HSP45116 harris
Abstract: HSP45116 HSP45116-DB HSP45116GC-25 P7 MOTHERBOARD SERVICE MANUAL ibm xt MOTHERBOARD CIRCUIT diagram
Text: HSP45116-DB S E M I C O N D U C T O R USER’S MANUAL HSP45116 Daughter Board September 1994 Features Description • Designed for use with HSP-EVAL The HSP45116-DB is a daughter board designed to mate with the HSP-EVAL for rapid evaluation and prototyping of the HSP45116 Numerically Controlled Oscillator
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HSP45116-DB
HSP45116
HSP45116-DB
HSP45116
1-800-4-HARRIS
HSP45116 harris
HSP45116GC-25
P7 MOTHERBOARD SERVICE MANUAL
ibm xt MOTHERBOARD CIRCUIT diagram
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pal22v10
Abstract: am modulator modulator 26MHz HSP43168 HSP43220 HSP45116
Text: Harris Semiconductor No. TB314 Harris Digital Signal Processing January 1994 QUADRATURE DOWN CONVERSION WITH THE HSP45116, HSP43168 AND HSP43220 The Harris HSP45116 Numerically Controlled Oscillator/ Modulator NCOM can be combined with a low pass filter to
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TB314
HSP45116,
HSP43168
HSP43220
HSP45116
HSP43220
HSP43168
HSP50016
26MHz
pal22v10
am modulator
modulator 26MHz
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Untitled
Abstract: No abstract text available
Text: Harris Semiconductor No. TB315.1 Harris Digital Signal Processing April 1998 Processing Signals At Increased Sample Rates With Multiple HSP45116’s It is possible to generate signals with sample rates higher than the rated speed of the HSP45116 Numerically Controlled Oscillator/Modulator by using two parts. Each NCOM
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TB315
HSP45116
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HARRIS
Abstract: TB316 HSP45116 AD-01
Text: Harris Semiconductor No. TB316 Harris Digital Signal Processing January 1994 PIPELINE DELAY THROUGH THE HSP45116 The following timing diagrams show the pipeline delays through the HSP45116 NCOM from the time that data is applied to the inputs until the outputs are affected by the
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TB316
HSP45116
HSP45116
C0-15
RO0-19
IO0-19
HARRIS
TB316
AD-01
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HSP45116
Abstract: TB315
Text: Harris Semiconductor No. TB315 Harris Digital Signal Processing May 1993 PROCESSING SIGNALS AT INCREASED SAMPLE RATES WITH MULTIPLE HSP45116’S It is possible to generate signals with sample rates higher than the rated speed of the HSP45116 Numerically Controlled Oscillator/Modulator by using two parts. Each NCOM
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TB315
HSP45116
TB315
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A1013 equivalent
Abstract: HSP45116 harris HSP45116 HSP45116GC-15 HSP45116GC-25 HSP45116GC-33 HSP45116GI-15 HSP45116GI-25 HSP45116GI-33 HSP45116VC-15
Text: HSP45116 S E M I C O N D U C T O R Numerically Controlled Oscillator/Modulator May 1996 Features Description • NCO and CMAC on One Chip The Harris HSP45116 combines a high performance quadrature numerically controlled oscillator NCO and a high speed 16-bit Complex Multiplier/Accumulator (CMAC)
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HSP45116
HSP45116
16-bit
1-800-4-HARRIS
A1013 equivalent
HSP45116 harris
HSP45116GC-15
HSP45116GC-25
HSP45116GC-33
HSP45116GI-15
HSP45116GI-25
HSP45116GI-33
HSP45116VC-15
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A1013
Abstract: 302B HSP45116 IMIN018 G13-15 a15 harris c914
Text: Harris Semiconductor No. TB327 December 1994 Harris Digital Signal Processing USING THE HSP45116 AS A COMPLEX MULTIPLIER ACCUMULATOR Authors: John Fakatselis Introduction ond complex vector being input through the C0-15 port follows before it lines up with the first complex vector internal to the
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TB327
HSP45116
C0-15
C0-15)
16-Bit
1-800-4-HARRIS
A1013
302B
IMIN018
G13-15
a15 harris
c914
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sampling
Abstract: sec d 5702 HI5702 HSP43124 HSP43168 HSP43216 HSP43220 HSP45116 HSP50016
Text: Harris Semiconductor No. AN9509.1 Harris DSP and Data Acq April 1995 Digital IF Sub Sampling Using the HI5702, HSP45116 and HSP43220 Author: Carl Andren and John Fakatselis The carrier frequency ωc is typically much higher than the frequency of the actual baseband signal. The Nyquist criterion
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AN9509
HI5702,
HSP45116
HSP43220
45MHz
HSP43220
HSP43168,
HSP43124,
HSP43216
sampling
sec d 5702
HI5702
HSP43124
HSP43168
HSP50016
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AN9602
Abstract: 9602 timing 4-BIT BINARY TO THERMOMETER F 9602 PC ups PURE SINE WAVE schematic diagram C312 C313 DB10 HI5731 HSP45116
Text: Harris Semiconductor No. AN9602 Harris Data Acquisition February 1996 Using The HI5731 Evaluation Module Author: Juan C. Garcia Introduction thermometer decoder converts the incoming 4 bits to 15 control lines to enable the most significant current sources.
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AN9602
HI5731
100MHz
1-800-4-HARRIS
AN9602
9602 timing
4-BIT BINARY TO THERMOMETER
F 9602 PC
ups PURE SINE WAVE schematic diagram
C312
C313
DB10
HSP45116
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digital oscilloscope
Abstract: F 9530 N nyquist plot ups PURE SINE WAVE schematic diagram F 9530 floppy dds Frequency Generator 1MHz CON32 3FS SMA Numerically Controlled Oscillator
Text: Harris Semiconductor Harris Data Acquisition No. AN9530 October, 1995 Using The HI5780 Evaluation Module Author: Juan C. Garcia Introduction illustrates this point. The use of a decode stage for the upper six bits of the converter allows the HI5780 to achieve a lower
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AN9530
HI5780
30pV-s
10-bit
80MHz
HI5780
digital oscilloscope
F 9530 N
nyquist plot
ups PURE SINE WAVE schematic diagram
F 9530
floppy dds
Frequency Generator 1MHz
CON32
3FS SMA
Numerically Controlled Oscillator
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4 bit decoder
Abstract: 4-BIT BINARY TO THERMOMETER 3FS SMA 3 phase ups PURE SINE WAVE schematic diagram DB10 HI5741 HSP45116 digital thermometer schematic diagram rheostat speed control circuit Numerically Controlled Oscillator
Text: Harris Semiconductor No. AN9626 Harris Data Acquisition July 1996 Using The HI5741 Evaluation Module Author: Juan C. Garcia Introduction incoming 4 bits to 15 control lines to enable the most significant current sources. The HI5741 is a 14-bit 100MHz Digital to Analog Converter.
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AN9626
HI5741
14-bit
100MHz
1-800-4-HARRIS
4 bit decoder
4-BIT BINARY TO THERMOMETER
3FS SMA
3 phase ups PURE SINE WAVE schematic diagram
DB10
HSP45116
digital thermometer schematic diagram
rheostat speed control circuit
Numerically Controlled Oscillator
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4-BIT BINARY TO THERMOMETER
Abstract: ups PURE SINE WAVE schematic diagram digital thermometer schematic diagram rheostat speed control circuit 6683D Numerically Controlled Oscillator AN9410 HI5721 HSP45116 4-BIT BINARY TO THERMOMETER encoder
Text: Harris Semiconductor No. AN9410.1 Harris Data Acquisition May 1995 Using The HI5721 Evaluation Module Author: Stephen G. LaJeunesse Introduction mented or thermometer encoded current sources. The thermometer encoder converts the incoming 4 bits to 15 control
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AN9410
HI5721
10-bit
125MHz
1-800-4-HARRIS
4-BIT BINARY TO THERMOMETER
ups PURE SINE WAVE schematic diagram
digital thermometer schematic diagram
rheostat speed control circuit
6683D
Numerically Controlled Oscillator
HSP45116
4-BIT BINARY TO THERMOMETER encoder
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4-BIT BINARY TO THERMOMETER
Abstract: digital thermometer schematic diagram 4-BIT BINARY TO THERMOMETER encoder R2R network CMOS/Oscillators 4 bit encoder MC10H124P ups PURE SINE WAVE schematic diagram PE4117 HI20201
Text: Harris Semiconductor No. AN9406 Harris Data Acquisition May 1994 USING THE HI20201/03 EVALUATION KIT Author: Stephen G. LaJeunesse Introduction encoded current sources. The encoder converts the incoming 4 bits to 15 control lines to enable the most significant current
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AN9406
HI20201/03
HI20201
HI20203
10-bit
160MHz
1-800-4-HARRIS
4-BIT BINARY TO THERMOMETER
digital thermometer schematic diagram
4-BIT BINARY TO THERMOMETER encoder
R2R network
CMOS/Oscillators
4 bit encoder
MC10H124P
ups PURE SINE WAVE schematic diagram
PE4117
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OTO70
Abstract: CPGA
Text: Œ HSP45116 N um erically C ontrolled O scillator/M odulator May 1996 Features Description • NCO and CMAC on One Chip The Harris HSP45116 combines a high performance quadrature numerically controlled oscillator NCO and a high speed 16-bit Complex Multiplier/Accumulator (CMAC)
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15MHz,
33MHz
32-Bit
16-BH
16-Bit
008Hz
33MHz
-90dBc
HSP45116
HSP45116
OTO70
CPGA
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HSP45116A harris
Abstract: "multiplier accumulator" TB327 Numerically Controlled Oscillator
Text: semiconductor i Using the HSP45116/HSP45116A as a Complex Multiplier Accumulator T e ch n ica l B rie f J u ly 1998 TB327.1 Introduction The Harris HSP45116/HSP45116A Numerically Controlled Oscillator/Modulator can be also used as a high speed 16-Bit Multiplier/Accumulator CMAC . This technical brief
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HSP45116/HSP45116A
TB327
16-Bit
33MHz
HSP45116)
52MHz
HSP45116A)
HSP45116A harris
"multiplier accumulator"
Numerically Controlled Oscillator
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Untitled
Abstract: No abstract text available
Text: £0 m a « HSP45116/883 N um erically Controlled O scillator/M odulator Features Description • This Circuit Is Processed In Accordance to MIL-STD883 and Is Fully Conformant Under the Provisions of Paragraph 1.2.1. The Harris HSP45116/883 combines a high performance
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HSP45116/883
MIL-STD883
HSP45116/883
16-bit
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Untitled
Abstract: No abstract text available
Text: Quadrature Down Conversion With the HSP45116, HSP43168 and HSP43220 T e c h n ic a l B iie f The Harris HSP45116 Numerically Controlled Oscillator/Modulator NCOM can be combined with a low pass filter to perform down conversion on a digital signal. The NCOM rotates the spectrum ot a real or complex signal
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HSP45116,
HSP43168
HSP43220
HSP45116
HSP43220
1-800-4-HARR1S
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Untitled
Abstract: No abstract text available
Text: *23HARRIS HSP45116 Numerically Controlled Oscillator/Modulator February 1991 D escription Features • NCO and CMAC on One Chip • 15MHz, 25.6MHz, 33MHz Versions • 32-bit Frequency Control • 16-bit Phase Modulation • 16-bit CMAC • 0.008Hz Tuning Resolution at 33MHz
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HSP45116
15MHz,
33MHz
32-bit
16-bit
008Hz
33MHz
-90dB
HSP45116
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Untitled
Abstract: No abstract text available
Text: & H S P 4 5 1 1 6 Numerically Controlled Oscillator/Modulator February1994 Features Description • NCO and CMAC on One Chip The Harris HSP45116 combines a high performance quadrature numerically controlled oscillator NCO and a high speed 16-bit Complex Multiplier/Accumulator (CMAC)
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HSP45116
16-bit
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Untitled
Abstract: No abstract text available
Text: S M * « » H S P 4 5 1 16 Numerically Controlled Oscillator/Modulator May1996 Features Description • NCO and CMAC on One Chip The Harris HSP45116 combines a high performance quadrature numerically controlled oscillator NCO and a high speed 16-bit Complex Multiplier/Accumulator (CMAC)
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HSP45116
16-bit
5MT982.
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Untitled
Abstract: No abstract text available
Text: Digital IF Subsampling Using the HI5702, HSP45116 and HSP43220 A p p lic a tio n N o te Introduction This note is about the conversion of previously analog receiver designs into a digital form. It includes a technique for IF subsampling that can simplify the digital circuits com
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HI5702,
HSP45116
HSP43220
1-a00-4-HARRIS
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Untitled
Abstract: No abstract text available
Text: HSP43216 fH HARRIS S E M I C O N D U C T O R ADVANCE INFORMATION Halfband Filter August 1992 Features Description • Sample Rates to 75MHz The HSP43216 Halfband Filter addresses a wide variety of applications by combining quadrature up/down conversion circuitry with a fixed
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HSP43216
75MHz
HSP43216
0005dB
AINO-15
BINO-15
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Untitled
Abstract: No abstract text available
Text: HARRIS H S E M IC O N D U C T O R P 4 5 1 1 6 Numerically Controlled Oscillator/Modulator jUne 1994 Features • S Description NCO and CMAC on One Chip • 15MHz, 25.6MHz, 33MHz Versions • 32-Bit Frequency Control • 16-Bit Phase Modulation • 16-Bit CMAC
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15MHz,
33MHz
32-Bit
16-Bit
008Hz
33MHz
-90dBc
32-bits,
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Untitled
Abstract: No abstract text available
Text: H SP45116 Data Sheet May 1999 File Number Numerically Controlled Oscillator/Modulator • N C O and C M A C on O ne C hip T he H arris H S P 4 5 1 16 com b in es a high pe rfo rm an ce • 15M Hz, 25 .6M H z, 33 M H z Versions 2485.7 Features q u ad rature N u m e rica lly C o ntrolled O scilla to r N C O and a
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SP45116
16-bit
HSP45116
IINO-19
IOUTO-19
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