BEI15_V01 MURATA-PS | Alldatasheet
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Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 1 of 15 www.murata-ps.com www.murata-ps.com/support For full details go to www.murata-ps.com/rohs CONNECTION DIAGRAM Typical topology is shown. Murata Power Solutions recommends a fuse at F1. Typical unit
FEATURES
n Small footprint DC/DC converter, ideal for high current applications n Industry standard 0.96" x 1.1" X 0.33" open frame package and pinout n Wide range input voltages 9-36 and 18-75 Vdc n Bipolar ±5V, ±12V and ±15V outputs n Up to 15 Watts or greater total output power with overtemperature shutdown n Isolation up to 2250 VDC (basic), Q48 models n High efficiency synchronous rectifier forward topology n Usable -40 to 85°C temperature range (with derating) n Assembly and attachment for RoHS standards nExtensive self-protection shut down nMeets UL 62368-1, CAN/CSA- C22.2 No. 60950-1, IEC60950-1, safety approvals (2nd Edition) PRODUCT OVERVIEW Featuring a full 15 Watt output in one square inch of board area, the BEI-15 series isolated DC/DC converter family offers efficient regulated DC power for printed circuit board mounting. The wide range x 8.4 mm) converter are either 9 to 36 Volts DC (Q12 models) or 18 to 75 Volts DC (Q48 models), ideal for battery-powered and telecom equipment. The industry-standard pinout fits larger 1" x 2" convert- ers. Fixed output voltages of ±5, ±12 or ±15 VDC are regulated to within ±0.25%. Applications include small instruments, area-limited microcontrollers, data communications equipment, remote sensor systems, vehicle and portable electronics. The BEI-15 series includes full magnetic and opti- cal isolation with Basic protection up to 2250 Volts DC (Q48 models) and 2000 VDC (Q12 models). For powering digital systems, the outputs offer fast set- tling to step transients and will accept higher capaci- tive loads. Excellent ripple and noise specifications assure compatibility to noise-susceptible circuits. For systems requiring controlled startup/shutdown, an external remote On/Off control may use a switch, transistor or digital logic. A wealth of self-protection features avoid both converter and external circuit faults. These include input undervoltage lockout and overtemperature shutdown. The outputs current limit using the “hic- cup” autorestart technique and the outputs are short- circuit protected. Additional features include output overvoltage and reverse conduction elimination. The high efficiency offers minimal heat buildup and “no fan” operation. External DC Power Source Reference and Error Amplifier
- Switching
- Filters
- Switching
- Filters -Vout (4) Common (5) +Vout (6) On/Off Control (3) -Vin (2) Open = On Closed = Off +Vin (1) (Positive logic) Controller and Power Transfer Isolation Barrier
‡Some model number combinations may not be available. See website or contact your local Murata sales representative. *Minimum order quantity is required. Samples available with standard pin length only. www.murata-ps.com/support BEI15 Series Isolated Wide Input Bipolar 15-Watt DC/DC Converters PERFORMANCE SPECIFICATIONS SUMMARY AND ORDERING GUIDE Root Models Output Input Efficiency Open Frame Package – C69 Vout (V) Iout (mA, max.) Total Power (W) R/N (mVp-p) Regulation (Max.) Vin Nom. (V) Range (V) Iin = no load (mA) Iin = full load (mA) Typ. Max. Line Load Min. Typ. (inches) (mm) Case Pinout BEI15-050-Q12 ±5 ±1500 15 60 100 ±0.25% ±0.25% 24 9-36 90 740 82.8% 84% BEI15-050-Q48 ±5 ±1500 15 60 100 ±0.25% ±0.25% 48 18-75 50 374 82% 83.5% BEI15-120-Q12 ±12 ±625 15 80 120 ±0.25% ±0.25% 24 9-36 95 730 82% 86% BEI15-120-Q48 ±12 ±625 15 80 120 ±0.25% ±0.25% 48 18-75 50 370 84% 85.5% BEI15-150-Q12 ±15 ±500 15 100 150 ±0.25% ±0.25% 24 9-36 100 740 83% 84% BEI15-150-Q48 ±15 ±500 15 100 150 ±0.25% ±0.25% 48 18-75 50 360 84.5% 86% Please refer to the part number structure for additional options and complete ordering part numbers. The minimum output load for the BEI -15W series is 10% of maximum current to meet published specifications. The converter will not be damaged by less than 10% load but some specs may degrade slightly. All specifications are at nominal line voltage and full load, +25 °C. unless otherwise noted. See detailed specifications and notes for full conditions. Output capacitors are 1 µF ceramic in parallel with 10 µF electrolytic. The input cap is 100 µF, low ESR. I/O caps are necessary for our test equipment and may not be needed for your ap - plication. RoHS-6 compliance does not claim EU RoHS exemption 7b (lead in solder). Balanced loads, 10% to 100% loads. BEI15 - 050 - Q12 Bipolar Wide Input 15-Watt Series P H Lx - C RoHS-6 Hazardous Substance Compliance (note 4) N ominal Output Voltage in Tenths of a Volt Input Voltage Range Q12 = 9-36V Q48 = 18-75V Pin Length Option Blank = Std. pin length 0.25˝ (6.3mm) Conformal Coating Option Blank = No coating, standard H = Coating added, optional (built to order; contact Murata Power Solutions for MOQ and lead times.) * On/Off Control Logic P = Positive N = Negative X = Control pin omitted‡ Special Customer Configuration Part Number: BEI15-150-Q48N-C-CIS MDC_BEI15W.A21 Page 2 of 15 MPS Part Number Product Status LTB Date BEI15-120-Q48N-C To be discontinued 3/31/2024 BEI15-120-Q48NL1-C To be discontinued 3/31/2024 BEI15-120-Q48P-C Discontinued 3/31/2022 BEI15-150-Q12N-C Discontinued 3/31/2022 BEI15-150-Q12P-C In Production N/A BEI15-150-Q12PH-C Discontinued 3/31/2022 BEI15-150-Q48N-C To be discontinued 3/31/2024 BEI15-150-Q48N-C-CIS To be discontinued 3/31/2024 BEI15-150-Q48P-C Discontinued 3/31/2022 MPS Part Number Product Status LTB Date BEI15-050-Q12N-C Discontinued 3/31/2022 BEI15-050-Q12P-C To be discontinued 3/31/2024 BEI15-050-Q48N-C To be discontinued 3/31/2024 BEI15-050-Q48NL2-C Discontinued 3/31/2022 BEI15-050-Q48P-C Discontinued 3/31/2022 BEI15-050-Q48XH-C Discontinued 3/31/2022 BEI15-050-Q48XHL1-C To be discontinued 3/31/2024 BEI15-120-Q12N-C Discontinued 3/31/2022 BEI15-120-Q12P-C In Production N/A
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 3 of 15 INPUT CHARACTERISTICS BEI15-050-Q12 BEI15-050-Q48 BEI15-120-Q12 BEI15-120-Q48 BEI15-150-Q12 BEI15-150-Q48 Input voltage range See ordering guide Overvoltage shutdown, Volts none Reflected (back) ripple current mA pk-pk 5 30 30 30 5 30 Input current Full load conditions See ordering guide Output short circuit, mA 50 50 50 50 50 50 Output at min. load, mA 90 50 95 50 30 50 Standby mode, mA (Off, UV, OT shutdown) 25 1 1 1 1 1 Recommended fuse, Amps 4 2 4 2 4 2 Internal input filter type Capacitive Reverse polarity protection None, install external fuse Remote On/Off Control Positive logic ("P" model suffix) OFF=Gnd pin or -0.7 to +0.8V max. ON=open pin or +10 to +15V max. Negative logic ("N" model suffix) OFF=open pin or +10 to +15V max. ON=Gnd pin or -0.7 to +0.8V max. On/Off Current, mA max. 1 OUTPUT CHARACTERISTICS BEI15-050-Q12 BEI15-050-Q48 BEI15-120-Q12 BEI15-120-Q48 BEI15-150-Q12 BEI15-150-Q48 Voltage output range See ordering guide Voltage output accuracy, % of Vnom. (50% load) ±1 Temperature coefficient, % of Vout range/°C ±0.02 Minimum loading, percent of full power 10 Ripple/noise (20 MHz bandwidth) See ordering guideLine/Load regulation Efficiency Capacitive loading, μF max., low ESR <0.02Ω max., resistive load 500 500 150 150 100 100 Overvoltage protection, Volts (hiccup auto restart after fault removal) 6.5 7 15.8 16 18 20 OV protection method Magnetic feedback Isolation voltage Input to Output, Volts DC min. 2000 2250 2000 2250 2000 2250 Isolation resistance, MΩ min. 10 10 10 10 10 10 Isolation capacitance, pF 1000 1000 600 700 1000 1000 Isolation safety rating Basic insulation Miscellaneous Current limit inception, Amps (Vout Short circuit protection method Current limiting, hiccup autorestart Short circuit current, Amps max. 0.3 Short circuit duration (output shorted to ground) Continuous FUNCTIONAL SPECIFICATIONS
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 4 of 15 DYNAMIC CHARACTERISTICS BEI15-050-Q12 BEI15-050-Q48 BEI15-120-Q12 BEI15-120-Q48 BEI15-150-Q12 BEI15-150-Q48 Start-up time, mS, max. 50 50 50 50 50 50 Vin to Vout regulated, mS, max. (Remote On/Off to Vout regulated) 50 50 50 60 50 50 Dynamic Load Response (50-75-50% load step) Settling time 250µSec 250µSec 250µSec 250µSec 250µSec 250µSec Peak deviation ±100mV ±100mV ±150mV ±150mV ±200mV ±200mV Switching frequency, KHz 350 305 300 320 330 320 Calculated MTBF, hours >2000000 Operating temperature range (Ambient, natural convection, with derating, vertical mount). See Derating graphs. -40 to +85°C No derating -40 to +70°C Storage temperature range -55 to +125°C Thermal protection/shutdown, °C (measured at PWM) 130 Relative humidity, non-condensing To +85°C/85% PHYSICAL CHARACTERISTICS Outline dimensions See mechanical specs Pin material Copper alloy Pin diameter 0.040 inches 1.016 mm Pin Finish Gold plate over nickel underplate Electromagnetic interference (requires external filter) Meets EN55022 and CISPR22 with external filter Flammability rating UL 94V-0 Safety (designed to meet) UL/cUL 60950-1 CSA-C22.2 No.60950-1 IEC 60950-1 ABSOLUTE MAXIMUM RATINGS Input Voltage Q12 models Volts, max.,continuous 36 Volts, transient 100 mS 50 Q48 models Volts, max.,continuous 75 Volts, transient 100 mS 100 On/Off Control, referred to -Vin Volts, min. -0.3 Volts, max. 15 Input reverse polarity protection None, install external fuse Output Current, sustained short circuit Current-limited, see specs Storage Temperature Range min. °C. -55 max. °C. +125 Lead Temperature, °C. max.(soldering, ten seconds) See soldering guidelines
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 5 of 15 PERFORMANCE DATA, BEI15-050-Q12 Efficiency vs. Line Voltage and Load Current @ +25°C Power Dissipation vs. Line Voltage and Load Current @ +25°C Maximum Current Temperature Derating at Sea Level (Vin= 9V to 36V, airflow is from pin 1 to pin 3) Load Current (Amps) Efficiency (%) VIN = 9V VIN = 12V VIN = 24V VIN = 36V 0.5 1.0 1.5 2.0 2.5 3.0 Output Load Current (Amps) Power Dissipation (Watts) VIN = 9V VIN = 12V VIN = 24V VIN = 36V 30 35 40 45 50 55 60 65 70 75 80 85 Output Current (Amps) Ambient Temperature (ºC) 0.33 m/s (65 LFM)
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 6 of 15 PERFORMANCE DATA, BEI15-050-Q48 Efficiency vs. Line Voltage and Load Current @ +25°C Power Dissipation vs. Load Current @ +25°C Load Current (Amps) Efficiency (%) VIN = 18V VIN = 24V VIN = 48V VIN = 75V 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 Output Load Current (Amps) Power Dissipation (Watts) VIN = 18V VIN = 24V VIN = 48V VIN = 75V Maximum Current Temperature Derating at Sea Level (Vin= 18 to 75V, airflow is from pin 1 to pin 2) Maximum Current Temperature Derating at Sea level (Vin = 18 to 75V, natural convection) 30 35 40 45 50 55 60 65 70 75 80 85 Output Current (Amps) Ambient Temperature (ºC) 0.33 m/s (65 LFM) 30 35 40 45 50 55 60 65 70 75 80 85 Vin = 18V Vin = 24V Vin = 36V Vin = 48V Vin = 60V Vin = 75V Output Load Current (Amps) Ambient Temperature (°C)
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 7 of 15 PERFORMANCE DATA, BEI15-120-Q12 Efficiency vs. Line Voltage and Load Current @ +25°C Maximum Current Temperature Derating at Sea Level (Vin= 9V to 36V, airflow is from pin 1 to pin 3) Load Current (Amps) Efficiency (%) VIN = 9V VIN = 12V VIN = 24V VIN = 36V 0.4 0.45 0.5 0.55 0.6 0.65 0.7 0.75 0.8 30 35 40 45 50 55 60 65 70 75 80 85 0.33 m/s (65 LFM) Output Current (Amps) Ambient Temperature (ºC) Power Dissipation vs. Load Current @ +25°C 0.5 1.0 1.5 2.0 2.5 3.0 Output Load Current (Amps) Power Dissipation (Watts) VIN = 9V VIN = 12V VIN = 24V VIN = 36V
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 8 of 15 PERFORMANCE DATA, BEI15-120-Q48 Efficiency vs. Line Voltage and Load Current @ +25°C (Vout = 12V) Maximum Current Temperature Derating at Sea Level (Vin=24V, airflow is from pin 1 to pin 2) Maximum Current Temperature Derating at Sea Level (Vin= 18V, airflow is from pin 1 to pin 2) Load Current (Amps) Efficiency (%) VIN = 18V VIN = 24V VIN = 48V VIN = 75V 0.50 0.55 0.60 0.65 20 25 30 35 40 45 50 55 60 65 70 75 80 85 Natural Convection Output Current (Amps) Ambient Temperature (ºC) Maximum Current Temperature Derating at Sea Level (Vin= 75V, airflow is from pin 1 to pin 2) 0.50 0.55 0.60 0.65 20 25 30 35 40 45 50 55 60 65 70 75 80 85 Output Current (Amps) Ambient Temperature (ºC) 0.5 m/s (100 LFM) 0.50 0.55 0.60 0.65 20 25 30 35 40 45 50 55 60 65 70 75 80 85 Output Current (Amps) Ambient Temperature (ºC) 0.5 m/s (100 LFM) Maximum Current Temperature Derating at Sea Level (Vin= 48V, airflow is from pin 1 to pin 2) 0.50 0.55 0.60 0.65 20 25 30 35 40 45 50 55 60 65 70 75 80 85 Natural Convection Output Current (Amps) Ambient Temperature (ºC) Power Dissipation vs. Load Current @ +25°C 0.5 1.0 1.5 2.0 2.5 3.0 Output Load Current (Amps) Power Dissipation (Watts) VIN = 18V VIN = 24V VIN = 48V VIN = 75V
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 9 of 15 PERFORMANCE DATA, BEI15-150-Q12 Efficiency vs. Line Voltage and Load Current @ +25°C Load Current (Amps) Efficiency (%) VIN = 9V VIN = 12V VIN = 24V VIN = 36V Power Dissipation vs. Load Current @ +25°C 0.50 0.75 1.00 1.25 1.50 1.75 2.00 2.25 2.50 2.75 3.00 Output Load Current (Amps) Power Dissipation (Watts) VIN = 9V VIN = 12V VIN = 24V VIN = 36V Maximum Current Temperature Derating at Sea Level (Vin= 9V to 36V, airflow is from pin 1 to pin 3) 35 45 55 65 75 85 0.1 0.2 0.3 0.4 0.5 0.6 0.7 Output Current (Amps) Ambient Temperature (ºC) 0.33 m/s (65 LFM) Maximum Current Temperature Derating at Sea Level (Natural convection) 30 35 40 45 50 55 60 65 70 75 80 85 400 410 420 430 440 450 460 470 480 490 500 510 Output Current (mA) Ambient Temperature (ºC) Vin = 12 V Vin = 24 V
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 10 of 15 PERFORMANCE DATA, BEI15-150-Q48 Efficiency vs. Line Voltage and Load Current @ +25°C Power Dissipation vs. Line Voltage and Load Current @ +25°C Maximum Current Temperature Derating at Sea Level (Vin= 18 to 75V, airflow is from pin 1 to pin 2) 0.50 Load Current (Amps) Efficiency (%) VIN = 18V VIN = 24V VIN = 48V VIN = 75V 0.50 0.75 1.00 1.25 1.50 1.75 2.00 2.25 2.50 2.75 3.00 3.25 Output Load Current (Amps) Power Dissipation (Watts) VIN = 18V VIN = 24V VIN = 48V VIN = 75V 30 35 40 45 50 55 60 65 70 75 80 85 0.2 0.4 0.6 0.8 Output Current (Amps) Ambient Temperature (ºC) 0.33 m/s (65 LFM)
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 11 of 15 MECHANICAL SPECIFICATIONS, OPEN FRAME 0.33 SEATING PLANE 8.4 0.400 10.16 END VIEW 0.25 6.3 0.475 REF TOP VIEW PIN #1 1.10 27.9 0.79 20.1 0.96 24.4 SIDE VIEW Zero corner cuts for BEI15-120-Q12 and BEI15-150-Q12 models. 6X AT PINS 1-6 0.040 0.002 PIN WITH 0.071 0.002 SHOULDER CL BOTTOM VIEW (PIN SIDE) CL CL 0.400 10.16 0.400 10.16 0.100 2.54 0.200 5.08 0.800 20.32 INPUT/OUTPUT CONNECTIONS Pin Function
1 Positive Vin
2 Negative Vin
3 On/Off Control *
4 Negative Vout
5 Common Return
6 Positive Vout
*The Remote On/Off can be provided with either positive (P suffix) or nega- tive (N suffix) logic. Third Angle Projection Dimensions are in inches (mm shown for ref. only). Components are shown for reference only. Tolerances (unless otherwise specified): .XX ± 0.02 (0.5) Angles ± 1˚ Case 69 Standard pin length is shown. Please refer to the Ordering Guide for alternate pin lengths. Some competitive units may use different pin numbers; however, the BEI is plug compatible. Follow the pin FUNCTION when laying out your PC board.
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 12 of 15 SECTION A-A Depth Pocket 9.5 [.38 in] 19.1 [.75 in] Notes: Material: Dow 220 antistat ethafoam1. (Density: 34-35 kg/m3) Dimensions: 252 x 252 x 19.1 mm2. 6 x 5 array (30 per tray) 3. All dimensions in millimeters [inches] 4. Tolerances unless otherwise specified: +1/-0 Typ Typ R 28.4 177.8 [9.92] 252.0 Typ 6.4 Typ 6.4 6.4 Typ 18.0 Ref 38.1 22.9 190.5 Ref 252.0 [9.92] 25.4 4x 44.5 AA 19.1 Ref 252.0 Ref 252.0 Ref 9.5 deep Ref SHIPPING TRAYS AND BOXES, THROUGH-HOLE MOUNT SHIPPING TRAY DIMENSIONS Anti-static foam Label Label Each tray is 6 x 5 units (30 units per tray) BEI modules are supplied in a 30-piece (6 x 5) shipping tray. The tray is an anti-static closed-cell polyethylene foam. Dimensions are shown below.
Isolated Wide Input Bipolar 15-Watt DC/DC Converters MDC_BEI15W.A21 Page 14 of 15 output ripple and noise. Thermal Shutdown To protect against thermal overstress, these converters include thermal shutdown circuitry. If environmental conditions cause the temperature of the DC/DC’s to rise above the Operating Temperature Range up to the shutdown temperature, an on-board electronic temperature sensor will power down the unit. When the temperature decreases below the turn-on threshold, the converter will automati- cally restart. There is a small amount of temperature hysteresis to prevent rapid on/off cycling. CAUTION: If you operate too close to the thermal limits, the converter may shut down suddenly without warning. Be sure to thoroughly test your application to avoid unplanned thermal shutdown. Temperature Derating Curves The graphs in this data sheet illustrate typical operation under a variety of condi- tions. The Derating curves show the maximum continuous ambient air temperature and decreasing maximum output current which is acceptable under increasing forced airflow measured in Linear Feet per Minute (“LFM”). Note that these are AVERAGE measurements. The converter will accept brief increases in current or reduced airflow as long as the average is not exceeded. Note that the temperatures are of the ambient airflow, not the converter itself which is obviously running at higher temperature than the outside air. Also note that very low flow rates (below about 25 LFM) are similar to “natural convection”, that is, not using fan-forced airflow. Murata Power Solutions makes Characterization measurements in a closed cycle wind tunnel with calibrated airflow. We use both thermocouples and an infrared camera system to observe thermal performance. CAUTION: If you exceed these Derating guidelines, the converter may have an unplanned Over Temperature shut down. Also, these graphs are all collected near Sea Level altitude. Be sure to reduce the derating for higher altitude. Output Current Limiting Current limiting inception is defined as the point at which full power falls below the rated tolerance. See the Performance/Functional Specifications. Note particularly that the output current may briefly rise above its rated value in normal operation as long as the average output power is not exceeded. This enhances reli- ability and continued operation of your application. If the output current is too high, the converter will enter the short circuit condition. Output Short Circuit Condition When a converter is in current-limit mode, the output voltage will drop as the output current demand increases. If the output voltage drops too low (approxi- mately 98% of nominal output voltage for most models), the PWM controller will shut down. Following a time-out period, the PWM will restart, causing the output voltage to begin rising to its appropriate value. If the short-circuit condition per- sists, another shutdown cycle will initiate. This rapid on/off cycling is called “hiccup mode”. The hiccup cycling reduces the average output current, thereby preventing excessive internal temperatures and/or component damage. Remote On/Off Control The remote On/Off Control can be specified with either logic logic type. Please refer to the Connection Diagram on page 1 for On/Off connections. Positive-logic models are enabled when the On/Off pin is left open or is pulled high to +Vin with respect to –Vin. Therefore, the On/Off control can be discon- nected if the converter should always be on. Positive-logic devices are disabled when the On/Off is grounded or brought to within a low voltage (see Specifications) with respect to –Vin. Negative-logic devices are on (enabled) when the On/Off pin is grounded or brought to within a low voltage (see Specifications) with respect to –Vin. The device is off (disabled) when the On/Off is pulled high (see Specifications) with respect to –Vin. Dynamic control of the On/Off function must sink the specified signal current when brought low and withstand the specified voltage when brought high. Be aware too that there is a finite time in milliseconds (see Specifications) between the time of On/Off Control activation and stable, regulated output. This time will vary slightly with output load type and current and input conditions. Output Capacitive Load These converters do not require external capacitance added to achieve rated specifications. Users should only consider adding capacitance to reduce switching noise and/or to handle spike current load steps. Install only enough capacitance to achieve your noise and surge response objectives. Excess external capacitance may cause regulation problems and possible oscillation or instability. The maximum rated output capacitance and ESR specification is given for a capacitor installed immediately adjacent to the converter. Floating Outputs Since these are isolated DC/DC converters, their outputs are "floating." Any BEI15 model may be configured to produce an output of 10V, 24V or 30V (for ±5V, ±12V or ±15V models, respectively) by applying the load across the +Output and –Output pins, with either output grounded. The Common pin should be left open. Minimum 20% loading is recommended under these conditions. Soldering Guidelines Murata Power Solutions recommends the specifications below when installing these convert- ers. These specifications vary depending on the solder type. Exceeding these specifications may cause damage to the product. Your production environment may differ; therefore please thoroughly review these guidelines with your process engineers. Wave Solder Operations for through-hole mounted products (THMT) For Sn/Ag/Cu based solders: Maximum Preheat Temperature 115° C. Maximum Pot Temperature 270° C. Maximum Solder Dwell Time 7 seconds For Sn/Pb based solders: Maximum Preheat Temperature 105° C. Maximum Pot Temperature 250° C. Maximum Solder Dwell Time 6 seconds
licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change without notice. © 2023 Murata Power Solutions, Inc. Murata Power Solutions, Inc. 129 Flanders Rd. Westborough, MA 01581, USA. circuit diagram is shown below. Figure 4. Conducted Emissions Test Circuit