100BPS15 B. MDS Medical AC-DC Open Frame 15Volt, 100Watt / MDS-100BPS15 B ``` Highlights & Features. Safety Standards.

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TECHNICAL DATASHEET 100BPS15 B Highlights & Features rd rd Safety Approvals to IEC60601-1 3 & 3.1 and IEC60950-1 Compact size 2 x4 Class B EMI and 4th Edition Immunity Compliant Low touch current (<0.1mA Normal &,0.3mA single fault) Over-Voltage/Load/Temperature & Short Circuit protections 1 Million Hours MTBF 2 x MOPP (means of patient protection) 3 years warranty Safety Standards CB Certified for worldwide use Model Number: MDS-100BPS15 B Unit Weight: 150 grams (5.3 Ounces) Dimensions (W x L x H): 50.8x101.6x31.8 mm 2.0x4.0x1.25 in General Description The MDS series of embedded power supply comes with universal AC input at 90Vac to 264Vac. Other features include low touch current, risk management report available and the electric shock protection comply with 2 x MOPP. The MDS series is certified for EMC standards according to EN 55011 for industrial, scientific and medical (ISM) radio-frequency equipment and EN 55022 for Information Technology Equipment (ITE) radio-frequency equipment. In addition, only recognized Japanese capacitors are used. The MDS series come with both medical and ITE safety approvals including UL/cUL/CQC /CE and CB certification and are fully compliant with RoHS Directive 2011/65/EU for environmental protection. Model Information Medical AC-DC Open Frame Model Number Input Voltage Output Voltage Conversion Current Output Forced Air Current Output MDS-100BPS15 B 90-264Vac 15Vdc 5.3A 6.7A Model Numbering MDS Delta Medical power Supply 1-100 BPS 15 Max wattage in the product series. Maybe lower at some voltage. 100 100W Family Code Output Voltage Single Output: 15 for 15V B

Specifications Input Ratings / Characteristics Nominal Input Voltage Input Voltage Range Nominal Input Frequency Input Frequency Range Input Current (max) Efficiency (typ.) 100-240Vac 90-264Vac 50-60Hz 47-63Hz Standby Power (max) 0.3W Inrush Current (typ.) 2.5A @ 100Vac, 1.25A @ 240Vac 88.2%, Reference Fig.1 40A @ 115Vac, 80A @ 230Vac Touch Current (max) 0.1mA @ 264Vac NC 1), 0.3mA @ 264Vac SFC 2) Earth Leakage Current (max) 1mA @ 264Vac NC 1), 2mA @ 264Vac SFC 2) 1) NC: normal condition 2) SFC: single fault condition E fficienc y (% ) 100 95 90 85 80 75 115Vac Efficiency 70 230Vac Efficiency 65 60 55 50 25% 50% 75% 100% Output loa d Fig.1 Efficiency versus output load Output Ratings / Characteristics Nominal Output Voltage 15Vdc Total Regulation ± 1.5% Output Current 6.7A with 10CFM force air, 5.3A for convection Output Power 100W with 10CFM force air, 80W for convection Line Regulation (max) ±0.5% Load Regulation (max) ±1% Ripple & Noise (typ.) 51.2mV pk-pk @ Full load, Reference Fig. 2 Start-up Time(max) 3000ms @ 115Vac Hold-up Time(min) 10ms @ 115Vac Dynamic Response (Overshoot & Undershoot O/P Voltage) ± 3% @ 50-100% load *Periodic and Random Deviation 2

(a) 115V (b) 230V Ripple & Noise measurement circuit Fig. 2 Ripple & Noise example, 20MHz BW Mechanical Dimensions(W x Lx H) Weight (typ.) Terminal Environment Input Output 50.8 x 101.6 x 31.8 mm 150 grams (5.3 Ounces) JST 2P JST 4P Surrounding Air Temperature Operating -10 C to +70 C Power De-rating Operating Humidity Operating Altitude Non-operating Altitude Shock Test (Non-Operating) Vibration (Operating) Storage -40 C to +85 C -10 C to +50 C 100% load 50 C to 70 C de-rate power by 2.5% / C, See Fig. 3 10-95% RH (Non-Condensing) 5,000 meters (16,400 feet or 50kPa) 5,000 meters (16,400 feet or 50kPa) 50G, 11ms, 3 shocks for each direction 5-500Hz, 2.09Grms, 20 minute for each three axis 3

Protections Over Voltage (max) Over Load / Over Current (max) Over Temperature Short Circuit Protection Against Shock 150%, Latch Mode 170% of rated load current, Hiccup Mode, (Non-Latching, Auto-Recovery) Hiccup Mode, (Non-Latching, Auto-Recovery) Hiccup Mode, (Non-Latching, Auto-Recovery) Class I with PE* connection *PE: Protective Earth Reliability Data MTBF (typ.) 1 Million Hours based on Telecordia SR-332 Safety Standards / Directives Medical Safety ITE Safety CE Material and Parts Galvanic Isolation Input to Output 4000 Vac Input to Ground Output to Ground IEC60601-1 3 rd and 3.1 rd edition CB report IEC60601-1 edition 3.1rd (2012), EN60601-1 (2006) + A11 + A1 + A12, CAN/CSA-C22.2 NO. 60601-1:14, ANSI/AAMI ES60601-1:2005/(R)2012 IEC60950-1 (Ed.2,2005), GB4943.1-2011, GB9254-2008, GB17625.1-2003 MDD Directive 93/42/EEC RoHS Directive 2011/65/EU Compliant 1500 Vac 500 Vac 4

EMC EMC / Emissions EN55011/EN55022,FCC Title 47:Class B Harmonic Current Emissions IEC61000-3-2 Meet Class A limit Immunity to Voltage Flicker IEC61000-3-3 Electrostatic Discharge IEC61000-4-2 Level 4 Criteria A 1)5) Radiated Field IEC61000-4-3 Air Discharge: 15kV Contact Discharge: 8kV Level 3 Criteria A 1) 80MHz-1000MHz, 10V/m AM modulation IEC60601-1-2 Electrical Fast Transient / Burst IEC61000-4-4 Level 3 Criteria A 1) :2kV Surge IEC61000-4-5 Level 3 Criteria A 1)5) Common Mode 3) : 2kV Differential Mode 4) : 1kV Conducted IEC61000-4-6 Level 2 Criteria A 1)5) Criteria A 1)5) 80MHz-2700MHz, 10V/m AM modulation 385MHz-5785MHz, 28V/m Pulse mode and other modulation 150kHz-80MHz, 3Vrms, 6Vrms at ISM bands and Amateur radio bands Power Frequency Magnetic Fields IEC61000-4-8 Criteria A 1)5) Magnetic field strength 30A/m Voltage Dips IEC61000-4-11 30% 10ms Criteria B 2) 60% 100ms Criteria B 2) 100% 5000ms Criteria B 2) Voltage Dips 5) IEC60601-1-2 30% 500ms Criteria A 1) 1) Criteria A: Normal performance within the specification limits 2) Criteria B: Output out of regulation, or shuts down during test. Automatically restore to normal operation after test. 3) Asymmetrical: Common mode (Line to earth) 4) Symmetrical: Differential mode (Line to line) 5) Compliant with IEC-60601-1-2 4th edition requirements. 100% 10ms at step: 45 degree Criteria B 2) 100% 20ms Criteria B 2) 100% 5000ms Criteria B 2) 5

Block Diagram 6

Dimensions W x L x H: 50.8 x 101.6 x 31.8 mm Notes Dimensions are in mm For Open Frame type: There are 4 normal mounting holes. To ensure EMC performance, all mounting holes shall be connected to metal case. 7

Power De-rating Fig. 3 Functions Start-up Time The time required for the output voltage (Vo) to reach 90% of its set value, after the input AC voltage is applied. Rise Time The time required for the output voltage (Vo) to change from 10% to 90% of its steady state value. Hold-up Time Hold up time is the time when the AC input collapses and output voltage retains regulation for a certain period of time. The time required for the output to reach 95% of its set value, after the input voltage is removed. Graph illustrating the Start-up Time, Rise Time, and Hold-up Time 8

Dynamic Response The power supply output voltage will remain within ±3% of its steady state value, when subjected to a dynamic load change from 50 to 100% of its rated current. 100% Load Overload & Over current Protections The power supply s Overload (OLP) and Over current (OCP) Protections will be activated when output current is between 110% and 170% of I O (Max load). Upon such an occurrence, V O will start to drop. Once the power supply has reached its maximum power limit, the protection will be activated. and the power supply will go into Hiccup mode (Auto-Recovery). The power supply will recover once the fault condition causing the OLP and OCP is removed and I O is back within the specified limit. 50% Load 50ms 50ms 50ms 50ms T (sec) Inrush Current Inrush current is the input current that occurs when the input voltage is first applied. For AC input voltages, the maximum peak value of inrush current will occur during the first half cycle of the applied AC voltage. This peak value decreases exponentially during subsequent cycles of AC voltage. Additionally, if the I O is <110% but >100% for a prolong period of time (depending on the load), the Over Temperature Protection (OTP) will be activated due to high temperature on critical components. The power supply will then go into hiccup mode until the fault is removed; and, the input voltage is removed, then reapplied. Over Temperature Protection As mentioned above, the power supply also has Over Temperature Protection (OTP). This is activated when the overload condition persists for an extended duration and the output current is below the overload trigger point but >100% load. In the event of a higher operating condition at 100% load, the power supply will run into OTP when the surrounding air temperature is higher than the operating temperature. When activated, the output voltage will go into hiccup mode until the input voltage is removed; then, reapplied, and the surrounding air temperature drops to its normal operating temperature. Overvoltage Protection The power supply s overvoltage circuit will be activated when its internal feedback circuit fails. The output voltage shall not exceed its specifications defined on Page 3 under Protections. Power supply will latch mode, and require removal/re-application of input AC voltage in order to restart. Short Circuit Protection The power supply s output OLP/OCP function also provides protection against short circuits. When a short circuit is applied, the output current will operate in Hiccup mode, as shown in the illustration in the OLP/OCP section on this page. The power supply will return to normal operation after the short circuit is removed. 9

Certificate. All Delta Medical Power products conform to the European directive 2011/65/EU. RoHS is the abbreviation for Restriction of the use of certain hazardous substances. Delta has been certified as meeting the requirement of ISO 13485: 2003 and EN ISO 13485:2012 for the design and manufacture of switching power supply and adaptor for medical device. In addition to a UL Total Certification Program (TCP) approved client laboratory for IEC60950 and IEC60065. Delta also has participated UL Client Test Data Program (CDTP) for IEC 60601 10