PIC16C70
Abstract: PIC16C71 PIC16C71A PIC16C72 PIC16C73 PIC16C7X PIC16CXX PIC16 example sleep PIC16 example c code GIE CAPACITORS
Text: MASTERING THE PIC16C7X A/D CONVERTER By: Jim Simons The analog to digital converter A/D is the primary tool that allows analog signals to be quantized into the world of digital electronics. Once the signal is digitally represented, it can be stored, analyzed and manipulated by a variety of
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PIC16C7X
PIC16CXX
FACT002-page
PIC16C70
PIC16C71
PIC16C71A
PIC16C72
PIC16C73
PIC16 example sleep
PIC16 example c code
GIE CAPACITORS
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deinterlace
Abstract: VX1521 bt.656 to RGB Deinterlacer deinterlace bt656 lcd tv controller input ypbpr 24bit rgb output ITU-R RGB TO YPBPR VXIS Technology
Text: VX1521 Preliminary Product Brief Video Deinterlacer with DAC DESCRIPTION VX1521 is a highly integrated high quality intra-field The build-in picture enhance- solution for progressive video progressive-scan video with ment unit let users manipulate all displays nowadays. It accepts
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VX1521
VX1521
deinterlace
bt.656 to RGB
Deinterlacer
deinterlace bt656
lcd tv controller
input ypbpr 24bit rgb output
ITU-R
RGB TO YPBPR
VXIS Technology
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median Filter
Abstract: adsp-210XX FIR FILTER implementation in c language ADSP filter algorithm implementation c code for convolution convolution of two matrices diode r4 implementation of data convolution algorithms ADSP-21000 convolution implementation in c language
Text: Image Processing 9 Graphics and imaging are two-dimensional applications. Just as in the one-dimensional case, it is often desirable to manipulate the data through filtering. This chapter describes the implementation of two-dimensional filtering using 3 x 3 kernals, as well as median filtering. Histogram
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GLASSNER90]
GONZALEZ87]
JAIN89]
median Filter
adsp-210XX
FIR FILTER implementation in c language
ADSP filter algorithm implementation
c code for convolution
convolution of two matrices
diode r4
implementation of data convolution algorithms
ADSP-21000
convolution implementation in c language
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PLM51
Abstract: F800H SAB-C502 2a8h
Text: Memory Organization 3 Memory Organization The SAB-C502 CPU manipulates operands in the following four address spaces: – – – – up to 64 Kbyte of external program memory up to 64 Kbyte of external data memory 256 bytes of internal data memory a 256 x 8 area which is accessed like external RAM MOVX-instructions , called XRAM
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SAB-C502
SAB-C502.
SAB-C502-2R
SAB-C502-L
PLM51
F800H
2a8h
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BL p0d
Abstract: IC806 l51ii block diagram for EIO SLOT for Data Storage D17108 ekp 71 upd17108
Text: DATA SHEET MOS INTEGRATED CIRCUIT µPD17108 4 BIT SINGLE-CHIP MICROCONTROLLER The µPD17108, tiny microcontroller, consists of 1K-byte 512 x 16 bits ROM, 16 × 4 bit RAM, and 16 input/ output ports. The 17K architecture of the CPU uses general registers so that data memory can be manipulated directly
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PD17108
PD17108,
BL p0d
IC806
l51ii
block diagram for EIO SLOT for Data Storage
D17108
ekp 71
upd17108
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AF-9706
Abstract: ANDO AF-9703 AF 9704 D17107 ske 1/02 OSC02 skf control board
Text: DATA SHEET MOS INTEGRATED CIRCUIT µPD17107 A1 4 BIT SINGLE-CHIP MICROCONTROLLER The µPD17107(A1) is a tiny microcontroller consisting of 1K-byte (512 x 16 bits) ROM, 16 × 4 bit RAM, and 11 input/output ports. The 17K architecture, which uses general registers to directly manipulate data memory, is employed for effective
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PD17107
AF-9706
ANDO AF-9703
AF 9704
D17107
ske 1/02
OSC02
skf control board
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MEMS blood pressure sensor
Abstract: "Blood Pressure Sensor" MEMS pressure sensor silicon mems microphone capacitor mems gas sensor mems microphone mems amkor microphone MEMS Filter MEMS optical tunable filters
Text: solution microelectromechanical systems technology MEMS Technology Microelectromechanical systems MEMS are micron-size devices that can sense or manipulate the physical world. MEMS are created using micro machining processes, similar to those used to produce integrated
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ISO-9002,
ISO-9001,
QS-9000
ISO-9001
TS-16949,
MEMS blood pressure sensor
"Blood Pressure Sensor"
MEMS pressure sensor
silicon mems microphone
capacitor mems gas sensor
mems microphone
mems
amkor microphone
MEMS Filter
MEMS optical tunable filters
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DAC 371-8
Abstract: 100AH 100BH 100CH 10A8 10C8 10E8 DS26524 DS26528 32x-clks
Text: Maxim > App Notes > TELECOM Keywords: T1, E1, template Dec 22, 2005 APPLICATION NOTE 3718 DS26528 and DS26524 Transmit Pulse Control Abstract: With the addition of network protection components and/or the need to route signals through connectors and other PC board requirements, sometimes it is necessary to manipulate the transmit waveform.
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DS26528
DS26524
com/an3718
DS26524:
DS26528:
AN3718,
DAC 371-8
100AH
100BH
100CH
10A8
10C8
10E8
32x-clks
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PowerVR
Abstract: PowerVR stencil kyro PowerVR tile 1600x1200 kyro 2 memory bandwidth
Text: Tile Based Rendering - the future of 3D graphics 1 Tile Based Rendering ADCS 7180804 TILE BASED RENDERING - THE FUTURE OF 3D GRAPHICS THE BACKGROUND TO 3D GRAPHICS 3D graphics refer to the systems used to create and manipulate a modeled "world" or scene on a
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TMS320
Abstract: TMS320C30 C30EVM
Text: Number 30 TMS320 DSP DESIGNER’S NOTEBOOK Addressing Peripherals as Data Structures in C Contributed by Nat Seshan and Mark Utter Design Problem Solution How can I manipulate a DSP’s device peripheral-specific registers in C? A data structure is usually assigned to .bss by the C compiler. A peripheral such as a
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TMS320
TMS320C30
C30EVM
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REA-17
Abstract: No abstract text available
Text: MITSUMI 24 Keys Infrared Remote Control Unit REA-22 STD-22 Remote Control Unit OUTLINE This unit has been developed by refining Model REA-17 having max. 24 setting keys. It is characterized with switches being functionally arranged in a limited space, an easyto-manipulate body profile, and easy operation.
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REA-22
STD-22)
REA-17
24keys.
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MCP300X
Abstract: 200B AN753 MCP320X TC340X TC7109 zero voltage transition single ended forward converter
Text: M AN753 Digital Coding Schemes for Mixed Signal Communication Author: Bonnie C. Baker Microchip Technology Inc. OVERVIEW An Analog-to-Digital A/D converter translates an analog input signal into a discrete digital code. This digital representation of the “real world” signal can be manipulated in the digital domain for the purposes of information processing, computing, data transmission or
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AN753
D-81739
D-82152
DS00753A-page
MCP300X
200B
AN753
MCP320X
TC340X
TC7109
zero voltage transition single ended forward converter
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101266C
Abstract: tunable crystal oscillator crystal 20 MHZ Frequency Control Products multi-band radio frequency C1443 SKY72300 SKY72301 SKY72302 1.8 GHz VCO
Text: APPLICATION NOTE Fine Frequency Control Using the SKY72300, SKY72301, and SKY72302 Dual Synthesizers/PLLs Many techniques currently exist for synthesizer frequency output control. These techniques, from simple to complex, manipulate the crystal oscillator to maintain a specific output frequency. All of
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SKY72300,
SKY72301,
SKY72302
101266C
101266C
tunable crystal oscillator
crystal 20 MHZ
Frequency Control Products
multi-band radio frequency
C1443
SKY72300
SKY72301
1.8 GHz VCO
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QFN-32 footprint
Abstract: HCS08 SPI code example C spi HCS08 c code example zigbee mpx pressure sensor HCS08 c code example PIN DIAGRAM OF ZIGBEE transceivers circuit diagram for simple RF transmitter zigbee traNsmitter receiver circuit application note freescale accelerometer mma* acceler
Text: Extreme Connectivity MC13191 RF Transceiver Overview the need to directly manipulate register Freescale Semiconductor’s MC13191 RF settings internal to the device. Simple transceiver provides a cost-effective solution commands initiate transmit, receiver and idle
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MC13191
MC13191
HCS08
BRMC131919293
MC13191RM
QFN-32 footprint
HCS08 SPI code example C spi
HCS08 c code example zigbee
mpx pressure sensor
HCS08 c code example
PIN DIAGRAM OF ZIGBEE transceivers
circuit diagram for simple RF transmitter
zigbee traNsmitter receiver circuit
application note freescale accelerometer
mma* acceler
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8086 Programmers Reference Manual
Abstract: bytes and string manipulation of 8086 memory organization of intel 8086 intel 8086 internal structure 8086 intel Programmers Reference Manual intel 8086 internal architecture register organization of intel 8086 intel 8086 memory segmentation 8086 interrupts application special pentium registers
Text: Basic Execution Environment 27 This chapter describes the basic execution environment of an Intel Architecture processor as seen by assembly-language programmers. It describes how the processor executes instructions and how it stores and manipulates data. The parts of the execution environment described here include
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USBN9602
Abstract: No abstract text available
Text: USBN9602 Firmware Description By Jim Lyle, National Semiconductor This white paper shows a number of C procedures and code fragments which illustrate how to manipulate and use the USBN9602 Universal Serial Bus Function Controller. These examples are extracted
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USBN9602
USBN9602
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waveshaper 1000e
Abstract: finisar lcos 1000E LCOS 32-nm
Text: PRODUCT BRIEF WaveShaper 1000E Programmable Optical Filter FEATURES OVERVIEW Based on High Resolution Liquid The WaveShaperTM 1000E Programmable Optical Filter is a new type of programmable optical filter which can be dynamically reconfigured to manipulate both the amplitude and phase of light over
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1000E
1000E
1000E.
10500002RevB
waveshaper 1000e
finisar lcos
LCOS
32-nm
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tic 2250
Abstract: 74AS887 1/triac tic 2250 S-8871 74AS887-1 rJ17
Text: 1 SN54AS887, SN74AS887 8 BIT PROCESSORS i • STL-AS Technology • Parallel 8 -Bit ALU w ith Expansion Inputs and Outputs • 13 Arithm etic and Logic Functions • 8 • 4 Instructions th at Manipulate Bits • Add and Subtract Immediate Instructions •
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SN54AS887,
SN74AS887
74AS887-1
tic 2250
74AS887
1/triac tic 2250
S-8871
rJ17
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Untitled
Abstract: No abstract text available
Text: 2mm Interconnect TEMPUS CBC 20 Introduction With the growth of system circuit size combined with the requirement to manipulate larger amounts of data at greater speeds, bus systems and their interconnect components are being pushed to their limits by the latest microprocessors. The
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DIN41612
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CBC 640
Abstract: cannon plug standard
Text: TEMPUS C B C 20 2mm Interconnect Introduction With the growth of system circuit size combined with the requirement to manipulate larger amounts of data at greater speeds, bus systems and their interconnect components are being pushed to their limits by the latest microprocessors. The
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E8572
LR85691
CBC 640
cannon plug standard
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d17103
Abstract: D17107 8060c 9704 dip 300 mil 1r30 IC806
Text: DATA SHEET MOS INTEGRATED CIRCUIT ¿iPD17107, 17107 A 4 B IT S IN G L E - C H IP M IC R O C O N T R O L L E R The /iPD 17107, tiny microcontroller, consists of 1K-byte (5 1 2 x 1 6 bits) ROM, 1 6 x 4 bit RAM , and 11 input/ output ports. The 17K architecture of the CPU uses general registers so that data memory can be manipulated directly
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uPD17107
d17103
D17107
8060c
9704 dip 300 mil
1r30
IC806
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Untitled
Abstract: No abstract text available
Text: Execution Environment 3 CHAPTER 3 EXECUTION ENVIRONMENT This chapter describes how the i960 MC processor stores and executes instructions and how it stores and manipulates data. The parts of the execution environment that are discussed include the address space, the register model, the instruction pointer and the arithmetic
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Untitled
Abstract: No abstract text available
Text: DATA SHEET MOS INTEGRATED CIRCUIT ¿¿PD 1 7 0 1 6 , 1 7 0 1 7 4-BIT SINGLE-CHIP MICROCONTROLLERS WITH DIGITAL TUNING SYSTEM HARDWARE The ¿¡PD17016 and 17017 are 4-bit single-chip CMOS microcontrollers equipped with hardware for digital tuning systems. The CPU employs the 17K architecture and can directly manipulate the data memory, execute various operations,
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PD17016
16-bit
uPD17016
PC-9800
AS17K)
00ANo
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ic9162
Abstract: M5030
Text: DATA SHEET MOS INTEGRATED CIRCUIT uPD17103 A1 4 BIT SINGLE-CHIP MICROCONTROLLER The /¿PD17103{A1) is a tiny m icrocontroller consisting of 1K-byte (512 x 16 bits) ROM, 1 6 x 4 bit RAM, and 11 input/output ports. The 17K architecture, which uses general registers to directly manipulate data m em ory, is employed fo r
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PD17103
ic9162
M5030
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