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Supplier: Integrated Device Technology
Description: The 813N2532 device uses IDT 's fourth generation FemtoClock® NG technology for optimal high clock frequency and low phase noise performance, combined with a low power consumption and high power supply noise rejection. The 813N2532 is a PLL based synchronous multiplier that is
- Bus Interface / Output Type: LVPECL, Other
- Features / Standards: Lead Free
- Operating Temperature: 0.0 to 70 C
- Output Frequency: 19.44 to 156 MHz
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Supplier: Integrated Device Technology
Description: The 813N2532I device uses IDT 's fourth generation FemtoClock® NG technology for optimal high clock frequency and low phase noise performance, combined with a low power consumption and high power supply noise rejection. The 813N2532I is a PLL based synchronous multiplier that is
- Bus Interface / Output Type: LVPECL, Other
- Features / Standards: Lead Free
- Operating Temperature: -40 to 85 C
- Output Frequency: 19.44 to 156 MHz
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Supplier: Integrated Device Technology
Description: The ICS670 -04 is a high speed, low phase noise, Zero Delay Buffer ( ZDB ) which integrates IDT ’s proprietary analog/digital Phase Locked Loop ( PLL ) techniques. It is identical to the ICS670 -02, but with an increased maximum output frequency of 210 MHz. There are two identical
- Device Type / Applications: Buffer
- IC Package Type: SOIC
- Pin Count: 16 #
- Supply Voltage: 3.3 V, 5 V
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Supplier: Integrated Device Technology
Description: The ICS670 -03 is a high speed, low phase noise, Zero Delay Buffer ( ZDB ) which integrates IDT ’s proprietary analog/digital Phase Locked Loop ( PLL ) techniques. It is identical to the ICS670 -01, but with an increased maximum output frequency of 210 MHz. Part of IDT ’s Clock
- Device Type / Applications: Buffer
- IC Package Type: SOIC
- Pin Count: 16 #
- Supply Voltage: 3.3 V, 5 V
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Supplier: Silicon Labs
Description: ' third-generation DSPLL® technology, which provides frequency synthesis and jitter attenuation in a highly integrated PLL solution that eliminates the need for external VCXO and loop filter components. The DSPLL loop bandwidth is digitally programmable, providing jitter performance
- Bus Interface / Output Type: CMOS, LVPECL, I2C, LVDS, SPI, Other
- Clock Skew: 100 ps
- Device Type: Real Time Clock
- Features / Standards: RoHS Compliant, Lead Free, Programmable
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Supplier: Microchip Technology, Inc.
Description: 25Hz bandwidth for jitter attenuation +/- 20ppm tracking range Digital hold on loss of all inputs Clock Multiplier APLL and Output Clocks Easy to configure, encapsulated design requires no external VCXO or loop filter components Two CML outputs
- Device Type: Clock Generator
- Package / Form Factor: Other
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Supplier: Radwell International
Description: ANALOG MULTIPLIER, 450V/US, 14 DIP; NO. OF MULTIPLIERS / DIVIDERS:1; NO. OF AMPLIFIERS:4 AMPLIFIER; SUPPLY VOLTAGE MIN:8V; SUPPLY VOLTAGE MAX:16.5V; SLEW RATE:450V/ S; DIGITAL IC CASE:DIP; NO. OF PINS:14PINS; PACKAGING:EACH ;ROHS COMPLIANT: YES. FREE 2 YEAR RADWELL
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Supplier: Win Source Electronics
Description: Manufacturer: Analog Devices Inc. Win Source Part Number: 1139349-AD9901KQ Packaging: Tube Type: Digital Phase/Frequency Discriminator Mounting Style: Through Hole Operating Temperature Range: 0°C ~ 70°C Package: 14-CDIP (0.300", 7.62mm) Frequency - Max: 200
- Bus Interface / Output Type: CMOS, ECL, TTL, Other
- Device Type: Clock Generator
- Operating Temperature: 0.0 to 70 C
- Output Frequency: 200 MHz
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Supplier: Microchip Technology, Inc.
Description: dsPIC33EPXXGS70X/80X is a SMPS & Digital Power Conversion Digital Signal Controller. These devices offer features supporting common, multi-loop digital switch-mode power supplies (SMPS) and other digital power-conversion applications such as: • AC to DC Converters
- IC Package Type: QFP, Other
- Operating Temperature: -40 to 125 C
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Supplier: Microchip Technology, Inc.
Description: dsPIC33EPXXGS70X/80X is a SMPS & Digital Power Conversion Digital Signal Controller. These devices offer features supporting common, multi-loop digital switch-mode power supplies (SMPS) and other digital power-conversion applications such as: • AC to DC Converters
- IC Package Type: QFP, Other
- Operating Temperature: -40 to 125 C
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Supplier: Microchip Technology, Inc.
Description: dsPIC33EPXXGS70X/80X is a SMPS & Digital Power Conversion Digital Signal Controller. These devices offer features supporting common, multi-loop digital switch-mode power supplies (SMPS) and other digital power-conversion applications such as: • AC to DC Converters
- IC Package Type: QFP, Other
- Operating Temperature: -40 to 125 C
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Supplier: Cirrus Logic, Inc.
Description: A clock circuit IC, the CS2100 featuring both a clock generator and clock multiplier/jitter reduced clock frequency synthesizer (clean up), Cirrus Logic’s CS2x00 family is a strong entrant into the clock IC market. Based on an innovative hybrid analog-to-digital
- Bus Interface / Output Type: I2C, SPI
- Device Type: Clock Generator
- Output Frequency: 6 to 75 MHz
- Package / Form Factor: Other
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Supplier: Renesas Electronics Corporation
Description: . ISL78226 regulates both voltage and current to control power transfer from bus to bus. The multiphase architecture uses interleaved timing to support up to six parallel power stages per ISL78226. By interleaving the power stages, the ripple frequency is multiplied, reducing input and
- IC Package Type: Other
- Input Voltage (VIN): 6 to 64 volts
- Output Voltage (Volt): Up to 65 volts
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Description: . For example, we use the 4-quadrant multiplier IC AD633 as a modulator and import real speech as the modulating source and look at the trapezoidal method for measuring the modulation index. Modulation is the process of relocating signals to different parts of the radio
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Supplier: TRINAMIC Motion Control GmbH & Co. KG.
Description: The TMC260 is the first energy efficient high precision microstepping driver IC for bipolar stepper motors with integrated power MOSFETs. The unique high resolution sensorless load detection stallGuard2™ is used to for the world’s first integrated load dependent current control
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chip. This integration allows ICs to perform complex tasks efficiently while taking up minimal space. You can think of an IC as the "brain" behind the functionality of modern devices. It processes data, manages power, and controls various operations. For example, the IC in your smartphone (read more)
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resonators passed IC match tests and conform to AEC-Q200. Interquip SMCE-2016 crystals are ideal for Digital Car Key, UWB, NFC, and other automotive applications. Specifications: (read more)
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Microchip's next-generation 1200V Silicon Carbide IC (SiC) diodes and 700V SiC MOSFETs with high avalanche/repetitive Unclamped Inductive Switching (UIS) 3-phase 380/400V RMS input voltage, 50 Hz or 60 Hz 140 kHz switching frequency 700V DC output voltage (read more)
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A high-speed LSI GaAs 8/spl times/8 bit parallel multiplier
The application of GaAs IC ’Sto high- speed circuit requirements ( digital multipliers , frequency syn- thesizers, A/D and D/A conversion, .
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A 2.5-ns, 40-mW, 4/spl times/4 GaAs multiplier in two's complement mode
He is now involved in very-high- speed digital GaAs IC ’S and more particularly on the process of static RAM memories, frequency dividers, and multipliers .
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Improvement in power quality and a simple method of subharmonic suppression for a cycloconverter-fed synchronous motor drive
The clock frequency is derived from the input signal frequenciesfi and fo by clock generation circuit (CGC) employing digital phase locked loop (PLL) ICs , counters and analogue multipliers as discussed in the next Subsection.
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A 1.9-GHz-band GaAs direct-quadrature modulator IC with a phase shifter
For such a severe requirement, some modulator IC 's using a 1/4 frequency divider [Ill, Gilbert multipliers with a phase shifter [ 121, [131,a quadrature combiner instead of a phase shifter [lo], and a fully digital circuit fabricated by CMOS process techniques…
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European conference on circuit theory and design 2007
…regulators; ADC; switching noise estimation; mixed-signal IC; flexible RF front-ends; coding; filters; IC interfaces; distortion analysis; nonlinear … biomedical signal processing; cryptography; multiplier circuits; design optimization algorithms; frequency synthesis circuits; power topologies … numbers; interconnections; delay models; digital circuit design; circuit theory…
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GaAS Digital ICs for High-Speed Signal Processing
BASIC ICs FOR HIGH-SPEED DSP SYSTEMS IMPLEMENTATION Before proceeding to the state-of-the-art of GaAs digital ICs , we give here some … previously, these functions include : frequency dividers and prescalers, S/H … and ROMs),binary adders, multipliers , accumulators, ALUs, etc...
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Index to Subjects
…Generation of lMicrowave Power by: Aug 1334 Cerenkov, in a Dielecti- ic Ttibe Waveguide: Jun 1084 … Aspects: Feb 427 Radiometem-, Digital : Jun 1099 Radiometer, Low … Ttibe as a Parametric Frequency Divider and Amplifier: Mar 624 Variable, Frequency Multiplier : May 965 Time-Varying…
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Dynamic Reconfigurable Architectures and Transparent Optimization Techniques
…for Mobile Communications HDL Hardware Description Language I/O Input-Output IC Integrated Circuit IDCT Inverse … Load Value Prediction MAC multiplier -accumulator MAC Multiply Accumulate … Merged Instructions OFDM Orthogonal frequency -division multiplexing OPI Operation … Code Modulation PDA Personal Digital Assistant PE Processing Element .
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Digital Electronics: Principles Devices and Applications Complete Document
…half subtractor 236, 240–2 look ahead carry generator 254–7, 258, 259 magnitude comparator 261–4 multipliers 260–1 Arithmetic instructions 531 … Astable multivibrator using timer IC 555 364–7, 368 Asynchronous … analogue oscilloscope 673 Bandwidth- digital storage oscilloscope 674–5 Bandwidth- frequency counter 682 Basic logic…
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1978 Index IEEE Transactions on Consumer Electronics Vol. CE-24
…n3 Aug 78 500-505 (4E02) TV displays; flat-panel displays using feedback multipliers ; Keneman, Scott A.; T … 1) CMOSFET integrated circuits, digital PLL for TV tuning system frequency synthesizer; Rzeszewski4 Ted; T … interface chip using MOS IC ; Bhatnager, Ravinder K; T…
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