Untitled
Abstract: No abstract text available
Text: USB Power Sensor PWR-6G+ Typical Performance Curves UNCERTAINTY OF POWER MEASUREMENT @ 25˚C VSWR 0.5 1.40 -30 dBm @ 0°C 1.35 0.4 0 dBm @ +25°C 1.30 0.3 +10 dBm 0.2 +20 dBm @ +50°C Uncertainty dB 1.20 1.15 1.10 0.1 0.0 -0.1 1.05 -0.2 1.00 -0.3 0.95 -0.4
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Abstract: No abstract text available
Text: APPLICATION NOTE AN-00140 The FCC Road: Part 15 From Concept To Approval WIRELESS MADE SIMPLE INTRODUCTION Many manufacturers have avoided the incorporation of RF into their products because of uncertainty over the approval and certification process. With the advent of simple and inexpensive
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AN-00140
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200B
Abstract: AN588 NC38 PIC16C5X PIC17CXXX RG41 disc Piezoelectric crystal
Text: AN588 PICmicro Microcontroller Oscillator Design Guide Design Challenges Author: Kim Peck Consultant Designing a clock oscillator without some knowledge of the fundamental principals of acoustic resonators is possible but fraught with the uncertainty of "cut and try"
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AN588
200B
AN588
NC38
PIC16C5X
PIC17CXXX
RG41
disc Piezoelectric crystal
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Untitled
Abstract: No abstract text available
Text: T- Calibration- Adaptors Test Devices T- Calibration- Adaptors T- Kalibrier- Adapter T- Calibration- Adaptors 7- 16 Open - Short - Load xOrdering Number Version Remarks Return Loss x60 S 34R- MSO N3 T- Adaptor 7- 16 male- male- male Resulting phase uncertainty:
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hand calculator
Abstract: calculator on chip uncertainty HC210 HC220 HC230 HC240
Text: HardCopy II Clock Uncertainty Calculator User Guide 101 Innovation Drive San Jose, CA 95134 www.altera.com Software Version: Document Version: Document Date: 7.1 1.0 August 2007 Copyright 2007 Altera Corporation. All rights reserved. Altera, The Programmable Solutions Company, the stylized Altera logo, specific device designations, and all other words and logos that are identified as trademarks and/or service marks are, unless noted otherwise, the trademarks and
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PLL10
hand calculator
calculator on chip
uncertainty
HC210
HC220
HC230
HC240
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digital multimeter diagram
Abstract: block diagram of multimeter N9020A USB/GPIB interface 82357B N9020A-PFR 8163B N9020A-526 N4371A-302 n437 agilent* N4371A
Text: Agilent N4371A RIN Measurement System ▲ Accurate, high-speed and easy measurements of RIN frequency characteristics ▲ Reduced uncertainty by using Agilent original characterization technique ▲ High-speed measurement 5 seconds or less for 20 GHz span, 2000 points 10X average
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N4371A
5989-7300EN
digital multimeter diagram
block diagram of multimeter
N9020A
USB/GPIB interface 82357B
N9020A-PFR
8163B
N9020A-526
N4371A-302
n437
agilent* N4371A
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tda 1870
Abstract: TDA 2010 E8364B 85052B Agilent Technologies Network Analyzers CSA8200 CSA8000 W. L. Gore 38INCH
Text: FEATURE ARTICLE PAGE 1 • JULY 2010 www.mpdigest.com A Comparison of Measurement Uncertainty in Vector Network Analyzers and Time Domain Reflectometers by Paul Pino, Application Engineer, W. L. Gore & Associates Abstract: Measurement uncertainty has a direct impact on the reliability of test instruments. To
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ta 8659 n
Abstract: smhu TA 8659 ta 8659 an ULN 2006 types of trees in data structure AD9246 74LS00 clock frequency ROHDE SCHWARZ SMHU 74ACT00
Text: AN-501 APPLICATION NOTE One Technology Way • P.O. Box 9106 • Norwood, MA 02062-9106, U.S.A. • Tel: 781.329.4700 • Fax: 781.461.3113 • www.analog.com Aperture Uncertainty and ADC System Performance by Brad Brannon and Allen Barlow APERTURE UNCERTAINTY
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AN-501
ADF4106
AD6633
AD9786
190MHz
16MHz
52MHz
768MHz
AD9510
ta 8659 n
smhu
TA 8659
ta 8659 an
ULN 2006
types of trees in data structure
AD9246
74LS00 clock frequency
ROHDE SCHWARZ SMHU
74ACT00
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LT 7520
Abstract: D 7520 C
Text: Am55/7520 Am55/7521 Dual Sense Amplifiers Distinctive Characteristics ±7mV threshold on Am55/7521 Narrow region of threshold voltage uncertainty 100% reliability assurance testing in compliance with Ml L-STD 883 Standard logic supply voltages High speed and fast recovery
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Am55/7520
Am55/7521
LT 7520
D 7520 C
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MOD-1005
Abstract: 249-S
Text: A N A LO G D E V IC E S 10-Bit Video Analog to Digital Converter FEATURES 10 Bits @ 5 M H z Word Rate One-27 Sq. In. PC Board Built-In Track-and-Hold — 25ps Aperture Uncertainty 20MH:i: Analog Input Bandwidth T T L Compatible Low 10-Watt Power Dissipation
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10-Bit
One-27
20MHi:
MOD-1005
eff11
249-S
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ADC1130
Abstract: ADC1131 HI508A HTS-0010 SHA1144 analog devices "902-2"
Text: Very High Speed ADSHM-5 2nd Source-Replaces All SHM-5 Series Fast 350ns Acquisition Time to ±0.01% Aperture Uncertainty 250ps ADSHM-5K Ultra Fast 250ns Acquisition Time to ±0.01% 100ns Acquisition Time to ±0.1% Wide 12MHz Bandwidth 300V|is Slew Rate Super Low 2nA Input Bias Current
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350ns
250ps
250ns
100ns
12MHz
HTS-0010
14-Bit
SHA1144
SHAU44
SHA1144.
ADC1130
ADC1131
HI508A
HTS-0010
SHA1144
analog devices "902-2"
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S234
Abstract: "amplifier with complementary" 75S24 55S20DM 75S20DC fairchild dtl core memory sense amplifiers
Text: 55/75S20 • 55/75S24 • 55/75S234 DUAL SCHOTTKY CORE MEMORY SENSE AMPLIFIERS F A IR C H IL D LIN EAR IN T E G R A T E D C IR C U IT S GENERAL DESCRIPTION — The 55/75S20 series of Schottky sense amplifiers are designed for use with high-speed core memory systems, where a guaranteed narrow threshold uncertainty of ± 2 .5 mV is guaran
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55/75S20
55/75S24
55/75S234
55/75S20
75S20
75S24
55/75S234
S234
"amplifier with complementary"
55S20DM
75S20DC
fairchild dtl
core memory sense amplifiers
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lambda alpha
Abstract: ca400 dc Electronic Load module overcurrent inverter protection CSA22 IEC1000 LAMBDA alpha 400 240 12V dc power supply
Text: Alpha Series Ltnv C05+É modular power solution Power Factor & Harmonic Correction When relying on customized power supplies, many Input Transient Protection NRE costs, long time to market and design Wide Range Output Modules uncertainty. Lambda’s Alpha Series addresses these
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12/12V
24/24V
lambda alpha
ca400
dc Electronic Load module
overcurrent inverter protection
CSA22
IEC1000
LAMBDA alpha 400
240 12V dc power supply
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Untitled
Abstract: No abstract text available
Text: 6. SIGNAL zu m ce ULTRA HIGH SPEE 16-BIT ACCURATE, TRACK & HOID AMPUFI 5 FEATURES • 350 nsec Acquisition Time to .005% for 20V step 250 r sec Acquisition Time to .005% for 10V step ■ -94 dB Feedthrough Rejection Ratio 20V step) ■ Low Aperture Uncertainty of 75 psec rms
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16-BIT
SP9760
SP9760R/90/5M
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diagram radar circuit
Abstract: MOD-1020 MOD-1005 MOD-1205 M0D-1020 Ground Radar diagram 4120E MOD1020
Text: MOD-1005 Page 10 Bits @ 5MHz Word Rate One-27 Sq. In. PC Board Built-In Track-and-Hold - 25ps Aperture Uncertainty 20MHz Analog Input Bandwidth TTL Compatible Low 10-Watt Power Dissipation Signal-to-Noise Ratio Greater Than 58dB Noise Power Ratio Greater Than 49dB
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MOD-1005
One-27
20MHz
10-Watt)
MOD-1020
One-35
15MHz
MOD-1020-
10-bit
diagram radar circuit
MOD-1020
MOD-1005
MOD-1205
M0D-1020
Ground Radar diagram
4120E
MOD1020
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Untitled
Abstract: No abstract text available
Text: y k iy ix iy k i » 5 0 0 M s p s , 8- Bi t A D C w i t h T r a c k / H o l d The innovative d e sig n o f the internal T/H ensures an exceptionally wide 1.2GHz input bandw idth and a p e r ture d e la y uncertainty of less than 2ps, resulting in a high 7.0 effective bits at the Nyquist frequency. Special
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AX101A
84-PIN
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Untitled
Abstract: No abstract text available
Text: B ’D A T E L s h m -43 High-Speed, ±0.01% Hybrid Sample-Hold Amplifiers IN N O V A T IO N a n d E X C E L L E N C E FEATURES • • • • • • • 35ns maximum acquisition time to ±0.01% 30ns maximum hold-mode settling to ±0.01% 1ps aperture uncertainty
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150MHz
545mW
14-pin
SHM-43
2b515bl
0003SÃ
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pin24
Abstract: No abstract text available
Text: SHM-4860 9 Industry-Standard, High-Speed ±0.01% Sample-Hold Amplifiers E 3 A T E FEATURES • • • • • • 200ns Maximum acquisition time ±0.01% Accuracy 100ns Maximum sample-hold settling time 74dB Feedthrough attenuation ±50ps Aperture uncertainty
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SHM-4860
200ns
100ns
SHM-4860
24-PIN
SHM-4860MC
SHM-4860MM
pin24
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max4963
Abstract: No abstract text available
Text: B d A T E L S H M -4 3 High-Speed, ±0.01% Hybrid Sampie-Hold Amplifiers IN N O V A T IO N a n d E X C E L L E N C E FEATURES • • • • • • • 35ns maximum acquisition time to ±0.01% 30ns maximum hold-mode settling to ±0.01% 1ps aperture uncertainty
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150MHz
545mW
14-pin
SHM-43
SHM43
max4963
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Untitled
Abstract: No abstract text available
Text: SHM-20 □k^HEL High-Speed, 0.01% Monolithic Sample-hold FEATURES • • • • • • Internal hold capacitor 1 Microsecond acquisition time 1 Nanosecond aperture uncertainty 0.01% Accuracy 0.08 MlcroV/microsecond droop rate Differential inputs GENERAL DESCRIPTION
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SHM-20
SHM-20
-65to
14-pin,
02048-1194ATEL
339-3000/TLX
174388/FAX
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EL508
Abstract: SHM7MC
Text: SHM-7 □ k ^ÏÏE L Video Speed Sample-hold FEATU RES • • • • • 40 Nanoseconds acquisition time Dual outputs 10 Picoseconds aperture uncertainty 40 MHz Bandwidth 30 mA Output current G EN E R A L DESC RIPTIO N D ATEL’s SHM-7 is an ultra-fast sample and hold designed
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02048-1194AT
339-3000ATLX
174388/FAX
EL508
SHM7MC
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SHM-UH3
Abstract: SHM-UH SHM Series sample hold nanosecond TL-X1 ltkt
Text: DATEL INC 07E D • ELSlSbl OGOOTfcjQ □ ■ SHM-UH Séries Ultra-High Speed Sample-Holds FEATURES • • • • • T - 7 .1 - 6 5 10 MHz sampling rate 30 Nanoseconds acquisition time 30 Picoseconds aperture uncertainty Diode bridge switch 45 MHz bandwidth
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10-bit
02048-1194/TEL
339-3000/TLX174388/FAX
SHM-UH3
SHM-UH
SHM Series
sample hold nanosecond
TL-X1
ltkt
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SHM-43MC
Abstract: SHM-43MM shm capacitor
Text: SHM-43 n m n High Speed, 0.01% Hybrid Sample/Hold FEATURES 35 nSec maximum acquisition time to 0.01% 30 nS max. hold mode settling to 0.01% 1 pSec aperture uncertainty 75 MHz small-signat bandwidth 520 mW maximum power dissipation Small 14-pin DIP package
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SHM-43
14-pin
SHM-43
100SJ
SHM-43MC
SHM-43MM
shm capacitor
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SHM-20C
Abstract: SHM-20
Text: 5 D A T E SHM-20 L High-Speed, ±0.01% Monolithic Sample-Hold INNOVATION and EXCELLENCE FEATURES • • • • • • Internal hold capacitor 1|j s Acquisition time to ±0.01 % 0.3ns Aperture uncertainty 3 x 105 DC gain ±0.08pV/|js droop rate Differential inputs
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SHM-20
SHM-20
10OpF
SHM-20C
0GG3S714
SHM-20C
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