Untitled
Abstract: No abstract text available
Text: Sertopia Device UTOPIA Serializer TXC-05860 DATA SHEET PRODUCT PREVIEW The Sertopia™ TXC-05860 UTOPIA serializer is a single-chip solution for broadband communication systems. A pair of Sertopia devices interface two remote UTOPIA ports transparently across a serial link. The Sertopia emulates a
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TXC-05860
off-li05860-MB
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Untitled
Abstract: No abstract text available
Text: LM3495 LM3495 Emulated Peak Current Mode Buck Controller for Low Output Voltage Literature Number: SNVS410E LM3495 Emulated Peak Current Mode Buck Controller for Low Output Voltage General Description Features The LM3495 is a PWM buck regulator which implements a
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LM3495
LM3495
SNVS410E
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Untitled
Abstract: No abstract text available
Text: User's Guide SNVA216B – January 2007 – Revised April 2013 AN-1578 LM25575 Evaluation Board 1 Introduction The LM25575 evaluation board is designed to provide the design engineer with a fully functional power converter based on emulated current mode control to evaluate the LM25575 regulator IC. The evaluation
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SNVA216B
AN-1578
LM25575
300kHz,
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Untitled
Abstract: No abstract text available
Text: User's Guide SNVA285A – October 2007 – Revised April 2013 AN-1713 LM5116-12 Evaluation Board 1 Introduction The LM5116-12 evaluation board is designed to provide the design engineer with a fully functional power converter based on Emulated Current Mode Control to evaluate the LM5116 controller IC. The evaluation
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SNVA285A
AN-1713
LM5116-12
LM5116
250kHz,
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lm5118
Abstract: No abstract text available
Text: User's Guide SNVA334B – April 2008 – Revised January 2014 AN-1819 LM5118 Evaluation Board 1 Introduction The LM5118 evaluation board is designed to provide the design engineer with a fully functional, Emulated Current Mode Control, buck-boost power converter to evaluate the LM5118 controller IC. The evaluation
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SNVA334B
AN-1819
LM5118
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smd r2
Abstract: No abstract text available
Text: User's Guide SNVA383D – November 2008 – Revised April 2013 AN-1931 LM25088 Evaluation Board 1 Introduction The LM25088 evaluation board is designed to provide the design engineer with a fully functional power converter based on emulated current mode control to evaluate the LM25088 controller IC. The LM25088
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SNVA383D
AN-1931
LM25088
LM25088
LM25088-1
LM25088-2
smd r2
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Untitled
Abstract: No abstract text available
Text: User's Guide SNVA614B – January 2012 – Revised January 2014 AN-2205 LM25118 Evaluation Board 1 Introduction The LM25118 Evaluation Board is designed to provide the design engineer with a fully functional, Emulated Current Mode Control, buck-boost power converter to evaluate the LM25118 controller IC. The
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SNVA614B
AN-2205
LM25118
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Abstract: No abstract text available
Text: Integrated Digital Light Sensor ISL29034 Features The ISL29034 is an integrated ambient and infrared light-to-digital converter with I2C SMBus Compatible Interface. Its advanced self-calibrated photodiode array emulates human eye response with excellent IR rejection. The on-chip ADC is
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ISL29034
ISL29034
16-bits
16-bit
105ms
5m-1994.
MO-229
FN8370
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ftdi spi example
Abstract: FT4232H ft2232h spi FT2232D FT2232H SN74BCT8244A DLPUSB1232H FT2232H-MINI-MODULE FTx232
Text: Future Technology Devices International Ltd. Application Note AN_129 Interfacing FT2232H Hi-Speed Devices to a JTAG TAP Document Reference No.: FT000183 Version 1.0 Issue Date: 2009-10-20 This application note describes the use of the FTDI FT2232H MPSSE to emulate a JTAG interface.
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FT2232H
FT000183
ftdi spi example
FT4232H
ft2232h spi
FT2232D
SN74BCT8244A
DLPUSB1232H
FT2232H-MINI-MODULE
FTx232
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comprehensive datasheet of 25V Electrolytic capacitor
Abstract: CRCW0603105J LM5116 LM5116MH LM5116MHX Si7850DP TSSOP-20 TSSOP20-EP 4.5v to 100v input regulator
Text: LM5116 Wide Range Synchronous Buck Controller General Description Features The LM5116 is a synchronous buck controller intended for step-down regulator applications from a high voltage or widely varying input supply. The control method is based upon current mode control utilizing an emulated current ramp. Current
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LM5116
LM5116
50kHz
comprehensive datasheet of 25V Electrolytic capacitor
CRCW0603105J
LM5116MH
LM5116MHX
Si7850DP
TSSOP-20
TSSOP20-EP
4.5v to 100v input regulator
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master ssc 1
Abstract: A166 C161 C161O C166 C16X L166
Text: Microcontrollers ApNote AP164901 or æ additional file AP164901.EXE available Emulating a synchronous serial interface SSC interface via software routines Abstract: The solution presented in this paper and in the attached source files emulates the most
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AP164901
AP164901
C161V/K/O,
KitCON161
KitCON-161
master ssc 1
A166
C161
C161O
C166
C16X
L166
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74435566
Abstract: LLP32 RL3720WT-R008-F 2066 AN2066 LM25119 C1608C0G1H101J UMK212B7474KG Nippon capacitors
Text: National Semiconductor Application Note 2066 Eric Lee September 28, 2010 Introduction ed to the J6 OUT2+ and J5 (OUT2-/GND). Be sure to choose the correct connector and wire size when attaching the source power supply and the load. The LM25119EVAL evaluation board provides the design engineer with a fully functional dual output buck converter, employing the LM25119 Dual Emulated Current Mode Synchronous Buck Controller. The evaluation board is designed
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LM25119EVAL
LM25119
AN-2066
74435566
LLP32
RL3720WT-R008-F
2066
AN2066
C1608C0G1H101J
UMK212B7474KG
Nippon capacitors
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GRM188R71E474KA12
Abstract: LM5119 LLP32 RL3720WT-R010-F C1608C0G1E682J C1608C0G1H101J PowerDI323 24v to 5V 2A SW regulator grm21br72a474ka73 PMEG6010CEH
Text: National Semiconductor Application Note 2065 Eric Lee September 28, 2010 Introduction choose the correct connector and wire size when attaching the source power supply and the load. The LM5119EVAL evaluation board provides the design engineer with a fully functional dual output buck converter, employing the LM5119 Dual Emulated Current Mode Synchronous Buck Controller. The evaluation board is designed
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LM5119EVAL
LM5119
AN-2065
GRM188R71E474KA12
LLP32
RL3720WT-R010-F
C1608C0G1E682J
C1608C0G1H101J
PowerDI323
24v to 5V 2A SW regulator
grm21br72a474ka73
PMEG6010CEH
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kdrc
Abstract: No abstract text available
Text: CURRENT-MODE MODELING FOR PEAK, VALLEY AND EMULATED CONTROL METHODS Reference Guide for Fixed-Frequency, Continuous Conduction-Mode Operation Robert Sheehan Principal Applications Engineer National Semiconductor Corporation Santa Clara, CA Current-Mode Control
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87C76X
Abstract: 51LPC EB-76X 87c762 51LPC-Microcontrollers 87C764
Text: CEIBO EB-76X Emulation Board Emulation Board for Philips 51LPC Microcontrollers FEATURES • Emulates Philips Low-Pin Count 51LPC Family • Real-Time Emulation up to 20MHz • 4K Emulation Memory • Real-Time Trace • Uses Philips Bond-Out Technology • 3.3V and 5V Operation
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EB-76X
51LPC
20MHz
EB-76X
87C76X
115KBaud
RS-232
87c762
51LPC-Microcontrollers
87C764
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ADC and analog keyboard configuration
Abstract: No abstract text available
Text: APPLICATION NOTE Driving an Analog Keyboard with the ST7 ADC by 8-Bit Micro Application INTRODUCTION The goal of this application note is to present a standard example of the use of the Analog to Digital Converter ADC of the ST7. In this note, the use of the ADC cell to emulate a 16 keys analog keyboard is presented. The
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ST72311
ADC and analog keyboard configuration
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Untitled
Abstract: No abstract text available
Text: ST92F124/ST92F150/ST92F250 8/16-BIT SINGLE VOLTAGE FLASH MCU FAMILY WITH RAM, E3 TM EMULATED EEPROM , CAN 2.0B AND J1850 BLPD PRELIMINARY DATA • Memories – Internal Memory: Single Voltage FLASH up to 256 Kbytes, RAM up to 8Kbytes, 1K byte E 3 TM (Emulated EEPROM)
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ST92F124/ST92F150/ST92F250
8/16-BIT
J1850
14x14
TQFP64
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F150 regulator
Abstract: PQFP100
Text: ST92F124/ST92F150/ST92F250 8/16-BIT SINGLE VOLTAGE FLASH MCU FAMILY WITH RAM, E3 TM EMULATED EEPROM , CAN 2.0B AND J1850 BLPD DATA BRIEFING • Memories – Internal Memory: Single Voltage FLASH up to 256 Kbytes, RAM up to 8Kbytes, 1K byte E3 TM (Emulated EEPROM)
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ST92F124/ST92F150/ST92F250
8/16-BIT
J1850
TQFP64
14x14
16-bit
F150 regulator
PQFP100
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Untitled
Abstract: No abstract text available
Text: Features • • • • Edge-controlled Power-down Pin Zero Power Equivalent of ATF20V8B Edge-sensing Zero Standby Power 10 |aA Typical Industry Standard Architecture - Emulates Many 24-pin PALs - Low-cost Easy-to-use Software Tools High-speed Electrically-erasable Programmable Logic Devices
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ATF20V8B
24-pin
0454Fâ
08/99/x
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Untitled
Abstract: No abstract text available
Text: Features Industry Standard Architecture - Emulates Many 24-Pin PALs - Low Cost Easy-to-Use Software Tools High-Speed Electrically Erasable Programmable Logic Devices - 7.5 ns Maximum Pin-to-Pin Delay Several Power Saving Options Device lcc, Stand-By lcc, Active
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24-Pin
ATF20V8B
ATF20V8BQ
ATF20V8BQL
24-Lead,
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Untitled
Abstract: No abstract text available
Text: ATF20LV8CZ Features • • • • • User-Controlled Power Down Pin Low Voltage Equivalent of ATF20V8B Operates down to 2.7 V Edge-Sensing Zero Standby Power 10 |iA Typical Ideal For Battery Powered Systems Emulates Many 24-Pin PALs Low Cost Easy-to-Use Software Tools
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ATF20LV8CZ
ATF20V8B
24-Pin
P20V8R
P20V8C
P20V8AS
P20V8
G20V8MS
G20V8MA
G20V8AS
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Abstract: No abstract text available
Text: ATF16LV8C Features • • 3.0V to 3.6V Operation Industry Standard Architecture Emulates Many 20-Pin P A Ls” Low Cost Easy-to-Use Software Tools High Speed 10 ns Maximum Pin-to-Pin Delay Ultra-Low Power 5 uA Max. Pin-Controlled Power Down Mode Option
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ATF16LV8C
20-Pin
ATF16LV8C-10JC
ATF16LV8C-10PC
ATF16LV8C-10SC
ATF16LV8C-15JC
ATF16LV8C-15PC
ATF16LV8C-15SC
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Untitled
Abstract: No abstract text available
Text: Features Industry Standard Architecture - Emulates Many 24-pin PALs - Low-cost Easy-to-use Software Tools High-speed Electrically-erasable Programmable Logic Devices - 7.5 ns Maximum Pin-to-pin Delay Several Power Saving Options Device lcc, Standby lcc, Active
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24-pin
ATF20V8B
ATF20V8BQ
ATF20V8BQL
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Untitled
Abstract: No abstract text available
Text: Features • • • • • User-controlled Power-down Pin Low-voltage Equivalent of ATF16V8B Operates down to 3.0V Edge Sensing Zero Standby Power 10 jiA Typical Ideal For Battery Power Systems - Emulates Many 20-pin PALs - Low-cost Easy-to-use Software Tools
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ATF16V8B
20-pin
P16V8R
P16V8C
P16V8AS
P16V8
G16V8MS
G16V8MA
G16V8AS
G16V8A
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