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1. RANGE PE ARTIFICIAL E o o a 1 150kHz 30MHz OQ HAND LIN ON Q 9kHz 30MHz pe ARTIFICIAL MAINS NETWORK LS 32 Fig 2 1 Front Panel 10 SP N Q 50Hz 230 400 V A MAX 32A 6h SAFETY WARNINGS BEFORE CABLING CONNECT PROTECTIVE EARTH o DO NOT REMOVE COVER 5 REMOTE CONTROL oo 000 o o 1 O O Z pp n Fig 2 2 Rear Panel Legend 1 Ground contact 5 Mains LISN supply 2 Mains supply to DUT 32A 6 Mains supply to DUT 16A Schuko 3 Manual switch for phase under test With PMM 7 Remote receiver control connector receivers the switch is disabled and the switching is automatic 8 Artificial hand 4 RF output to EMI Signal Analyzer 50 ohm BNC 9 Line under test indicating led female connector 10 Filter 150kHz 30MHz 22 PMM L3 32 narda Safety Test Solutions 3 PMM L3 64 and L3 64 690 3 1 L3 64 Main specifications Table 3 1 lists the PMM L3 64 Network performance specifications The following conditions apply to all specifications e The ambient temperature must be 10 to 40 TABLE 3 1 Main specifications PMM L3 64 Frequency range Maximum rated output current Maximum operating voltage Input mains frequency range Equivalent circuit RF output Test item Rated temperat
2. PPs XV CP I amp ae ELLA Lb Device Under Test Mains connection Fig 6 1 Pilot Circuit connection example This is a Safety Class equipment it is provided with a protective earth terminal Before connecting this instrument ensure that an uninterruptible safety earth ground is provided from the main power source to the product protective earth connection If this instrument is to be connected to other equipment or accessories prior to energizing either unit verify that a common ground exists between them Any interruption or loosening of the protective earth ground conductor either inside or outside the unit or in an extension cable will cause a potential shock hazard that could result in personal injury Verify the safety earth ground functionality before operation Installation narda Safety Test Solutions 6 6 Installation Check list Before operation ensure the following steps are taken e Check the line voltage to ensure the compatibility with the equipment requirements e Ensure that the to be provided fuse or breaker current rating is appropriate for the equipment setup e Protection earth line is connected to mains supply input on the rear panel e Ensure that cables and terminals used to connect PMM LISN Network to supply line and to Equipment Under Test are suitable for the setup current rating and proper safety insulation e Verify that 50 ohm RF cable to the EMI Signal An
3. VI EC Conformity Certificate PMM L3 64 690 and L3 100 VII EC Conformity Certificate PMM L1 500 and L3 500 VIII EC Conformity Certificate PMM SBRF4 IX 1 General Information Page 1 1 Documentation cce 121 1 2 Introduction to PMM Artificial Mains Network 1 1 1 3 PMM Artificial Mains Networks for CURRENT INJECTION test ssseeeeeeR III 1 2 1 4 Shipping components sssum 1 3 1 5 Optional ACCESSOSIES cece cee ee cece eee eee seen eaeenees 1 3 tO ENVION M I 1 3 1 7 Return fOr Bit UTTT 1 3 1 8 Equipment cleaning i 1 3 2 PMM L3 32 Page 2 1 Main specificatiONS 2 1 2 2 Front and Rear pahelS nn 2 2 3 PMM L3 64 and L3 64 690 Page 3 1 L3 64 Main specifications eese 3 1 3 2 L3 64 690 Main specifications 3 2 3 3 Front and Rear panelS i 3 3 4 PMM L3 100 Page 4 1 Main sSPECNEANONS vase 4 1 4 2 Front and Rear panelS nne 4 2 5 PMM L3 500 Page 5 1 Main specificatiONS 5 1 5 2 Front and Rear panelS ii 5 2 6 Installation Page 6 1 INFOGUCINO EEE EE ai 6 1 6 2 Initial INSPECHION 6 1 6 3 Packing unpacking i 6 1 6 4 Preparation for USE 6 2 PSP E Te PI NM 6 2 6 6 Installation che
4. 125 A plug and socket outlet according to IEC 309 standard 10 to 40 C 25 t0 75 C 465 x 450 x 740 70 kg 100 kg PMM L3 100 4 1 narda Safety Test Solutions 4 2 Front and Rear In Fig 4 1 and Fig 4 2 you can see front and rear connecting points and Panels terminals of PMM L3 100 Network O OG Q 7 Pu PMM L3 100 Fig 4 1 Front Panel 1 Fig 4 2 Rear Panel Legend 1 Ground contact 4 RF output to EMI Signal Analyzer 50 ohm BNC female connector 2 Mains supply to DUT 5 Line under test indicating led 3 Manual switch for phase under test With PMM receiver the switch is disabled and the switching is 6 Mains LISN supply automatic 7 Remote PMM receivers control connector PMM L3 100 narda Safety Test Solutions 9 PMM L3 500 L1 500 5 1 Main specifications The PMM L1 500 is the 500 Ampere single line Line Impedance Stabilization Network and the assembly of 4 of it results in a L3 500 LISN 3L N Table 5 1 lists the PMM L3 500 Network performance specifications Please read carefully and always follow all safety requirements especially the Safety recommendations and instructions at pages 5 and 6 t iti dau brain Li 500 ty A me Bi LURE d thso0 j 14 L3 500 Three phase Artificial Mains Network front view Document L3EN 31219 NAR
5. Sales amp Support Manufacturing Plant GEMENT sp n a rd a E Via Leonardo da Vinci 21 23 Via Benessea 29 B d gt Safetv Test Solutions Test 20090 Segrate MI ITALY 17035 Cisano sul Neva SV g arety TEST SOIUTONS tions Tel 39 02 2699871 Tel 39 0182 58641 81 an E Communications Company S r l Socio Unico Fax 39 02 26998700 Fax 39 0182 586400 sincert ET http www narda sts it User s Manual PMM L3 32 PMM L3 64 PMM L3 64 690 PMM L3 100 PMM L1 500 PMM L3 500 ARTIFICIAL MAINS NETWORKS PMM SBRF4 RF SWITCHING BOX SERIAL NUMBER OF THE INSTRUMENT You can find the Serial Number on the rear panel of the instrument Serial Number is in the form 0000X00000 The first four digits and the letter are the Serial Number prefix the last five digits are the Serial Number suffix The prefix is the same for identical instruments it changes only when a configuration change is made to the instrument The suffix is different for each instrument Document L3EN 31219 Copyright NARDA 2013 narda Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product PMM SBRF4 RF Switching Box Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC EN 61326 1 2007 This
6. RFI measuring receiver Line Impedance Stabilization Network LISN with B connection to reference ground P jack for DUT M coaxial connection to measuring receiver All dimensions are given in centimeters Internal hardware checks and repairs shall be performed only by NARDA authorized assistance and service centers M CAUTION The manufacturer the worldwide distributors and the national distributors shall not be responsible and kept liable for damages to goods to instruments or persons caused during unauthorized operations on the instrument or by manumitted instrument P pie T 7 2 Operating PMM Networks narda Safety Test Solutions 7 3 Network verification and maintenance v4 WARNING To verify proper operation of the PMM Networks use the following test procedure Do not connect any AC or DC supply to PMM Networks during this verification test Test equipment needed 1 RF Generator and level measuring calibrated instrument or 2 Spectrum Analyzer with Tracking Generator In both cases instrument shall be working at 1 MHz Verification test procedure 1 Connect the RF signal or tracking signal to the mains output of L3 100 making sure that the ground is connected to the shield of the RF cable grounded The RF signal or tracking signal shall be taken to L1 and L2 sockets alternatively 2 Connect PMM Networks RF output 3 to the level meter input or Spectrum Analyzer input 3 Attenuati
7. T Q I I un a Q ge pe EN k hd NX N t E M zi ha 2 tv 1 dub arlsedd aae md de iui C a x cD FO o oo cC e lt o z oa O0 a 3 o a Fr E S 3 ET l p D D mq AX C 3 O E CC TN DI O A pee ani olii mt v mn PR D 13 o A mk W N gt la x i i Le f Ne Y ET N i 5 ES nt Hu i Y pe d k if 4 2 PF x t T VIS UO g E KI zu Ti e tet f m E a O F I m i 2 i tv Nm a aes E Fig 7 4 LISN remote cable configuration for PMM 8010 7 6 Operating PMM Networks narda Safety Test Solutions 8 Accessories 8 1 PMM SBRF4 RF Switching Box optional Introduction PMM SBRF4 RF Switching Box is a versatile Accessory designed to operate the RF 300 Large Loop Antenna and the PMM Artificial Mains Networks LISN by the PMM EMI Receivers The PMM SBRF4 RF Switching Box can be used to connect sources that have multiple outputs up to 4 like the PMM L3 500 LISN model or multiple L1 150s LLAs and also LISNs antennas and transducers by other manufactures to any receiver that has one input only The SBRF4 allows to switch manually or automatically when driving a PMM EMI Receiver by a PC running the proper PMM software between the lines The PMM SBRF4 can be used to switch the outputs of any single line transducers Antennas LISNs probes to measure RF emissions
8. a remote control switch to avoid any mains connector operation with high current load Document L3EN 31219 NARDA 2013 General Information 1 1 narda Safety Test Solutions 1 3 PMM Artificial Mains As described above a LISN is primarily a probe to take out RF signals Networks for Some particular EMC recommendations might require that Device Under CURRENT Test shall be proven to conducted EMC immunity in the range 10 kHz 30 INJECTION test MHz by injecting on the supply lines certain RF interference and checking the DUT s response PMM LISNs may be used also to this purpose by injecting a RF signal into the RF output connector on the front panel The following figure shows the CISPR equivalent circuit Connection to D U T 50 uH Ri 50 Q LP 50 GROUND Ri input impedance of the RFI CISPR equivalent circuit Fig 1 1 CISPR quivalent circuit 1 2 General Information narda Safety Test Solutions 1 4 Shipping components 1 5 Optional Accessories NOTE 1 6 Environment 1 7 Return for service 1 8 Equipment cleaning SW CAUTION PMM LISN Network is composed by the following parts PMM LISN Network Operating Manual LISN Control Cable for 9010 RF Cable IEC Mains plug Certificate of compliance Return for repair form PMM LISN Network can be used with e PMM SBRF4 RF Switching Box e LISN Service Kit AC BNC ad
9. 4 Network O00 0 CR PMM L3 64 Fig 3 1 Front Panel 1 Legend 1 Ground contact 2 Mains supply to DUT 3 Manual switch for phase under test With PMM receivers the switch is disabled and the switching is automatic Fig 3 2 Rear Panel 4 RF output to EMI Signal Analyzer 50 ohm BNC female connector 5 Line under test indicating led 6 Mains LISN supply 7 Remote PMM receiver control connector PMM L3 64 3 3 narda Safety Test Solutions This page has been left blank intentionally PMM L3 64 narda Safety Test Solutions 4 PMM L3 100 4 1 Main specifications Table 4 1 lists the PMM L3 100 Network performance specifications The following conditions apply to all specifications e The ambient temperature must be 10 to 40 TABLE 4 1 Main specifications L3 100 Frequency range Maximum rated output current Overload current Maximum operating voltage AC supply frequency range Equivalent circuit RF output Test item Rated temperature Storage temperature Overall dimension mm W x H x D Weight Gross weight Document L3EN 31219 NARDA 2013 L PE N PE L L L N 9 kHz to 30 MHz 100 A continuous 125 A for 5 min 325 Vdc 565 Vdc 230 Vac 400 Vac DC 60 Hz 50 Ohm 5 Ohm 50 uH BNC female
10. DA 2013 PMM L3 500 5 1 narda Safety Test Solutions TABLE 5 1 Main specifications L3 500 L1 500 Frequency range Maximum rated output current Maximum operating voltage Main Power supply frequency range Equivalent circuit RF output EUT Connector Main Power Connector Ground Connectors Rated temperature Storage temperature Overall dimension mm W x H x D Weight PMM L3 500 L N L PE L L L N 9 kHz to 30 MHz 500 A 20 minutes starting the test at max 25 C LISN internal temperature 300 A continuos 565 Vdc 975 Vdc 400 Vac 690 Vac DC 60 Hz 50 Ohm 5 Ohm 50 uH with 250 uH Choke or Bypass 4 BNC female 1 for L1 500 M14 Bolts 10 to 40 C 25 to 75 C 555 x 930 x 830 mm 510 x 175 x 830 mm for L1 500 248 kg 55 kg for L1 500 A narda Safety Test Solutions Main specifications L3 500 L1 500 continued Electrical characteristics Performance Limits Services AC Supply Cooling Fans Led indications Contactors 5 2 Front and Rear Panels P M POWER FAH OVYERHEATHI ao x ex w f N ll N 1 AM IN 4 F i nn O X Legend from left to right 1 POWER on led 2 FAN on led 3 OVERHEATING led 6 OUTPUT Connector To Test Receiver 500 7 Mains LINE OUT To EUT with Protective Earth 8 CHOKE BYPASS Selector 230 V 50 60 Hz 100 VA max 2x 120 mm Power F
11. Earth with the 250uH series internal Choke standard Short circuited pins for Mains power enabling 3 Contactors open circuit when no 230V Services Supply present or when overheating fault occurs AFAN RR I Rear pushing FAN for internal ventilation SALINE 230V Required to power all internal services including Fans Contactors driver Overheat protection 4 CAUTION L1 Contactors Li Contactors L3 Contactors N Contactors To maximize the protection against overheating it is necessary to connect all four Contactors connectors output l Remote control switch in a series like depicted in A PORTAR the schematic diagram on the right Fig 5 3 Contactors diagram PMM L3 500 narda ss Safety Test Solutions LINE IN LINE IN with CHOKE no CHOKE BYPASS TO EUT 250uH 90uH I I TO Test Receiver L1 500 same as each L3 500 line equivalent circuit PMM L3 500 narda Safety Test Solutions This page has been left blank intentionally PMM L3 500 A narda Safety Test Solutions 6 Installation 6 1 Introduction This section provides the information needed to install the PMM LISN Network 6 2 Initial inspection Included is information pertinent to initial inspection power requirements interconnections environment instrument mounting cleaning storage and shipment MU WARNING To avoid hazardous electrical shock do not turn on the ins
12. Fig 8 1 PMM SBRF4 RF Switching Box Document L3EN 31219 NARDA 2013 Accessories Specifications Frequency range Max input level Insertion loss Compatibility Supply RF Output RF Input Remote Control Functions Operating temperature Storage temperature Size W x H x D Weight Instrument Items Other accessories narda Safety Test Solutions The following conditions apply to all specifications e Ambient temperature between 10 C and 50 C TABLE 8 1 Technical Specifications of SBRF4 Up to 108 MHz 27 dBm 0 75 dB 108 MHz Typical without High Pass Filter with all Artificial Mains Networks and Large Loop Antennas from Remote Control Input 10 15 Vdc 100 mA max 50 O BNC female 50 O BNC female Remote control connector for PMM EMI Receivers Manual or automatic switch for phase axis under test Remote control from PMM EMI Receivers Band switch selectable 50Q termination Selectable 150 kHz High Pass Filter 10 to 50 C 20 C to 70 C 80 x 41 5 x 250 mm 950 g PMM SBRFA4 includes the following items PMM SBRF4 RF Switching Box RF Cable LISN Control Cable for 9010 Operating Manual Certificate of compliance Return for repair form PMM SBRF4 can be used with other accessories available on the market like e PMMLISNs e Antennas and Loops e Near Field Probes e RF300 Large Loop Antenna Accessories narda Safety Test Solutions Housing The P
13. MM SBRF4 is built in a metallic housing on the front side are located the 500 Loaded switch the band Switch the manual switch for Line Axis and LEDs on the right side the Remote control and the RF output for EMI Receivers on the left side the RF input for lines axis under test Front view PM SBRFA Q A Selectable open or 500 termination unselected RF SWITCHING BOX inputs E UNLGADED e Di mA B Filter 150kHz 108MHz C Manual switch for phase axis under test with PMM receivers the switch is disabled and the switching is automatic HPF MT m B D LED showing the line under test our REMOTE _ CONTROL E Fig 8 2 Front view Right view Fig 8 3 Right view E Remote control connector for PMM 9010 or PMM 9010 30P F RF output to EMI Receiver Left view Fig 8 4 Left view G RF input for lines axis under test Accessories narda Safety Test Solutions System configuration The PMM SBRF4 RF Switching Box can operate in combination with external Artificial Mains Network or Large Loop Antenna Some examples of connections are illustrated in the following figures L1 150M EMI Receiver L1 150M H ELT E L1 150M 22 aiy we dest I eo inm a n USB RS 232 L1 150M 11008 PMM Emission Suite Fig 8 5 PMM SBRF4 with external Artificial Mains Network RF 300 Large Loop Antenna EMI Receiver
14. USER PORT USB RS 232 154 174 PMM Emission Suite Fig 8 6 PMM SBRF4 with RF300 Large Loop Antenna Accessories narda Safety Test Solutions Installation and use PMM SBRF4 with generic Following the instructions below to install and use the PMM SBRF4 with Artificial Mains Network generic Artificial Mains Networks LISN Position the LISNs where required with proper grounding and mechanical stability Connect the LISNs RF output s to tte SBRF4 RF input s Connect the SBRF4 RF output to the PMM 9010 or 9010 30P Receiver RF input use the manual switch for switching the LISNs Connect the Remote control connector of the SBRF4 and the User Port of the Receiver by the special cable supplied with the SBRF4 to automatically control the Lines via the PMM Emission Suite Software The button B Fig 1 2 enables the 150kHz high pass filter to the NOTE RF output i ii The button A Fig 1 2 is used to terminate the non selected inputs NOTE on 50 Q For further information see CISPR16 1 2 Accessories narda Safety Test Solutions PMM SBRF4 with RF300 Large Loop Antenna NOTE NOTE Follow the instructions below to install and use the PMM SBRF4 with an RF300 Large Loop Antenna Establish an appropriate area to erect the RF300 making sure it is leveled to ensure stability the details of the assembly are included in the RF300 s manual Connect the three axis of t
15. alyzer input be disconnected before switch on or off the supply line e Prior to energizing either unit verify that a common ground connection exists between all equipment in the test setup and safety protection earth To allow correct equipment ventilation ensure that the vent grid on the equipment covers be free by any obstructing object installation narda Safety Test Solutions This page has been left blank intentionally Installation narda Safety Test Solutions 7 Operating PMM Networks 7 1 Operating PMM To operate the PMM Artificial Mains Networks connect the IEC plug on the Networks rear input to the mains insulating transformer To avoid any damage caused by transient current pulses connect the RF cable to the receiver only after the AC supply has been switched on The Equipment Under Test should be connected to the D U T connector To select the phase line to be tested operate the phase knob on the front panel in this case there is no led indication Using PMM receivers the phase switching can be automatically performed in this case the phase under test will be indicated by the led in the front panel CAUTION To avoid any damage caused by transient current pulses disconnect the test Signal Analyzer input before switching AC supply on or off To allow correct equipment ventilation ensure that all the vent grids CAUTION on the equipment covers be free by any obstructing object The PMM LISN conti
16. an Overheating AC Voltage Present 250 V AC DC 10 A max In Fig 5 1 and Fig 5 2 you can see front and rear connecting points and terminals of PMM L3 500 Network ARTIFICAL MAING NETWARE L1 500 AN METTA CALTHA VOLTAGE PEIEENT a COHHECT PROTPCTKORH LARTH BEFORE ROWER UME 4 amp DO HOT REMOVE THE CONTE SERVICE RT QUALERED FERFOHNEL ONT TC HAAHI UNDER TEXT 1 a DOO COVER THE FAN m TO TEST RECEIVER SoC IMAM 5004 Fig 5 1 Front Panel lights up when the device is powered and swithced on lights up when the two fans are running lights up to indicate the internal temperature is higher than allowed front pulling FAN for internal ventilation lights up when the Line is connected to a 230Vac Mains BNC RF Output connector Mains Line Output to power the Device Under Test Switch to select the 2504H coil CHOKE position or to bypass it BYPASS position PMM L3 500 5 3 narda Safety Test Solutions SAFETY WARHINGS ONRET PROTEO TE EARTH a D NOT REMOVE THE CONTE DO SOT OVER THE FAH LEE ei DE Bo Xm mm LG Fig 5 2 Rear Panel Legend from left to right 1 LINE IN no 250uH Choke Mains Line Input to power the Device Under Test From Power source with Protective Earth without the 250uH series internal Choke bypassed 2 LINE IN with 250uH Choke Mains Line Input to power the Device Under Test From Power source with Protective
17. apter for LISNs verification and calibration See Annex D 9010 User s manual as example The operating environment is specified to be within the following limitations e Temperature 10 to 40 C e Humidity lt 90 relative The instrument should be stored in a clean dry environment The storage and shipping environment is specified to be within the following limitations e Temperature 25 to 75 C e Humidity lt 95 relative If the instrument should be returned to NARDA for service please complete the service questionnaire enclosed with the Operating Manual and attach it to the instrument To minimize the repair time be as specific as possible when describing the failure If the failure only occurs under certain conditions explain how to duplicate the failure If possible reuse of the original packaging to ship the equipment is preferable In case other package should be used ensure to wrap the instrument in heavy paper or plastic Use a strong shipping container and use enough shock absorbing material around all sides of the equipment to provide a firm cushion and prevent movement in the container Seal the shipping container securely with shipment tape Mark the shipping container FRAGILE to encourage careful handling Use a clean dry non abrasive cloth for external cleaning of the equipment To clean the equipment do not use any solvent thinner turpentine acid acetone or similar matter to avoid damage t
18. ble configuration for PMM 9010 7 5 7 4 LISN remote cable configuration for PMM 8010 7 6 8 1 PMM SBRF4 RF Switching BOx eens eeae eens 8 1 8 2 PMM SBRF4 Front ViIeW 0 cece eee cence ence eeaeeesees 8 3 8 3 PMM SBRF4 Right VieWw ccceceeeceeseeeeeeeeeeeeeees 8 3 8 4 PMM SBRF4 Left view i 8 3 8 5 PMM SBRF4 with external Artificial Mains Network 8 4 8 6 PMM SBRF4 with RF300 Large Loop Antenna 8 4 Tables Table Page 2 1 Main Specifications PMM L3 32 eee eees 2 1 3 1 Main Specifications PMM L3 64 eee eees 3 1 4 1 Main Specifications PMM L3 100 4 1 5 1 Main Specifications PMM L3 500 5 1 8 1 Technical Specifications of SBRFA 8 2 Contents narda Safety Test Solutions WW SAFETY RECOMMENDATIONS AND INSTRUCTIONS This product has been designed produced and tested in Italy and it left the factory in conditions fully complying with the current safety standards To maintain it in safe conditions and ensure correct use these general instructions must be fully understood and applied before the product is used This is an industrial instrument for special EMC test purposes and should be installed and operated by qualified authorized and trained personnel only High magnetic fields are presen
19. ck list esses 6 3 7 Operating PMM Artificial Mains Networks Page 7 1 Operating PMM NetworkS eee 7 1 7 2 Test Set Up Considerations 7 3 Network verification and maintenance Q 72 7 4 Remote receiver control connector 7 4 7 5 LISN remote cable Configuration for PMM 9010 7 5 7 6 LISN remote cable Configuration for PMM 8010 7 6 8 Accessories Page 8 1 PMM SBRF4 RF Switching Box optional 8 1 Contents m narda Safety Test Solutions Figures Figure Page 1 1 CISPR 16 equivalent circuit sese 1 2 2 1 PMM L3 32 Front Panel L Li 2 2 2 2 PMM L3 32 Rear Panel 2 2 3 1 PMM L3 64 Front Panel L 3 2 3 2 PMM L3 64 Rear Panel 3 2 4 1 PMM L3 100 Front Panel Leeeeseeeeeeeeeees 4 2 4 2 PMM L3 100 Rear Panel 4 2 5 1 PMM L3 500 Front Panel eese 5 2 5 2 PMM L3 500 Rear Panel esses eeeeeeeeeaees 5 3 5 3 Contactors diagram c ccc ece cece cece neces seas eeeeeeeeaeenaes 5 3 6 1 Pilot circuit connection example 6 2 7 1 Typical test SEt UP ii 7 2 7 2 Remote Control connector Front view 7 4 7 3 LISN remote ca
20. considerazione La nostra qualit alla ricerca del miglioramento continuo Se uno dei Suoi strumenti NARDA necessita di riparazione o calibrazione pu aiutarci a servirla pi efficacemente compilando questa scheda e accludendola all apparecchio Tuttavia anche questo prodotto diventer obsoleto In questo caso ti ricordiamo che lo smaltimento dell apparecchiatura deve essere fatto in conformit con i regolamenti locali Questo prodotto conforme alle direttive WEEE dell Unione Europea 2002 96 EC ed appartiene alla categoria 9 strumenti di controllo Lo smaltimento in un ambiente adeguato pu avvenire anche attraverso la restituzione del prodotto alla NARDA senza sostenere alcuna spesa Pu ottenere ulteriori informazioni contattando i venditori NARDA o visitando il nostro sito Web www narda sts it Dear Customer thank you for purchasing a NARDA product You now own a high quality instrument that will give you many years of reliable service NARDA recognizes the importance of the Customer as reason of existence in this view any comment and suggestion you would like to submit to the attention of our service organization is kept in great consideration Moreover we are continuously improving our quality but we know this is a never ending process We would be glad if our present efforts are pleasing you Should one of your pieces of NARDA equipment need servicing you can help us serve you more effectively filling out this card and enclos
21. ectric components and does not cause electromagnetic disturbances or its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product L3 64 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive electric components and does not cause electromagnetic disturbances or its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity VII narda Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product L3 64 690 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive electric components and does not cause el
22. ectromagnetic disturbances or its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product PMM L3 100 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive electric components and does not cause electromagnetic disturbances or its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity vu narda Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product PMM L1 500 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive electric components and does not cause electromagnetic disturbances o
23. elves do not allow for reliable EMI measurements since their impedance is subject to marked variations that generates different test results at different test sites The PMM Artificial Mains Networks are LISN used for RFI measurements on AC three phase power supplied electric and electronic equipment usable from DC to 60 Hz The LISNs are three line V network with an equivalent circuit of 50 ohm 50hm 50uH fully compliant with CISPR publ 16 VDE 0876 and FCC part 15 regulation The LISNs are suited to perform measurements on conducted interference in the frequency range from 9 kHz to 30 MHz Designed according to criteria of cheaply and compactness they can be used together with PMM Systems for Conducted Interference or any other RF receiver The main functions performed by the Artificial Mains Network are e terminate the DUT with a standardized impedance against reference ground e supply power to the DUT e insulate the test circuits against external interference coming for example from AC voltage network e route the EMI Electro Magnetic Interference of the DUT to the receiver in case of conducted emission measurement and the EMI from the signal generator to the DUT in case of susceptibility test Current injection The PMM LISNs are provided with a standard industrial power sockets with a pilot conductor connector provided According to EN 60309 IEC 309 Normative the pilot conductor can be used to operate
24. ent system to be applied Over current protection is not provided in the LISN The LISN must be connected to a power mains which has the properly rated mains protection installed The leakage currents between the phases and the earth line generally exceed permitted limits for typical environments due to internal capacitors for this reason it is mandatory to use a current rated insulating transformer to supply the PMM LISN Network PMM LISN Network the insulating transformer and Equipment Under Test must be provided by an appropriate current rated contact breaker or fuses as closest as possible on the supply line and with a safety indication of equipment operated by According to EN 60309 IEC 309 Normative the industrial mains plugs and outlets with an operating current are provided with an auxiliary connector called Pilot Circuit contact The Pilot Circuit contact is used to avoid mains plug disconnection with an operating high current load connected In this case a current rated remote control switch shall be provided to allow a safe automatic mains disconnection The Pilot Circuit contact and the remote control switch connected according to the following figure example also allows to check automatically the protection earth conductor continuity till the Device Under Test mains connection Remote control switch Mains Network J eia LETT pe Le im L3 N Je ul
25. he RF300 to the RF input of the SBRF4 in the order X Y Z Connect the RF output of the SBRF4 to the RF input of the PMM 9010 or 9010 30P Receiver use the manual switch for switching the axis under test Connect the Remote control connector of the SBRF4 and the User Port of the Receiver by the special cable supplied with the SBRF4 to automatically control the Loop Antenna axis via the PMM Emission Suite Software The button B Fig 1 2 enables the 150kHz high pass filter to the RF output it must be always off for this application The button A Fig 1 2 is used to terminate the non selected inputs on open circuit Accessories H MEN NARDA Sales amp Support Manufacturing Plant Roe TSyg n cl rd zl Safety Via Leonardo da Vinci 21 23 Via Benessea 29 B sor N Safety Test Solutions Tes 20090 Segrate MI ITALY 17035 Cisano sul Neva SV 33 afety lest Solutions solutions Tel 39 02 2699871 Tel 39 0182 58641 Bi an E Communications Company S r l Socio Unico Fax 39 02 26998700 Fax 439 0182 586400 SINCERT 2 http www narda sts it Mod 18 1 Caro cliente grazie per aver acquistato un prodotto NARDA Sei in possesso di uno strumento che per molti anni ti garantir un alta qualit di servizio NARDA riconosce l importanza del Cliente come ragione di esistenza ciascun commento e suggerimento sottoposto all attenzione della nostra organizzazione tenuto in grande
26. high currents All power cords must be connected to ensure proper ventilation and control of the contactors Where Front and Back EUT LINE IN and OUT are constituted by bolts covered by a plastic protection It is very important to connect all the cables and mount the plastic covers before applying power to the lines After the connection is made it becomes very dangerous to approach and touch the wire connections even if protected by the covers It is important to create a security zone around the instrument at least 1 5m where no one should go in while the test is in progress Since improper or careless operation could result in an injury risk these operating instructions make an essential part of the device and must be available to the operator at all times The user must satisfy all safety instructions and warnings To tighten the nuts of the power lines use only the wrench supplied Do not force the tightening of the nuts Safety considerations narda Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product PMM L3 32 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive el
27. ing it with the product Nevertheless even this product will eventually become obsolete When that time comes please remember that electronic equipment must be disposed of in accordance with local regulations This product conforms to the WEEE Directive of the European Union 2002 96 EC and belongs to Category 9 Monitoring and Control Instruments You can return the instrument to us free of charge for proper environment friendly disposal You can obtain further information from your local NARDA Sales Partner or by visiting our website at www narda sts it M Servizio richiesto M Service needed Solo taratura L Riparazione LJ Riparazione amp Taratura O Taratura SIT Altro L Calibration only LI Repair L Repair amp Calibration C Certified Calibration Other Ditta Company Indirizzo Address Persona da contattare Telefono Technical contact person Phone n Modello Numero di serie Equipment model Serial n V Accessori ritornati con l apparecchiatura O Nessuno O Cavo i CI Cavo di alimentazione Altro M Accessories returned with unit L None C Cable s L1 Power cable Other VI Sintomi o problemi osservati M Observed symptoms problems M Guasto O Fisso O Intermittente Sensibilea Freddo O Caldo O Vibrazioni O Altro M Failure L Continuous O Intermittent Sensitive to L Cold L Heat Vibration Other Descrizione del guasto condizioni di funzionamento Failure symptoms special control settings de
28. l eventually become obsolete When that time comes please remember that electronic equipment must be disposed of in accordance with local regulations This product conforms to the WEEE Directive of the European Union 2002 96 EC and belongs to Category 9 Monitoring and Control Instruments You can return the instrument to us free of charge for proper environment friendly O disposal You can obtain further information from your local Narda Sales Partner or by visiting our website at www narda sts it AN Warning danger of electric shock oL Earth Read carefully the Operating Manual and its instructions pay attention to the safety Unit Earth Connection symbols D Earth Protection x Equipotential KEY TO THE SYMBOLS USED IN THIS DOCUMENT Si The DANGER sign draws attention to a potential risk to a DANGER person s safety All the precautions must be fully understood and applied before proceeding The WARNING sign draws attention to a potential risk of WARNING damage to the apparatus or loss of data All the precautions must be fully understood and applied before proceeding The CAUTION sign draws attention against unsafe practices NW CAUTION for the apparatus functionality CU NOTE The NOTE draw attention to important information n Note and symbols narda Safety Test Solutions Contents Page Safety considerations and instructions V EC Conformity Certificate PMM L3 32 and L3 64
29. nuous operation at higher current limit shall not exceed one hour a rest period of at least a half hour shall be observed to allow the equipment to cool down Document L3EN 31219 NARDA 2013 Operating PMM Networks 7 1 narda Safety Test Solutions 7 2 Test Set Up Measurement repeatability is the main concern of standards and Considerations regulations that exactly define the test set up for interference measurements The Artificial Mains Network complies with CISPR publ 16 part 2 VDE 0876 and the American FCC part 15 rules and regulations The test SET UPs required for various standards are largely identical a detailed description is given in VDE 0877 part 1 par 9 2 Measurements using LISNs The DUT has to be positioned on a non metallic or conductive table height gt 80cm 40 cm in front of a metallic grounded wall with dimensions of at least 2 m x 2 m The table may also be used inside a screened room The distance of the DUT from any metallic part may affect the measured RFI voltage values VDE 0877 exactly define the dimensions for the test configurations by means of the following drawing Fig 7 1 Typical test set up The figure 7 1 describes the test configuration and the interconnection of a mains operated DUT according to the above mentioned VDE specification where 1 Metallic grounded wall Device Under Test DUT Folded mains cable fixed with strips of adhesive tape Non metallic table
30. o external plastic and surfaces General Information 1 3 narda Safety Test Solutions This page has been left blank intentionally General Information narda itions 2 PMM L3 32 Table 2 1 lists the PMM L3 32 Network performance specifications The following conditions apply to all specifications e The ambient temperature must be 10 to 40 2 1 Main specifications TABLE 2 1 Main specifications PMM L3 32 Frequency range 9 kHz to 30 MHz Maximum continuous rated output current IEC plug 32 A Schuko plug 16 A Maximum operating voltage Single phase L N L PE N PE 230 Vac 325 Vdc Three phase L PE N PE 230 Vac 325 Vdc L L L N 400 Vac 565 Vdc DC 60 Hz Input Mains frequency range 50 Ohm 5 Ohm 50 uH Equivalent circuit BNC female RF output 32 A IEC connector and 16A Schuko Test item 10 to 40 C Rated temperature 25 to 75 C Storage temperature 342 x 254 x 510 Overall dimension mm W x H x D 16 5 kg Weight Document L3EN 31219 NARDA 2013 PMM L3 32 2 1 narda Safety Test Solutions 2 2 Front and Rear In Fig 2 1 and Fig 2 2 you can see front and rear connecting points and Panels terminals of PMM L3 32 Network 9 EUT REMOTE MAX 32 A AN N L3 L2 LI o 6 0 3 EUT MAX 16 A TO TEST VENERE RECEIVER L2 L3 50 0 LI e e e
31. on between generated signal level and measured level on output shall be less than 0 5dB at 1 MHz If higher than 0 5 dB please refer to qualified NARDA Service Center for maintenance of the unit Operating PMM Networks 7 3 narda Safety Test Solutions 7 4 Remote receiver The Remote receiver control connector is on the rear panel control connector Legend e 1 GND e 2 12V e 6 TIL1 e 7 TTL2 TTL1 TTL2 LINE 0 0 N 0 1 L2 1 0 L1 1 1 L3 Legend e 0 GND e 1 gt 5V 7 4 Operating PMM Networks Ja narda Safety Test Solutions The following figure shows the LISN remote cable pin configuration The cable is provided with the LISNs 7 5 LISN remote cable Configuration for PMM 9010 12V REMOTE YAY Wey Solder side Female Connector 7 pin GND 1 L1 L2 PE LISN remote cable configuration engin xm internal sleeve Brown Yellow Grey Black 9 Solder side Male Connector DB15 Fig 7 3 LISN remote cable configuration for PMM 9010 7 5 Operating PMM Networks narda Safety Test Solutions 7 6 LISN remote cable The following figure shows the LISN remote cable pin configuration The Configuration cable can be requested to Narda or you can make it by yourself for PMM 8010 ooo detiene da aS St Sig adresse 3 n l s at c E o AR J BI i nth y ps i o CUm a e ian PALI AN I amp amp m m amp i c o 89 di O i t
32. product complies with the requirements of Low Voltage Directive 2006 95 CE and with the EMC Directive 2004 108 CE NARDA Safety Test Solutions EC Conformity narda Safety Test Solutions Names and Logo are registered trademarks of Narda Safety Test Solutions GmbH and L3 Communications Holdings Inc Trade names are trademarks of the owners NOTE If the instrument is used in any other way than as described in this Users Manual it may become unsafe Before using this product the related documentation must be read with great care and fully understood to NW familiarize with all the safety prescriptions To ensure the correct use and the maximum safety level the User shall know all the instructions and recommendations contained in this document This products are a Safety Class and Installation Category Il instrument according to IEC classification and has been designed to meet the requirements of EN61010 1 Safety Requirements for Electrical Equipment for Measurement Control and Laboratory Use wy This product has a Pollution Degree II normally only non conductive pollution occurs Occasionally however a temporary conductivity caused by condensation must be expected The information contained in this document is subject to change without notice KEY TO THE ELECTRIC AND SAFETY SYMBOLS You now own a high quality instrument that will give you many years of reliable service Nevertheless even this product wil
33. r its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity Certificate in accordance with the ISO IEC standard 17050 1 and 17050 2 This is to certify that the product PMM L3 500 Artificial Mains Network Produced by NARDA S r l Safety Test Solution Via Benessea 29 B 17035 Cisano sul Neva SV ITALY complies with the following European Standards Safety CEI EN 61010 1 2011 EMC According to art 1 par 3 of 2004 108 CE Directive the product herewith is built by passive electric components and does not cause electromagnetic disturbances or its performance is not affected by such disturbances This product complies with the requirements of Low Voltage Directive 2006 95 CE NARDA Safety Test Solutions EC Conformity narda Safety Test Solutions 1 General Information 1 1 Documentation Enclosed with this manual are a service questionnaire to send back to NARDA in case of equipment service is needed and an accessories check list to verify all accessories enclosed in the packaging 1 2 Introduction to PMM The objective of EMI Conducted tests is to define the amplitude of current Artificial Mains and Voltage V emission from the Device Under Test DUT onto the Networks power mains or to define the immunity of the DUT to the conducted interference The mains lines thems
34. scription Se l unit parte di un sistema descriverne la configurazione If unit is part of system please list other interconnected equipment and system set up Suggerimenti Commenti Note Suggestions Comments Note
35. t around the instrument when used at high currents It is highly recommended not to approach the machine when in operation and especially forbidden for people with pacemakers or other electromedical devices Over current protection is not provided in the LISN The LISN must be connected to a power mains which has the properly rated mains protection installed When the device must be connected first provide effective grounding If the device must be connected to other equipment or accessories make sure they are all safely grounded In case of devices permanently connected to the power supply and lacking any fuses or other devices of mains protection the power line must be equipped with adequate protection commensurate to the consumption of all the devices connected to it In case of connection of the device to the power mains make sure before connection that the voltage selected on the voltage switch and the fuses are adequate for the voltage of the actual mains Devices in Safety Class equipped with connection to the power mains by means of cord and plug can only be plugged into a socket equipped with a ground wire Any interruption or loosening of the ground wire or of a connecting power cable inside or outside the device will cause a potential risk for the safety of the personnel Ground connections must not be interrupted To prevent the possible danger of electrocution do not remove any covers panels or guards installed on
36. the device and refer only to NARDA Service Centers if maintenance should be necessary To maintain adequate protection from fire hazards replace fuses only with others of the same type and rating Follow the safety regulations and any additional instructions in this manual to prevent accidents and damages The probe cannot be handled in proximity of high voltage mains line If the probe is to be connected to high voltage mains line a safety interlock equipment must be installed to ensure the mains line be switched off before any probe handling or connection Safety considerations narda Safety Test Solutions The user must provide a safety protection cover with a low voltage interlock switch able to cut off mains voltage before probe handling or connection The leakage currents between the phases and the earth line generally exceed permitted limits for typical environments due to internal capacitors for this reason it is mandatory to use a current rated insulating transformer to supply the LISN Make sure before connecting the power mains that the voltage and the fuses are appropriate to the actual mains Always connect the Contactors output where provided to a safety interlock system to ensure the mains line be switched off when the temperature overpasses a predetermined threshold Pay attention to the hot surfaces The temperatures of the external panels and covers can reach dangerous levels when using the apparatus at
37. trument when there are signs of shipping damage to any portion of it 6 3 Packing Unpacking Inspect the shipping container for damage If the shipping container or cushion material is damaged it should be kept until the contents of the shipment have been checked for completeness and the instrument has been checked mechanically and electrically Verify the accessories availability in the shipping container referring to the accessories check list enclosed with the Operating Manual Notify any damage to the carrier as well as the NARDA Representative To remove the LISN open the wooden box and unscrew the four screws that hold the LISN at the bottom side of the palette Unit weight exceed 80 kg To avoid hazard of personal injury use a NE Fs suitable lifting device for PMM L3 100 Network handling WARNNG Unit weight exceed 200 kg To avoid hazard of personal injury use a i suitable lifting device for PMM L3 500 Network handling Unit weight exceed 50 kg To avoid hazard of personal injury use a NE bi suitable lifting device for PMM L3 64 Network handling Document L3EN 31219 NARDA 2013 Installation narda Safety Test Solutions 6 4 Preparation for use dp WARNING v4 WARNING v4 WARNING 6 5 Pilot circuit NOTE v4 WARNING From the mains lines conductor to the case of the unit there is a high leakage current The mains lines conductor is connected to ground via high value capacitors due to the measurem
38. ure Storage temperature Overall dimension mm W x H x D Weight Document L3EN 31219 NARDA 2013 L PE N PE 9 kHz to 30 MHz 63 A 230 Vac 325 Vdc 400 Vac 565 Vdc DC 60 Hz 50 Ohm 5 Ohm 50 uH BNC female 63 A IEC connector 10 to 40 C 25 to 75 C 465 x 450 x 740 50 kg PMM L3 64 3 1 narda Safety Test Solutions 3 2 L3 64 690 Main specifications Table 3 2 lists the PMM L3 64 690 Network performance specifications The following conditions apply to all specifications e The ambient temperature must be 10 to 40 TABLE 3 2 Main specifications PMM L3 64 690 Frequency range Maximum rated input current Maximum operating voltage EUT main power supply Input mains frequency range Equivalent circuit RF output Rated temperature Storage temperature Overall dimension mm W x H x D Weight PMM L3 64 32 L PE N PE L L L N 9 kHz to 30 MHz standard UL1682 UL1686 60A IEC60309 63A 347 Vac 490 Vdc 600 Vac 850 Vdc 400 Vac 565 Vdc 690 Vac 975 Vdc 60 A black connector 4P5W 63 A black connector 4P5W DC 60 Hz 50 Ohm 5 Ohm 50 uH with 250 uH choke BNC female 10 to 40 C 25 to 75 C 465 x 450 x 730 50 kg narda Safety Test Solutions 3 3 Front and Rear In Fig 3 1 and Fig 3 2 you can see front and rear connecting points and Panels terminals of PMM L3 6

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