PW3360-20
Data Logger, 50/60 Hz Commercial Line Use, 3Circuits-1P2W, Single Circuit-1P3W, 3P3W, 3P4W
- Manufacturer: HIOKI
- Product type:
- SVHC: To Be Advised
- Display Type: LCD
- Product Range: -
- Data Interface: LAN, SD Card, USB
- Maximum Samples: 2048 Samples
- Data Logger Type: Power
- No. of Channels / Inputs: 3 Channel
- Sensor / Measurement Type: -
| Delivery and price | |
|---|---|
| Units per pack | 1 |
| Price | 1114.35 € |
| Current stock | 10+ |
| Lead time | 30 days |
## CLAMP ON POWER LOGGER PW3360 ## **Handy and Easy to Use** ~~**–**~~ **Power Management Support** **==> picture [89 x 60] intentionally omitted <==** **----- Start of picture text -----**<br> Now with<br>QUICK SET<br>Convenience<br>**----- End of picture text -----**<br> Harmonic Measurement Model **PW3360-21** ## **Reliable measurements start with proper wiring.** **The QUICK SET function guides you in making the right connections.** ■ See demand and trend graphs on site - Supports single to three ~~-~~ phase, 4 ~~-~~ wire circuits - Simultaneously measure up to three single-phase, 2-wire circuits (in the same power system). ■ Measure up to 780V with a 1000V display range ## ■ Broadly applicable for many jobs, including leakage current measurement - An optional clamp-on leakage sensor supports measurements as low as 50 mA. ## ■ Store months of data on SD cards **2** ## Begin with QUICK SET Convenience **==> picture [480 x 417] intentionally omitted <==** **----- Start of picture text -----**<br> Select your Wiring Type, Clamp and Destination, and Connect<br>Select wiring type (example: 3P4W) and connect « 4 J i<br>Connect the leads<br>1 to the PW3360-20.<br>QuickSet 2/8 [Connect ib:4i8¢<br>Pypyy 1] Make proper connec-<br>J: a: i eprock tions simply by ob- —— = —$—$$_$__ —__——<br>i serving the colors of<br>— aren 1 the displayed leads. QuickSet 6/8 “I Check 13:42:45 =<br>Connect the voltage leads and A CURR INFUT RIN QUICK SE<br>clamp sensors using the color guides. ‘ A rau CURR PHASE _— a><br>: P rT , PHASE DIF2<br>2<br>r ) Connect the voltage clips. v DPF yasGre” ( P ASEECDPR) DIS < ww ><br>: 770) W tm PREVIOUS NEXT P35 ANGL STOP QS AT/ ST<br>gis S271 ¥ PASS a bei<br>my Sfalrte raha ae _ . 7 . oa+ =<br>| ul . Sngae 255 UINPUT - aa ~ f dace ee<br>Connect the voltage leads. ' Check wire con- FAIL ;<br>ENTER to view the SUMMARY nection<br>(im PREVIOUS) NEXT Double checks your<br>Proceed to the next voltage input and phase status and judg- If FAIL appears, move the cursor<br>step when PASS appears. ment indicators. to the indicator and press the [ENTER] key.<br> v<br>@ 3 Connect the clamp sensors. Corrective action<br>tips appear<br>|<br>S « ‘=) =|! 37 IA ° Phase Check Summary = et<br>oe) = 7 = aaa= eeren7 ‘= IeI3 33imA Select the = y)I CHECKphase willis withindisplay+68whento each+9@ currentdegrees t-<br>current range<br>▼<br>**----- End of picture text -----**<br> ## **Miswiring Example[ (Clamp Orientation)]** **==> picture [480 x 205] intentionally omitted <==** **----- Start of picture text -----**<br> Correct<br>Power supply side Wiring Screen Display Examples<br>Orientation<br>FAIL The I vector’s phase direction is opposite the determination area. PASS The I vector’s phase direction is within the determination area.<br>WIR [CHK tis4:13 WIR [CHK tisods3<br>►<br>Load side<br>PHASE DIF3 PHASE DIF3<br>DPFLAS 4.90 PFCDPF) DPF MG 4.90 PFCDPF)<br>Point the arrow toward the load side<br>a) | PHAGE CHK ITEM) HOLD i) | PASE CHK ITEM HOLD<br>Changed I3 Clamp<br>Affected measurement values:<br>Examples: P (Power) displayed value is too low P: 6.5kW P: 20.6kW<br>**----- End of picture text -----**<br> 3 ## **Reveal Power Consumption State! Graph Display Functions** ## ■ **Demand Graph Display** Shows the demand value transitions useful for managing power consumption. Check maximum demand values and times while recording. **==> picture [465 x 433] intentionally omitted <==** **----- Start of picture text -----**<br> er consumption. Check maximum demand values and times Evaluate Photovoltaic Generation Capabilities<br>while recording.<br>P dem+ Power Purchased<br>Read values at cursor (kW) Active power demand value (consumption) P dem+<br>1P3W 11? | 9661 1604}<br>Pdem+ 1.87<br>Time<br>tw] Switched Display<br>Maximum ▼<br>MA, M 2613-6 16: BE 8.52} Demand Time<br>6. 88k<br>Values<br>4 Wl.<br>P dem- Power Sold<br>kW Active power demand value (regeneration) P dem-<br>Automatically refreshes<br>One-day graph showing 48 thirty-minute intervals with latest values<br>4, SCREEN CURSOR | HOLD Ci)<br>■ Trend Graph Display Capture and record all fluctuations<br>From all measurement items, select one for display. To conveniently record fluctuations even over long periods, select “All”<br>Check states such as power fluctuations of devices in saving items to record maximum, minimum and average values within<br>on-site operating conditions. each recording interval.<br>* Except for demand and harmonics<br>Continuous calculation at 200 ms intervals without gaps<br>Read values at cursor<br>Data interval (1s to 60min)<br>1PSW lig | 966%| 1004 Of the interval time Maximum data Maximum data<br>P MAX OK 8. 1K 7. 4) Maximum Value onan<br>Average Value Average<br>Minimum Value data<br>Graph Display<br>Average<br>data<br>Measured value Minimum<br>(one selected item) data<br>SCREEN CURSOR |HOLD Minimum data . * Time<br>Automatically refreshes Record 3 data points Record 3 data points<br>Graph showing intervals of up to 200 points with latest values per interval per interval<br><————————+ (___) Lo La<br>**----- End of picture text -----**<br> To conveniently record fluctuations even over long periods, select “All” saving items to record maximum, minimum and average values within each recording interval. ## **Create a Graph to Clearly Grasp Power Consumption** Record power consumption on an **Use Excel graph processing for** SD Card* at specific intervals. Load **before and after comparisons.**[;] \x: the data into the PC. Before and After Air Conditioning Before Power consumption (W) **Record to** and Power ConsumptionMeasurementsMeasurements After Power consumption (W)Before Power conservation (Wh)After Power conservation (Wh)Before Power conservation (Wh)After Power conservation (Wh)After Power conservation (Wh) **SD card** **==> picture [134 x 152] intentionally omitted <==** **----- Start of picture text -----**<br> Before and After Air Conditioning Before Power consumption (W)<br>and Power ConsumptionMeasurementsMeasurements After Power consumption (W)Before Power conservation (Wh)After Power conservation (Wh)Before Power conservation (Wh)After Power conservation (Wh)After Power conservation (Wh)<br>re<br>IS Ae<br>. a tA uF a .<br>ve ee r . =<br>. :<br>IL IE PPI SII ISIE PISS IPP<br>Time<br>**----- End of picture text -----**<br> * Store up to one year’s data acquired at one minute intervals. Performance cannot be guaranteed on storage media other than Hioki-specified SD card options. **4** ## Accommodates All Worksites ## ■ Tight spaces **==> picture [38 x 14] intentionally omitted <==** **----- Start of picture text -----**<br> 48 mm<br>**----- End of picture text -----**<br> **==> picture [199 x 171] intentionally omitted <==** **----- Start of picture text -----**<br> Y Compact -.<br>In dim environments<br>- -<br>Easy to see color LCD<br>**----- End of picture text -----**<br> **==> picture [88 x 16] intentionally omitted <==** **----- Start of picture text -----**<br> 180 mm (7.09")<br>**----- End of picture text -----**<br> (1.89") **==> picture [47 x 14] intentionally omitted <==** **----- Start of picture text -----**<br> 100 mm<br>**----- End of picture text -----**<br> **==> picture [37 x 12] intentionally omitted <==** **----- Start of picture text -----**<br> (3.94")<br>**----- End of picture text -----**<br> **==> picture [97 x 92] intentionally omitted <==** **----- Start of picture text -----**<br> Easy to loop around,<br>even in confined spaces<br>AC FLEXIBLE CURRENT SENSOR<br>CT9667-01, -02 (Sold separately)<br>**----- End of picture text -----**<br> ## ■ Where no AC power is available Battery* power provides about eight hours of continuous operation. In addition, a Voltage Line Power Adapter* is available to power the PW3360-20 from the measurement lines. * Battery Set PW9002 and Voltage Line Power Adapter PW9003 options are sold separately. **==> picture [130 x 52] intentionally omitted <==** **----- Start of picture text -----**<br> Battery Set PW9002<br>Voltage Line<br>Power Adapter<br>**----- End of picture text -----**<br> **==> picture [177 x 89] intentionally omitted <==** **----- Start of picture text -----**<br> Battery installation -<br>8 Hour<br>operation<br>►<br>**----- End of picture text -----**<br> **==> picture [8 x 48] intentionally omitted <==** **----- Start of picture text -----**<br> Power Source<br>**----- End of picture text -----**<br> Obtains power from the measurement lines ## ■ In severe temperature environments The operating temperature range extends from –10°C (14°F) to 50°C (122°F). Even under battery operation, measurements can be performed from 0 °C (32°F) to 40°C (104°F) (0°C (32°F) to 50°C (122 °F) when using LAN communication). **==> picture [61 x 22] intentionally omitted <==** **----- Start of picture text -----**<br> 50˚C<br>**----- End of picture text -----**<br> ## ■ Magnetic voltage adapters for hard-to-clip terminals Magnetic voltage adapters convertible with the Voltage Cords L9438-53 let you accurately detect voltage when the circuit terminals are too shallow for alligator clips to latch on. * Magnetic Adapter 9804 option sold separately. ## 9804-01 Magnetic Adapter (red) usage example **==> picture [55 x 8] intentionally omitted <==** **----- Start of picture text -----**<br> Magnet in the tip<br>**----- End of picture text -----**<br> **==> picture [71 x 23] intentionally omitted <==** **----- Start of picture text -----**<br> -10˚C<br>**----- End of picture text -----**<br> Generally compatible with M6 pan screws 5 ## **Loaded with More Useful Functions** ## **Simultaneous Measurements** Simultaneously measures three single-phase 2-wire circuits in the same system. ## **Pulse In ut p** The pulse input function can be used to record power data and production volume counts simultaneously. The power data and pulse volume (production volume) information are useful for unit cost production management. **==> picture [123 x 77] intentionally omitted <==** **----- Start of picture text -----**<br> Load<br>Power Source Load<br>Load<br>**----- End of picture text -----**<br> **==> picture [137 x 120] intentionally omitted <==** **----- Start of picture text -----**<br> Pulse Input<br>Load<br>Power Source<br>▼<br>**----- End of picture text -----**<br> ## **Pulse Out ut p** Use the Pulse Output function to acquire temperature and pulse (electrical energy) data simultaneously with a data logger. Evaluate the relationship between air conditioner temperature control settings and power consumption. **==> picture [480 x 132] intentionally omitted <==** **----- Start of picture text -----**<br> TemperatureMeasurement Application Example<br>[Sec]<br>The pulse signal is output whenever Data Logger Series LR8400<br>power consumption exceeds a set<br>output rate (from 1 Wh to 100 kWh). Built-in 30-point input<br>Voltage Input<br>Pulse Output Temperature (thermocouple) Input<br>ti — = — Pulse Input<br>►<br>Load<br>Power Source<br>**----- End of picture text -----**<br> ## **Leaka e Current Measurement g** With the optional leakage current clamp on sensors, turn the instrument into a 3-channel leakage current logger to help identify trouble spots. **==> picture [448 x 173] intentionally omitted <==** **----- Start of picture text -----**<br> Pd As a 3-channel Leakage Current Logger Options<br>Leak Clamp on Sensor<br>φ30 mm φ40 mm<br> (1.18 in) (1.57 in)<br>r ow 9675 9657-10 A<br>Ideal for quick investigation of intermittent leakage by continuous calculation processing every 200 ms.<br>(Select to save the average, maximum and/or minimum at every interval.)<br>Load<br>Power Source Load<br>Load<br>**----- End of picture text -----**<br> **6** ## Harmonic Measurement Model ## PW3360-21 Analyze voltage and current harmonics on a 50/60 Hz power line from the fundamental waveform to the 40th order. - Displays the RMS value, content, and phase angle (numerical list or graph display) for each harmonic order. - Vector display of power phase angle **==> picture [236 x 24] intentionally omitted <==** **----- Start of picture text -----**<br> “7 SY E> Harmonic graph screen<br>**----- End of picture text -----**<br> **==> picture [149 x 20] intentionally omitted <==** **----- Start of picture text -----**<br> (vector display)<br>Harmonic power phase angle graph screen<br>**----- End of picture text -----**<br> Maximum, average, and minimum values can be saved in binary format to SD card at each interval. Power Logger Viewer SF1001 is required to display the data on a PC. ## **SF1001 Display Example** ## ~~**Harmonic Time Series Display**~~ Select and display a time series graph of fundamental, third- and fifth-order current harmonics. ## **PC** > [Power Logger Viewer SF1001][ (option, sold separately)] **Processing** Data saved to an SD card or internal memory can be loaded into a PC for expanded display, aggregation and analysis. Supported models: PW3360, PW3365, 3169-20 On the same time axis, view measured power consumption and equipment operating status at specific intervals, along with equipment characteristics and management details. - Trend graph display function ● Summary display function ● Waveform display - Harmonic display ● Copy function ● Print function ● Report printing **==> picture [198 x 206] intentionally omitted <==** **----- Start of picture text -----**<br> Simultaneously measure and record separate<br>loads using three PW3360s<br>Air Conditioner A<br>—| |<br>Air Conditioner B<br>By. lly —<br>=| =<br>Air Conditioner C<br>|<br>a : ma ==== _——<br>Power Source<br>Power Source<br>Power Source<br>**----- End of picture text -----**<br> ## **Stacked Graph Display Example** **==> picture [136 x 9] intentionally omitted <==** **----- Start of picture text -----**<br> Maximum Demand Values<br>**----- End of picture text -----**<br> 7 ## **Remote control via Ethernet** ## **Use a LAN cable to connect the PW3360-20 or PW3360-21 to a personal computer for real-time monitoring, make settings and acquired data.** ## **1. Make settings and monitor from remote locations** Use HTTP server functions for remote monitoring and measurement display on web browser. ## **2. Transfer data from remote locations** Use FTP server function to acquire data remotely. **==> picture [141 x 126] intentionally omitted <==** **----- Start of picture text -----**<br> File on PC File on instrument<br>==<br>transfer file via FTP server function<br>F<br>@ PW3360 Main - Windows Internet Explo<br>Ge [e eo rs2s681.8<br>Eile Edi View Favorites Tools<br>We Favorites @ PW3360 Main<br>Enter the IP address in the browser.<br>**----- End of picture text -----**<br> **==> picture [273 x 204] intentionally omitted <==** **----- Start of picture text -----**<br> b . —~_¥<br>fTFo7 —~]|_ |i S LTLo) [~~]] )<br>TAL manna<br>LAN<br>[yuu HUB<br>wo asin SOR pe ae s-0<br>PIAIEOFavomes Mam IeclsHep =f ' be wwone<br>HIOKI PW3360 Main Page > a<br>2012 HIOKIRemote cr EE CORPORATIONContre! Gorean A Click 2| - es ◄ Click or m Click the on-screen keys to operate remotely. w<br>▲<br>Load Load<br>Power Source Power Source<br>**----- End of picture text -----**<br> ## **Get results from the job site in real-time Present data from multiple sources as a graph or list together in real-time** **==> picture [182 x 25] intentionally omitted <==** **----- Start of picture text -----**<br> PC Application Program<br>GENNECT Cross for Windows<br>**----- End of picture text -----**<br> **==> picture [229 x 118] intentionally omitted <==** **----- Start of picture text -----**<br> HUB<br>Connect each measuring<br>instrument to PC with LAN cable<br>_ = ee<br>= lm<br>: eS<br>es<br>Re Ge TM 5<br>Memory HiLogger<br>Power Quality Analyzer Clamp On Power Logger LR8400<br>PQ3100 PW3360/PW3365<br>**----- End of picture text -----**<br> **==> picture [184 x 84] intentionally omitted <==** **----- Start of picture text -----**<br> oo Entire screen 1. Monitor © umsanzermorrere<br>-—= . : = re= —<br>= [om<br>— [pas<br>— =<br>— + paniwe-esannst?<br>a 1 ee 2 eee 3 \@1] OMS vcRage<br>**----- End of picture text -----**<br> ## **1. Monitor display (Max 512 items)** Display each measured data in real-time **2. Graph display (Max 32 items)** Display selected data as graphs **3. List display (Max 32 items)** Display selected data in list ## **Simultaneously monitor all data in real-time** Connect measuring instruments to PC with LAN cable Operation guaranteed for up to 15 units. Please contact your nearest Hioki distributor for connections exceeding 15. Software automatically recognizes LAN-connected measuring instrument Display acquired data as graphs in real-time Manage and save results with software List MAX, MIN and AVG values (Display time of MAX & MIN data) ## **2. Graph** **==> picture [105 x 88] intentionally omitted <==** **----- Start of picture text -----**<br> PW3360 Voltage value<br>NN |\<br>pri PW3360 Current value<br>LR8400 Temperature value<br>PW3360 Power factor value<br>LR8400 Voltage value<br>logging time (display up to 1024 points)<br>**----- End of picture text -----**<br> ## **3. List** |**Compatible instruments**|**Available items to monitor and save on PC**|**Available items to monitor and save on PC**|**Number of items that can be saved**|**Recording time**| |---|---|---|---|---| |POWER QUALITY ANALYZER PQ3100|Voltage<br>Current<br>Power|Instantaneous value of each<br>interval; MAX, MIN, AVG value<br>of each interval|**Save up to 512 items**<br>*Maximum 32 items when<br>simultaneously displaying graphs|When memory size of acquired data reaches to<br>64MB, data will be separated automatically<br>[Continuous measurement]<br>When storage capacity falls below 512MB,<br>measurement will stop| |CLAMP ON POWER LOGGER PW3365||||| |CLAMP ON POWER LOGGER PW3360||||| |MEMORY HiLOGGER LR8400, LR8401, LR8402|Temperature<br>Analog Input|Instantaneous value<br>of each interval||| |WIRELESS LOGGING STATION LR8410||||| ## **Downloading GENNECT Cross SF4000 (for Windows)** ## **HIOKI website > Search** **Search** Model No. (Order code) SF4000 Enter the model number in the search field to download the software to get started! 8 ## ■ PW3360-20, PW3360-21 Specifications Specifications in orange available in Model PW3360-21 only ## **Input specifications** |**Input specifications**<br>Measurement<br>line type|**Input specifications**<br>Single-phase 2-wire, single-phase 3-wire, three-phase 3-wire,<br>three-phase 4-wire| |---|---| |Measurement<br>line Frequency|50/ 60 Hz| |Number of input<br>channels|Voltage: 3 channels U1 to U3<br>Current: 3 channels I1 to I3| |Voltage range|600 V AC| ||Total display area: 5V to 1000 V (less than 5 V displays as 0 V)<br>When RMS voltage is zero, zero is displayed for all orders of<br>harmonic voltage.| ||Effective measurement range:90 V to 780 V, peak: ±1400V| ||[OVER]indicates over-range warning| |Current ranges|**Load current**<br>CLAMP ON SENSOR9694<br>: 500 m/1/5/10/50 A<br>CLAMP ON SENSOR9695-02<br>: 500 m/1/5/10/50 A<br>CLAMP ON SENSOR9660<br>: 5/10/50/100 A<br>CLAMP ON SENSOR9695-03<br>: 5/10/50/100 A<br>CLAMP ON SENSOR9661<br>: 5/10/50/100/500 A<br>CLAMP ON SENSOR9669<br>: 100/200/1 k A<br>AC FLEXIBLE CURRENT SENSOR CT9667-01 : 50/100 /500/1 k/5 kA<br>AC FLEXIBLE CURRENT SENSOR CT9667-02 : 50/100 /500/1 k/5 kA<br>AC FLEXIBLE CURRENT SENSOR CT9667-03 : 50/100 /500/1 k/5 kA<br>**Leakage current**<br>LEAK CLAMP ON SENSOR9657-10 : 50 m/100 m/500 m/1/5 A<br>LEAK CLAMP ON SENSOR 9675<br>: 50 m/100 m/500 m/1/5 A| ||Total display range: Within 0.4 to 130% of the range<br>(zero is suppressed for less than 0.4%)<br>When RMS current is zero, zero is displayed for all orders of<br>harmonic current.| ||Effective measurement range:Within 5 to 110% of the range<br>peak: ±400% of range,however,maximum range is 200%.| ||[OVER]indicates over-range warning| |Power ranges|300.00 W to 9.0000 MW<br>Depends on voltage/current combination and measured line<br>type(see Measurement Range Configuration Tables)| ||Total display range: Within 0 to 130% of the range<br>(“0W” display indicates zero rms voltage and/or current)<br>When RMS voltage and current are zero, zero is displayed<br>for all orders of harmonic active power and harmonic reactive<br>power.| ||p<br>Effective measurement area:Within 5 to 110% of the range| |VT ratio settings|g<br>Any (0.01 to 9999.99)<br>Selections(1/60/100/200/300/600/700/1000/2000/2500/5000)| |CT ratio settings|Any (0.01 to 9999.99)<br>Selections (1/40/60/80/120/160/200/240/300/400/600/800/1200)| |Input methods|Voltage: Insolated inputs (except between U1, U2, U3 and N)<br>Current: Isolated input usinga clamp-on sensor| |Input resistance|Voltage inputpart: 3 MΩ ±20%(50/ 60 Hz)| |Maximum rated voltage<br>between terminals|Maximum rated voltage<br>Voltage input section: 1000 VAC, 1400 Vpeak<br>Current input section: 1.7 VAC,2.4 Vpeak| |Maximum rated<br>voltage to earth|Voltage input section: 600V Measurement Category III<br>300V Measurement Category IV<br>Current input section: Depends on clampsensor in use.| (Accuracy guaranteed for 1 year, Post-adjustment accuracy guaranteed for 1 year) |Voltage|RMS value, fundamental wave value,waveform peak (absolute<br>value),fundamental wavephase angle,frequency (1)| |---|---| |Current|RMS value, fundamental wave value,waveform peak (absolute<br>value),fundamental wavephase angle| |Power|Active power, reactive power (with lag/lead display), apparent<br>power, power factor, (with lag/lead display) or displacement<br>power factor (with lag/lead display), active energy (consumption,<br>regeneration, regeneration), reactive energy(lag, lead)<br>Energycost display (per-kWhprice ×power consumption)| |Demand|Active power demand value (consumption, regeneration),<br>reactive power demand value (lag, lead),<br>active power demand quantity*(consumption, regeneration),<br>reactive power demand quantity*(lag, lead),<br>power factor demand value, pulse input<br>* Onlydata output to SD card| |Harmonic|Harmonic voltage, current, power level, content , phase angle<br>Total harmonic distortion factor(THD-F or THD-R)| |List|Voltage RMS value, current RMS value, frequency, total active power,<br>total reactive power, apparent power, power factor or displacement<br>power factor,active energy (consumption),elapsed time| |---|---| |U/I|Voltage RMS value, voltagefundamental wave value,voltage<br>waveform peak, voltage fundamental wave phase angle,<br>current RMS value, currentfundamental wave value,currentwave-<br>formpeak, currentfundamental wavephase angle| |Power|Per-channel and total active power, apparent power, reactive<br>power,power factor or displacementpower factor| |Integ|Active energy (consumption, regeneration), reactiv energy (lag,lead),<br>recordingstart time,recordingstoptime,elapsed time,energycost| |Demand|Active power demand value (consumption, regeneration), reac-<br>tive power demand value (lag, lead),<br>power factor demand value, or pulse input<br>Displays the maximum active power demand value and the time<br>at which it occurred (this information is not saved).<br>(data from upto 48 intervals is internallystored,then refreshed oldest-first).| |Harmonic|Graph(voltage, current and power levels, content percentage and phase angle)<br>List(voltage,current andpower levels,contentpercentage andphase angle)| |Waveform|Displays voltage and current waveform, voltage and current<br>RMS values, and frequency.<br>With a 3P3W3M connection, displays the phase voltage wave-<br>form from the virtual neutralpoint.| |Zoom|Enlarged view of 4 user-selectedparameters| |Trend|For one selected measurement item (except demand and harmon-<br>ics), displays maximum, average and minimum values, with cursor<br>calculations available (Note: with Trend display, there is no power-<br>off backupfunction).| |**External interfaces Specifications**<br>SD card Interface|**External interfaces Specifications**<br>Settings data,measurement data,screen data,waveform data| |---|---| |LAN interface|10BASE-T/100BASE-TX IEEE802.3 Compliance<br>- HTTP server function<br>- Download settings and data bycommunication applicationprogram| |USB interface|USB Ver 2.0, Windows 10 (32/64bit)/ Windows 8 (32/64bit)/<br>Windows 7 (32/64bit) / Vista (32bit) /XP<br>- When connected to a computer, the SD Card and internal<br>memory are recognized as removable storage devices.<br>-Download settings and data bycommunication applicationprogram| |Function|Output pulse rate is proportional to active power consumption<br>(WP+)when measuringintegralpower consumption| |---|---| |Pulse rate|OFF/ 1 Wh/ 10 Wh/ 100 Wh/ 1 kWh/ 10 kWh/ 100 kWh/ 1000 kWh<br>(Default: 1 kWh)| |Pulse width|approx. 100 ms| |Output signal|Open-collector 30 V, 5 mA max (photocoupler isolated)<br>Active Low| ## **WIRE SPECIFICATIONS** ## **Pulse input terminals** ## **Pulse output terminals** Electric wires that conform with: single line: φ0.65 mm (AWG22) twisted wire: 0.32 mm[2 ] (AWG22) strand diameter: φ0.12 mm or more Supported electric wires: **==> picture [37 x 19] intentionally omitted <==** **----- Start of picture text -----**<br> Pu lse out-<br>p ut device<br>**----- End of picture text -----**<br> **==> picture [40 x 7] intentionally omitted <==** **----- Start of picture text -----**<br> P u l se counter<br>**----- End of picture text -----**<br> single line: φ0.32 mm to φ0.65 mm (AWG28 to AWG22) twisted wire: 0.08 mm[2] to 0.32 mm[2] (AWG28 to AWG22) strand diameter: φ0.12 mm or more exposed wire length: 8 mm 9 Specifications in orange available in Model PW3360-21 only ## **General Specifications** |**General Specifications**<br>Display device|**General Specifications**<br>3.5 inch TFT color LCD(320 × 240pixel)| |---|---| ||Japanese, English, Chinese, German, Italian, French, Spanish, Turkish<br>Backlight auto-off function (after 2 minutes)<br>When AUTO OFF is active,the Power LED blinks| |Operating<br>environment|Indoors, Pollution degree 2, altitude up to 2000 m (6562-ft.)| |Operating<br>temperature and<br>humidity<br>(no condensation)|-10°C to 50°C (14°F to 122°F), 80% RH or less<br>During LAN communication: 0°C to 50°C (32°F to 122°F), 80% RH or less<br>During battery operation: 0°C to 40°C (32°F to 104°F), 80% RH or less<br>Duringbatterycharging: 10°C to 40°C(50°F to 104°F),80% RH or less| |Storage<br>temperature and<br>humidity<br>(no condensation)|-20°C to 60°C (-4°F to 140°F), 80% RH or less<br>However, the batteryُs storage temperature range is -20°C to<br>30°C (-4°F to 86°F), 80% RH or less| |Dielectric strength|4.29 kVrms AC (1 mA sense current) between voltage input ter-<br>minals and external terminals,50/ 60 Hz for 60 sec.| |Applicable standards|Safety: EN61010,EMC: EN61326,EN61000-3-2,EN61000-3-3| |Power supply|•Z1006 AC Adapter (12 V, 1.25 A),Rated supply voltage 100 VAC<br>to 240 VAC, Rated power supply frequency 50/60 Hz<br>•Model 9459 BatteryPack(Ni-MH DC7.2 V 2700 mAh)| |Charge function|Charges the battery regardless of whether the instrument is on or off.<br>Charge time: Max. 6 hr. 10 min.(reference value at 23°C)| |Maximum rated<br>power|•When the Z1006 AC Adapter is used: 40 VA (including AC adapter),<br>13 VA (PW3360-20 instrument only)<br>•When the 9459 BatteryPack is used: 3 VA| |Continuous<br>battery<br>operation time|Approx. 8 hr. (Continuous, backlight off)<br>(when using the battery pack)| |Backupbatterylife|Clock and settings(Lithium battery),Approx. 10years@23°C(@73.4°F)| |Dimensions|Approx. 180W(7.09") × 100H(3.94") × 48D (1.89") mm (without PW9002)<br>Approx. 180W(7.09")× 100H(3.94")× 68D(2.68")mm(with PW9002)| |Mass|Approx. 550g (19.4 oz) (without PW9002),Approx. 830g (29.3 oz) (with PW9002)| |Accessories|Voltage Cord L9438-53(1 set), AC Adapter Z1006 (1),<br>USB cable(1), instruction manual (1), measurement guide (1),<br>color spiral tubes (1 set): red, yellow, blue/two each, for color-coding clamp<br>sensors,spiral tubes forgroupingclampsensor cords(5)| |**Measurement Specifications**<br>Connection|**Measurement Specifications**<br>Single-phase 2-wire (1P2W, 1P2W52 circuits, 1P2W53 circuits)<br>Single-phase 3-wire (1P3W, 1P3W+I, 1P3W1U, 1P3W1U+I)<br>Three-phase 3-wire (3P3W2M, 3P3W2M+I, 3P3W3M)<br>Three-phase 4-wire(3P4W),Current only: 1 to 3 channels| |---|---| |Simultaneous<br>power/current<br>measurement modes|1P3W+I: 1 power circuit and 1 current channel<br>3P3W2M+I: 1 power circuit and 1 current channel| |Calculation<br>selection|Power factor, reactive and apparent power: rms calculation/ funda-<br>mental wave calculation| |Measurement<br>accuracy<br>(50/ 60Hz,<br>power factor = 1)|Voltage: ±0.3% rdg. ±0.1% f.s.<br>Current: ±0.3% rdg. ±0.1% f.s. + clamp sensor accuracy<br>Active power: ±0.3% rdg. ±0.1% f.s. +clamp sensor accuracy<br>Clamp-On Sensor 9661 accuracy:±0.3% rdg. ±0.01% f.s.<br>(Accuracy depends on clamp sensor. See page 10 for the accuracy of<br>each model, and page 11 for combined accuracy of Model PW3360-20<br>and each clampsensor.)| |Display update rate|Approx. 0.5 sec (except when accessing SD card or internal memory,<br>or during LAN/USB communication)<br>However,approx. 1 s forpower-related values| |Measurement<br>method|Digital sampling and zero cross synchronization calculation method<br>Sampling:10.24 kHz (2048points)<br>Calculation processing<br>50 Hz: Continuous, gapless measurement at 10 cycles<br>60 Hz: Continuous, gapless measurement at 12 cycles| |A/D converter resolution|16bit| ## **Recording Specifications** |**Recording Specifications**<br>Save destination|**Recording Specifications**<br>SD Card,internal memory (capacity: approx. 320 KB)| |---|---| |Save interval time|1/2/5/10/15/30 seconds, 1/2/5/10/15/20/30/60 minutes<br>* Available storage time is displayed on PW3360-20's settingscreen| |Save items|Measurement save: Average only / all (average, maximum, mini-<br>mum)<br>Harmonic data save: Binary format (average, maximum and<br>minimum)<br>Screen save: ON/OFF Saves the displayed screen as a BMP at a<br>fixed interval. (The minimum interval time for saving screen cop-<br>ies is 5 min. If the setting is less than 5 min., screen copies will be<br>saved every 5 min.)<br>Waveform save: Stores binary waveform data (with shortest inter-<br>val 1 minute). When set to less than 1 minute, waveforms are saved<br>once everyminute| |Recording start methods|Interval time, manual, specified time, repeat: Record pe-<br>riod(00:00 to 24:00)·Segment folder(off/day/week/month)| |Recording stop methods|Manual, specified time, timer, repeat<br>(upto oneyear)| |**Harmonic Specifications (PW3360-21 only)**<br>Standard|**Harmonic Specifications (PW3360-21 only)**<br>IEC61000-4-7:2002 compliant,but without interharmonics| |---|---| |Window width|10 cycles at 50 Hz,and 12 cycles at 60 Hz(with interpolation)| |Pointsper window|Rectangular,2048points| |Analysis orders|Upto the 40th order| |THD calculation selection|THD-F/THD-R| |Analysis items|Harmonic level: Voltage, current and power levels for each harmonic<br>(U12 and I12 obtained by calculation of the third channel in 3P3W2M<br>wiring are not displayed. Phase voltage is used for 3P3W3M wiring.)<br>Harmonic content: Voltage, current and power contents for each harmonic<br>Harmonic phase angle: Voltage, current and power phase angles for each<br>harmonic<br>Total harmonic distortion factor: Voltage and current(THD-F or THD-R)| |Measurement<br>accuracy|Harmonic level<br>1st to 15th orders<br>: ±5% rdg. ±0.2% f.s.<br>16th to 20th orders<br>: ±10% rdg. ±0.2% f.s.<br>21st to 40th orders<br>: ±20% rdg. ±0.3% f.s.<br>For voltage and current,add accuracyof clampsensor.| ||Harmonic power phase angle<br>1st to 3rd orders<br>: ±3°+clamp sensor accuracy<br>4th to 40th orders<br>: ±0.1°×k±3°+clamp sensor accuracy<br>For each harmonic order at 6 V, harmonic current level is<br>regulated at 1% f.s.| ||Total harmonic distortion factor:Accuracyunspecified| ## ■ POWER LOGGER VIEWER SF1001 Specifications ## General Specifications |General Specifications<br>Supported models|General Specifications<br>PW3360-20, PW3360-21, PW3365, 3169-20, 3169-21<br>LR5000 series; Data previously loaded by the LR5000 Utility (.hrp2 for-<br>mat) using a PC| |---|---| |Supported computer<br>operatingsystems|Supported computer<br>Windows 8/8.1 (32/64bit), Windows 7 SP1 or later (32/64bit)<br>Windows Vista SP2 or later(32bit),Windows XP SP3 or later(32bit)| ## Functions Specifications |Functions Specifications|Functions Specifications<br>|<br>d<br>=<br>3| |---|---| |Trend graph<br>display function|Display items:Voltage, current, active power, reactive power,<br>apparent power, power factor, frequency,**i**ntegrated active<br>power, integrated reactive power, demand volume, demand<br>value, voltage disequilibrium factor, pulse, harmonics (level,<br>content, phase angle,total value,THD)| ||Stacked bar graph display: Up to 16 types of data series can<br>be displayed in an overlay graph| ||Cursor measurements:Measurement values can be dis-<br>played bythe cursor| |Summary display<br>function|Displayed items are the same as for the trend Graph Display| ||Daily, weekly and monthly report displays:Accumulates and<br>displays daily,weeklyand monthlyreports over specifiedperiod.| ||Load factor calculation display:Calculates and displays load factor<br>and demand factor results with daily,weeklyand monthlyreports| ||Time span aggregation:Aggregates data into up to four<br>specified time spans| ||CO2 equivalent display:Uses the specified conversion rate<br>to displayCO2 equivalent values(reference values).| |Waveform display|pyq()<br>Displays waveform data at specified date and time| |py<br>Harmonic display|pypecified date and time<br>List display:Displays a list of harmonic data at specified date and time| ||Graph display:Displays a bar graph of harmonic data at<br>specified date and time| ||pecified date and time<br>Cursor calculation:Calculates measurement data at cursors<br>in waveform andgraph displays| |Copy function|gppy<br>Captures any display image to the clipboard| |Print function|Preview and print content shown on the trend graph, report,<br>harmonicgraph and settings displays.| ||Comment entry (Text comments can be entered in any printout)| ||Header/Footer settings: Sets the header and footer for eachprintout| ||Printing support:Any color or monochrome printing supported by the<br>operatingsystem| |Report printing|Print(static)contents over a specific timeperiod| ||Output contents: Standard or selected output items| ||Available output items:Trend graph, summary, daily report,<br>harmonic list,harmonicgraph,waveform| ||Report creation method:Standardprint| ||Report output settings:Save/load report output settings| 10 ■ CLAMP SENSOR Specifications ## **CLAMP ON SENSOR** **==> picture [504 x 260] intentionally omitted <==** **----- Start of picture text -----**<br> 9694 9660 9661 9669 9695-02 9695-03<br>Insulated conductor Insulated conductor<br>“Oy Ov" Qo 4Q46<br>Appearance Not CE marked Not CE marked<br>CONNECTION CORD 9219<br>Connect with the<br>Cord length: 3 m Twas Cord length: 3 m Cord length: 3 m Cord length: 3 m 9695-02/-03,<br>(9.84ft) (9.84ft) (9.84ft) (9.84ft) Output BNC terminal Cord length: 3 m (9.84ft)<br>Measurable conductor φ55 mm (2.17"),<br>φ15 mm (0.59") φ15 mm (0.59") φ46 mm (0.81") φ15 mm (0.59") φ15 mm (0.59")<br>diameter 80 (3.15")×20 (0.79") mm<br>er Primary current rating 5 A AC 100 A AC 500 A AC 1000 A AC 50 A AC 100 A AC<br>±0.3% rdg. ±0.3% rdg. ±0.3% rdg. ±1.0% rdg. ±0.3% rdg. ±0.3% rdg.<br>Amplitude (45 to 66 Hz)<br>Accuracy ±0.02% f.s. ±0.02% f.s. ±0.01% f.s. ±0.01% f.s. ±0.02% f.s. ±0.02% f.s.<br>rr Phase (45 Hz to 5 kHz) Within ±2˚ Within ±1˚ Within ±0.5˚ Within ±1˚ Within ±2˚ Within ±1˚<br>Frequency characteristic<br>40Hz to 5kHz Within ±1.0% Within ±2.0% Within ±1.0%<br>a (deviation from accuracy)<br>Effect of external magnetic field<br>(with a magnetic field of 400 A/ m AC) Equivalent to 0.1 A or less Equivalent to 1 A or less Equivalent to 0.1 A or less<br>Effect of conductor position Within ±0.5% Within ±1.5% Within ±0.5%<br>—— Maximum rated voltage to earth CAT III 300 Vrms CAT III 300 Vrms CAT III 600 Vrms CAT III 600 Vrms CAT III 300 Vrms<br>Maximum input (45 to 66Hz) 50 A continuous 130 A continuous 550 A continuous 1000 A continuous 60 A continuous 130 A continuous<br>Dimensions 46W (1.81") 5 135H (5.31") 46W (1.81") 5 135H (5.31") 77W (3.03") 5 151H (5.94") 99.5W (3.92") 5 188H (7.40") 50.5W (2.28") 5 58H (2.28")<br>5 21D (0.83") mm 5 21D (0.83") mm 5 42D (1.65") mm 5 42D (1.65") mm 5 18.7D (0.74") mm<br>Mass 230 g (8.1 oz) 230 g (8.1 oz) 380 g (13.4 oz) 590 g (20.8 oz) 50 g (1.8 oz)<br>**----- End of picture text -----**<br> **==> picture [503 x 325] intentionally omitted <==** **----- Start of picture text -----**<br> AC FLEXIBLE CURRENT SENSOR CLAMP ON LEAK SENSOR [(Leakage Current Measurement Only)]<br>CT9667-01 CT9667-02 CT9667-03 9657-10 9675<br>Insulated conductor Insulated conductor<br>Appearance<br>Appearance<br>Cord length : Sensor - circuit: 2 m (6.56ft)<br>Circuit - connector: 1 m (3.28ft)<br>Cord length: 3 m Cord length: 3 m<br>Measurable conductor diameter φ100 mm φ180 mm φ254 mm (9.84ft) (9.84ft)<br>(3.94") (7.09") (10.00") Measurable conductor diameter φ40 mm (1.57") φ30 mm (1.18")<br>|__fERCRD Primary current rating 500 A AC / 5000 A AC ek, Primary current rating 10 A AC* Ne 10 A AC*<br>Accuracy Amplitude ±2.0% rdg. ±0.3% f.s. Accuracy Amplitude (45 to 66 Hz) ±1.0% rdg. ±0.05% f.s. ±1.0% rdg. ±0.005% f.s.<br>(45 to 66Hz) Phase Within ±1˚ Phase angle (@50 or 60 Hz) Within ±3˚ Within ±5˚<br>ee 10Hz to 20kHz Frequency characteristic(deviation from accuracy) Within ee ±3 dB Frequency characteristic40 Hz to 5 kHz Within ±5% Within ±5%<br>Effect of external magnetic field 1.5% / f.s. or less. (deviation from accuracy)<br>Effect of conductor (with a magnetic field of 400 A/ m ACposition) Within ±3.0% Effect of external magnetic field(with a magnetic field of 400 A/ m AC) 7.5 mA max. 7.5 mA max.<br>— Maximum rated voltage to earth CAT III 1000 Vrms, CAT IV 600 Vrms Effect of conductor position Within ±0.1% Within ±0.1%<br>Maximum input 10000 A continuous Measurable conductor Insulated conductor Insulated conductor<br>(45 to 66Hz)<br>Dimensions Circuit box 35W (1.38") × 120H (4.74") × 34D (1.34") mm Maximum input(45 to 66Hz) 30 A continuous 10 A continuous<br>—— Sensor cable diameter φ7.4 mm (0.29”) φ13 mm (0.51”) Dimensions 74W (2.91") × 145H (5.71") 60W (2.36") × 112.5H (4.43")<br>Mass 280 g (9.9 oz.) 470 g (16.6 oz.) × 42D (1.65") × 23.6D (0.95")<br>LR06 alkaline battery × 2 (continuous operation max. 7 days) Mass 380 g (13.4 oz) 160 g (5.6 oz)<br>Power supply<br>————————— or AC ADAPTER 9445-02/9445-03 (optional) Notes Not used for power measurements<br>* Maximum AC measurement range with PW3360-20 is 5 A.<br>Available Recording Time PW3360-20 and PW3360-21 with Z4001 2-GB SD card, measuring 3P3W2M wiring<br>Saved Items: ALL data (Saves all data: average, maximum, and minimum values)<br>Screen save: OFF Waveform save: OFF<br>**----- End of picture text -----**<br> ||Save Time|Save Time|||Save Time|Save Time| |---|---|---|---|---|---|---| ||**PW3360-20**|**PW3360-21**|||**PW3360-20**|**PW3360-21**| |Interval time|**PW3360-21**|||Interval time|**PW3360-21**|| ||(Saving of harmonic|(Saving of harmonic<br>(Saving of harmonic|(Saving of harmonic||(Saving of harmonic|(Saving of harmonic<br>(Saving of harmonic| ||data: OFF)|data: ON)|||data: OFF)|data: ON)| |1 seconds|15.9 days|24.7 hours||30s|1year|30.8 days| |2 seconds|31.9 days|2.1 days||1 minutes|1year|61.7 days| |5 seconds|79.7 days|5.1 days||2 minutes|1year|123 days| |10 seconds|159 days|10.3 days||5 minutes|1year|308 days| |15 seconds|242 days|15.4 days||More than<br>10 minites|1 year|1 year| The maximum recording time based on the settings can be confirmed right on the Settings screen. In any case, the maximum file size for measurement data is about 200 MB. When this is exceeded, a new file is created and saving continues. <NOTE> Regardless of the settings, the maximum save time of the PW3360-20, PW3360-21 is one year. 11 ## ■ Measurement Range Confgurations |Voltage|Current<br>Connection|CLAMP ON SENSOR9694(CAT III 300 V)*1|CLAMP ON SENSOR9694(CAT III 300 V)*1|CLAMP ON SENSOR9694(CAT III 300 V)*1|CLAMP ON SENSOR9694(CAT III 300 V)*1|CLAMP ON SENSOR9694(CAT III 300 V)*1| |---|---|---|---|---|---|---| |||CLAMP ON SENSOR9695-02(CAT III 300 V)||||| |||500.00 mA|1.0000 A|5.0000 A|10.000 A|50.000 A| |600.00 V|1P2W|300.00 W|600.00 W|3.0000 kW|6.0000 kW|30.000 kW| ||1P3W<br>1P3W1U<br>3P3W2M<br>3P3W3M|600.00 W|1.2000 kW|6.0000 kW|12.000 kW|60.000 kW| ||3P4W|900.00 W|1.8000 kW|9.0000 kW|18.000 kW|90.000 kW| - *1. For the 9694 sensor, the range of guaranteed accuracy is from 500 mA to 5 A, and for the 9695-02, from 500 mA to 50 A. |Voltage|Current<br>Connection|CLAMP ON SENSOR9660,9695-03 (CAT III 300 V) *2|CLAMP ON SENSOR9660,9695-03 (CAT III 300 V) *2|CLAMP ON SENSOR9660,9695-03 (CAT III 300 V) *2|CLAMP ON SENSOR9660,9695-03 (CAT III 300 V) *2|CLAMP ON SENSOR9660,9695-03 (CAT III 300 V) *2| |---|---|---|---|---|---|---| |||5.0000 A|10.000 A|50.000 A|100.00 A|500.00 A| |600.00 V|1P2W|3.0000 kW|6.0000 kW|30.000 kW|60.000 kW|300.00 kW| ||1P3W<br>1P3W1U<br>3P3W2M<br>3P3W3M|6.0000 kW|12.000 kW|60.000 kW|120.00 kW|600.00 kW| ||3P4W|9.0000 kW|18.000 kW|90.000 kW|180.00 kW|900.00 kW| ## Total display range Voltage is displayed from 5 V to 1000 V, with less than 5 V displayed as 0 V. Current is displayed from 0.4% to 130% of the selected range, with less than 0.4% displayed as 0 A Power is displayed from 0 to 130% of full scale, with 0 W displayed when voltage or current is zero. The range configurations for apparent power (S) and reactive power (Q) are the same, with units of [VA] and [var], respectively. When VT and CT ratios are set, the range configuration is the product (VT ratio × CT ratio). ## Effective measurement range For voltage, 90 to 780 V, with max. 1400 V peak. For current, 5% to 110% of the selected range with peak ±400% of range, but maximum range is ±200%. For power, 5% to 110% of the selected range. For frequency, 45 to 66 Hz. - *2. For the 9660 and 9695-03 sensors, the range of guaranteed accuracy is from 5 A to 100 A, and for the 9661, from 5 A to 500 A. **==> picture [495 x 240] intentionally omitted <==** **----- Start of picture text -----**<br> Current<br>CLAMP ON SENSOR 9669<br>Voltage Connection 100.00 A 200.00 A 1.0000 kA<br>1P2W 60.000 kW 120.00 kW 600.00 kW ■ Current Display and Effective Measurement Ranges (typical)(typical)<br>1P3W Current<br>1P3W1U Range Display range<br>600.00 V 120.00 kW 240.00 kW 1.2000 MW<br>3P3W2M 650 A<br>500 A Effective measurement range<br>3P3W3M<br>2 A 25 A 550 A<br>3P4W 180.00 kW 360.00 kW 1.8000 MW 130 A<br>100 A Effective measurement range<br>Current AC FLEXIBLE CURRENT SENSOR CT9667-01, -02, -03 0.4 A 5 A 65 A 110 A<br>500/5000 A<br>500 A range range 5000 A range 50 A Effective measurement range<br>Voltage Connection 50.000 A 100.00 A 500.00 A 1.0000 kA 5.0000 kA 0.2 A 2.5 A 55 A<br>1P2W 30.000 kW 60.000 kW 300.00 kW 600.00 kW 3.0000 MW<br>0 A 1 A 10 A 100 A 1000 A<br>1P3W<br>600.00V 1P3W1U 60.000 kW 120.00 kW 600.00 kW 1.2000 MW 6.0000 MW 13 A<br>3P3W2M 10 A Effective measurement range<br>3P3W3M 0.04 A 0.5 A 11 A<br>6.5 A<br>3P4W 90.000 kW 180.00 kW 900.00 kW 1.8000 MW 9.0000 MW 5 A Effective measurement range<br>0.02 A 0.25 A 5.5 A<br>Leak current : CLAMP ON LEAK SENSOR 9657-10, 9675 0 A 100 mA 1 A 10 A 100 A<br>Range 50.000 mA/100.00 mA/500.00 mA/1.0000 A/5.0000 A<br>Input Current<br>**----- End of picture text -----**<br> ## ■ Current Display and Effective Measurement Ranges (typical)(typical) ## ■ Measurement accuracy **==> picture [233 x 295] intentionally omitted <==** **----- Start of picture text -----**<br> Voltage ±0.3% rdg. ±0.1% f.s.<br>Current ±0.3% rdg. ±0.1% f.s. + clamp sensor accuracy<br>Active power ±0.3% rdg. ±0.1% f.s. + clamp sensor accuracy (power factor = 1)<br>Combined accuracy of PW3360-20 + clamp sensors<br>Range 9694 9695-02<br>50.000 A ― ±0.6% rdg. ±0.12% f.s.<br>10.000 A ― ±0.6% rdg. ±0.2% f.s.<br>5.0000 A ±0.6% rdg. ±0.12% f.s. ±0.6% rdg. ±0.3% f.s.<br>1.0000 A ±0.6% rdg. ±0.2% f.s. ±0.6% rdg. ±1.1% f.s.<br>500.00 mA ±0.6% rdg. ±0.3% f.s. ±0.6% rdg. ±2.1% f.s.<br>Range 9660, 9695-03 9661<br>500.00 A ― ±0.6% rdg. ±0.11% f.s.<br>100.00 A ±0.6% rdg. ±0.12% f.s. ±0.6% rdg. ±0.15% f.s.<br>50.000 A ±0.6% rdg. ±0.14% f.s. ±0.6% rdg. ±0.2% f.s.<br>10.000 A ±0.6% rdg. ±0.3% f.s. ±0.6% rdg. ±0.6% f.s.<br>5.0000 A ±0.6% rdg. ±0.5% f.s. ±0.6% rdg. ±1.1% f.s.<br>Range 9669<br>1.0000 kA ±1.3% rdg. ±0.11% f.s.<br>200.00 A ±1.3% rdg. ±0.15% f.s.<br>100.00 A ±1.3% rdg. ±0.2% f.s.<br>-01 -01<br>Range CT9667 5000A ran-02-03 ge CT9667 500A ran-02-03 ge<br>5.0000kA ±2.3% rdg. ±0.4% f.s. ─<br>1.0000kA ±2.3% rdg. ±1.6% f.s. ─<br>500.00A ±2.3% rdg. ±3.1% f.s. ±2.3% rdg. ±0.4% f.s.<br>100.00A ─ ±2.3% rdg. ±1.6% f.s.<br>50.000A ─ ±2.3% rdg. ±3.1% f.s.<br>**----- End of picture text -----**<br> Conditions of guaranteed accuracy After 30 minute warm-up, with 50/60 Hz sine wave input Temperature and humidity 23˚C ±5˚C (73 ± 9°F), 80%RH or less for guaranteed accuracy (applies to all specifications unless otherwise noted) Display area of guaranteed accuracy Effective measurement range Within ±0.3 sec/day (with power on, within specified operating Real-time clock accuracy temperature and humidity ranges) Temperature characteristic Within ±0.1% f.s./ ˚C (except 23 ±5°C) Effect of common mode Within ±0.2% f.s. voltage (600 V AC, 50/60 Hz, between voltage input terminal and case) Effect of external magnetic field Within ±1.5% f.s. (in a magnetic field of 400 A/m rms AC, 50/60 Hz) Effect of phase Phase accuracy ±1.3° equivalent (with 50/60 Hz f.s. input) |Temperature characteristic<br>Effect of common mode<br>voltage<br>Effect of external magnetic field <br>Effect of phase|Within ±0.1% f.s./ ˚C(except 23 ±5°C)<br>Within ±0.2% f.s.<br>(600 V AC,50/60 Hz,between voltage input terminal and case)<br> Within ±1.5% f.s.(in a magnetic field of 400 A/m rms AC,50/60 Hz)<br>Phase accuracy±1.3° equivalent(with 50/60 Hz f.s. input)| |---|---| |Apparentpower|±1 dgt. for the calculation obtained from each measurement value| |Reactive power|Fundamental waveform calculations<br>±0.3% rdg. ±0.1% f.s. + clamp-on sensor accuracy (w/power factor = 1)| ||Rms calculations<br>From each measurement applied to calculation ±1 dgt.| |Energy|Active and reactivepower measurement accuracies ±1 dgt.| |Power factor|From each measurement applied to calculation ±1 dgt.| |Frequency|±0.5% rdg.(with 90 to 780 V sine wave input)| |Demand value|Active and reactivepower measurement accuracies ±1 dgt.| |Demandquantity|Active and reactivepower measurement accuracies ±1 dgt.| |Pulse input|±1 dgt. for the calculation obtained from each measurement value| |Frequency characteristic|At 50/60 Hz fundamental waveform frequency,<br>up to 1 kHz, ±3% rdg. ±0.2% f.s.<br>up to 3kHz, ±10% rdg. ±0.2% f.s.<br>For current and active power, add clamp-on sensor accuracy.<br>Note: onlyfor 3P3W3M wiring,add ±0.5% rdg.| ## Current sensors : Sold separately as <a) ## Model : CLAMP ON POWER LOGGER PW3360 ## Bundled Accessories ## Model No. (Order Code) (Note) PW3360-20 (English model, main unit only) AC ADAPTER Z1006 PW3360-21 (English model, with harmonic analysis function) Accessories: Voltage cord L9438-53 ×1 set, AC adapter Z1006 ×1, USB cable ×1, Instruction manual ×1, Measurement guide ×1, Color clip ×1 set: red, yellow, blue, white/two each, for color-coding clamp sensors, Spiral tubes for grouping clamp sensor cords ×5 _Note: At least one optional current sensor is necessary to measure current or power parameters. To store measurement data, use only the guaranteed SD cards sold by HIOKI._ wy 100 to 240 V AC ## VOLTAGE CORD L9438-53 cord length: 3m (9.84 ft) 1 cord each of black, red yellow, and blue, and five spiral tubes for bundling cords ## ■ **Options CLAMP ON SENSOR** (for load current measurement) _ ~~EEE~~ ## **PATCH CORD** LEE ## **CLAMP ON ADAPTER** **PATCH CORD L1021-01** CLAMP ON SENSOR 9694 (5 A AC) CLAMP ON SENSOR 9660 (100 A AC) CLAMP ON SENSOR 9661 (500 A AC) CLAMP ON SENSOR 9669 (1000 A AC) **9290-10** MAX. 1500 A AC (continuous: 1000 A) **==> picture [54 x 55] intentionally omitted <==** **----- Start of picture text -----**<br> Primary side<br>1000 A<br>Secondary side<br>100 A<br>**----- End of picture text -----**<br> Banana branch-banana, Red: 1, Cable length: 0.5 m, For branching from the L9438-50 or L1000, CAT IV 600 V, CAT III 1000 V AC FLEXIBLE CURRENT SENSOR CT9667-01 (5000 A AC) AC FLEXIBLE CURRENT SENSOR CT9667-02 (5000 A AC) AC FLEXIBLE CURRENT SENSOR CT9667-03 (5000 A AC) CLAMP ON SENSOR[(Not CE marked)] 9695-02 (50 A AC) CLAMP ON SENSOR[(Not CE marked)] 9695-03 (100 A AC) CONNECTION CORD 9219 (for connection to 9695-02, 9695-03) When purchasing the 9695-02 and 9695-03, we recommend also purchasing the separately sold 9219 Connection Cord. CAT III 600 V Cord length: 3 m (9.84 ft) **==> picture [31 x 6] intentionally omitted <==** **----- Start of picture text -----**<br> L1021-02<br>**----- End of picture text -----**<br> ## **Measurable conductor diameter** Banana branch-banana, Black: 1, Cable length: 0.5 m, For branching from the L9438-50 or L1000, CAT IV 600 V, CAT III 1000 V φ55 mm (2.17 in) Bus bar: ■ 80 mm (3.46in) 5 20 mm (0.79 in) CT ratio: 10:1 **CLAMP ON LEAK SENSOR** Lo (for leakage current measurement) CLAMP ON LEAK SENSOR 9657-10 CLAMP ON LEAK SENSOR 9675 **==> picture [496 x 249] intentionally omitted <==** **----- Start of picture text -----**<br> SS Storage media eS VOLTAGE LINE POWER ADAPTER BATTERY SET<br>SD MEMORY CARD 2GB SD MEMORY CARD 8GB PW9003 Rated voltage: 240 V AC Battery Case and Battery Pack Set<br>Z4001 Z4003 (supplies power from Operating temperature and humidity range: -10 to 50°C, 80% RH or less PW9002<br> measurement lines)<br>Stores up to one year’s data when acquired at one<br>minute intervals.<br>SD Card Precaution<br>BATTERY PACK 9459<br>Use only SD Cards sold by HIOKI. Compatibility and performance are not<br>guaranteed for SD cards made by other manufacturers. You may be unable NiMH, Charges while installed<br>to read from or save data to such cards. CAT III 300V in the main unit<br>SS CARRYING CASE S MAGNET ADAPTER S SS POWER LOGGER VIEWER LAN CABLE<br>C1005 9804-01 Red<br>SF1001 9642<br>9804-02 Black<br>φ11mm (0.43 in)<br>(generally compatible with M6 pan screws)<br>Magnetic tip for use with the standard<br>VOLTAGE CORD L9438-53<br>Straight Ethernet cable, supplied with<br>Red and black adapters sold separately. straight to cross conversion adapter, 5<br>Purchase the quantity and color appropriate for your m (16.41 ft) length<br>application.<br>(Example: 3P3W-3 adapters, 3P4W-4 adapters)<br>Dimension: .~<br>Approx. 390W (15.4")×275H (10.8")×110D (4.3") mm<br>Power Source<br>**----- End of picture text -----**<br> HEADQUARTERS 81 Koizumi Ueda, Nagano 386-1192 Japan www.hioki.com HIOKI USA CORPORATION TEL +1-609-409-9109 FAX +1-609-409-9108 hioki@hiokiusa.com / www.hiokiusa.com HIOKI (Shanghai) SALES & TRADING CO., LTD. TEL +86-21-6391-0090/0092 FAX +86-21-6391-0360 info@hioki.com.cn / www.hioki.cn HIOKI SINGAPORE PTE.LTD. TEL +65-6634-7677 FAX +65-6634-7477 info-sg@hioki.com.sg / www.hioki.com.sg HIOKI KOREA CO., LTD. TEL +82-2-2183-8847 FAX +82-2-2183-3360 info-kr@hioki.co.jp / www.hiokikorea.com HIOKI EUROPE GmbH TEL +49-6173-31856-0 FAX +49-6173-31856-25 hioki@hioki.eu / www.hioki.com HIOKI TAIWAN CO., LTD. TEL +886-3-3467160 FAX +886-3-3467162 info-tw@hioki.com.tw / www.hioki.com DISTRIBUTED BY _Note: Company names and Product names appearing in this catalog are trademarks or registered trademarks of various companies._ All information correct as of Nov. 26, 2018. All specifications are subject to change without notice. PW3360E16-8YE Printed in Japan
Updated at June 4, 2026
Hioki is a distinguished manufacturer recognized globally for its innovative and precision-driven test and measurement solutions. The company develops advanced, high-quality instruments designed to meet the rigorous demands of engineers, technicians, and researchers across the electronics, automotive, and energy sectors. Within its comprehensive portfolio of measurement technology, Hioki is particularly noted for its highly reliable data acquisition and data logging systems. Their precision dataloggers are meticulously engineered to gather crucial information with unparalleled accuracy, enabling professionals to seamlessly monitor, record, and analyze complex electrical and environmental phenomena over time. Built with a commitment to user-friendly operation and robust performance, Hioki instruments are designed to streamline complex workflows and accelerate both research and industrial diagnostics. By delivering exceptional build quality and consistent, verifiable results, the brand remains a trusted choice for critical measurement tasks and long-term data collection.
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