SDL1310 SUPERWORLD | Alldatasheet
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(a) (c) (b) (e) (d) 1. PART NO. EXPRESSION : (b) Dimension code (c) Inductance code : R60 = 0.60uH (a) Series code 2. CONFIGURATION & DIMENSIONS : SUPERWORLD ELECTRONICS (S) PTE LTD 3. SCHEMATIC : (d) Tolerance code : M = ±20% (e) F : Lead Free SDL1310 SERIESHIGH CURRENT POWER INDUCTORS PG. 1 NOTE : Specifications subject to change without notice. Please check our website for latest information. 05.05.2008 C BA 13.0 Max. 14.0 Max. B F mm mm A IHGFEDC mm E mm mm mm D mm mm mm PCB Pattern H GØI 2.0±0.5 4. GENERAL SPECIFICATION : c) Irms (A) : Will cause coil temp. to rise approximately ǻT=60°C without core loss. b) Storage temp. : -55°C to +125°C a) Operating temp. : -55°C to +125°C d) Isat (A) : Will cause L to drop approximately 20% e) Part temperature (ambient + temp. rise) : Shoul d not exceed 125°C under worst case operating conditions.
SUPERWORLD ELECTRONICS (S) PTE LTD 5. ELECTRICAL CHARACTERISTICS : HIGH CURRENT POWER INDUCTORS SDL1310 SERIES NOTE : Specifications subject to change without notice. Please check our website for latest information. PG. 2 05.05.2008 SDL1310-R60MF 0.60±20% 300.25V / 100K 1.0 40 ( µH ) Inductance LPart No. Test Frequency ( Hz ) ( mȍ ) Max. DCR Max. ( A )( A ) Max. Irms Isat 6. CHARACTERISTICS CURVES : SDL1310-R60MF
NOTE : Specifications subject to change without notice. Please check our website for latest information. SUPERWORLD ELECTRONICS (S) PTE LTD PG. 3 05.05.2008 HIGH CURRENT POWER INDUCTORS SDL1310 SERIES 7. RELIABILITY AND TEST CONDITION : approximately ǻT=40°C without core loss Total : 5 cycles Humidity Resistance 2. Inductance : Within ±20% of initial value. No disconnection or short circuit. 1. Appearance : No damage Measure at room temperature after placing for 2 to 3 hrs. Measure at room temperature after placing for 2 to 3 hrs. Applied Current : Rated Curent Time : 500±12 hours Humidity : 90% to 95% Temperature : 40±5°C 10±0.5 seconds Life Test 1. Appearance : No damage Thermal Shock 2. Inductance : Within ±20% of initial value. No disconnection or short circuit. High Temperature Low Temperature Life Test Reliability Test seconds 150°C cooling230°C Solder Heat Resistance 1. Appearance : No significant abnormality 2. Inductance change : Within ±20% 260°C DippingPreheating Natural cooling seconds 150°C 4±1 seconds Mechanical Performance Test Solderability Test Saturation Current (Isat) More than 90% of the terminal electrode should be covered with solder. DippingPreheating Natural Time : 500±12 hours Times (min.) Measure at room temperature after placing for 2 to 3 hrs. Room Temperature Room Temperature +125±33 30±3 Within 3 -55±3 30±3 Within 3 Temperature (°C) Conditions of 1 cycle. Step Measure at room temperature after placing for 2 to 3 hrs. Temperature : 125±5°C Time : 500±12 hours Temperature : -55±5°C Flux for lead free : rosin Preheat : 150°C, 60sec. Solder Temperature : 260±5°C Flux for lead free : rosin Dip Time : 10±0.5sec. Solder : Sn-Ag3.0-Cu0.5 Dip Time : 4±1sec. Isat(A) will cause Lo to drop approximately 20% 2. Temperature measured by digital surface thermometer Solder Temperature : 230±5°C Solder : Sn-Ag3.0-Cu0.5 Preheat : 150°C, 60sec. 1. Applied the allowed DC current Electrical Characteristics Test Heat Rated Current (Irms) Inductance DCR ITEM Refer to standard electrical characteristics list PERFORMANCE Irms(A) will cause the coil temperature rise HP4284A, CH11025, CH3302, CH1320, CH1320S CH16502, Agilent33420A Micro-Ohm Meter. LCR meter. TEST CONDITION