Agilent 16753A Data Sheet

Agilent Technologies 16700B and 16702B Logic Analysis Systems
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Agilent Technologies’ 16700 Series logic analysis systems help design teams overcome time-to-market obstacles and meet tough engineering challenges—from basic circuit board turn-on to validating signal integrity.
With their wide variety of measurement capabilities, the 16700B and 16702B high­performance modular systems enable you to rapidly consolidate data into meaningful insight while giving you the most complete view of your system’s behavior. And since accurate acquisition starts with probing, we also offer reliable, unobtrusive probes that make it easy to connect your Agilent logic analyzer to your system under test.
As the innovator of logic analysis, Agilent (formerly Hewlett-Packard) continues to provide leading-edge solutions that evolve with your changing needs. The modular form factor of the 16700 Series is the key to their long-term value. You purchase only the capability you need now, then expand as your needs evolve.
Configuring these modular systems is as easy as 1, 2, 3. Select your choice of products that will (1) Connect, (2) Acquire, and (3) View/Analyze the data from your system under test. For example, you can choose the timing/state logic analyzer modules, oscilloscope and pattern generator modules and data post-processing and protocol tools that meet your specific needs.
From basic board turn-on to signal integrity validation
Introduction
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Figure 1. The 16700B and 16702B high-performance modular systems enable you to rapidly consolidate data into meaningful insight.
Figure 2. The Agilent Technologies’ 16700 Series logic analysis systems help design teams meet tough engineering challenges—from basic circuit board turn-on to validating signal integrity.
connect
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2
3
acquire
view & analyze
3
connect
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2
3
acquire
view & analyze
The power and flexibility to provide the most complete view of system behavior
Modular Systems
Agilent Modular 16700 Series Logic Analysis System Mainframes
Agilent Technologies’ modular logic analysis systems provide the ultimate power and flexibility to match your digital system debug needs. Configure a logic analysis system that provides a complete view of your system’s
behavior. Select the measure­ment modules, probing and analysis options suited for your specific application that results in efficient debug and validation.
• Configure a basic or multi-frame system suited to your needs
• Protect your investment with a system that adapts to multiple, current and future projects
• View cross-domain measurements, correlated in time
• Easily master powerful logic analysis capabilities with the 16702B’s touch-screen interface
Model No.
Interface Control
Measurement capability
Timing and state analysis, pattern generation, oscilloscope
16700B and 16702B Options
Option 001 – Add 17-inch 1280 x 1024 monitor Option 003 – 256 MB system RAM, 4 MB video RAM Option 008 – 18 GB external data drive Option 009 – external removable hard drive Option 012 – multiframe module
16702B Modular System
Touch screen, knobs, and
dedicated hot keys (mouse, keyboard
also provided)
16700B Modular System
Mouse, keyboard
16701B Expansion Frame
N/A
Number of Slots 555
Display Type(s) and Resolution
Internal: 12.1 inch color touch
screen, 800 x 600
External: Supports resolutions up to
1600 x 1200 with option 003.
Requires external display.
Supports up to 1280 x 1024
standard, 1600 x 1200 requires
option 003.
N/A
Data Viewing Types
Standard: Waveform, listing, histogram, chart, compare
Module specific: eye diagrams
Optional software tool sets: source code, protocol decode,
serial analysis, system performance analysis (SPA)
N/A
Connectivity
Time-correlate logic analyzer trace to external Infiniium 54800 Series oscilloscope.
Automated de-skew and tracking of markers.
Offline analysis, e-mail on trigger, individual user logins for network security
Remote programmability via Microsoft ® Active X/COM for PCs and TCP/IP
socket based ASCII commands for UNIX ®.
Remote access of the analyzer from a web browser (web-enabled).
File transfer and storage via mapped shares or mounted drives
(Windows® and UNIX)
N/A
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Logic Analyzer Probing Solutions
Probing Method (Application)
Signal Type Max. Data
Rate
Min. Signal
Amplitude
Model
Number
Channels Logic Analyzer
Compatibility
Equivalent Load
Capacitance
Connectorless Probing
Quick connection to many signals in a small footprint without requiring a header designed into the target
Differential or single-ended
clock, Single-ended data
Differential or
single-ended clock,
Differential or
single-ended data
Single-ended clock,
Single-ended data
> 2.5 Gb/s
250 mV p-p
Vmax– Vmin
200 mV
500 mVp-p
E5390A
(Soft touch)
E5387A
(Soft touch)
E5394A
(Soft touch)
34
17
34
90-pin cable
connector
40-pin cable
connector
< 0.7 pF
< 0.7 pF
Connector Probing
Quick connection to many signals in a small footprint, connector is designed into target
Differential or single-ended
clock, Single-ended data
Differential or
single-ended clock,
Differential or
single-ended data
Single-ended clock,
Single-ended data
1.5 Gb/s
600 Mb/s
[1]
250 mV p-p
Vmax–Vmin
200 mV
300 mV p-p
500 mV p-p
500 mV p-p
250 mV p-p
500 mV p-p
E5378A
(100-pin Samtec)
E5379A
(100-pin Samtec)
E5380A
(38-pin Mictor)
E5385A
(100-pin Samtec)
E5346A
(38-pin Mictor)
E5339A
(38-pin Mictor)
E5351A
[2]
(38-pin Mictor)
34
17
34
34
34
34
34
90-pin cable
connector
40-pin cable
connector
1.5 pF
3 pF
Flexibility and choice in creating quality connections to your target system
Agilent Logic Analyzer Probing Solutions
• Easily connect with reliable, electrically and mechanically unobtrusive probing solutions
• Achieve low loading (< 0.7 pF), an easy connection and a small footprint with soft touch connectorless probes
• Gain access to individual, widely dispersed signals with Agilent's
new differential and single­ended general-purpose lead sets.
Accurate measurements start with reliable probing. Agilent Technologies offers a wide variety of probing accessories that support general-purpose and application-specific measurement needs.
Figure 3. Agilent’s soft touch probes combine high-density, low loading and differential capability into a reliable, space-saving package.
[1] Equivalent to the data rate of the logic analyzer the probe is attached to. [2] Requires isolation networks installed on the target.
connect
1
General-Purpose Flying-Lead Set
Flexible connection to individual signals
Differential or single-ended
clock, Single-ended data
Differential or single-ended
clock, Differential data
Single-ended clock,
Single-ended data
1.5 Gb/s
[1]
250 mV p-p
Vmax–Vmin
200 mV
600 mV p-p
E5382A
E5381A
E5383A
17
17
17
90-pin cable
connector
40-pin cable
connector
1.3 pF
0.9 pF
1.5 pF
1.5 pF
3.0 pF
5
Model No.
16760A
[4]
16753A/54A/55A/56A
[4]
16750B/51B/52B
16740A/41A/42A
Channels/Module (Max. Channels on Single Time Base and Trigger)
34
(170)
68
(340)
68
(340)
68
(340)
Supported Signal Types
Single-ended,
Differential
Single-ended,
Differential
Single-ended Single-ended
Setup/Hold Window (With Eye Finder), Adjustment Resolution
500 ps,
10 ps
1 ns (600 ps typical),
80 ps typical
1.25 ns, 100 ps
1.25 ns, 100 ps
Eye Scan Yes Yes N/A N/A
Max. Transitional Timing Rate
400 MHz 600 MHz 400 MHz
400 MHz
Max. Memory Depth (Half/Full Channels)
[1]
128M/64M
[2]
16753A: 2M/1M 16754A: 8M/4M
16755A: 32M/16M
16756A: 128M/64M
16750B: 8M/4M 16751B: 32M/16M 16752B: 64M/32M
16740A: 2M/1M 16741A: 8M/4M
16742A: 32M/16M
High-Speed Timing Zoom
[3]
N/A 4 GHz (250 ps) with
64 K depth
2 GHz (500 ps)
with 16 K depth
2 GHz (500 ps)
with 16 K depth
Max. Timing Sampling Rate (Half/Full Channels)
800 MHz
(1.25 ns)
1.2 GHz (833 ps) / 600 MHz (1.67 ns)
800 MHz (1.25 ns) /
400 MHz (2.5 ns)
800 MHz (1.25 ns) /
400 MHz (2.5 ns)
Max. State Clock
1.5 Gb/s 600 MHz 400 MHz 200 MHz
Configure custom measurement solutions for demanding applications
Measurement Modules
A wide variety of timing and state analysis modules provide the speed and memory depth to isolate and analyze your debug problems. Create a custom solution or expand your existing analysis system by selecting the timing/state analyzer, pattern generator, or oscilloscope modules that meet your debug and validation needs.
• Choose from a wide variety of measurement modules
• Acquire differential and single­ended signals with state analysis up to 1.5 Gb/s, 4-GHz timing zoom and memory depths up to 128 M samples
• Quickly validate signal integrity with hundreds of simultaneous eye diagrams
Module Ordering Information for Agilent state and timing modules
[1] Increased memory depth in half-channel timing mode only [2] 128 M in half-channel 1.25 Gb/s and .5 Gb/s modes only [3] All channels, all the time, simultaneous state and timing through same probe [4] Probes ordered separately
NOTE: Probes are ordered separately. Please specify probes when ordering to ensure the correct connection between your logic analyzer and the device under test.
2
acquire
Figure 4. Modularity provides configuration flexibility to meet your measurement needs, now and in the future.
90-pin cable connector
40-pin cable connector
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Scopes, Pattern Generator
Agilent oscilloscopes for 16700 Series
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16720A
Maximum clock speed
Memory depth
Channels per module
Maximum number of channels per time base
Stimulus commands
Logic levels supported
Ordering information
Half channels
300 MHz
16 M vectors
24
120
Initialize, block, repeat, and break macros
5 V TTL, 3 state TTL, 3 state CMOS,
3 state 3.3V, ECL, 5 V PECL,
3.3 V LVPECL, 3 state 2.5 V, 3 state 1.8 V, LVDS
Order at least one clock pod for each
module used as a master and at least
one data pod for every 8 output channels
Pod options for 16720A
Option 011 TTL clock pod & lead set Option 013 3 state TTL/CMOS data pod & lead set Option 014 TTL data pod & lead set Option 015 2.5 V clock pod & lead set Option 016 2.5 V 3 state data pod & lead set Option 017 3.3 V clock pod & lead set Option 018 3.3 V 3 state data pod & lead set Option 021 ECL clock pod & lead set Option 022 ECL (terminated) data pod & lead set Option 023 ECL (unterminated) data pod & lead set Option 031 5 V PECL clock pod & lead set Option 032 5 V PECL data pod & lead set Option 033 3.3 V LVPECL clock pod & lead set Option 034 3.3 V LVPECL data pod & lead set Option 041 1.8 V clock pod & lead set Option 042 1.8 V 3 state data pod & lead set Option 051 LVDS clock pod & lead set Option 052 LVDS data pod & lead set
Full channels
180 MHz
8 M vectors
48
240
Model No. 16534A
Oscilloscope
Module
Infiniium 54800 Series
with E5850A Time
Correlation Fixture
Oscilloscope Type
Maximum Bandwidth
Maximum Sampling Rate
Maximum Memory Depth
Channels Per Oscilloscope
Maximum Number of Channels on a Single Time Base and Trigger
Internal Module
500 MHz
2 GSa/s
32 K
2
8
External
6 GHz
20 GSa/s
32 M
2 and 4
4
2
acquire
Agilent Pattern generator module for 16700 Series
Figure 5. Unleash the synergistic power of a high-performance logic analysis system and oscilloscope with the E5850A time correlation fixture.
Figure 7. Validate correct hardware operation by viewing timing relationships between multiple buses and signals. Individually color and size the signals/buses to highlight and differentiate areas of interest.
Figure 8. Identify problem signals quickly by using eye scan to make eye diagram measurements on up to hundreds of signals simultaneously.
Figure 9. View data patterns and sequences of events from the listing display which presents data in the same order it was captured and placed into memory. The captured binary data can be inverse assembled into processor mnemonics or displayed in multiple formats—binary, hex, decimal, octal, twos complement, ASCII or symbols.
Figure 10. Correlate your logic analyzer trace to the high-level source code that produced it. Easily set up your next logic analyzer trigger by simply pointing and clicking on a line of source code.
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Figure 6. The 16700 Series provides the most complete view of your system’s behavior.
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view & analyze
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12.1-inch (307.34 mm) LCD display with 16702B touch screen makes it easy to view a large number of waveforms or states.
Select a modifiable variable by touching it, then turn the knob to quickly step through values for the variable.
Dedicated hot keys give instant access to the most frequently used menus, displays, and on­line help.
Dedicated knobs for horizontal and vertical scaling and scrolling. Adjust the display to get just the information you need to solve your problem.
“Touch Off” button disables the touch screen and allows you to point out anomalies to a colleague without altering the display settings.
Dedicated knobs for global markers help track down tough problems. A symptom can be seen in one domain (e.g., timing) tied to its cause in another domain (e.g., analog).
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System Performance Analysis Serial Analysis
Model No.
Application
Capabilities
B4600B
Optimizing your target system’s performance
Generates statistical bar
chart and histograms of
captured data
Shows the amount of time
spent in each of the targeted
functions or data locations
B4601B
Solving your serial
communication problems
Converts serial bit streams
to parallel format for easy
viewing and analysis
Supports serial data and
protocols that use bit
stuffing to maintain clock
synchronization
Tool Development Kit
B4605B
Customizing the display of
your acquired data for
greater insight
Creates custom tools to analyze your data using
C programming language
Source Correlation
B4620B
Correlates the logic analyzer
trace with the high-level source
code that produced it
Provides ability to define the
capture event by simply clicking
on a line of source code
Figure 11. Profile your target system's performance to identify system bottlenecks and areas needing optimization.
Logic analyzers with deep memory can generate large amounts of acquired data. Analysis of all this data is a challenge without application­specific analysis tools. Agilent Technologies post-processing tool sets provide powerful data­analysis capabilities that will help you gain insight from your acquired logic-analysis data more quickly and efficiently. These tools expand the power of your Agilent 16700 Series logic analysis system by moving beyond the traditional analysis of timing waveforms and state listings.
• Rapidly consolidate large amounts of data into displays that provide insight into your system’s behavior
• Correlate a logic analyzer trace with the high-level source code that produced it
• Profile your target system’s performance to identify system bottlenecks and isolate areas needing optimization
Quickly extract valuable information from your trace data
Post-processing Tool Sets
Agilent post-processing tool sets
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Figure 12. Enhance your protocol debug by viewing trace information at the protocol level.
• Display logic-analyzer trace information at the protocol level
• Easily trigger on standard or custom packet header fields with powerful trigger macros
• Customize the protocol analysis to your specific proprietary protocol using a protocol description language
Agilent Technologies protocol tool sets for the 16700 Series provide customized triggering capabilities and packet decode. This enables rapid analysis and debug of industry-standard and proprietary protocols. You’ll gain quick insight into the difficult problems caused by the use of serialized and narrow source synchronous buses in high-speed chip-to-chip and backplane interconnects.
Faster triggering and viewing of protocol data in a standardized form
Protocol Tools
11
PCI Express
V1.0,
updated as
spec evolves
Serial ATA
and ATAPI,
OOB
signaling
(real time) up
to 1.5 GHz
RapidIO
(8 and 16
bit parallel)
POS PHY L4
(SPI-4.2)
(PPP, ATM,
Ethernet, etc.)
Gigabit Ethernet
TBI
Utopia L1-3
(ATM),
POS-PHY L1-3
(PPP),
MII/GMII
(Ethernet),
FlexBus
InfiniBand 1x, 4x, 12x
InfiniBand 1x, 4x, 12x
MPEG-2
Model No. N4220A N4219A N4215A N4214A N4212A B4640B N4233A N4206A B4645B
Packet Trigger
Ye s Yes Ye s N o N o Ye s Ye s N o Ye s
Additional Capabilities
Real time
8b/10b,
disparity
error, data
descrambling
CRC/Disparity
checking, data
descrambling,
10b capture
mode
CRC/
Control
word
checking,
real-time idle filter
Real-time
idle filter
Packet CRC check, 8b/10b disparity check
VCRC/ICRC,
8b/ 10b, disparity
error,
compliance
testing.
VCRC,
ICRC, 8b/
10b,
disparity
error,
compliance
testing.
Packet
length check,
packet
CRC
check
Agilent protocol analysis tool sets for interconnect standards
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• Actel
• Altera
• AMD
• Analog Devices
• ARM®7/9TDMI
• GTE
• IBM PPC
• IDT
• Intel® Pentium®, P4, Xeon Pentium Pro, II, III, & Celeron™
• Motorola
• National
• NEC
• NKK
• PACE
• QED
• Rockwell
• Siemens
• Texas Instruments
• Xilinx
• Zilog
• AGP2X, AGP4X, AGP8X
• CAN
• CSIX
• PC 100, PC 133, DDR, DDR 200, DDR 266, DDR 333, DDR I-400, DDR II,
• Fibre Channel
• FireWire (IEEE 1394)
• Gigabit Ethernet (TBI)
• GMII
• HyperTransport
• I
2
C
• InfiniBand 1X, 4X, 12X
• ISA
• JTAG (IEEE 1149.1, 1149.5)
• MPEG-2
• PC 100/ 133 DIMM
• PCI CardBus
• PCI-EIO
• PCI Express
• PCI Mezzanine
• PCI/EXT-32/64
• PCI-X 1.0, 2.0
• POS-PHY L1 – L3
• Rambus®
• RapidIO
• RS-232, RS-449
• SCSI, Ultra SCSI, SCSI LVD
• Serial ATA
• SIMM, DIMM
• SPI-4.2
• USB 1.1, USB 2.0
• Utopia
• VME 64
• VXI
• Xilinx: Virtex, Virtex – E, Virtex ll, Virtex ll Pro, Spartan–ll, Spartan–ll E
• Save time making bus- and processor-specific measurements with application­specific analysis probes that quickly and reliably connect to your device under test
• Support available for comprehensive list of industry­standard processors and buses
• Display processor mnemonics or bus cycle decode
Agilent Technologies and our partners provide an extensive range of quality tools that offer non-intrusive, full-speed, real­time analysis and processor execution control to accelerate your debugging process.
Save time analyzing your unique design with a turnkey logic analyzer setup
Processor, Bus, and FPGA Support
Agilent and Third-Party Bus, Protocol or FPGA Support
Agilent and Third-Party Processor Support
Figure 14. Correlate your logic analyzer trace to the high-level source code that produced it. Easily set up your next logic analyzer trace by simply pointing and clicking on a line of source code.
Figure 13. Focus on PCI Express packets instead of format details.
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Emulation Probes
Link to the processor’s debug port for a convenient way to download code, modify memory and registers, and control program execution.
Model Number
ARM®
ARM7TDMI, ARM7DI, ARM710T, ARM720T, ARM740T, ARM9TDMI, ARM920T, ARM922T, ARM925T, ARM940T, ARM946ES, ARM966ES
IBM PPC4XX
401 (all), 403 (all), 405 (all), NPe405H, NPe405L, 440A4, 440GP, 440GX
IBM PPC6XX
603, 603e - rev 3, 4, 5, 603ev – rev 2, 12, 603e2, 603P, 603ec, 603R
IBM PPC7XX
740, 740L, 740P, 750, 750L, 750P, 750CX, 750CXe, 750FX
MIPS
MIPS32-4Kc, MIPS32-4Km, MIPS32-4Kp, MIPS64-5Kc
Motorola MPC6XX
603, 603e - rev 3, 4, 5, 603ei, 603ev – rev 2, 12, 603e2, 603P, 603ec, 603R
Motorola MPC7XX
740, 740L, 740P, 745, 750, 750L, 750P, 750M, 755
Motorola MPC74XX
7400, 7410, 7440, 7441, 7445, 7450, 7451, 7455
Motorola MPC8XX
801, 821, 823, 850, 852, 855, 857, 859, 860, 862, 866 families
Motorola MPC82XX
8240, 8241, 8245, 8250, 8250A, 8255, 8255A, 8260, 8260A, 8264A, 8265A, 8266A
Motorola M-Core
M2107
E5900B #300
E5900B #060
E5900B #060
E5900B #070
E5900B #200
E5900B #060
E5900B #070
E5900B #110
E5900B #080
E5900B #100
E5900B #090
Add processor execution (run) control and real-time trace capture to best-in-class debuggers
Trace Port Analyzers and Emulation
• Control your processor with break, run, reset and single step capabilities
• Download code and modify register/memory values
• Trace analysis up to 200 MHz, integrated with industry­standard debuggers
• Xilinx ChipScope Pro with deep external trace and advanced triggering tools
Agilent Technologies emulation probes utilize a processor’s debug port to provide a convenient way to download code, modify memory and registers, and control program execution. Trace port analyzers provide real-time trace information, in addition to the standard emulation functionality. When integrated with a 16700 Series logic analysis
system, both the emulation probes and trace port analyzers can support coordinated system analysis of hardware/software interaction for a wide range of industry-standard embedded processors.
Agilent Trace Port Analyzers and Emulation Probes
Trace Port Analyzers
Provides emulation and real-time trace execution information, can be integrated with the 16700 Series for coordinated system analysis.
Model Number
ARM
ARM7/9-ETM
IBM PPC4XX
401 (all), 403 (all), 405 (all), NPe405H, NPe405L, 440A4, 440GP, 440GX
Xilinx
Virtex II, Virtex II Pro, Spartan-II, Spartan-IIE, Spartan-III, Virtex, and Virtex-E
E5904B #300
E5904B #060
E5904B #500
Figure 15. The Agilent E5904B trace port analyzer.
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In Summary
Validation of digital systems continues to be a vital piece of product development. Technologies are increasing in speed and complexity, while R & D budgets, resources and market windows are shrinking. These issues make meeting your time-to-market goals more difficult.
Overcome your time-to-market obstacles with the Agilent 16700 Series logic analysis systems.
Related Agilent Literature
16700 Series Logic Analysis System, product overview, 5968-9661E
Probing Solutions for Logic Analysis Systems, product overview,
5968-4632E
Processor and Bus Support for Agilent Technologies Logic Analyzers,
configuration guide, 5966-4365E
Agilent E5850A Logic Analyzer/Oscilloscope Time Correlation Fixture,
photo card, 5988-1684EN
Infiniium 54850 Series Oscilloscopes, Infiniimax 1130 Series Probes,
data sheet, 5988-7976EN
Infiniium 54800 Series Oscilloscopes, color brochure, 5988-3788EN
Deep Storage with Xilinx ChipScope Pro and Agilent Technologies FPGA Trace Port Analyzer, product overview, 5988-7352EN
PCI Express Tools, color brochure, 5988-7780EN
Signal Integrity Solutions, color brochure, 5988-5405EN
Test Tools for InfiniBand, color brochure, 5988-2424EN
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connect
1
2
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Agilent 16700 Series
Figure 16. The Agilent 16700 Series logic analysis systems help you meet your time-to-market demands.
15
Microsoft® is a U.S. registered trademark of Microsoft Corporation. Windows® and MS Windows ® are U.S. registered trademarks of Microsoft Corporation. UNIX® is a registered trademark of the Open Group. Intel® is a U.S. registered trademark and Celeron™ is a U.S. trademark of Intel Corporation. Pentium® is a U.S. registered trademark of Intel Corporation. ARM® is a registered trademark of ARM Limited. Rambus® is a trademark of Rambus Inc.
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