MGJ1_V01 MURATA-PS | Alldatasheet

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5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 1 of 22 www.murata.com www.murata.com For full details go to www.murata.com/en-global/ products/power/rohs Calculated using MIL-HDBK-217 and Telecordia SR-332 calculation model with nominal input voltage at full load. 2. See ripple & noise test method. All specifications typical at TA=25°C, nominal input voltage and rated output current unless otherwise specified.

FEATURES

„Optimised bipolar output voltages for IGBT/ Mosfet, SiC & GaN gate drives „Reinforced insulation to UL62368-1 recognised „ ANSI/AAMI ES60601-1, 1 MOPP/2 MOOPs pending „5.2kVDC isolation test voltage ‘Hi Pot Test’ „Ultra low isolation capacitance „5V, 12V, 15V & 24V inputs +18V/-2.5V & +20V/-5V outputs „Operation to 105°C „Characterised CMTI >200kV/ȝS „ Continuous barrier withstand volta ge 2.4kVDC „Characterised partial discharge performance PRODUCT OVERVIEW The MGJ1 SIP series of DC-DC converters is ideal for powering ‘high side’ and ‘low side’ gate drive circuits for IGBT/Mosfet, SiC & GaN gate drives in bridge circuits. A choice of asymmetric output voltages allows optimum drive levels for best system efficiency and EMI. The MGJ1 SIP series is characterised for high isolation and dv/dt requirements commonly seen in bridge circuits used in motor drives and inverters, while the MGJ1 SIP high operating temperature rating and construction gives long service life and reliability. SELECTION GUIDE Order Code Nominal Input Voltage Output Voltage 1 Output Voltage 2 Output Current 1 Output Current 2 Input Current at Rated Load Output 1 Output 2Load Regulation (Typ) Load Regulation (Max) Load Regulation (Typ) Load Regulation (Max) VVV m A % MGJ1D050603SC 5 6 -3 111 111 260 0.7 1.5 25 30 MGJ1D052005SC 5 20 -5 40 40 280 5.0 8.0 0.5 1.0 MGJ1D120603SC 12 6 -3 111 111 110 0.4 1.5 16 25 MGJ1D121505SC 12 15 -5 50 50 100 5.0 8.0 0.5 1.0 MGJ1D122005SC 12 20 -5 40 40 110 4.0 9.0 0.5 1.0 MGJ1D152005SC 15 20 -5 40 40 85 4.0 9.0 0.5 1.0 MGJ1D241505SC 24 15 -5 50 50 55 4.0 8.0 0.5 1.0 MGJ1D242005SC 24 20 -5 40 40 55 4.0 8.0 0.5 1.0 SELECTION GUIDE (Continued) Order Code Ripple & Noise (Typ)2 Ripple & Noise (Max)2 Efficiency (Min) Efficiency (Typ) Isolation Capacitance MTTF1 mVp-p % pF MIL. Tel. kHrs MGJ1D050603SC 20 50 73 77 3 3620 108788 MGJ1D052005SC 20 50 67 71.5 3 2626 62618 MGJ1D120603SC 20 50 74 79 3 3200 103610 MGJ1D121503SC 20 50 76 79.5 3 3893 144172 MGJ1D121505SC 20 50 77 80 3 3707 136596 MGJ1D121802SC 20 50 75 78 3 3477 133403 MGJ1D122005SC 20 50 75 78 3 3331 128852 MGJ1D151509SC 20 50 74 78 3 3693 131693 MGJ1D152005SC 20 50 74 78 3 3226 137002 MGJ1D241503SC 20 50 71 76 3 3012 85564 MGJ1D241505SC 20 50 72 76 3 2546 72774 MGJ1D241509SC 20 50 69 74 3 2532 63241 MGJ1D241802SC 20 50 69 74 3 2465 64642 MGJ1D242005SC 20 50 69 74 3 2453 63535

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 2 of 22 www.murata.com OUTPUT CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Rated Power TA=-40ºC to 105ºC 1.00 W Voltage Set Point Accuracy See tolerance envelopes Line regulation MGJ1D050603SC & MGJ1D120603SC OP1 0.10 0.30 %/% OP2 3.20 4.00 MGJ1DXX2005SC OP1 1.30 1.40 OP2 0.25 0.50 MGJ1DXX1503SC & MGJ1DXX1802SC OP1 1.20 1.30 OP2 0.25 0.50 MGJ1DXX1505SC OP1 1.40 1.50 OP2 0.25 0.50 MGJ1DXX1509SC OP1 1.60 1.70 OP2 0.25 0.50 INPUT CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Voltage range Continuous operation, 5V input types 4.5 5 5.5 VContinuous operation, 12V input types 10.8 12 13.2 Continuous operation, 15V input types 13.5 15 16.5 Continuous operation, 24V input types 21.6 24 26.4 Input reflected ripple MGJ1D050603SC & MGJ1D052005SC 20 mApk-pkAll other types 10 Short circuit input current MGJ1D050603SC 65 mA MGJ1D120603SC 25 MGJ1D052005SC 80 MGJ1D1215XXSC, MGJ1D121802SC & MGJ1D122005SC 25 MGJ1D15XXXXSC 20 MGJ1D24XXXXSC 15 ISOLATION CHARACTERISTICS Parameter Min. Typ. Max. Units Isolation test voltage Production tested for 1 second 5200 VDCQualification tested for 1 minute 5200 Resistance Viso = 1000VDC 1 GΩ Continuous barrier withstand voltage Non-safety barrier application 2400 VDC Safety standard UL62368-1 Reinforced 300 VrmsBasic/supplementary 600 ANSI/AAMI ES60601-1

1 MOOP 300

2 MOOP/1 MOPP 200

Parameter Conditions Min. Typ. Max. Units Switching frequency MGJ1D050603SC 40 kHz MGJ1D052005SC 60 MGJ1D120603SC, MGJ1D121503SC, MGJ1D121505SC & MGJ1D121802SC 55 MGJ1D122005SC & MGJ1D15XXXXSC 65 MGJ1D24XXXXSC 70 1. ANSI/AAMI ES60601-1 recognition is currently pending for the MGJ1DxxxxxxSC variants.

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 3 of 22 www.murata.com ABSOLUTE MAXIMUM RATINGS Input voltage VIN, MGJ1D05xxxxSC 7V Input voltage VIN, MGJ1D12xxxxSC 15V Input voltage VIN, MGJ1D15xxxxSC 18V Input voltage VIN, MGJ1D24xxxxSC 28V Short-circuit protection Continuous, automatic recovery Lead temperature 1mm from case for 10 seconds 260°C Wave Solder Wave Solder profile not to exceed the profile recommended in IEC 61760-1 Section 6.1.3. Please refer to application notes for further information. TEMPERATURE CHARACTERISTICS Parameter Conditions Min. Typ. Max. Units Specification All output types -40 105 °CStorage -50 125 Case Temperature above ambient All other types 15 MGJ1D052005SC, MGJ1D241509SC, MGJ1D241802SC & MGJ1D242005SC 20 Cooling Free air convection

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 4 of 22 www.murata.com TECHNICAL NOTES ISOLATION VOLTAGE ‘Hi Pot Test’, ‘Flash Tested’, ‘Withstand Voltage’, ‘Proof Voltage’, ‘Dielectric Withstand Voltage’ & ‘Isolation Test Voltage’ are all terms that relate to the same thing, a test voltage, applied for a specified time, across a component designed to provide electrical isolation, to verify the integrity of that isolation. Murata Power Solutions MGJ1 SIP series of DC-DC converters are all 100% production tested at 5.2kVDC for 1 second and have been qualification tested at 5.2kVDC for 1 minute. The MGJ1 SIP series is recognised by Underwriters Laboratory, please see safety approval section for more information. When the insulation in the MGJ1 SIP series is not used as a safety barrier, i.e. provides functional isolation only, continuous or switched voltages across the barrier up to 2.4kV are sustainable. This is established by measuring the partial discharge Inception voltage in accordance with IEC 60270. Please contact Murata for further information. REPEATED HIGH-VOLTAGE ISOLATION TESTING It is well known that repeated high-voltage isolation testing of a barrier component can actually degrade isolation capability, to a lesser or greater degree depending on materials, construction and environment. We therefore strongly advise against repeated high voltage isolation testing, but if it is absolutely required, that the voltage be reduced by 20% from specified test voltage. SAFETY APPROVAL ANSI/AAMI ES60601-1 The MGJ1 SIP series is pending recognition by Underwriters Laboratory (UL) to ANSI/AAMI ES60601-1 and provides 1 MOOP (Mean Of Operator Protection) based on a working voltage of 300Vrms or 2 MOOP and 1 MOPP (Mean Of Patient Protection) based on a working voltage of 200Vrms, between Primary and Secondary. File number E202895 applies. UL62368-1 The MGJ1 SIP series is recognised by Underwriters Laboratory (UL) to UL62368-1 for reinforced insulation to a working voltage of 300Vrms or basic insulation to a working voltage of 600Vrms. File number E151252 applies. Creepage and clearance 6mm Working altitude 5000m Fusing The MGJ1 SIP series of converters are not internally fused so to meet the requirements of UL an anti-surge input line fuse should always be used with ratings as defined below. MGJ1D05xxxxSC: 430mA MGJ1D12xxxxSC: 170mA MGJ1D15xxxxSC: 140mA MGJ1D24xxxxSC: 90mA All fuses should be UL recognised and rated to 125VDC. RoHS COMPLIANCE INFORMATION This series is compatible with RoHS soldering systems with a peak wave solder temperature of 260ºC for 10 seconds. Please refer to application notes for further information. The pin termination finish on this product series is Tin Plate, Hot Dipped over Matte Tin with Nickel Preplate. The series is backward compatible with Sn/Pb soldering systems. For further information, please visit www.murata.com/en-global/products/power/ rohs

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 5 of 22 www.murata.com PART NUMBER STRUCTURE MGJ 1 D XX XXXX S C Series name Power rating Output type S - Single D - Dual T - Triple Q - Quad RoHS compliant Package type S - SIP D - DIP M - Surface mount Z - ZIP Output voltage Input voltage ENVIRONMENTAL VALIDATION TESTING The following tests have been conducted on this product series, as part of our design verification process. The datasheet characteristics specify user operating conditions for this series, please contact Murata if further information about the tests is required. Test Standard Condition Temperature cycling JEDEC JESD22-A104 200 cycles in a dual zone chamber from -40 (+5/-10)°C to 105 (+10/-5)°C. 15mins dwell at each (inclusive of ramps). 2 cycles per hour. Humidity bias JEDEC JESD22-A101 85°C ± 2°C, 85% ± 5% R.H. for >1000 hours. High temperature storage life JEDEC JESD22-A103, Condition A 125°C (+10/-0°C) for ≥1000 hours. Vibration MIL-STD-883 Method 2007, Condition A 1.5mm pk-pk / 20g pk min, 20-2000-20Hz, 4 sweeps in each of 3 mutually perpendicular axes at 3 oct/min. Shock MIL-STD-883 Method 2002, Condition A 500g 1.0ms half sine, 5 shocks in each direction of 3 mutually perpendicular axis. ESD JEDEC JESD22-A114 HBM 8.0kV. Bump IEC Class 4M5 of ETS 300 019-2-4 Shock Spectrum Type II, 6mS duration, 250m/s 2 500 bumps in 6 directions. Solderability EIA/IPC/JEDEC J-STD-002, Test A and A1 SnPb (Test A) For leaded solderability the parts are conditioned in a steam ager for 8 hours ±15 min. at a temperature of 93°C ±3°C. Dipped in solder at 245°C ±5°C for 5 (+0/-0.5) seconds. Pb-free (Test A1) For lead free solderability the parts are conditioned in a steam ager for 8 hours ± 15 min. at a temperature of 93°C ±3°C. Dipped in solder at 255°C ±5°C for 5 (+0/-0.5) seconds. Solder heat JEDEC JESD22-B106 The test sample is subjected to a molten solder bath at 270°C ±5°C for 7 (+2/-0) seconds. Solder heat (hand) MIL-STD-202 Method 210, Condition A The soldering iron is heated to 350°C ±10°C and applied to the terminations for a duration of 4 to 5 seconds. Solvent cleaning Resistance to cleaning agents Solvent – Novec 71IPA & Topklean EL-20A. Pulsed ultrasonic immersion 45°C - 60°C. Solvent Resistance MIL-STD-883 Method 2015 Separate samples subjected to IPA cleaning. Lead Integrity (Adhesion) MIL-STD-883 Method 2025 Leads are bent through 90º until a fracture occurs. Lead Integrity (Fatigue) MIL-STD-883 Method 2004, Condition B 2 The leads are bent to an angle of 15º. Each lead is subjected to 3 cycles. Lead Integrity (Tension/Pull) MIL-STD-883 Method 2004, Condition A 1 Pull of 0.227kg applied for 30 seconds. The force is then increased until the pins snap. Aqueous wash Resistance to wash process Parts washed in an aqueous/ultrasonic process, in a suitable chemical for 30 mins at a con- trolled temperature. Followedby a towns water wash at low pressure and a demineralised water wash at low pressure. Dried in a vacuum oven.

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 6 of 22 www.murata.com CHARACTERISATION TEST METHODS Ripple & Noise Characterisation Method Ripple and noise measurements are performed with the following test configuration. C1 1μF X7R m ultilayer ceramic capacitor, voltage rating to be a minimum of 3 times the output voltage of the DC-DC converter C2 10μF tantalum capacitor, voltage rating to be a minimum of 1.5 times the output voltage of the DC-DC converter with an ESR of less than 100mΩ at 100kHz C3 100nF multilayer ceramic capacitor, general purpose R1 450Ω resistor, carbon film, ±1% tolerance R2 50Ω BNC termination T1 3T of the coax cable through a ferrite toroid RLOAD Resistive load to the maximum power rating of the DC-DC converter. Connections should be made via twisted wires Measured values are multiplied by 10 to obtain the specified values. Differential Mode Noise Test Schematic OSCILLOSCOPE Y INPUT SUPPLY C1 C2 C3 R1 T1 R2 Input Output DC/DC Converter R LOAD + + - -

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 7 of 22 www.murata.com APPLICATION NOTES Minimum load The minimum load to meet datasheet specification is 10% of the full rated load across the specified input voltage range. Lower than 10% minimum loading will result in an increase in output voltage, which may rise to typically 1.5 times the specified output voltage if the output load falls to 0%. Gate Drive Applications Advisory Note For general guidance for product usage in gate drive applications please refer to “gate drive application notes”. MGJ1DXX0603MC Capacitive loading and start up The typical start up for single output variants, using a 56uF capacitor is 5mS. The start up behaviour of the +Vout and -Vout rails of a dual output DC-DC using a divider network depends significantly on the additional capacitance added to the outputs. This is because the two capacitors behave as a capacitive divider. If the two capacitors are equal and 9V is applied across them the outputs will initially start as +/-4.5V. There will be a settling time while the divider circuit adjusts to the correct voltages, to calulcate the approixmate value please refer to the following formula. Settling time ≈ 3000 x C (s) So, for instance if a maximum capacitance of 100uF is applied to each output the settling time will be about 300ms. To avoid spurious gate pulses it is recommended that the PWM gate signal is not applied until after the settling time has ended. An alternative method to reduce the settling time is to adjust the values of the additional capacitance so that the CV products are equal. i.e. C3 x 6V = C4 x 3V. So, for instance if a maximum capacitance of 75uF is applied to the +6V output and 150uF is applied to the -3V output the settling time is greatly reduced. NB: The total maximum series capacitance across 9V = 50uF. +Vin MGJ1DXX0603MC 100μF 100μF -Vin -Vout +Vout +Vin MGJ1DXX0603MC 75μF 150μF -Vin -Vout +Vout P6HFVGLY7LPHP6HFV X 5() P P 9RXW 9RXW P6HFVGLY7LPHP6HFV 9RXW 9RXW

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 8 of 22 www.murata.com APPLICATION NOTES (Continued) Capacitive loading and start up Typical start up times for this series, with a typical input voltage rise time of 2.2μs and output capacitance of 10μF, are shown in the table below. The product series will start into capacitance up to 47μF with increased start times. Start-up time ms MGJ1D052005SC 7 MGJ1D121503SC 4 MGJ1D121505SC 5 MGJ1D121802SC 6 MGJ1D122005SC 7 MGJ1D151509SC 5 MGJ1D152005SC 6 MGJ1D241503SC 2 MGJ1D241505SC 5 MGJ1D241509SC 5 MGJ1D241802SC 5 MGJ1D242005SC 5 (PLACE SCOPE TRACE IN T Typical Start-Up Wave Form

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 9 of 22 www.murata.com APPLICATION NOTES (Continued) Dual Output Configuration MGJ1D050603SC and MGJ1D120603SC: All Other Variants: The MGJ1D050603SC and MGJ1D120603SC provide a dual output by using a reference IC and resistor divider network circuit with patented short circuit protection. This is important to maintain an accurate 6V to the gate of the GaN device over the temperature range and operating conditions, something a Zener diode cannot guarantee. OSCILLATOR Protection +VIN -VIN +VOUT -VOUT OSCILLATOR Protection +VIN -VIN +VOUT -VOUT The MGJ1 SIP series is a dual output DC-DC specifically designed for gate drive applications and its output configuration is not suitable for application usage as a general dual output DC-DC converter. However the MGJ1 SIP series can be used as a general purpose single output converter, by loading from +Vout to -Vout. The MGJ1DXX1503SC, MGJ1DXX1505SC, MGJ1DXX1509SC, MGJ1DXX1802SC and MGJ1DXX2005SC provides a dual output by using a zener voltage divider network, the negative output is obtained by using a zener diode as a voltage regulator. If a short circuit occurs, the zener diode is protected. A 2V7 zener diode is used to set the -2.5Vout, a 3V3 zener diode to set the -3Vout, a 5V1 zener diode to set the -5Vout and a 9V3 zener diode is used to set the -9Vout. A tolerance of 2% should be taken into consideration for the zener diodes. All the zener diodes are rated at 400mW.

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 10 of 22 www.murata.com APPLICATION NOTES (Continued) Optional Configuration: For optional configuration where alternative negative output voltages are required, an external zener diode network can be connected across the main 18V, 20V, 20.5V, 24V or 25V output. However this zener diode will no longer be protected from short circuits as the internal short circuit protection is bypassed. Protection External Zener Diode Network Circuit Option 1 +VOUT -VOUT Protection External Zener Diode Network Circuit Option 2 +VOUT -VOUT

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 11 of 22 www.murata.com EFFICIENCY VS LOAD MGJ1D050603SC MGJ1D052005SC MGJ1D120603SC MGJ1D121503SC MGJ1D121505SC MGJ1D121802SC

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 12 of 22 www.murata.com EFFICIENCY VS LOAD (Continued) MGJ1D122005SC MGJ1D151509SC MGJ1D152005SC MGJ1D241503SC MGJ1D241505SC MGJ1D241509SC

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 13 of 22 www.murata.com EFFICIENCY VS LOAD (Continued) MGJ1D241802SC MGJ1D242005SC TEMPERATURE DERATING GRAPHS Full OutputCurrent Rating 105400-40 Ambient Temperature (ºC) Safe Operating Area

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 14 of 22 www.murata.com POSITIVE OUTPUT VOLTAGE TOLERANCE ENVELOPES The voltage tolerance envelopes show typical load regulation characteristics for this product series. The tolerance envelope is the maximum output voltage variation due to changes in output loading and set point accuracy. XX0603 052005 121503 121505 121802 122005 Output Load Current (%) 100755025 10 Output Voltage -4% -5% Output Load Current (%) 100755025 10 Output Voltage 1% 2% -5% Output Load Current (%) 100755025 10 Output Voltage -5% Output Load Current (%) 100755025 10 Output Voltage 11% Output Load Current (%) 100755025 10 Output Voltage 1% 2% -5% Output Load Current (%) 100755025 10 Output Voltage 3% 2% -3%

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 15 of 22 www.murata.com POSITIVE OUTPUT VOLTAGE TOLERANCE ENVELOPES (Continued) 151509 152005 241503 241505 241509 241802 242005 Output Load Current (%) 100755025 10 Output Voltage -2% -5% Output Load Current (%) 100755025 10 Output Voltage -3% -6% Output Load Current (%) 100755025 10 Output Voltage -2% -4% Output Load Current (%) 100755025 10 Output Voltage -4% Output Load Current (%) 100755025 10 Output Voltage -1% -4% Output Load Current (%) 100755025 10 Output Voltage -1% -6% Output Load Current (%) 100755025 10 Output Voltage -1% -5%

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 16 of 22 www.murata.com NEGATIVE OUTPUT VOLTAGE TOLERANCE ENVELOPES

050603 XX2005, XX1505 & XX1509

120603 XX1503

Output Load Current (%) 100755025 10 Output Voltage 30% 10% -15% Output Load Current (%) 100755025 10 Output Voltage 26% 12% -10% Output Load Current (%) 100755025 10 Output Voltage -5% -5% Output Load Current (%) 100755025 10 Output Voltage -5% -5% Output Load Current (%) 100755025 10 Output Voltage -7% -7%

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 17 of 22 www.murata.com EMC FILTERING AND SPECTRA FILTERING The following filter circuit and filter table shows the input filters typically required to meet EN55022 Quasi-PeakCurve A or B. MGJ1D050603SC (Quasi-Peak) MGJ1D050603SC (Average) MGJ1D052005SC (Quasi-Peak) MGJ1D052005SC (Average) DC DC Inductor Capacitor L, μH SMD Through Hole C, μF SMD Through Hole MGJ1D050603SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D052005SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D120603SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D121503SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D121505SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D121802SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D122005SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D151509SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D152005SC 10 84103C 13R103C 4.7 GRM21BC71E475KE11L RCER71H475K3K1H03B MGJ1D241503SC 10 84103C 13R103C 4.7 GRM21BC71H475KE11L RCER71H475K3K1H03B MGJ1D241505SC 10 84103C 13R103C 4.7 GRM21BC71H475KE11L RCER71H475K3K1H03B MGJ1D241509SC 10 84103C 13R103C 4.7 GRM21BC71H475KE11L RCER71H475K3K1H03B MGJ1D241802SC 10 84103C 13R103C 4.7 GRM21BC71H475KE11L RCER71H475K3K1H03B MGJ1D242005SC 10 84103C 13R103C 4.7 GRM21BC71H475KE11L RCER71H475K3K1H03B

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 18 of 22 www.murata.com EMC FILTERING AND SPECTRA (Continued) MGJ1D120603SC (Quasi-Peak) MGJ1D120603SC (Average) MGJ1D121503SC (Quasi-Peak) MGJ1D121503SC (Average) MGJ1D121505SC (Quasi-Peak) MGJ1D121505SC (Average) MGJ1D121802SC (Quasi-Peak) MGJ1D121802SC (Average)

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 19 of 22 www.murata.com EMC FILTERING AND SPECTRA (Continued) MGJ1D122005SC (Quasi-Peak) MGJ1D122005SC (Average) MGJ1D151509SC (Quasi-Peak) MGJ1D151509SC (Average) MGJ1D152005SC (Quasi-Peak) MGJ1D152005SC (Average) MGJ1D241503SC (Quasi-Peak) MGJ1D241503SC (Average)

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 20 of 22 www.murata.com EMC FILTERING AND SPECTRA (Continued) MGJ1D241505SC (Quasi-Peak) MGJ1D241505SC (Average) MGJ1D241509SC (Quasi-Peak) MGJ1D241509SC (Average) MGJ1D241802SC (Quasi-Peak) MGJ1D241802SC (Average) MGJ1D242005SC (Quasi-Peak) MGJ1D242005SC (Average)

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 21 of 22 www.murata.com PACKAGE SPECIFICATIONS MECHANICAL DIMENSIONS PIN CONNECTIONS Tube outline dimensions RECOMMENDED FOOTPRINT DETAILS Weight: 3.8g Unless otherwise stated all dimensions in mm. Pin Function 1+ V IN 2- V IN 5- V OUT 6O V 7+ V OUT

5.2kVDC Isolated 1W Gate Drive DC-DC Converters KDC_MGJ1_SIP_A01 Page 22 of 22 www.murata.com Murata Power Solutions (Milton Keynes) Ltd. makes no representation that the use of its products in the circuits described herein, or the use of other technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change without notice. © 2023 Murata Power Solutions (Milton Keynes) Ltd. This product is subject to the following operating requirements and the Life and Safety Critical Application Sales Policy: Refer to: https://www.murata.com/en-eu/products/power/requirements DISCLAIMER Unless otherwise stated in the datasheet, all products are designed for standard commercial and industrial applications and NOT for safety-critical and/or life-critical applications. Particularly for safety-critical and/or life-critical applications, i.e. applications that may directly endanger or cause the loss of life, inflict bodily harm and/or loss or severe damage to equipment/property, and severely harm the environment, a prior explicit written approval from Murata is strictly required. Any use of Murata standard prod- ucts for any safety-critical, life-critical or any related applications without any prior explicit written approval from Murata shall be deemed unauthorised use. These applications include but are not limited to:

  • Aircraft equipment
  • Aerospace equipment
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  • Power plant control equipment
  • Medical equipment
  • Transportation equipment ( automobiles, trains, ships, etc.)
  • Traffic signal equipment
  • Disaster prevention / crime prevention equipment
  • Data Processing equipment Murata makes no express or implied warranty, representation, or guarantee of suitability, fitness for any particular use/purpose and/or compatibility with any applica- tion or device of the buyer, nor does Murata assume any liability whatsoever arising out of unauthorised use of any Murata product for the application of the buyer. The suitability, fitness for any particular use/purpose and/or compatibility of Murata product with any application or device of the buyer remain to be the responsibility and liability of the buyer. Buyer represents and agrees that it has all the necessary expertise to create and implement safeguards that anticipate dangerous consequences of failures, moni- tor failures and their consequences, lessen the likelihood of failures that might cause harm, and take appropriate remedial actions. Buyer will fully indemnify and hold Murata, its affiliated companies, and its representatives harmless against any damages arising out of unauthorised use of any Murata products in any safety-critical and/ or life-critical applications. Remark: Murata in this section refers to Murata Manufacturing Company and its affiliated companies worldwide including, but not limited to, Murata Power Solutions.