MIW06M MINMAX | Alldatasheet
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DC-DC CONVERTER 6W, DIP-Package E-mail:sales@minmax.com.tw Tel:886 -6-2923150 2018/04/20 REV:4 Page 1 of 5
FEATURES
►Industrial Standard DIP-24 Package ►Wide 2:1 Input Voltage Range ►Fully Regulated Output Voltage ►I/O Isolation 5000VAC with Reinforced Insulation, rated for 250Vrms Working Voltage ►Creepage & Clearance Distance meet 8mm ►Low Leakage Current < 2μA ►Operating Ambient Temp. Range -40°C to 95°C ►No Min. Load Requirement ►Under-Voltage, Overload/Voltage and Short Circuit Protection ►Conducted EMI EN 55011 Class A & FCC Level A Approved ►Medical EMC Standard with 4th Edition of EMI EN 55011 and EMS EN 60601-1-2 Approved ►Medical Safety with 2xMOPP per 3rd Edition of IEC/EN 60601-1 & ANSI/AAMI ES60601-1 Approved with CE Marking PRODUCT OVERVIEW The MINMAX MIW06M series is a new range of high performance 6W medical approved DC-DC converter within encapsulated DIP-24 package which specifically design for medical applications. There are 15 models available for input voltage of 12, 24, 48VDC with wide 2:1 input range and tight output voltage. The I/O isolation is specified for 5000VAC with reinforced insulation, which rated for 250Vrms working voltage. Further features include under-voltage, overload, short circuit protection, no min. load requirement,conducted EMI EN 55011 class A approved, low leakage current 2μA max. and operating ambient temp. range by -40°C to 95°C without derating by high efficiency up to 89%. MIW06M series conform to 4th edition medical EMC standard, medical safety with 2xMOPP (Means Of Patient Protection) per 3rd edition of IEC/EN 60601-1 & ANSI/AAMI ES 60601-1 approved and 8mm creepage and clearance. The MIW06M series offer a superior solution for demanding application in medical instrument requesting a certified supplementary and reinforced insulation system to comply with latest medical safety approval for 2xMOPP requirement. Model Selection Guide Model Number Input Voltage (Range) Output Voltage Output Current Input Current Over Voltage Protection Max. capacitive Load Efficiency (typ.) Max. @Max. Load @No Load @Max. Load VDC VDC mA mA(typ.) mA(typ.) VDC μF % MIW06-12S05M (9 ~ 18) 5 1200 595 6.2 1500 84 MIW06-12S12M 12 500 575 15 260 87 MIW06-12S15M 15 400 581 18 210 86 MIW06-12D12M ±12 ±250 575 ±15 150# 87 MIW06-12D15M ±15 ±200 575 ±18 110# 87 MIW06-24S05M (18 ~ 36) 5 1200 298 6.2 1500 84 MIW06-24S12M 12 500 287 15 260 87 MIW06-24S15M 15 400 287 18 210 87 MIW06-24D12M ±12 ±250 291 ±15 150# 86 MIW06-24D15M ±15 ±200 287 ±18 110# 87 MIW06-48S05M (36 ~75) 5 1200 149 6.2 1500 84 MIW06-48S12M 12 500 144 15 260 87 MIW06-48S15M 15 400 140 18 210 89 MIW06-48D12M ±12 ±250 144 ±15 150# 87 MIW06-48D15M ±15 ±200 142 ±18 110# 88 # For each output
DC-DC CONVERTER 6W, DIP-Package E-mail:sales@minmax.com.tw Tel:886 -6-2923150 2018/04/20 REV:4 Page 2 of 5 Input Specifications Parameter Model Min. Typ. Max. Unit Input Surge Voltage (1 sec. max.) 12V Input Models -0.7 --- 25 VDC 24V Input Models -0.7 --- 50 48V Input Models -0.7 --- 100 Start-Up Threshold Voltage 12V Input Models --- --- 9 24V Input Models --- --- 18 48V Input Models --- --- 36 Under Voltage Shutdown 12V Input Models --- 8 --- 24V Input Models --- 16 --- 48V Input Models --- 34 --- Start Up Time (Power On) Nominal Vin and Constant Resistive Load --- --- 30 ms Input Filter All Models Internal Pi Type Output Specifications Parameter Conditions Min. Typ. Max. Unit Output Voltage Setting Accuracy --- --- ±1.0 %Vnom. Output Voltage Balance Dual Output, Balanced Loads --- ±0.5 ±2.0 % Line Regulation Vin=Min. to Max. @Full Load --- --- ±0.5 % Load Regulation Io=0% to 100% Single Output --- --- ±0.5 % Dual Output --- --- ±1.0 % Load Cross Regulation (Dual Output) Asymmetrical Load 25%/100% Full Load --- --- ±5.0 % Minimum Load No minimum Load Requirement Ripple & Noise 0-20 MHz Bandwidth Measured with a 1μF/25V MLCC --- --- 70 mV P-P Transient Recovery Time 25% Load Step Change --- 300 --- μsec Transient Response Deviation --- ±3 ±5 % Temperature Coefficient --- ±0.01 --- %/℃ Over Load Protection --- 150 --- % Short Circuit Protection Hiccup Mode 0.5Hz typ., Automatic Recovery Isolation, Safety Standards Parameter Conditions Min. Typ. Max. Unit I/O Isolation Voltage 60 Seconds Reinforced insulation, rated for 250Vrms working voltage 5000 --- --- VACrms Leakage Current 240VAC, 60Hz --- --- 2 μA I/O Isolation Resistance 500 VDC 10 --- --- GΩ I/O Isolation Capacitance 100KHz, 1V --- --- 40 pF Safety Standards ANSI/AAMI ES 60601-1, CAN/CSA-C22.2 No. 60601-1 IEC/EN 60601-1 3rd Edition 2xMOPP Safety Approvals ANSI/AAMI ES 60601-1 2xMOPP recognition (UL certificate), IEC/EN 60601-1 3rd Edition (CB-report) General Specifications Parameter Conditions Min. Typ. Max. Unit Switching Frequency --- 330 --- kHz MTBF(calculated) MIL-HDBK-217F@25℃, Ground Benign 4,667,952 --- --- Hours
DC-DC CONVERTER 6W, DIP-Package E-mail:sales@minmax.com.tw Tel:886 -6-2923150 2018/04/20 REV:4 Page 3 of 5 Environmental Specifications Parameter Conditions Min. Max. Unit Operating Ambient Temperature Range (See Power Derating Curve) Natural Convection -40 +95 ℃ Case Temperature --- +105 ℃ Storage Temperature Range -50 +125 ℃ Humidity (non condensing) --- 95 % rel. H Cooling Natural Convection Lead Temperature (1.5mm from case for 10Sec.) --- 260 ℃ EMC Specifications Parameter Standards & Level Performance EMI Conduction EN 55011, FCC part 15 Class A EMS EN 60601-1-2 4th ESD EN 61000-4-2 Air ± 15kV, Contact ± 8kV A Radiated immunity EN 61000-4-3 10V/m A Fast transient (5) EN 61000-4-4 ±2kV A Surge (5) EN 61000-4-5 ±2kV A Conducted immunity EN 61000-4-6 10Vrms A PFMF EN 61000-4-8 30A/m A Power Derating Curve Notes 1 Specifications typical at Ta=+25℃, resistive load, nominal input voltage and rated output current unless otherwise noted. 2 Transient recovery time is measured to within 1% error band for a step change in output load of 75% to 100% 3 We recommend to protect the converter by a slow blow fuse in the input supply line. 4 Other input and output voltage may be available, please contact factory. 5 To meet EN 61000-4-4 & EN61000-4-5 an external capacitor across the input pins is required. Suggested capacitor: 12XXX: CHEMI-CON KY Series 560μF/50V 24XXX: CHEMI-CON KY Series 470μF/50V 48XXX: CHEMI-CON KY Series 330μF/100V 6 That “natural convection” is about 20LFM but is not equal to still air (0 LFM). 7 Specifications are subject to change without notice.
DC-DC CONVERTER 6W, DIP-Package E-mail:sales@minmax.com.tw Tel:886 -6-2923150 2018/04/20 REV:4 Page 4 of 5 Package Specifications Mechanical Dimensions Pin Connections Pin Single Output Dual Output 1 +Vin +Vin
11 No Pin Common
15 No Pin +Vout
►All dimensions in mm (inches) ►Tolerance: X.X±0.5 (X.XX±0.02) X.XX±0.25 ( X.XXX±0.01) ►Pin diameter 0.5 ±0.05 (0.02±0.002) Physical Characteristics Case Material : Non-Conductive Black Plastic (flammability to UL 94V-0 rated) Pin Material : Tinned Copper Weight : 15.5g Bottom View 131524 20.32 [0.80] 31.8 [1.25] 15.22 [0.60] 20.3 [0.80] 12.0 [0.47] 0.60 [0.024] 5.08 [0.20] 3.8 [0.15] 2.54 [0.10] 2.0 [0.08] 2.54 [0.10]
DC-DC CONVERTER 6W, DIP-Package 18, Sin Sin Road, An-Ping Industrial District, Tainan 702, Taiwan Tel: 886-6-2923150 Fax: 886 -6-2923149 E -mail: sales@minmax.com.tw 2018/04/20 REV:4 Page 5 of 5 Minmax Technology Co., Ltd. Test Setup Peak-to-Peak Output Noise Measurement Test Refer to the output specifications or add 4.7μF capacitor if the output specifications undefine Cout. Scope measurement should be made by using a BNC socket, measurement bandwidth is 0-20 MHz. Position the load between 50 mm and 75 mm from the DC-DC Converter. +Out -Out +Vin -Vin Single Output DC / DC Converter Resistive LoadScope Copper Strip Cout Copper Strip +Out -Out +Vin -Vin Dual Output DC / DC Converter Resistive Load Scope Copper Strip Cout Com. ScopeCout Copper Strip Copper Strip Technical Notes Overload Protection To provide hiccup mode protection in a fault (output overload) condition, the unit is equipped with internal current limiting circuitry and can endure overload for an unlimited duration. Overvoltage Protection The output overvoltage clamp consists of control circuitry, which is independent of the primary regulation loop, that monitors the voltage on the output terminals. The control loop of the clamp has a higher voltage set point than the primary loop. This provides a redundant voltage control that reduces the risk of output overvoltage. The OVP level can be found in the output data. Input Source Impedance The power module should be connected to a low ac-impedance input source. Highly inductive source impedances can affect the stability of the power module. In applications where power is supplied over long lines and output loading is high, it may be necessary to use a capacitor on the input to insure startup. By using a good quality low Equivalent Series Resistance (ESR < 1.0Ω at 100 kHz) capacitor of a 10μF for the 12V input devices and a 4.7μF for the 24V input devices and a 2.2μF for the 48V devices, capacitor mounted close to the power module helps ensure stability of the unit. +Out -Out +Vin -Vin DC / DC Converter LoadDC Power Source Cin Output Ripple Reduction A good quality low ESR capacitor placed as close as practicable across the load will give the best ripple and noise performance. To reduce output ripple, it is recommended to use 4.7μF capacitors at the output. +Out -Out +Vin -Vin Load DC Power Source Cout Single Output DC / DC Converter +Out -Out +Vin -Vin Load DC Power Source CoutCom. Dual Output DC / DC Converter Load Cout Maximum Capacitive Load The MIW06M series has limitation of maximum connected capacitance on the output. The power module may operate in current limiting mode during start-up, affecting the ramp-up and the startup time. Connect capacitors at the point of load for best performance. The maximum capacitance can be found in the data sheet. Thermal Considerations Many conditions affect the thermal performance of the power module, such as orientation, airflow over the module and board spacing. To avoid exceeding the maximum temperature rating of the components inside the power module, the case temperature must be kept below 105℃. The derating curves are determined from measurements obtained in a test setup. DUT Position of air velocity probe and thermocouple 50mm / 2in Air Flow 15mm / 0.6in