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Hioki PW3336-01 - Page 18

Hioki PW3336-01
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1.2 Features
12
Since processing for functions such as AC+DC (RMS), AC+DC Umn (voltage average value rectified RMS
equivalent), DC (DC component), AC (AC component), FND (fundamental wave component), and har-
monic measurement as well as integration measurement can be performed internally and in parallel, it is
possible to obtain simultaneous measured values simply by switching the display.
Since the measurement range and other parameters can be set independently for each channel, it is possi-
ble to measure input-output efficiency for inverters and other power supply devices. (p.78)
The active power level can be output for each cycle for the voltage or current assigned to the synchroniza-
tion source.
Variations over extended periods of time can be recorded by using the instrument in conjunction with equip-
ment such as a recorder or data logger using level output (updated every 200 ms) for each channel’s volt-
age, current, and active power as well as associated sum values and three user-selected parameters.
Safe, insulated waveforms can be observed using waveform output (equivalent to a sampling rate of
approximately 87.5 kHz) for each channel’s instantaneous voltage, instantaneous current, and instanta-
neous power.
You can control the instrument or capture data from it using a computer by using the standard RS-232C or
LAN interface. (You can also communicate with a computer over USB by using a commercially available
USB serial conversion cable.)
The instrument also provides a GP-IB interface, an essential capability when building such systems.
( )
Simultaneous measurement can be performed by connecting two instruments with an optional BNC cable.
Calculations, display updates, data updates, integration control, display hold timing, zero-adjustment, and
key lock operation of the instrument set as the slave (IN setting) are matched to the master instrument
(OUT setting).
Extensive measurement functionality, standard
High-speed D/A output to capture harsh load variations (p.88)
Building a system with 3 interfaces (p.117)
Synchronized control function with support for measurement of even
more channels (p.81)

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