XO2-640
Abstract: "lattice semiconductor" sigma Delta MACHXO2
Text: T H E D O - I T - A L L P L D The MachXO2 family of non-volatile infinitely reconfigurable Programmable Logic Devices PLDs is designed for system applications found in telecommunications infrastructure, computing, industrial and medical equipment. Combining an optimized lookup table (LUT) architecture with 65-nm embedded Flash
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65-nm
1-800-LATTICE
I0209
XO2-640
"lattice semiconductor" sigma Delta
MACHXO2
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XO1200
Abstract: Analog to Digital Converters XP2-17 real time application of D flip-flop FPGA CIC Filter dc dc converter using fpga
Text: LEVERAGING FPGA AND CPLD DIGITAL LOGIC TO IMPLEMENT ANALOG TO DIGITAL CONVERTERS A Lattice Semiconductor White Paper March 2010 Lattice Semiconductor 5555 Northeast Moore Ct. Hillsboro, Oregon 97124 USA Telephone: 503 268-8000 www.latticesemi.com 1 Leveraging FPGA and CPLD Digital Logic to Implement Analog to Digital Converters
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50Khz
XO1200,
MachXO2280
XO1200
Analog to Digital Converters
XP2-17
real time application of D flip-flop
FPGA CIC Filter
dc dc converter using fpga
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RD1063
Abstract: AND with RC lowpass
Text: Delta-Sigma ADC October 2009 Reference Design RD1063 Introduction The Delta-Sigma ADC reference design targets the implementation of an analog-to-digital converter in a Lattice PLD. The design can be implemented with few PLD resources and is flexible enough to meet a variety of application requirements. The Delta-Sigma ADC is an excellent choice for monitoring the various sensors and power rails
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RD1063
LCMXO2280C-5FT256C,
1-800-LATTICE
RD1063
AND with RC lowpass
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CABGA
Abstract: sram 2112 jtag sequence lattice MachXO2 embedded application in medical field in TQFP 144 PACKAGE lattice Lattice XO2 spi lpc MACHXO2
Text: D O - I T - A L L P L D Optimized for System Control Applications The MachXO2 family of non-volatile infinitely reconfigurable Programmable Logic Devices PLDs is designed for system control applications found in telecommunications infrastructure, computing, industrial
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65-nm
1-800-LATTICE
I0209
CABGA
sram 2112
jtag sequence lattice MachXO2
embedded application in medical field in
TQFP 144 PACKAGE lattice
Lattice XO2
spi lpc
MACHXO2
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LMV311
Abstract: ADC tracking RD1063 LCMXO2-1200HC-6MG132C LVCMOS33 "digital Lowpass Filter" RD1066 "lattice semiconductor" sigma Delta
Text: Simple Sigma-Delta ADC November 2010 Reference Design RD1066 Introduction The Simple Sigma-Delta Analog-to-Digital Converter Reference Design targets the implementation of an analogto-digital converter in a Lattice CPLD or FPGA. This reference design supports the use of an external analog comparator device, or optionally an on-chip LVDS buffer in devices with differential LVDS input support. Implementing
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RD1066
LFXP2-5E-5FT256C,
1-800-LATTICE
RD1063,
LMV311
ADC tracking
RD1063
LCMXO2-1200HC-6MG132C
LVCMOS33
"digital Lowpass Filter"
RD1066
"lattice semiconductor" sigma Delta
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Untitled
Abstract: No abstract text available
Text: IN-SYSTEM PROGRAMMABLE INTEGRATED 5TH-ORDER FILTER ispPAC80 Introducing ispPAC80 Imagine designing a 5th-order filter in seconds at your computer, and then instantly having that filter in a chip— just as you want it. No searching for parts, no board layout hassles. If you want to
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ispPAC80
ispPAC80
cc051042
10kHz
100kHz
I0108
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Untitled
Abstract: No abstract text available
Text: IN-SYSTEM PROGRAMMABLE INTEGRATED 5TH-ORDER FILTER ispPAC80 Introducing ispPAC80 Imagine designing a 5th-order filter in seconds at your computer, and then instantly having that filter in a chip— just as you want it. No searching for parts, no board layout hassles. If you want to
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ispPAC80
ispPAC80
E2CMOSAC10
ispPAC20
I0108
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Untitled
Abstract: No abstract text available
Text: IN-SYSTEM PROGRAMMABLE INTEGRATED 5TH ORDER FILTER ispPAC80/81 Introducing ispPAC80/81 Imagine designing a 5th-order filter in seconds at your computer, and then instantly having that filter in a chip— just as you want it. No searching for parts, no board layout hassles. If you want to change your
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ispPAC80/81
ispPAC80
ispPAC81
cc051042
10kHz
100kHz
1-800-LATTICE
I0108C
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cc0550
Abstract: No abstract text available
Text: IN-SYSTEM PROGRAMMABLE INTEGRATED 5TH ORDER FILTER ispPAC80/81 Introducing ispPAC80/81 Imagine designing a 5th-order filter in seconds at your computer, and then instantly having that filter in a chip— just as you want it. No searching for parts, no board layout hassles. If you want to change your
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ispPAC80/81
ispPAC80
ispPAC81
cc051042
10kHz
100kHz
1-800-LATTICE
I0108B
cc0550
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Lattice NAND Flash Controller
Abstract: MachXO22000 Lattice MachXO2 Product Family
Text: Using Low Cost, Non-Volatile PLDs in System Applications A Lattice Semiconductor White Paper November 2010 Lattice Semiconductor 5555 Northeast Moore Ct. Hillsboro, Oregon 97124 USA Telephone: 503 268-8000 www.latticesemi.com 1 Using Low Cost Non-Volatile PLDs in System Applications
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tn1037
Abstract: verilog code for lvds driver 8772 P OR4E02 OR4E06 ORLI10G ORT82G5 plc array 399-798
Text: ORCA Series 4 Fast DDR Interface October 2002 Technical Note TN1037 Introduction This document will specify the capabilities of the ORCA series 4 I/O logic. Specifically, Double Data Rate DDR interface schemes with clock forwarding. Single-ended I/O standards, such as XGMII, and speed capabilities up to
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TN1037
311MHz
350MHz
OR4E04-680
ORT82G5,
1-800-LATTICE
tn1037
verilog code for lvds driver
8772 P
OR4E02
OR4E06
ORLI10G
ORT82G5
plc array
399-798
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MTC-C202DPRN-1N
Abstract: K6R4016V1D-TC10 7-segment LED display 1 to 99 vhdl TP0335 transistor r1009 TP0339 TP0338 TP0920 TP033 TP0320
Text: LatticeMico32/DSP Development Board User’s Guide October 2007 Revision: EB17_01.4 LatticeMico32/DSP Development Board User’s Guide Lattice Semiconductor Introduction This document describes the features and functionality of the LatticeMico32/DSP Development Board. This board
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LatticeMico32/DSP
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MTC-C202DPRN-1N
K6R4016V1D-TC10
7-segment LED display 1 to 99 vhdl
TP0335
transistor r1009
TP0339
TP0338
TP0920
TP033
TP0320
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d1n4001
Abstract: led D1N4001 diode d1n4001 CY7C68013A-QFN56 datasheets diode d1n4001 about mini electronics project datasheet of d1n4001 Mini Project Temperature Sensor mini project for electronics and communication e vhdl mini projects
Text: MachXO Mini Development Kit User’s Guide March 2009 Revision: EB41_01.0 MachXO Mini Development Kit User’s Guide Lattice Semiconductor Introduction Thank you for choosing the Lattice Semiconductor MachXO Mini Development Kit! This user’s guide describes how to start using the MachXO Mini Development Kit, an easy-to-use platform for evaluating and designing with MachXO PLDs. Along with the evaluation board and accessories, this kit includes a preloaded Mini System-on-Chip SoC demonstration design based on the LatticeMico8™ microcontroller.
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d1n4001
Abstract: CY7C68013A-QFN56 LCMXO2280T144 LCMXO2280C-4TN144C wishbone CY7C68 Mini Project Temperature Sensor vhdl mini projects wishbone rev. b verilog code for I2C WISHBONE INTERFACE
Text: MachXO Mini Development Kit User’s Guide August 2011 Revision: EB41_01.1 MachXO Mini Development Kit User’s Guide Lattice Semiconductor Introduction Thank you for choosing the Lattice Semiconductor MachXO Mini Development Kit! This user’s guide describes how to start using the MachXO Mini Development Kit, an easy-to-use platform for evaluating and designing with MachXO PLDs. Along with the evaluation board and accessories, this kit includes a preloaded Mini System-on-Chip SoC demonstration design based on the LatticeMico8™ microcontroller.
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jtag sequence lattice MachXO2
Abstract: MACHXO2 Lattice XO2 spi lpc XO2-7000 lpc interface sram XO2-1200 XO2-4000 spi flash controller lattice 1024
Text: 全 功 能 的 P L D 应 统化 系 用而优 为 专 MachXO2系列 专为系统应用而优化 MachXO2 系列非易失性无限可重构可编程逻辑器件 PLD 专为系统应用而设计,适用于电信基础设施计 算、工业和医疗设备。结合优化的查找表 (LUT) 结构和
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65MachXO2
335I/O
20x20mm,
14x14mm,
17x17mm,
23x23mm,
Corporation2010
I0209C
jtag sequence lattice MachXO2
MACHXO2
Lattice XO2
spi lpc
XO2-7000
lpc interface sram
XO2-1200
XO2-4000
spi flash controller
lattice 1024
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jtag sequence lattice MachXO2
Abstract: 65nm sram MACHXO2 XO2-7000
Text: システム・アプリケーション用に最適化 不揮発性メモリを集積し何度でも再構成可能なPLD のMachXO2 ファミリは、通信インフラストラクチャ やコンピューティング、そして産業と医療機器のアプ
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MachXO23
240KbitsysMEMTM
54Kbit
256Kbit
ASI56
20x20mm,
14x14mm,
17x17mm,
23x23mm,
jtag sequence lattice MachXO2
65nm sram
MACHXO2
XO2-7000
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K6R4016V1D-UI10
Abstract: LD0506 BLM21PG331SN1D TP0950 R1004 lm4480 transistor c1026 K6R4016V1D 7-segment LED display 1 to 99 vhdl FB0701
Text: LatticeMico32/DSP Development Board for LatticeECP2 User’s Guide June 2009 Revision: EB26_02.6 LatticeMico32/DSP Development Board for LatticeECP2 User’s Guide Lattice Semiconductor Introduction This document describes the features and functionality of the LatticeMico32 /DSP Development Board for
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LatticeMico32TM/DSP
LatticeMico32
100mm,
150mm,
120mm,
K6R4016V1D-UI10
LD0506
BLM21PG331SN1D
TP0950
R1004
lm4480
transistor c1026
K6R4016V1D
7-segment LED display 1 to 99 vhdl
FB0701
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pac81
Abstract: PG1AB C213 C231 C435
Text: ispPAC81 In-System Programmable Analog Circuit October 2001 Data Sheet Functional Block Diagram Features • In-System Programmable ISP Analog • • • • • • Instrument Amplifier Gain Stage Precision Active Filtering (10kHz to 75kHz) Continuous-Time Fifth Order Low Pass Topology
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ispPAC81
10kHz
75kHz)
16-Pin
pac81
PG1AB
C213
C231
C435
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CY7C68013A-QFN56
Abstract: of d1n4001 D1N4001 u14 temp sensor CY7C68013 grep dip meter RDxx Mini Project Temperature Sensor LCMXO640 vhdl mini projects
Text: MachXO Mini Development Kit User’s Guide March 2012 Revision: EB41_01.4 MachXO Mini Development Kit User’s Guide Introduction Thank you for choosing the Lattice Semiconductor MachXO Mini Development Kit! This user’s guide describes how to start using the MachXO Mini Development Kit, an easy-to-use platform for evaluating and designing with MachXO PLDs. Along with the evaluation board and accessories, this kit includes a preloaded Mini System-on-Chip SoC demonstration design based on the LatticeMico8™ microcontroller.
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C213
Abstract: C231 C435 PG1AB
Text: In-System Programmable Analog Circuit October 2001 Data Sheet Features Functional Block Diagram • In-System Programmable ISP Analog • • • • • • Instrument Amplifier Gain Stage Precision Active Filtering (10kHz to 75kHz) Continuous-Time Fifth Order Low Pass Topology
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75kHz)
-80dB
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C213
C231
C435
PG1AB
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POWER1014A
Abstract: sandisk micro sd card pin configuration RD1063 DIC20 AVX-31-5620-050-116-871 transistor SMD f12 0603 smt resistor POWR1014A SMD Transistor g16 DS3904U-020 T
Text: MachXO Control Development Kit User’s Guide October 2009 Revision: EB46_01.2 Lattice Semiconductor MachXO Control Development Kit User’s Guide Introduction Thank you for choosing the Lattice Semiconductor MachXO Control Development Kit! This guide describes how to start using the MachXO Control Development Kit, an easy-to-use platform for rapidly
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Abstract: No abstract text available
Text: ispPAC 80 TM In-System Programmable Analog Circuit Features Functional Block Diagram • IN-SYSTEM PROGRAMMABLE ISP ANALOG — Instrument Amplifier Gain Stage — Precision Active Filtering (50kHz to 500kHz) — Continuous-Time Fifth Order Low Pass Topology
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500kHz)
-74dB
100kHz)
16-Pin
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AN6019
Abstract: C213 C231 C435 fp5000
Text: ispPAC 80 TM In-System Programmable Analog Circuit Features Functional Block Diagram • IN-SYSTEM PROGRAMMABLE ISP ANALOG — Instrument Amplifier Gain Stage — Precision Active Filtering (50kHz to 500kHz) — Continuous-Time Fifth Order Low Pass Topology
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50kHz
500kHz)
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100kHz)
16-Pin
AN6019
C213
C231
C435
fp5000
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Untitled
Abstract: No abstract text available
Text: ispPAC 80 In-System Programmable Analog Circuit Features Functional Block Diagram • IN-SYSTEM PROGRAMMABLE ISP ANALOG — Instrument Amplifier Gain Stage — Precision Active Filtering (50kHz to 750kHz) — Continuous-Time Fifth Order Low Pass Topology
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750kHz)
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100kHz)
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