AN2961
Abstract: MCF51QE128RM HC08 HCS08 M68HC08 MC33696 MC68HC908JW32 HC08JW32 MCF51QE
Text: Freescale Semiconductor Application Note Document Number: AN3941 Rev. 0, 01/2010 Wireless Serial Link Driver on 2.4 GHz by: Pavel Krenek, Application Engineering Roznov CSC, Czech Republic 1 Introduction This application note describes the software device driver for
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AN3941
MC1319x,
MC1320x,
MC1321x
HCS08
AN2961
MCF51QE128RM
HC08
M68HC08
MC33696
MC68HC908JW32
HC08JW32
MCF51QE
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U204A
Abstract: U202A TGT2-0032-30-24 MC33502DG AN1942 resolver observer RESOLVER resolver sensor U204B C source code resolver speed motor
Text: Freescale Semiconductor Application Note Document Number: AN3943 Rev. 0, 10/2009 Using the Resolver Interface eTPU Function Covers the MPC5500 and all eTPU-Equipped Devices by: Andrzej Lara System Application Engineer, Roznov Czech System Center 1 Introduction
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AN3943
MPC5500
U204A
U202A
TGT2-0032-30-24
MC33502DG
AN1942 resolver
observer
RESOLVER
resolver sensor
U204B
C source code resolver speed motor
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AN3892
Abstract: AN3889 MPR121
Text: Freescale Semiconductor Application Note AN3944 Rev 0, 9/2009 MPR121 Quick Start Guide INTRODUCTION The MPR121 is Freescale Semiconductor’s top of the line touch sensor and can fit into a wide range of applications. These applications can all be accommodated by having a device a with a very large range of flexibility. While all of these added features
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AN3944
MPR121
AN3892
AN3889
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AN2438
Abstract: IMX25RM MX25
Text: Freescale Semiconductor Application Note Document Number: AN3948 Rev. 1, 12/2009 i.MX25 Integrated Analog-to-Digital Converter by Multimedia and Applications Division Freescale Semiconductor, Inc. Austin, TX The i.MX25 multimedia applications processor has an
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AN3948
AN2438
IMX25RM
MX25
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AN3892
Abstract: AN3889 MPR121 0x05E MPR12 AN3891
Text: Freescale Semiconductor Application Note AN3944 Rev 1, 03/2010 MPR121 Quick Start Guide INTRODUCTION The MPR121 is Freescale Semiconductor’s top of the line touch sensor and can fit into a wide range of applications. These applications can all be accommodated by having a device a with a very large range of flexibility. While all of these added features
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AN3944
MPR121
AN3892
AN3889
0x05E
MPR12
AN3891
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DDR3 pcb layout guidelines
Abstract: DDR3 pcb layout guide AN3940 Design Guide for DDR3-1066 DDR3 pcb layout DDR3 layout DDR3 sdram pcb layout guidelines micron ddr3 hardware design consideration DDR3 x16 rank pcb layout DDR3 pcb layout motherboard
Text: Freescale Semiconductor Application Note Document Number: AN3940 Rev. 3, 08/2010 Hardware and Layout Design Considerations for DDR3 SDRAM Memory Interfaces by Networking and Multimedia Group Freescale Semiconductor, Inc. Austin, TX The design guidelines presented in this application note
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AN3940
DDR3 pcb layout guidelines
DDR3 pcb layout guide
AN3940
Design Guide for DDR3-1066
DDR3 pcb layout
DDR3 layout
DDR3 sdram pcb layout guidelines
micron ddr3 hardware design consideration
DDR3 x16 rank pcb layout
DDR3 pcb layout motherboard
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Design Guide for DDR3-1066
Abstract: DDR3 pcb layout DDR3 pcb layout guide DDR3 layout AN3940 DDR3 pcb layout guidelines DDR3 layout guidelines micron DDR3 pcb layout DDR3 udimm jedec DDR3 sdram pcb layout guidelines
Text: Freescale Semiconductor Application Note Document Number: AN3940 Rev. 4, 01/2011 Hardware and Layout Design Considerations for DDR3 SDRAM Memory Interfaces by Networking and Multimedia Group Freescale Semiconductor, Inc. Austin, TX This document provides general hardware and layout
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AN3940
Design Guide for DDR3-1066
DDR3 pcb layout
DDR3 pcb layout guide
DDR3 layout
AN3940
DDR3 pcb layout guidelines
DDR3 layout guidelines
micron DDR3 pcb layout
DDR3 udimm jedec
DDR3 sdram pcb layout guidelines
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Untitled
Abstract: No abstract text available
Text: Freescale Semiconductor Application Note Document Number: AN3940 Rev. 5, 10/2012 Hardware and Layout Design Considerations for DDR3 SDRAM Memory Interfaces This document provides general hardware and layout considerations and guidelines for hardware engineers
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AN394
Abstract: Signal Path Designer
Text: AN394 APPLICATION NOTE MICROWIRE EEPROM COMMON I/O OPERATION Within ST’s broad spectrum of different types of serial access EEPROM product, the MICROWIRE family is based on a 4-wire interface. The four lines consist of: the Clock Input C , the Chip Select Input (S),
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AN394
AN394
Signal Path Designer
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AN394
Abstract: Signal Path Designer
Text: AN394 APPLICATION NOTE MICROWIRE EEPROM COMMON I/O OPERATION Within STMicroelectronics’ broad spectrum of different types of serial access EEPROM product, the MICROWIRE® family is based on a 4-wire interface. The four lines consist of: the Clock Input C , the Chip
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AN394
AN394
Signal Path Designer
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processor reference manual imx25
Abstract: i.MX25 AN2438 IMX25RM MX25 iMX25 tsc
Text: Document Number: AN3948 Rev. 0, 09/2009 i.MX25 Integrated Analog-to-Digital Converter by Multimedia and Applications Division Freescale Semiconductor, Inc. Austin, TX The i.MX25 multimedia applications processor has an embedded analog-to-digital converter ADC in addition to
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AN3948
processor reference manual imx25
i.MX25
AN2438
IMX25RM
MX25
iMX25 tsc
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AD10
Abstract: AD11 AD12 AD14 ADC16 MCF51EM256 AN389
Text: Freescale Semiconductor Application Note Document Number: AN3949 Rev. 0, 10/2009 ADC16 Calibration Procedure and Programmable Delay Block Synchronization For the MCF51EM256 by: Inga Harris Applications Engineer 1 Introduction The MCF51EM256 Codified MCU has an integrated
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AN3949
ADC16
MCF51EM256
MCF51EM256
16-bit
AD10
AD11
AD12
AD14
AN389
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AN3949SW
Abstract: ADC16 MCF51EM256 21X60 AD10 AD11 AD12 AD14 AN3896
Text: Freescale Semiconductor Application Note Document Number: AN3949 Rev. 1, 04/2010 ADC16 Calibration Procedure and Programmable Delay Block Synchronization For the MCF51EM256 by: Inga Harris Applications Engineer East Kilbride, U.K. 1 Introduction The MCF51EM256 ColdFire MCU has an integrated
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AN3949
ADC16
MCF51EM256
MCF51EM256
16-bit
AN3949SW
21X60
AD10
AD11
AD12
AD14
AN3896
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HCS08JM60
Abstract: AN3942SW MCF51QE128RM M68HCS08 HCS08RM JM128 MCF51CN MCF51EM MCF51EM256 HCS08
Text: Freescale Semiconductor Application Note Document Number: AN3942 Rev. 0, 12/2009 Flash Programming Routines for the HCS08 and the ColdFire V1 Devices by: Pavel Krenek Application Engineering Roznov CSC, Czech Republic 1 Introduction This application note describes flash programming routines for
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AN3942
HCS08
HC9S08
32-bit
32-bit
MCF51JM,
MCF51QE,
MCF51AC,
MCF51EM,
HCS08JM60
AN3942SW
MCF51QE128RM
M68HCS08
HCS08RM
JM128
MCF51CN
MCF51EM
MCF51EM256
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74HCTxxx
Abstract: AN394 Signal Path Designer
Text: AN394 APPLICATION NOTE MICROWIRE EEPROM COMMON I/O OPERATION Within STMicroelectronics’ broad spectrum of different types of serial access EEPROM product, the MICROWIRE family is based on a 4-wire interface. The four lines consist of: the Clock Input C , the Chip
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AN394
74HCTxxx
AN394
Signal Path Designer
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Marvell 88E1111 layout guide
Abstract: Marvell PHY 88E1111 errata 88E1111 errata 88E1101 Marvell 88E1111 88E1111 Marvell 88E1112 88E1111 uboot Marvell PHY 88E1111 layout 88E1111 "mdio registers"
Text: Freescale Semiconductor Application Note Document Number: AN3947 Rev. 0, 11/2009 How to Run the Latest Linux BSP on MPC8313ERDB Rev. Ax Boards by: Shu Yinbo System and Application Engineer Beijing China 1 Introduction The MPC8313E reference design board RDB is a
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AN3947
MPC8313ERDB
MPC8313E
Marvell 88E1111 layout guide
Marvell PHY 88E1111 errata
88E1111 errata
88E1101
Marvell 88E1111
88E1111
Marvell 88E1112
88E1111 uboot
Marvell PHY 88E1111 layout
88E1111 "mdio registers"
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S08 Freescale
Abstract: No abstract text available
Text: AN3945 Rev 0, 9/2009 Freescale Semiconductor Application Note Communication Protocol for the RD3803MMA7660FC by: Laura Salhuana INTRODUCTION This document is intended to be used with the RD3803MMA7660FC. All of the commands described below can be used to communicate with the evaluation tool and should be used with the HyperTerminal type of program.
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RD3803MMA7660FC
RD3803MMA7660FC.
S08MON
S08 Freescale
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EEPROM
Abstract: M93C86
Text: M93C86, M93C76, M93C66 M93C56, M93C46 16 Kbit, 8 Kbit, 4 Kbit, 2 Kbit and 1 Kbit 8-bit or 16-bit wide MICROWIRE serial access EEPROM Features • Industry standard MICROWIRE bus ■ Single supply voltage: – 4.5 V to 5.5 V for M93Cx6 – 2.5 V to 5.5 V for M93Cx6-W
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M93C86,
M93C76,
M93C66
M93C56,
M93C46
16-bit
M93Cx6
M93Cx6-W
M93Cx6-R
EEPROM
M93C86
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National Semiconductor PC16550D UART
Abstract: K2687 CL-GD5465 VR5000 PC16550D R5000 VRC5074 R4311 H49-M97 CL-GD546
Text: VRC5074 System Controller June 1998 Data Sheet 1.0 Introduction 1.1 The VRC5074 System Controller is a software-configurable chip that directly connects the V R5000 CPU to SDRAM memory, a PCI Bus, and a Local Bus, without external logic or buffering. From the CPU’s viewpoint, the controller acts as a memory controller, DMA controller, PCI-Bus host bridge, and Local-Bus host bridge. From the viewpoint of PCI agents, the controller acts as master and target on the PCI Bus. The
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VRC5074
R5000
National Semiconductor PC16550D UART
K2687
CL-GD5465
VR5000
PC16550D
R4311
H49-M97
CL-GD546
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M93C46
Abstract: M93C56 M93C66 M93C66-R M93C66-W M93C76 M93C76-R M93C76-W M93C86 M93C86-W
Text: M93C86, M93C76, M93C66 M93C56, M93C46 16 Kbit, 8 Kbit, 4 Kbit, 2 Kbit and 1 Kbit 8-bit or 16-bit wide MICROWIRE serial access EEPROM Features • Industry standard MICROWIRE bus ■ Single supply voltage: – 4.5 V to 5.5 V for M93Cx6 – 2.5 V to 5.5 V for M93Cx6-W
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M93C86,
M93C76,
M93C66
M93C56,
M93C46
16-bit
M93Cx6
M93Cx6-W
M93Cx6-R
M93C46
M93C56
M93C66
M93C66-R
M93C66-W
M93C76
M93C76-R
M93C76-W
M93C86
M93C86-W
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M93C46W6
Abstract: M93C06 M93C46 M93C56 M93C66 M93C76 M93C86 AN1571 proto STMicroelectronics date code format PDIP8
Text: M93C86, M93C76, M93C66 M93C56, M93C46, M93C06 16Kbit, 8Kbit, 4Kbit, 2Kbit, 1Kbit and 256bit 8-bit or 16-bit wide MICROWIRE Serial Access EEPROM FEATURES SUMMARY • Industry Standard MICROWIRE Bus ■ Figure 1. Packages Single Supply Voltage: – 4.5V to 5.5V for M93Cx6
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M93C86,
M93C76,
M93C66
M93C56,
M93C46,
M93C06
16Kbit,
256bit
16-bit
M93Cx6
M93C46W6
M93C06
M93C46
M93C56
M93C66
M93C76
M93C86
AN1571
proto
STMicroelectronics date code format PDIP8
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m93c46
Abstract: M93C56 M93C66 M93C66-R M93C66-W M93C76 M93C76-W M93C86 M93C86-R M93C86-W
Text: M93C86, M93C76, M93C66 M93C56, M93C46 16 Kbit, 8 Kbit, 4 Kbit, 2 Kbit and 1 Kbit 8-bit or 16-bit wide MICROWIRE serial access EEPROM Features ● Industry standard MICROWIRE bus ● Single supply voltage: – 4.5 V to 5.5 V for M93Cx6 – 2.5 V to 5.5 V for M93Cx6-W
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M93C86,
M93C76,
M93C66
M93C56,
M93C46
16-bit
M93Cx6
M93Cx6-W
M93Cx6-R
m93c46
M93C56
M93C66
M93C66-R
M93C66-W
M93C76
M93C76-W
M93C86
M93C86-R
M93C86-W
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M93S46
Abstract: M93S56 M93S66
Text: M93S66, M93S56, M93S46 4K/2K/1K x16 SERIAL MICROWIRE BUS EEPROM with BLOCK PROTECTION PRELIMINARY DATA INDUSTRY STANDARD MICROWIRE BUS 1 MILLION ERASE/WRITE CYCLES, with 40 YEARS DATA RETENTION SINGLE ORGANIZATION by WORD (x16) WORD and ENTIRE MEMORY PROGRAMMING INSTRUCTIONS
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M93S66,
M93S56,
M93S46
M93Sx6
M93Sx6-W
M93Sx6-R
M93S46/S56/S66
M93S46
M93S56
M93S66
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CTX30203C04
Abstract: MUR1100 LT1C70 LT1070 MBR360 snubber
Text: uTECHNOLOGY n m . Application Note 39 February 1990 Parasitic Capacitance Effects in Step-Up Transformer Design Brian Huffman One of the most critical components in a step-up design like Figure 1 is the transformer. Transformers have para sitic components that can cause them to deviate from
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LT1070
LT1C70
CTX30203C04
MUR1100
MBR360
snubber
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