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50MS/s Four-Channel
Arbitrary Waveform /
Function Generator
MODEL WW5064
Four-channel 50MS/s waveform generator
Sine and Square waves generated to 25MHz
16 Bit amplitude resolution Multiple run modes including trigger, re-trigger and
trigger delay
512k waveform memory, 1M waveform memory, optional
(n)PSK and (n)QAM modulation
10 Separate sequences link and loop segments in user-
High resolution 3.8 LCD, color display
definable order
Ethernet 10/100, USB 2.0 and GPIB interfaces
Four separate SYNC outputs for independent channel
synchronization Multi-Instrument synchronization
10 Vpp into 50W, double into open circuit ArbConnection software for easy waveform creation&control
The Model 5064, is a four-channel universal resolution and wide output bandwidth (over High Speed Function Generator
waveform synthesizer. It is built in a small case 25 MHz), one can create mathematical profiles, Care to use the instrument as a function
size to save space and cost but without download the coordinates to the instrument generator? No need to fuss with loading
compromising bandwidth and signal integrity. and re-generate waveforms without complex waveform coordinates because the
The instrument outputs either standard or user- compromising their fidelity and compatibility 5064 does the work for you. Select the standard
defined waveforms in the range of 100 mHz to the original design. waveforms tab and start generating any one
to 25 MHz. 16-bit DAC's are used for building from the ten waveforms that are pre-computed
waveforms with excellent accuracy and Four Synchronized Channels and available for immediate use. Included are:
resolution which are suitable for the finest test The 5064 has four output channels of which sine, triangle, square, pulse, ramp, sinc and
signals that are needed for today's sensitive are all synchronized to the same reference others. Remember, however, that waveforms
instruments. Using the latest technology, you clock and share the same sample clock. This are created from sampling waveform points
can be assured that the features and is not a limitation because the output frequency and therefore some of the waveforms cannot
capabilities of the Model 5064 will be useful is a function of the number of points which are be generated above certain frequencies where
for many years. used for creating the waveform shape. On the the number of points are insufficient to draw
other hand, the advantage of having four a perfect shape. Regardless, using some trick,
Signal Integrity synchronized channels is huge in applications the 5064 will generate standard sine and square
As technology is evolving and new devices that require accurate and controlled phase waveforms up to 25 MHz.
are developed every day, faster signals are between channels. Many applications require
needed to simulate and stimulate these new XY drive so two channels is just what is needed Stable and Accurate Output Signals
devices. The 5064 provides the highest however, for three phase power simulation and As standard, the instrument is equipped with
bandwidth in its class and hence providing four channel MEMS micro engine actuators, a frequency reference that has 1ppm accuracy
accurate duplication and simulation of test the Model 5064 is the most suitable product and stability over a period of 1 year. An external
signals. With its wide range of sample clock to use. frequency reference is provided on the rear
generator (up to 50 MS/s), 16-bit vertical panel for applications requiring greater accuracy
and stability.
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50MS/s Four-Channel Model WW5064
Arbitrary Waveform /
Function Generator
Waveform Memory and Memory Segmentation Remote Control ArbConnection
Waveform memory is the internal "black board" Access speed is an increasingly important ArbConnection is a graphical tool that provides
where the waveforms are created and reside. requirement for test systems. Included with the an unlimited source of waveforms. With the
Large memory bank provides for longer instrument is a variety of interfaces: Ethernet, ArbConnection software you can control
waveforms. One can use the entire memory USB and GPIB so one may select the most instruments functions, modes and features.
for a single waveform or split the length to suitable interface for the application. Remote You can also create a virtually infinite amount
smaller segments. In this case, many control of instrument functions, parameters of test waveforms. Freehand sketch allows you
waveforms can be stored in the same memory and waveform download is easily tailored to to draw your own custom waveform for quick
and replayed, one-at-a-time, when recalled to specific system environment regardless if it is analysis of analog signals. You can use the
the output. The memory segmentation is just a laptop to instrument or full-featured ATE built-in equation editor to create your own exotic
combined with a sequence generator that can system. IVI drivers and factory support will functions. Add or subtract components of a
take different memory segments and link (and speed up system integration and hence Fourier series to characterize digital or analog
loop) them in any order as required for the test. minimize time-to-market as well as significantly filters or inject random noise into a signal to
The ability to loop waveform segments in a reduce system development costs. test immunity to auxiliary noise.
sequence saves a lot of memory space and
hence, extends the capability of the generator Multi-Instrument Synchronization
to produce complex and much longer Multiple 5064 can be synchronized using a
waveforms, which would otherwise require Master-Slave arrangement allowing users to
large banks of memory. The 5064 has four benefit from the same high quality performance
sequence generators that can be designed to in their multi-channels system.
generate unique sequences for each of its Remote Calibration
output channels. Normal calibration cycles in the industry range
from one to three years where instruments are
Easy to use sent to a service center, opened to allow access
Large and user-friendly 3.8 back-lit color LCD to trimmers, calibrated and certified for repeated
display facilitates browsing though menus, usage. Leading-edge technology was
updating parameters and displaying detailed implemented to allow calibration from any
and critical information for your waveform interface, USB, GPIB or LAN. Calibration factors
output. Combined with numeric keypad, cursor are stored in a flash memory thus eliminating
position control and a dial, the front panel the need to open instrument covers.
controls simplifies the often complex operation
of an arbitrary waveform generator.
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50MS/s Four-Channel Model WW5064
Arbitrary Waveform /
Function Generator
Service and Support Applications Five-year Warranty
Beyond providing precision Test & For expert technical assistance with your Every instrument from the Wonder Wave series
Measurement instruments, Tabor Electronics specific needs and objectives, contact your comes with a five-year warranty. Each one has
provides unparalleled service and support, local sales representative or our in-house full test results, calibration certificate, and CD
and is continuously finding new ways to bring applications engineers. containing product's manual and complete
added value to its customers. software package. Our obligation under this
Our after-sales services are comprehensive. Manuals, Drivers, and Software Support warranty is to repair or replace any instrument
They include all types of repair and calibration, Every instrument comes equipped with a or part thereof which, within five years after
and a single point of contact that you can turn dedicated manual, developer libraries, IVI shipment, proves defective upon examination.
to whenever you need assistance. As part of drivers, and software. However, if your specific To exercise this warranty, write or call your
our extensive support, we offer individualized, manual is lost or outdated, Tabor Electronics local Tabor representative, or contact Tabor
personal attention Help Desk, both online and makes it possible to log-on to its Download Headquarters and you will be given prompt
offline, via e-mail, phone or fax. Center and get the latest data in a click . assistance and shipping instructions.
Tabor Electronics maintains a complete repair Product Demonstrations
and calibration lab as well as a standards If your application requires that you evaluate
laboratory in Israel and USA. Service is an instrument before you purchase it, a hands-
also available at regional authorized on demonstration can be arranged by
repair/calibration facilities. contacting your local Tabor Electronics
Contact Tabor Electronics for the address of representative or the Sales Department at our
service facilities nearest you. Corporate Headquarters.
CORPORATE France Russia Japan AFRICA
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Specification
50MS/s Four-Channel Model WW5064
Arbitrary Waveform /
Function Generator
CONFIGURATION Phase Noise - Internal SCLK HALF-CYCLE WAVEFORMS
100Hz Offset -70dBc/Hz
Output Channels 4, semi-independent Function Shape: Sine, Triangle, Square
1kHz Offset -85dBc/Hz Frequency Range: 100Hz to 2MHz
10kHz Offset -92dBc/Hz
INTER-CHANNEL CONTROL Phase Start Range
100kHz Offset -112dBc/Hz (Sine/triangle only): 0 to 359.9°
1MHz Offset -140dBc/Hz
LEADING EDGE OFFSET Start Phase
TRIANGLE Resolution: 0.05°
Description: Channel 1 used as start reference Run Modes: Continuous, Triggered
channel 2, 3 and 4 can be offset by Frequency Range: 100µHz to 6.25MHz Delay Between Half Cycles
a programmable number of points. Start Phase Range: 0-359.9° (Continuous only): 500ns to 21s
Range: 0 to 1Meg, limited by n-8 Start Phase Delay Resolution 20ns
Resolution Resolution: 0.05°
and Accuracy: 1 point ARBITRARY WAVEFORMS
Initial Skew: < 2ns SQUARE
Sample Rate: 1.5S/s to 50MS/s
INTER-CHANNEL DEPENDENCY Frequency Range: 100µHz to 25MHz Vertical Resolution: 16 bits
Duty Cycle Range: 0% to 99.9% Waveform Memory: 512k points (1M optional)
Separate controls: Output on/off, amplitude, Rise/Fall Time: <8ns
offset, standard waveforms, Aberration: <5%+10mV MEMORY SEGMENTATION
user waveforms, user No. of Segments: 1 to 16k
waveform size, sequence PULSE
Min. Segment Size: 16 points
table Frequency Range: 100µHz to 6.25MHz Resolution: 4 points size increments from
Common Controls: Sample clock (Arb), frequency Delay, Rise/Fall Time, 16 to 512k points (1M optional)
(Std), reference source, trigger High Time Ranges: 0%-99.9% of period (each
modes, trigger advance source, independently SEQUENCED WAVEFORMS
SYNC output, Modulation Rise/Fall Time: <8ns
Aberration: <5%+10mV Operation: Segments may be linked and
STANDARD WAVEFORMS repeated in a user-selectable
Waveforms: Sine, Triangle, Square, Pulse, RAMP order to generate extremely
Ramp, Sinc (Sine(x)/x), long waveforms. Segments
Frequency Range: 100µHz to 6.25MHz are advanced using either a
Gaussian, Exponential, Delay, Rise/Fall
Repetitive Noise, DC, Half-Cycle. command or a trigger
Time Ranges: 0%-99.9% of period (each
Frequency Range: Waveform dependent independently)
Source: Internal synthesizer ADVANCE MODES
SINC (Sine(x)/x) Automatic Sequence
SINE
Frequency Range: 100µHz to 6.25MHz Advance: No trigger required to step
Frequency Range: 100µHz to 25MHz 0 Crossings: 4-100 from one segment to the next.
Start Phase Range: 0-359.95° Sequence is repeated
Start Phase GAUSSIAN continuously per a pre-
Resolution: 0.05° programmed sequence table.
Frequency Range: 100µHz to 6.25MHz
Harmonics Distortion: Time Constant: 10-200 Stepped Sequence
< 3Vpp <5Vpp <10Vpp Advance: Current segment is sampled
EXPONENTIAL PULSE continuously until a trigger
DC to 1MHz -55dBc -48dBc -37dBc
advances the sequence to the
1 to 10MHz -50dBc -43dBc -35dBc Frequency Range: 100µHz to 6.25MHz next programmed segment
10 to 25MHz -35dBc -30dBc -28dBc Time Constant: -100 to 100 and sample clock rate.
Non-Harmonic Distortion: REPETITIVE NOISE Single Sequence
DC to 25MHz -65dBc Advance: Current segment is sampled
Bandwidth: 25MHz the specified number of
Total Harmonic Distortion: repetitions and then idles at
DC to 20MHz 0.1% DC the end of the segment. Next
Flatness (1kHz): trigger samples the next
Range: -10V to 10V segment the specified repeat
DC to 1MHz 1%
count, and so on.
1MHz to 10MHz 3%
10MHz to 25MHz 5%
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Specification
50MS/s Four-Channel Model WW5064
Arbitrary Waveform /
Function Generator
Mixed Sequence 1ppm/year aging rate Sensitivity: 100mV
Advance: Each step of a sequence can be External 10MHz TTL, 50% ±2% duty Damage Level: ±12V
programmed to advance either a) cycle Pulse Width: >10ns minimum
automatically (Automatic Sequence
AMPLITUDE EXTERNAL REFERENCE INPUT
Advance), or b) with a trigger
(Stepped Sequence Advance). Connector: Rear panel SMB
Range: 10mV to 10Vp-p into 50W; Frequency: 10MHz
Sequencer Steps: 1 to 4096 Double into open circuit
Segment Loops: 1 to 1Meg Impedance&Level:
Resolution: 4 digits Default 10kW ±5%, TTL, 50% ±2%
Minimum Segment Accuracy (1kHz):
Duration: 500ns duty cycle
10mV to 99mVp-p ±(1% + 5mV) Option 50W ±5%, 0dBm Sinewave
Multi Sequence: Selectable sequence 100mV to 999mVp-p ±(1% + 10mV)
from 1 to 10 (with internal jumper)
1V to 10Vp-p ±(1% + 70mV)
SAMPLE CLOCK INPUT
DIGITAL PULSE GENERATOR OFFSET Connector: Rear panel SMB
Channel Dependency: All 4 channels share pulse Range: 0 to ±4.995V, into 50W Input Level: 300mVp-p to 1Vp-p
parameters except level, Resolution: 1mV Impedance: 50kW
polarity, delay and state Accuracy: ±(1%+1% of Amplitude +5mV) Minimum Pulse
Pulse State: On/Off Width: 4 ns
Pulse Mode: Single or double, programmable FILTERS COUPLE INPUT
Polarity: Normal, inverted or complemented
Period: 320 ns minimum, programmed Type: 25MHz Bessel Connector: Rear panel SMB
with 4 ns increments 50MHz Bessel Input Level: LVPECL
Pulse Width: 8 ns minimum 60MHz Elliptic Impedance: 50W, terminated to +1.3V
Rise/Fall Time: <8ns 120MHz Elliptic Minimum Pulse Width: 4 ns
High Time: 0 ns minimum OUTPUTS MODULATION
Delay: 0 ns minimum
Double Pulse Delay: 0 ns minimum MAIN OUTPUTS Carrier Waveform: Sinewave
Amplitude Window: 10mVp-p to 10Vp-p Connectors: Front panel BNC, each channel Modulation Source: Internal
Low Level -5V to +4.995V Impedance: 50W ±1% Run Modes: Off (Outputs CW), Continuous,
High Level -4.995V to +5V Protection: Short Circuit to Case Ground, Triggered, Delayed Trigger, Burst,
10s max Re-trgger and Gated
NOTES: Advance Source: Front panel button, Software
Standby: Output On or Off (Output
1. All pulse parameters, except rise and fall times, Disconnected) commands, Rear panel TRIG IN
may be freely programmed within the selected
pulse period provided that the ratio between SYNC OUTPUTS (n)PSK and (n)QAM
the period and the smallest incremental unit Connectors: Rear panel BNC, separate for Carrier Waveform: Sine wave
does not exceed the ratio of 512,000 to 1. each channel. Carrier Frequency: 1Hz to 20MHz
With the 1M option, the ratio is extended to Level: TTL Carrier Control: On/Off
1,000,000 to 1, hence the specifications below Sync Type: Pulse with Arbitrary and Modulation Type: PSK, BPSK, QPSK, OQPSK,
do not show maximum limit as each must be Standard Waves; LCOM in PI/4 DQPSK, 8PSK, 16PSK,
computed from the above relationship. Sequence and Burst Modes 16QAM, 64QAM, 256QAM
2. Rise and fall times, may be freely programmed SAMPLE CLOCK OUTPUT and User Defined
provided that the ratio between the rise/fall Symbol Rate Range: 1S/s to 1MS/s
time and the smallest incremental unit does Connector: Rear panel SMB
Level: 400mVp-p Carrier Control: On/Off
not exceed the ratio of 100,000 to 1. Symbol Period Accuracy:±(500ns + Carrier Period)
3. The sum of all pulse parameters must not Impedance: 50W
Table Size: 2 to 4096
exceed the pulse period setting COUPLE OUTPUT
Connector: Rear panel SMB TRIGGER CHARACTERISTICS
COMMON CHARACTERISTICS
Level: LVPECL EXTERNAL
FREQUENCY Impedance: 50W, terminated to +1.3V
Source: Rear panel BNC
Resolution: 12 digits (limited by 1µHz) INPUTS Trigger Level: ±5V
Accuracy & Stability: Same as reference Resolution: 1mV
TRIGGER INPUT
10MHz REFERENCE CLOCK Connector: Rear panel BNC Input Frequency: DC to 5MHz
Internal 0.0001% (1 ppm TCXO) initial Min. Pulse Width: >10ns
Impedance: 10kW
tolerance over a 19°C to 29°C Slope: Positive/Negative transitions,
Slope: Positive or Negative (selectable)
temperature range; 1ppm/°C selectable
Programmable Level: ±5V
below 19°C and above 29°C; Trigger Jitter: ±1 sample clock period
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Specification
50MS/s Four-Channel Model WW5064
Arbitrary Waveform /
Function Generator
DELAYS (Trigger input to waveform output) MULTI-INSTRUMENT SYNCHRONIZATION ORDERING INFORMATION
System Delay: 6 sample clock cycles+150ns Description: Multiple instruments can be
Trigger Delay: [(0; 200ns to 20s) + system delay] MODEL WW5064
daisy-chained together and
Trigger Resolution: 20ns synchronized to provide multi- 50MS/s Four-Channel ArbitraryWaveform Generator
Trigger Delay Error: 6 sample clock cycles+150ns channel synchronization.
+5% of setting Initial Skew: <15 ns + 1 sample clock cycle, OPTIONS
INTERNAL depending on cable length and 1Meg: 1 Meg Memory
quality, typically with 1m cables
Retrigger Delay: 200ns to 20s, Waveform end Waveform Types: Standard, Arbitrary and Sequenced ACCESSORIES
to waveform restart using the automatic sequence
Retrigger Delay Error: 3 sample clock cycles+20ns advance mode only S-Rack mount: 19" Single Rack Mounting Kit
+5% of setting Run Modes: Continuous, Triggered, Gated D-Rack mount: 19" Dual Rack Mounting Kit
Retrigger Delay and Counted Burst Case Kit: Professional Carrying Bag
Resolution: 20ns Note: Options and Accessories must be specified
LEADING EDGE OFFSET
MANUAL at the time of your purchase.
Description: Leading edge offset is programmable
Source: Soft trigger command through for master and slave units.
the front panel or external Run Mode: Continuous run mode only
interface Offset Range: 200 ns to 20 s
Resolution&Accuracy: 20 ns
GATED MODE External signal enables
generator. First output GENERAL
cyclesynchronous with the
active slope of the triggering Power Supply: 85 to 265Vac, 48-63 Hz
signal. Last cycle of output Power Consumption: 60W
waveform always comple Front Panel Display: Color LCD, 3.8 reflective,
320 x 240 pixels, back-lit
BURST Operating temperature: 0°C - 50°C
Humidity
Waveforms: Sine, Triangle, Square, Pulse, (non-condensing): 11°C - 30°C 85%
Ramp, Sinc (Sine(x)/x), 31°C - 40°C 75%
Gaussian Pulse, Exponential 41°C - 50°C 45%
Fall, Rising Pulse, Noise, DC. Storage temperature: -40°C to + 70°C.
Counted Burst Cycles: 1 to 1Meg, programmable Interface: Ethernet 10/100, USB 2.0
Source: Manual, Internal or External and GPIB standard
FREQUENCY COUNTER / TIMER Language: IEEE-488.2 - SCPI 1993.0
Dimensions: 212 x 88 x 415 mm (WxHxD)
Measurements: Frequency, Period, Avaraged Weight: Approximately 7 lb
Period, Pulse Width and Totalize Safety: EN61010-1, 2nd revision
Source: Trigger Input EMC: CE marked. Designed to meet
Range: 10Hz to 100MHz (typically 120MHz) VDE 0411/03.81 and UL 1244
Sensitivity: 500mVpp Reliability: MTBF per MIL-HDBK-217E,
Accurcay: 1ppm 25°C, Ground Benign
Slope: Positive/Negative transitions Workmanship
Gate Time: 100µSec to 1 Sec Standards: Conform to IPC-A-610D
Input Range: ±5V Supplied Accessories: Power Cord, USB cable, CD
Trigger Modes: Continious, Hold and Gated containing Operating Manual,
Period Avaraged ArbConnection software and
Range 10ns to 0.1 Sec developer libraries.
Resolution 7 digits / Sec Warranty: 5 years standard
Period and Pulse Width
Range 200ns to 400 Sec
Resolution 100ns
Totalize
Range 1012-1
Overflow Led indication
CompuMess Elektronik GmbH · Lise-Meitner-Str.1 · 85716 Unterschleissheim
Tel 089-321501-0 · Fax 089-321501-11 · www.compumess.de · www.netzteile.de
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