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    Cree, Inc. XPGDWT-N1-0000-00XPP

    LED XLAMP WHITE
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    DigiKey XPGDWT-N1-0000-00XPP Cut Tape 2,943 1
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    Lattice Semiconductor Corporation LCMXO256C-3TN100I

    IC FPGA 78 I/O 100TQFP
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    DigiKey LCMXO256C-3TN100I Tray 1,194 1
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    Win Source Electronics LCMXO256C-3TN100I 3,776
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    Lattice Semiconductor Corporation LC4256V-75TN100C

    IC CPLD 256MC 7.5NS 100TQFP
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    DigiKey LC4256V-75TN100C Tray 1,085 1
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    Mouser Electronics LC4256V-75TN100C 605
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    Lattice Semiconductor Corporation LC4128ZE-7TN100C

    IC CPLD 128MC 7.5NS 100TQFP
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    DigiKey LC4128ZE-7TN100C Tray 718 1
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    Lattice Semiconductor Corporation LAMXO256C-3TN100E

    IC CPLD 128MC 4.9NS 100TQFP
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    TN100 Datasheets (6)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    TN100 STMicroelectronics High performance CSS transceiver enabling location awareness Original PDF
    TN100A Topstek Topstek Current Transducers Original PDF
    TN100Q STMicroelectronics High performance CSS transceiver enabling location awareness Original PDF
    TN100Q STMicroelectronics High performance CSS transceiver enabling location awareness Original PDF
    TN100QT STMicroelectronics High performance CSS transceiver enabling location awareness Original PDF
    TN100QT STMicroelectronics High performance CSS transceiver enabling location awareness Original PDF

    TN100 Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    ATT ORCA fpga architecture

    Abstract: DB9 jtag cable ATT ORCA fpga 9-pin female connector on board 7Pin din Connector on which pin to connect vcc in db9 connector standard 6-pin JTAG header ATT ORCAs female PCB connector 2x5 7Pin Connector
    Text: ORCA Device Programming Download Cable July 2002 Technical Note TN1009 Introduction The ORCA device family offers many programming options for device configuration. Users can easily incorporate the ORCA Download Cable into their system designs, integrating several modes into one easy-to-use interface for


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    TN1009 ATT ORCA fpga architecture DB9 jtag cable ATT ORCA fpga 9-pin female connector on board 7Pin din Connector on which pin to connect vcc in db9 connector standard 6-pin JTAG header ATT ORCAs female PCB connector 2x5 7Pin Connector PDF

    LVCMOS25

    Abstract: LVCMOS33 clock select adder with sharing TN1001 tgo-e
    Text: ispMACH 5000VG Timing Model Design and Usage Guidelines November 2001 Technical Note TN1001 Introduction Understanding how the placement of the design influences timing is essential when designing into the ispMACH 5000VG family. A signal in the device can take several paths, where each different path affects timing in some manner. This application note explains the ispMACH 5000VG timing model and offers a few techniques to enhance


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    5000VG TN1001 68-input, 32-macrocell 5000VG. LVCMOS25 LVCMOS33 clock select adder with sharing TN1001 tgo-e PDF

    vhdl code for 4 bit ripple COUNTER

    Abstract: verilog advantages disadvantages verilog codes for full adder vhdl code for 16 BIT BINARY DIVIDER verilog code power gating verilog code divide verilog hdl code for LINEAR BLOCK CODE 8 bit carry select adder verilog codes 8 bit sequential multiplier VERILOG 4 bit binary multiplier Vhdl code
    Text: HDL Synthesis Coding Guidelines for Lattice Semiconductor FPGAs October 2005 Technical Note TN1008 Introduction Coding style plays an important role in utilizing FPGA resources. Although many popular synthesis tools have significantly improved optimization algorithms for FPGAs, it still is the responsibility of the user to generate meaningful


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    TN1008 1-800-LATTICE vhdl code for 4 bit ripple COUNTER verilog advantages disadvantages verilog codes for full adder vhdl code for 16 BIT BINARY DIVIDER verilog code power gating verilog code divide verilog hdl code for LINEAR BLOCK CODE 8 bit carry select adder verilog codes 8 bit sequential multiplier VERILOG 4 bit binary multiplier Vhdl code PDF

    TN100

    Abstract: TN100-MOD ADC12 PA13 PA15 PC13 STM32 15050RF
    Text: TN100-MOD TN100 RF module Target Specification Features • TN100 transceiver ■ STM32 microcontroller ■ Matching circuits balun ■ Integrated 2.4 GHz chip antenna ■ ISM band pass filter ■ 32.768 kHz, 16 MHz, and 32 MHz quartz crystals c u d Peripherals


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    TN100-MOD TN100 STM32 TN100-MOD ADC12 PA13 PA15 PC13 15050RF PDF

    Untitled

    Abstract: No abstract text available
    Text: TN100 High performance CSS transceiver enabling location awareness Preliminary Data Features • Single-chip solution for ISM 2.45 GHz RF transceiver ■ Built-in ranging capability for link distance estimation ■ Modulation technique: chirp spread spectrum


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    TN100 PDF

    802.15.4a

    Abstract: Nanotron Technologies 60870-5-1 CRC nanotron TN1007 Chirp Spread Spectrum VFQFPN2-48 TN100 JESD97 Q121
    Text: TN100 High performance CSS transceiver enabling location awareness Preliminary Data Features • Single-chip solution for ISM 2.45 GHz RF transceiver ■ Built-in ranging capability for link distance estimation ■ Modulation technique: chirp spread spectrum


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    TN100 802.15.4a Nanotron Technologies 60870-5-1 CRC nanotron TN1007 Chirp Spread Spectrum VFQFPN2-48 TN100 JESD97 Q121 PDF

    vhdl code for phase frequency detector

    Abstract: vhdl code for All Digital PLL TN1003
    Text: sysCLOCK PLL Design and Usage Guidelines August 2003 Technical Note TN1003 Introduction As programmable logic devices PLDs grow in size and complexity, on-chip clock distribution becomes a major factor in performance. The delay and skew of the clocks significantly affect the performance of the device. Furthermore, distribution of these clock signals to other devices on the board increases the complexity of the design. To


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    TN1003 1-800-LATTICE vhdl code for phase frequency detector vhdl code for All Digital PLL TN1003 PDF

    vhdl code for 4 bit ripple COUNTER

    Abstract: vhdl code for Clock divider for FPGA 8 bit carry select adder verilog codes verilog code for four bit binary divider PLC in vhdl code vhdl code for 16 BIT BINARY DIVIDER verilog code for 4 bit ripple COUNTER MUX81 vhdl code for carry select adder using ROM verilog codes for full adder
    Text: HDL Synthesis Coding Guidelines for Series 4 ORCA Devices July 2002 Technical Note TN1008 Introduction Coding style plays an important role in utilizing FPGA resources. Although many popular synthesis tools have significantly improved optimization algorithms for FPGAs, it still is the responsibility of the user to generate meaningful


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    TN1008 1-800-LATTICE vhdl code for 4 bit ripple COUNTER vhdl code for Clock divider for FPGA 8 bit carry select adder verilog codes verilog code for four bit binary divider PLC in vhdl code vhdl code for 16 BIT BINARY DIVIDER verilog code for 4 bit ripple COUNTER MUX81 vhdl code for carry select adder using ROM verilog codes for full adder PDF

    LVCMOS25

    Abstract: LVCMOS33 cmos logic 4000 list cmos 4000 propagation delay
    Text: ispMACH 4000 Timing Model Design and Usage Guidelines September 2001 Technical Note TN1004 Introduction When implementing a design into an ispMACH 4000 family device, it is often critical to understand how the placement of the design will affect the timing. The ispMACH 4000 devices have numerous paths a signal can take,


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    TN1004 1-800-LATTICE LVCMOS25 LVCMOS33 cmos logic 4000 list cmos 4000 propagation delay PDF

    TN1002

    Abstract: No abstract text available
    Text: Power Estimation in ispMACH 5000VG Devices November 2001 Technical Note TN1002 Introduction Several elements must be considered when determining the power requirements for a given design in a programmable logic device. These issues include frequency of operation, device utilization and external I/O loading. This


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    5000VG TN1002 1-800-LATTICE TN1002 PDF

    STM32 schematic

    Abstract: TN100 dispersive filter stm32 pwm I2C1_SMBAl stm32 spi ADC12 balun wireless 2.4 GHz antenna PA15 PC13
    Text: TN100-RCM RF board with TN100 transceiver and STM32 MCU Target Specification Features • TN100 transceiver ■ STM32 microcontroller ■ Matching circuits balun ■ Integrated 2.4 GHz chip antenna ■ ISM band pass filter ■ 32.768 kHz, 16 MHz, and 32 MHz quartz


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    TN100-RCM TN100 STM32 STM32 schematic dispersive filter stm32 pwm I2C1_SMBAl stm32 spi ADC12 balun wireless 2.4 GHz antenna PA15 PC13 PDF

    digital rf delay line 2 GHz

    Abstract: DDDL digital rf delay line 4.3 GHz military components preamplifier 15 ghz ARIB-T66
    Text: TN100-MOD TN100 RF module Target Specification Features • TN100 transceiver ■ STM32 microcontroller ■ Matching circuits balun ■ Integrated 2.4 GHz chip antenna ■ ISM band pass filter ■ 32.768 kHz, 16 MHz, and 32 MHz quartz crystals Peripherals


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    TN100-MOD TN100 STM32 digital rf delay line 2 GHz DDDL digital rf delay line 4.3 GHz military components preamplifier 15 ghz ARIB-T66 PDF

    TN100

    Abstract: ADC12 PA13 PA15 PC13 STM32 stm32-MCU stm32 pwm
    Text: TN100-RCM RF board with TN100 transceiver and STM32 MCU Target Specification Features • TN100 transceiver ■ STM32 microcontroller ■ Matching circuits balun ■ Integrated 2.4 GHz chip antenna ■ ISM band pass filter ■ 32.768 kHz, 16 MHz, and 32 MHz quartz


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    TN100-RCM TN100 STM32 ADC12 PA13 PA15 PC13 stm32-MCU stm32 pwm PDF

    verilog code for lvds driver

    Abstract: vhdl code for lvds driver JESD84 LVCMOS25 LVCMOS33 JESD8-8
    Text: sysIO Usage Guidelines for Lattice Devices October 2005 Technical Note TN1000 Introduction The newer Lattice device families give the user the ability to easily interface with other devices by using advanced system I/O standards. This capability is referred to as sysIO Standard. This application note describes the sysIO


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    TN1000 1-800-LATTICE verilog code for lvds driver vhdl code for lvds driver JESD84 LVCMOS25 LVCMOS33 JESD8-8 PDF

    TN1005

    Abstract: 4000Z
    Text: Power Estimation in ispMACH 4000V/B/C/Z Devices January 2004 Technical Note TN1005 Introduction The ispMACH 4000V/B/C/Z families offer an ideal mix of both high speed and low power in the same device. With an advanced low-power electrically erasable non-volatile memory cell and a full CMOS logic design approach,


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    000V/B/C/Z TN1005 000V/B/C 4000Z 675mA 1-800-LATTICE TN1005 PDF

    Untitled

    Abstract: No abstract text available
    Text: Maximize ispMACH 5000VG and ispLSI 5000VE Functionality with Dual-OR Macrocells July 2001 Technical Note TN1006 Introduction Coming close to the macrocell limit? Why not double the number of functions used by your dual-OR output capability of the macrocells. This applications note shows two ways to implement the dual-OR function in the I/O architecture. The first method locks pins and signals to the same macrocell, and the second method groups signals


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    5000VG 5000VE TN1006 PDF

    20RA10

    Abstract: MACH111 - 12JC - 14JI MACH211-15JC MACH210-15JC gal16v8d TN1007 PALCE22V10H-5JC/5 GAL22V10D-15LS MACH110 - 12JC - 14JI GAL20V8B
    Text: Fab 14 Device Design Conversion Guide November 2001 Technical Note TN1007 How to Use This Conversion Guide This Conversion Guide is intended to provide insight into how best to migrate logic designs from older MACH and PALCE® devices affected by AMD’s Fab 14 shut-down to newer Lattice MACH®, ispMACH® and GAL® devices.


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    TN1007 20RA10-10 100MHz 20RA10-15 20RA10 MACH111 - 12JC - 14JI MACH211-15JC MACH210-15JC gal16v8d TN1007 PALCE22V10H-5JC/5 GAL22V10D-15LS MACH110 - 12JC - 14JI GAL20V8B PDF

    nanoLOC

    Abstract: stm32f103 manual nanoLoc DEMO CODE SMD transistor LD3 NB b6 smd transistor nanoLOC Development DIGI020 STM32F103 TN100 SLS121PCFN
    Text: UM0579 User manual TN100 RF evaluation kit This document describes the TN100 RF evaluation kit TN100/M32B-EVAL used to evaluate the capabilities of the TN100 device for ranging operations and RF data transmission based on the Chirp technology. The entire package consists of two TN100 sensor boards (version 1.1) and a complete


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    UM0579 TN100 TN100/M32B-EVAL) TN100-RCM) STM32 TN100 nanoLOC stm32f103 manual nanoLoc DEMO CODE SMD transistor LD3 NB b6 smd transistor nanoLOC Development DIGI020 STM32F103 SLS121PCFN PDF

    Chirp Spread Spectrum

    Abstract: Nanotron Technologies RTLS IC nanotron TN100 QFN48 QFN-48 TN100Q TN100QT QFN48 RF
    Text: TN100 High performance CSS transceiver enabling location awareness Data Brief Features • High precision ranging: 2 m indoors and 1 m outdoors ■ Supply voltage range from 2.3 V to 2.7 V ■ Current consumption: 27 mA RX , 30 mA (TX) @ 0 dBm ■ Standby current with active RTC: 2 µA


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    TN100 Chirp Spread Spectrum Nanotron Technologies RTLS IC nanotron TN100 QFN48 QFN-48 TN100Q TN100QT QFN48 RF PDF

    vhdl code for phase frequency detector

    Abstract: vhdl code for All Digital PLL vhdl code for frequency divider TN1003 vhdl code comparator verilog code for phase detector
    Text: sysCLOCK PLL Usage Guide for ispXPGA, ispGDX2, ispXPLD and ispMACH 5000VG Devices ™ ™ ™ September 2004 Technical Note TN1003 Introduction As programmable logic devices PLDs grow in size and complexity, on-chip clock distribution becomes a major


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    5000VG TN1003 1-800-LATTICE vhdl code for phase frequency detector vhdl code for All Digital PLL vhdl code for frequency divider TN1003 vhdl code comparator verilog code for phase detector PDF

    TN1004

    Abstract: T Flip-Flop CMOS 4000 propagation delay LVCMOS25 LVCMOS33 CMOS 4000 family specifications
    Text: ispMACH 4000 Timing Model Design and Usage Guidelines September 2001 Technical Note TN1004 Introduction When implementing a design into an ispMACH 4000 family device, it is often critical to understand how the placement of the design will affect the timing. The ispMACH 4000 devices have numerous paths a signal can take,


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    TN1004 1-800-LATTICE TN1004 T Flip-Flop CMOS 4000 propagation delay LVCMOS25 LVCMOS33 CMOS 4000 family specifications PDF

    4032V

    Abstract: DS1017 LC4032V-10TN48I 4512c application LC4256V-75TN176C marking 17Z 4000B AEC-Q100 DS1020 22z2
    Text: ispMACH 4000V/B/C/Z Family 3.3V/2.5V/1.8V In-System Programmable SuperFAST TM High Density PLDs Coolest Power May 2009 C Features Data Sheet DS1020 TM • Broad Device Offering • Multiple temperature range support – Commercial: 0 to 90°C junction Tj


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    000V/B/C/Z DS1020 AEC-Q100 000V/Z 400MHz nonAEC-Q100 256-ftBGA 4A-07. 4000Z 000V/B/C 4032V DS1017 LC4032V-10TN48I 4512c application LC4256V-75TN176C marking 17Z 4000B DS1020 22z2 PDF

    MachXO sysIO Usage Guide

    Abstract: LCMXO256C-4M100C LCMXO2280 lcmxo640c-3tn100i LCMXO640C-3FT256C LCMXO1200 LCMXO256 LCMXO2280E-4M132I LVCMOS15 LVCMOS25
    Text: MachXO Family Data Sheet Version 02.3_4W February 2007 MachXO Family Data Sheet Introduction April 2006 Data Sheet • Flexible I/O Buffer Features • Programmable sysIO buffer supports wide range of interfaces: − LVCMOS 3.3/2.5/1.8/1.5/1.2 − LVTTL


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    TN1086) TN1087) TN1097) MachXO sysIO Usage Guide LCMXO256C-4M100C LCMXO2280 lcmxo640c-3tn100i LCMXO640C-3FT256C LCMXO1200 LCMXO256 LCMXO2280E-4M132I LVCMOS15 LVCMOS25 PDF

    tms38030

    Abstract: TMS38010 KSS Crystals KSS oscillator A-99 TMS380 Astable Multivibrator operation amplifier
    Text: TMS38051, TMS38052 RING INTERFACE CIRCUITS SEP TEM B ER 1985 - R EV ISED M A Y 1986 • Token Ring Electrical Connection • Compatible with Electrical Interface of IEEE Std 802.5-1985 Token Ring Access Method and Physical Layer Specifications TM S 3 8 0 51 . . . N P A C K A G E


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    TMS38051, TMS38052 TMS38051 TMS38052 tms38030 TMS38010 KSS Crystals KSS oscillator A-99 TMS380 Astable Multivibrator operation amplifier PDF