B331D
Abstract: resistor
Text: Bussed Resistor Networks Applications D • Parallel termination ■ Pull-up/Pull-down ■ Open collector pull-up ■ ‘Wired OR’ pull-up ■ Power driven pull-up ■ TTL input pull-down ■ Digital pulse squaring ■ Coding and decoding Electrical Characteristics
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100mW
B331D
resistor
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331D
Abstract: TSSOP-08
Text: Bussed Resistor Networks Applications D • Parallel termination ■ Pull-up/Pull-down ■ Open collector pull-up ■ ‘Wired OR’ pull-up ■ Power driven pull-up ■ TTL input pull-down ■ Digital pulse squaring ■ Coding and decoding Electrical Characteristics
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24-pin
331D
TSSOP-08
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Untitled
Abstract: No abstract text available
Text: ECR #: 21 Title: Correct Pull-up Resistor Errors Release Date: tbd Impact: Clarification Spec Version: A.G.P. 1.0 Summary:Change the specification to clearly define which agent is responsible to provide the pull-up for which signals and correct the pull-up resistor list in Chapter 4.
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bob smith termination
Abstract: bob smith 82562EP 93C46
Text: 82562EP Design Checklist v1.0 Project Name Fab Revision Date Designer Intel Contact Reviewer SECTION General CHECK ITEMS REMARKS Have up-to-date product documentation and spec Documents are subject to frequent change updates Observe instructions for special pins needing pull- Do not connect pull-up or pull-down resistors to
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82562EP
93C46
RBIAS10
bob smith termination
bob smith
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vhdl code for rs422 interface in fpga
Abstract: vhdl code for lvds driver AXM-D01
Text: PMC Modules AXM Series Digital I/O Extension Modules for PMC FPGA Boards AXM-D01 Optional +3.3V or +2.5V Pull-up Voltage +5V +3.3V P2 64 LVTTL INPUT/OUTPUT CHANNELS 10K I/O 0 P1 LVTTL I/O TO FPGA Optional Pull-up Resistors I/O 0 10K Optional Pull-down Resistors
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AXM-D01
AXM-D02
RS485/422
AXM-D03
AXM-D04
AXM-D02-JTAG
AXM-D02
RS485
AXM-DX03
vhdl code for rs422 interface in fpga
vhdl code for lvds driver
AXM-D01
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93c46 wp
Abstract: 82541PI 93C46 93c46 spi 93C46 PI 93C66 M66EN 82541ER 82562ET 82562GT
Text: 82541PI ER & 82562GZ(GX) Design Checklist v1.1 Project Name Fab Revision Date Designer Intel Contact Reviewer SECTION General CHECK ITEMS REMARKS Have up-to-date product documentation and spec Documents are subject to frequent change updates Observe instructions for special pins needing pull- Do not connect pull-up or pull-down resistors to
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82541PI
82562GZ
93c46 wp
93C46
93c46 spi
93C46 PI
93C66
M66EN
82541ER
82562ET
82562GT
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82562EZ
Abstract: ethernet transformer center tap 82547GI 93C66 93C46 AT25040 AT25080 93c46 spi EI 33 transformer
Text: 82562EZ EX and 82547GI(EI) Design Checklist v1.2 Project Name Fab Revision Date Designer Intel Contact Reviewer SECTION General CHECK ITEMS REMARKS Have up-to-date product documentation and spec Documents are subject to frequent change. updates. Observe instructions for special pins needing pull- Do not connect pull-up or pull-down resistors to
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82562EZ
82547GI
93C46
93C66
ethernet transformer center tap
AT25040
AT25080
93c46 spi
EI 33 transformer
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RIA Q16
Abstract: RIA N08
Text: R X A resistors isolated resistor networks features • Thin film on silicon • Electrical and mechanical stability • High integration (up to 12 terminating lines per package) applications • Series termination • Pull-up/pull-down • Current limiting
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hall sensor 80 L
Abstract: 80 E hall effect sensor 3 pin
Text: AH173 Internal Pull-up Hall Effect Latch For High Temperature Features General Description - Bipolar Hall effect latch sensor - 3V to 20V DC operation voltage - Built-in pull-up resistor - 25mA output sink current - Operating temperature: −40°C ~ +125°C
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AH173
AH173
hall sensor 80 L
80 E hall effect sensor 3 pin
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SP730
Abstract: microprocessor pin diagram sot23 typ name 06 microprocessor circuit diagram
Text: Preliminary SP730 Microprocessor Supervisory Circuit with Pull Up Resistor GND FEATURES • Holds Microcontroller in Reset ■ Reset Microcontroller during power loss ■ 4.375 and 3.075 Voltage Trip Points ■ Active Low RESET Pin ■ Internal Pull-up Resistor
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SP730
350ms
OT-23
OT-23
SP730
SP730EK-4
375/TR
SP730EK-L-4
microprocessor pin diagram
sot23 typ name 06
microprocessor circuit diagram
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DM74S05N
Abstract: C1995 DM74S05 DM74S05M M14A N14A
Text: DM74S05 Hex Inverters with Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function The open-collector outputs require external pull-up resistors for proper logical operation
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DM74S05
DM74S05M
DM74S05N
DM74S05N
C1995
M14A
N14A
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C1995
Abstract: DM5405 DM5405J DM5405W DM7405 DM7405N J14A N14A W14B
Text: DM5405 DM7405 Hex Inverters with Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function The open-collector outputs require external pull-up resistors for proper logical operation
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DM5405
DM7405
DM5405J
DM5405W
C1995
DM7405N
J14A
N14A
W14B
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Untitled
Abstract: No abstract text available
Text: R X A resistors isolated resistor networks features • Thin film on silicon • Electrical and mechanical stability • High integration (up to 12 terminating lines per package) applications • Series termination • Pull-up/pull-down • Current limiting
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DM7417n
Abstract: DM5417J DM7417 DM54 DM5417W J14A N14A W14B
Text: DM7417 Hex Buffers with High Voltage Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs a buffer function. The open-collector outputs require external pull-up resistors for proper logical operation.
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DM7417
DS006505-1
DM5417J,
DM5417W
DM7417N
DM7417n
DM5417J
DM7417
DM54
J14A
N14A
W14B
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Untitled
Abstract: No abstract text available
Text: R X A resistors isolated resistor networks features • Thin film on silicon • Electrical and mechanical stability • High integration (up to 12 terminating lines per package) applications • Series termination • Pull-up/pull-down • Current limiting
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an 132 hall sensor
Abstract: SOT23 hall hall marking code 6 80 L hall effect sensor 3 pin 4 pin hall sensor HALL 550 sensor hall effect 4 pin out A1 SOT23 hall effect sensor 4 pin 3 PIN hall effect 500
Text: AH373 Internal Pull-up Hall Effect Latch Features General Description - Bipolar Hall effect latch sensor - 2.2V to 20V DC operation voltage - Built-in pull-up resistor - 25mA output sink current - Operating temperature: −40°C ~ +125°C - Package: SIP3, SOT23
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AH373
AH373
an 132 hall sensor
SOT23 hall
hall marking code 6
80 L hall effect sensor 3 pin
4 pin hall sensor
HALL 550 sensor
hall effect 4 pin out
A1 SOT23
hall effect sensor 4 pin
3 PIN hall effect 500
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SOT23 hall
Abstract: 3 phase hall effect 80 L hall effect sensor 3 pin Bipolar Hall hall effect 4 pin out hall sensor 80 L AH172
Text: AH172 Internal Pull-up Hall Effect Latch Features General Description - Bipolar Hall effect latch sensor - 3.0V to 20V DC operation voltage - Built-in pull-up resistor - 25mA output sink current - Operating temperature: -20°C to 85°C - Package: SIP3, SOT23
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AH172
AH172
SOT23 hall
3 phase hall effect
80 L hall effect sensor 3 pin
Bipolar Hall
hall effect 4 pin out
hall sensor 80 L
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DM74S05
Abstract: DM74S05M DM74S05N M14A MS-001 N14A
Text: Revised April 2000 DM74S05 Hex Inverter with Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function. The open-collector outputs require external pull-up resistors for proper logical
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DM74S05
DM74S05M
14-Lead
MS-120,
DM74S05
DM74S05M
DM74S05N
M14A
MS-001
N14A
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DM74LS05
Abstract: DM74LS05M DM74LS05N DM74LS05SJ M14A M14D MS-001 N14A
Text: Revised March 2000 DM74LS05 Hex Inverters with Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function. The open-collector outputs require external pull-up resistors for proper logical
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DM74LS05
DM74LS05M
14-Lead
MS-120,
DM74LS05
DM74LS05M
DM74LS05N
DM74LS05SJ
M14A
M14D
MS-001
N14A
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Untitled
Abstract: No abstract text available
Text: DM5417 DM7417 Hex Buffers with High Voltage Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs a buffer function The open-collector outputs require external pull-up resistors for proper logical operation
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DM5417
DM7417
DM5417J
DM5417W
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54LS05
Abstract: 54LS05DMQB 54LS05FMQB DM54LS05 DM54LS05J DM54LS05W DM74LS05 DM74LS05M DM74LS05N E20A
Text: 54LS05 DM54LS05 DM74LS05 Hex Inverters with Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function The open-collector outputs require external pull-up resistors for proper logical operation
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54LS05
DM54LS05
DM74LS05
54LS05)
54LS05DMQB
54LS05FMQB
DM54LS05J
DM54LS05W
DM74LS05M
DM74LS05N
E20A
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DM7416
Abstract: DM7416N DM54 DM5416J DM5416W J14A N14A W14B
Text: DM7416 Hex Inverting Buffers with High Voltage Open-Collector Outputs General Description Pull-Up Resistor Equations This device contains six independent gates each of which performs the logic INVERT function. The open-collector outputs require external pull-up resistors for proper logical operation.
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DM7416
DS006504-1
DM5416J,
DM5416W
DM7416N
DM7416
DM7416N
DM54
DM5416J
J14A
N14A
W14B
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Untitled
Abstract: No abstract text available
Text: ST6X86 4.0 ELECTRICAL SPECIFICATIONS 4.1.2 Pull-Up/Pull-Down Resistors 4.1 Electrical Connections Table 4.1 lists the input pins that are internally con nected to pull-up and pull-down resistors. The pull-up resistors are connected to Vcc and the pull-down resistors are connected to Vss. When
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ST6X86
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1.0 k mef 250
Abstract: TIL 413 60T13 Cyrix 6x86 Cyrix 6x86 voltage pin 2.0 k mef 250 AB34 "Y35" D63-D0 6x86
Text: 6 x 8 6 PROCESSOR Superscalar, Superpipelined, Sixth-generation, x 8 6 Compatible CPU 4 .0 ELECTRICAL SPECIFICATIONS 4 .1 .2 4.1 Electrical Connections Table 4-1 lists the input pins that are internally connected to pull-up and pull-down resistors. The pull-up resistors are connected to Vcc and
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25flW1
1.0 k mef 250
TIL 413
60T13
Cyrix 6x86
Cyrix 6x86 voltage pin
2.0 k mef 250
AB34
"Y35"
D63-D0
6x86
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