. Figure 1 displays the
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AN5007
tms 374 cd 13
Receiver Circuit Schematic 27mhz
AN5007
gS1528
HOTLink
C199
CY24130
CYV15G0404DXB
GS1524
fpga "motion detection"
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Crossbar
Abstract: No abstract text available
Text: Application Note 5032 Next Neighbor Clocking in MSX532 1.0 Introduction The MSX532 is a 532 I/O port digital crosspoint switching device using a 100% non-blocking switch matrix, meaning that any of the 532 I/O ports can be connected to any other I/O port one-to-one, one-to-many, multiple
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MSX532
MSX532
AN500750
Crossbar
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Untitled
Abstract: No abstract text available
Text: Application Note 5041 MSX532 Layout Guidelines 1.0 Introduction The MSX532 is packaged in a 792-ball plastic BGA package, and is an SRAM-based bit-oriented switching device offering flow-through NRZ datarates of 300Mbps and registered clock frequencies of 200MHz. The 532
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MSX532
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300Mbps
200MHz.
AN500759
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MSX532
Abstract: AN-5042
Text: Fairchild Semiconductor Application Note July 2002 Revised July 2002 MSX C-Source Code Module for Embedded Bitstream Generation Introduction Initialize the JTAG Related Parameters There are two software packages available to support the MSX532 Digital Crosspoint Switching device:
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AN-5042
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AN5041
Abstract: AN-5041 MSX532
Text: Fairchild Semiconductor Application Note July 2002 Revised July 2002 MSX532 Layout Guidelines Introduction The MSX532 is packaged in a 792-ball plastic BGA package, and is an SRAM-based bit-oriented switching device offering flow-through NRZ data rates of 150Mbps and registered clock frequencies of 75MHz. The 532 I/O buffers
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MSX532
792-ball
150Mbps
75MHz.
AN5041
AN-5041
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MSX532
Abstract: No abstract text available
Text: Application Note 5042 MSX C-Source Code Module for Embedded Bitstream Generation 1.0 Introduction There are two software packages available to support the MSX532 Digital Crosspoint Switching device: • MSXPro™ for WinNT™ • C-Source Code module
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MSX532
Win32
AN500767
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AN-5031
Abstract: GTLP16T1655 RC1585
Text: Fairchild Semiconductor Application Note January 2002 Revised January 2002 GTLP Power Configuration Introduction In order to drive high performance backplanes, GTLP devices require power. This power comes from three discrete levels: device power VCC, termination voltage VT, and
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IQX320
Abstract: No abstract text available
Text: Application Note 5043 MSX /IQX™ Differences 1.0 Introduction The Fairchild Semiconductor MSX family of SRAM-based bit-oriented switching devices are next generation products offering feature and performance enhancements from I-Cube’s existing IQX bit-switching
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AN500768
IQX320
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Undershoot
Abstract: AN-5044 NC7SBU3157
Text: Fairchild Semiconductor Application Note June 2002 Revised July 2002 Analog Switches with −2V Undershoot Protection Abstract Undershoot Voltage Transients System designs are continuously confronted with critical challenges such as impaired signal integrity and voltage
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AN-5044
Undershoot
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pt 4115 led driver
Abstract: AN-7527 an7527 an5043 AN-7501 AN-7502 AN42045 transistor k 4110 PC100 NPN ML4425
Text: BUT12/12A BUT12/12A High Voltage Power Switching Applications TO-220 1 1.Base 2.Collector 3.Emitter NPN Silicon Transistor Absolute Maximum Ratings TC=25°C unless otherwise noted Symbol VCBO VCEO Parameter Value Units : BUT12 : BUT12A 850 1000 V V Collector-Emitter Voltage
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BUT12/12A
O-220
BUT12
BUT12A
KM4211-PB:
KM4211
FAN5231-PB:
pt 4115 led driver
AN-7527
an7527
an5043
AN-7501
AN-7502
AN42045
transistor k 4110
PC100 NPN
ML4425
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MSX532
Abstract: No abstract text available
Text: Fairchild Semiconductor Application Note June 2002 Revised July 2002 Next Neighbor Clocking in MSX532 Introduction The MSX532 is a 532 I/O port digital crosspoint switching device using a 100% non-blocking switch matrix, meaning that any of the 532 I/O ports can be connected to any other
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OCX256
Abstract: BGA Solder Ball 1mm LAYOUT GUIDELINES
Text: Application Note 5039 OCX256 Layout Guidelines 1.0 Introduction The OCX256 is packaged in a 792-ball plastic TBGA package, and is an SRAM-based bit-oriented switching device offering flow-through NRZ datarates of 667Mb/s and registered data modes of 333MHz. The 128 Inputs and 128 Outputs are each configured as dedicated differential ports. The
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OCX256
792-ball
667Mb/s
333MHz.
AN500757
BGA Solder Ball 1mm
LAYOUT GUIDELINES
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MSX532
Abstract: No abstract text available
Text: Application Note 5035 MSX532 RapidConfigure Interface FPGA 1.0 Introduction The MSX532’s RapidConfigure RC interface offers a high-speed method for programming I/O Buffers (IOBs) and configuring crosspoint switch connections. The parallel interface allows commands to be sent to the
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SOT23 NMOS
Abstract: SOT23-5 VTP AN-5007 FST16211 FST16232 FST3383 FST3384 FSTU6800 NC7SZ66 NC7SZD384
Text: Fairchild Semiconductor Application Note May 1999 Revised December 2000 An Introduction to Fairchild Switch Products New Solutions Today more systems are being designed with basic functionality integrated as much as possible with separate modules being used to add feature functions. This pushes the
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rca 401
Abstract: No abstract text available
Text: Application Note 5040 Using the RapidConfigure RC Interface for MSX532 1.0 Introduction The following example section demonstrates how the RapidConfigure interface can be used in an actual design. Although the system used in this example is more complicated than what might be required for most
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MSX532
MSX532
AN500758
rca 401
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MSX532
Abstract: No abstract text available
Text: Fairchild Semiconductor Application Note July 2002 Revised July 2002 MSX532 RapidConfigure Interface FPGA Introduction The MSX532’s RapidConfigure RC interface offers a high-speed method for programming I/O buffers and configuring crosspoint switch connections. The parallel interface allows commands to be sent to the MSX532 much
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MSX532
AN-5035
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OCX160
Abstract: No abstract text available
Text: Fairchild Semiconductor Application Note July 2002 Revised July 2002 OCX160 RapidConfigure Interface FPGA Introduction The OCX160’s RapidConfigure RC interface offers a high-speed method for programming I/O buffers and configuring crosspoint switch connections. The parallel interface allows commands to be sent to the OCX160 much
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AN-5037
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MSX532
Abstract: AN 5040
Text: Fairchild Semiconductor Application Note June 2002 Revised July 2002 Using the RapidConfigure RC Interface for MSX532 Introduction The following example section demonstrates how the RapidConfigure interface can be used in an actual design. Although the system used in this example is more
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AN 5040
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point of common coupling
Abstract: Repeaters AN-5045 ac coupling
Text: Fairchild Semiconductor Application Note August 2002 Revised March 2003 Using the VBB Reference on High Speed LVDS Repeaters Abstract Fairchild’s LVDS 2, 4, and 8-port repeaters are designed for high speed interconnects providing low Electromagnetic Interference EMI and low power dissipation at data rates
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an5043
Abstract: IQX320 I-CUBE
Text: Fairchild Semiconductor Application Note July 2002 Revised July 2002 Migrating IQX320 Designs to MSX340 Introduction Feature Comparison The Fairchild Semiconductor MSX family of SRAM-based bit-oriented switching devices are next generation products offering feature enhancements from I-Cube’s recently
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IQX320
MSX340
IQX320
MSX340.
IQX320,
an5043
I-CUBE
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OCX160
Abstract: No abstract text available
Text: Application Note 5037 OCX160 RapidConfigure Interface FPGA 1.0 Introduction The OCX160’s RapidConfigure RC interface offers a high-speed method for programming I/O Buffers (IOBs) and configuring crosspoint switch connections. The parallel interface allows
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OCX160
OCX160
AN500755
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AN-5044
Abstract: NC7SBU3157 AN5007
Text: Fairchild Semiconductor Application Note June 2002 Revised October 2006 Analog Switches with −2V Undershoot Protection Abstract Undershoot Voltage Transients System designs are continuously confronted with critical challenges such as impaired signal integrity and voltage
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AN5007
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