DLA19001 VISHAY | Alldatasheet

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www.vishay.com Vishay Revision: 18-Jun-2019 1 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Wet Tantalum SMD Capacitors, Tantalum Metal Case with Glass-to-Tantalum Hermetic Seal, DLA Approved

FEATURES

  • Enhanced performance, high reliability design
  • SMD, standard tin / lead (Sn / Pb)
  • Mounting: surface-mount Increased thermal shock capability of 300 cycles
  • Designed for the avionics and aerospace applications PERFORMANCE CHARACTERISTICS Operating Temperature: -55 °C to +85 °C (to +125 °C with voltage derating) DC Leakage Current (DCL Max.): at +25 °C and above: leakage current shall not exceed the values listed in the Standard Ratings table. Capacitance Range: 10 μF to 68 μF Capacitance Tolerance: ± 10 %, ± 20 % standard Voltage Rating: 50 V DC to 125 VDC Notes
  • Dimensions are in inches
  • Metric equivalents are given in pare ntheses for general information only
  • These capacitors are designed for mounting by reflow soldering, or other conventional means

ORDERING INFORMATION

DLA DRAWING NUMBER DASH NUMBER CAPACITANCE TOLERANCE VIBRATION OPTION PACKAGING K = ± 10 % M = ± 20 % S = standard Blank = full 7" reel /HR = half 7" reel /PR = partial 7" reel DIMENSIONS in inches [millimeters] CASE CODE L (MAX.) L1 W H P T W C 0.354 [9.0] 0.303 ± 0.008 [7.7 ± 0.2] 0.279 ± 0.008 [7.1 ± 0.2] 0.291 ± 0.008 [7.4 ± 0.2] 0.098 ± 0.008 [2.5 ± 0.2] 0.197 ± 0.008 [5.0 ± 0.2] L L1 P P H TW TW W

www.vishay.com Vishay Revision: 18-Jun-2019 2 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 MARKING VOLTAGE CODE VC O D E 50 T 75 S 100 R 125 B STANDARD RATINGS CAPACITANCE AT +25 °C 120 Hz (μF) CASE CODE PART NUMBER MAX. ESR AT +25 °C 120 Hz () MAX. IMP. AT -55 °C 120 Hz () MAX. DCL (μA) AT MAX. CAPACITANCE CHANGE (%) AC RIPPLE +85 °C 40 kHz (mARMS)+25 °C +85 °C AND +125 °C 50 VDC AT +85 °C; 30 VDC AT +125 °C; SURGE (+85 °C) 57.5 VDC 68 C 19001-04(1)S(2) 1.5 35 1.0 5.0 -25 +8 +15 1650 75 VDC AT +85 °C; 50 VDC AT +125 °C; SURGE (+85 °C) 86.3 VDC 33 C 19001-12(1)S(2) 2.5 66 1.0 5.0 -25 +5 +9 1310

100 VDC AT +85 °C; 65 VDC AT +125 °C; SURGE (+85 °C) 115 VDC

15 C 19001-16(1)S(2) 3.5 125 1.0 5.0 -18 +3 +10 1030

125 VDC AT +85 °C; 85 VDC AT +125 °C; SURGE (+85 °C) 144 VDC

10 C 19001-20(1)S(2) 5.5 175 1.0 5.0 -15 +3 +10 832 Note

  • Part number definitions: (1) Capacitance tolerance: K = 10 %, M = 20 % (2) Packaging: blank, /HR, /PR POWER DISSIPATION CASE CODE MAXIMUM PERMISSIBLE POWER DISSIPATION AT +25 °C (W) IN FREE AIR C0 . 9 STANDARD PACKAGING QUANTITY CASE CODE UNITS PER REEL 7" FULL REEL 7" HALF REEL 7" PARTIAL REEL C 100 50 25 686T YYXX Polarity mark Voltage Week Capacitance Year Trademark

www.vishay.com Vishay Revision: 18-Jun-2019 3 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Notes

  • Metric dimensions will govern . Dimensions in inches are rounded and for reference only (1) A0, B0, K0, are determined by the maximum dimensions to the ends of the terminals extending from the component body and / or the body dimensions of the component. The clearance between the ends of the terminals or body of the co mponent to the sides and depth of the rotation of the component within the cavity of not more than 20° (2) Tape with components shall pass around radius “R” without damage . The minimum trailer length may require additional length to provide “R” minimum for 12 mm embossed tape for reels with hub diameters approaching N minimum (3) This dimension is the flat area from the edge of the sprocket hole to either outward deformation of the carrier tape between the embossed cavities or to the edge of the cavity whichever is less (4) This dimension is the flat area from the edge of the carrier tape opposite the sprocket holes to either the outward deformation of the carrier tape between the embossed cavity or to the edge of the cavity whichever is less (5) The embossed hole location shall be measured from the sprocket hole controlling the location of the embossment . Dimensions of embossment location shall be applied independent of each other (6) B1 dimension is a reference dimension tape feeder clearance only TAPE AND REEL PACKAGING in inches [millimeters] CARRIER TAPE DIMENSIONS in inches [millimeters] TAPE WIDTH W P 2 FE 1 E2 MIN. 16 mm 0.630 + 0.012 / - 0.004 0.079 ± 0.004 [2.0 ± 0.1] 0.295 ± 0.004 [7.5 ± 0.1] 0.069 ± 0.004 [1.75 ± 0.1] 0.561 [14.25] 0.004 [0.10] max. K (max.) B1 (max.) (6) 0.024 [0.600] max. 10 pitches cumulative tolerance on tape ± 0.008 [0.200] Embossment 0.069 ± 0.004 [1.75 ± 0.10] D 1 (min.) for components Maximum USER DIRECTION OF FEED Center lines of cavity A F W 0.030 [0.75] min. (3) 0.030 [0.75] min. (4) 0.079 ± 0.002 [2.0 ± 0.05] 0.157 ± 0.004 [4.0 ± 0.10] [1.5 + 0.10 - 0.0] B Maximum component rotation (Side or front sectional view) 20° For tape feeder reference only including draft. Concentric around B Deformation between embossments Top cover tape Top cover tape cavity size (1) DIRECTION OF FEED Cathode (-) Anode (+) Bending radius (2) R minimum: 16 mm = 1.181" (30 mm)R min. 20° maximum component rotation Typical component cavity center line Typical component center lineA (Top view) 0.9843 [250.0] Tape 3.937 [100.0] 0.039 [1.0] max. 0.039 [1.0] max. Camber Allowable camber to be 0.039/3.937 [1/100] (Top view) Non-cumulative over 9.843 [250.0]

www.vishay.com Vishay Revision: 18-Jun-2019 4 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 CARRIER TAPE DIMENSIONS in inches [millimeters] TYPE CASE CODE TAPE WIDTH W (mm) P1 K0 MAX. B 1 MAX. DLA 19001 C 16 0.476 ± 0.004 [12.0 ± 0.1] 0.31 [7.9] 0.45 [11.3] RECOMMENDED REFLOW PROFILES Capacitors should withstand reflow profile as per J-STD-020 standard PROFILE FEATURE SnPb EUTECTIC ASSEMBLY LEAD (Pb)-FREE ASSEMBLY Preheat / soak Temperature min. (T s min.) 100 °C 150 °C Temperature max. (Ts max.) 150 °C 200 °C Time (ts) from (Ts min. to Ts max.) 60 s to 120 s 60 s to 120 s Ramp-up Ramp-up rate (T L to TP) 3 °C/s max. 3 °C/s max. Liquidus temperature (TL) 183 °C 217 °C Time (tL) maintained above TL 60 s to 150 s 60 s to 150 s Peak package body temperature (Tp) 220 245 Time (tp) within 5 °C of the specified classification temperature (TC) 20 s 30 s Time 25 °C to peak temperature 6 min max. 8 min max. Ramp-down Ramp-down rate (T P to TL) 6 °C/s max. 6 °C/s max. Time 25 °C to peak temperature 6 min max. 8 min max. PAD DIMENSIONS in inches [millimeters] CASE CODE A (MIN.) B (NOM.) C (NOM.) D (NOM.)

25 TEMPERATURE (°C)

TIME (s) ts tL Time 25 °C to peak TL TP TC - 5 °Ctp Ts max. Ts min. Preheat area Max. ramp-up rate = 3 °C/s Max. ramp-down rate = 6 °C/s D C A B

www.vishay.com Vishay Revision: 18-Jun-2019 5 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 TYPICAL PERFORMANCE CHARACTERISTICS OF DLA 19001 CAPACITORS RIPPLE CURRENT MULTIPLIERS VS. FREQUENCY, TEMPERATURE AND APPLIES PEAK VOLTAGE FREQUENCY OF APPLIED RIPPLE CURRENT

120 Hz 800 Hz 1 kHz 10 kHz 40 kHz 100 kHz

AIR TEMP. IN °C  55 85 105 125  55 85 105 125  55 85 105 125  55 85 105 125  55 85 105 125  55 85 105 125 % of 85 °C rated peak voltage ELECTRICAL PERFORMANCE CHARACTERISTICS ITEM PERFORMANCE CHARACTERISTICS Category temperature range - 55 °C to +85 °C (to +125 °C with voltage derating) Capacitance tolerance ± 20 %, ± 10 % at +25 °C, 120 Hz Capacitance change by temperature L imit per Standard Ratings table ESR Limit per Standard Ratings table, at +25 °C, 120 Hz Impedance Limit per Standard Ra tings table, at -55 °C, 120 Hz DCL (leakage current) Limit per Standard Ratings table AC ripple current Limit per Standard Ratings table, at +85 °C and 40 kHz Reverse voltage Reverse voltage shall be in accordance with MIL-PRF-39006, paragraphs 3.23 and 4.8.19 Maximum operating voltage OPERATING TEMPERATURE +85 °C +125 °C RATED VOLTAGE DC) SURGE VOLTAGE (VDC) DERATED VOLTAGE (VDC) 50 57.5 30 60 69.0 40 75 86.3 50 100 115.0 65 125 144.0 85 Surge voltage The DC rated surge voltage is the maximum voltage to which the capacitors can be subjected under any conditions including transients and peak ripple at the highest line voltage. The DC surge voltage is 115 % of rated DC voltage PERFORMANCE CHARACTERISTICS ITEM PERFORMANCE CHARACTERISTICS Life testing Capacitors shall be capable of withstanding a 2000 hour life test at +85°C at rated voltage. After the test, the capacitors shall meet the following requirements: a. DC leakage at +85 °C shall not exceed 125 % of the specified value b. DC leakage at +25 °C shall not exceed the specified value c. Capacitance shall be within +10 %, -20 % of initial value d. ESR shall not exceed 200 % of the specified value e. Dielectric withstanding voltage: in accordance with MIL-PRF-39006 f. Insulation resistance: in accordance with MIL-PRF-39006 g. Visual examination: shall show no damage, obliteration of marking, or leakage of electrolyte Surge voltage Surge voltage shall be in accordance with MIL-PRF-39006 and DLA 19001, except capacitance shall change not more than +5 %, -20 % of the initial measured value. AC ripple life In accordance with MIL-PRF-39006: 2000 h, +85 °C

www.vishay.com Vishay Revision: 18-Jun-2019 6 Document Number: 42111 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 ENVIRONMENTAL CHARACTERISTICS ITEM CONDITION POST TEST PERFORMANCE Seal MIL-PRF-39006  When the capacitors are tested as specified in MIL-PRF-39006, there shall be no evidence of leakage. Moisture resistance MIL-STD-202-106  Number of cycles: 10 continuous cycles except that steps 7a and 7b shall be omitted. DC leakage Not exceed 125 % of the specified value Capacitance change Within ±10 % of the initial measured value ESR Not exceed the specified value Stability at low and high temperatures MIL-PRF-39006 The capacito rs shall meet the requirements of MIL-PRF-39006 Barometric pressure (reduced) MIL-PRF-39006 Barometric pressure shall be in accordance with MIL-PRF-39006. There shall be no mechanical or visual damage to capacitors post-conditioning. MECHANICAL PERFORMANCE CHARACTERISTICS ITEM CONDITION POST TEST PERFORMANCE Solderability MIL-STD-202-208, test B All terminations shall exhibit a continuous solder coating free from defects for a minimum of 95 % of the critical area of any individual lead. Shock (specified pulse) MIL-STD-202-213,condition D (500 g peak) The capacitors shall meet the requirements of MIL-PRF-39006. Vibration, high frequency MIL-STD-202-204, condition H (80 g peak) The capacitors shall meet the requirements of MIL-PRF-39006. Random vibration MIL-STD-202-214, condition II-G  (overall RMS 27.78 G) The capacitors shall meet the requirements of MIL-PRF-39006. Thermal shock MIL-PRF-39006 Thermal shock shal l be in accordance with MIL-PRF-39006 when tested for 300 cycles. Resistance to solvents MIL-STD-202-215 There shall be no mechanical or visual damage to capacitors post-conditioning. Marking shall remain legible and shall not smear (no degradation of the can material). Resistance to soldering heat MIL-STD-202-210, test condition J, except with only one heat cycle The capacitors shall meet the requirements of MIL-PRF-39006. The combination of the mounting process and 1 heat cycle is effectively equivalent to 2 heat cycles. There shall be no mechanical or visual damage to capacitors. TYPICAL CURVES OF IMPEDANCE AS A FUNCTION OF FREQUENCY AT VARIOUS TEMPERATURES 100 1000 10000 0.1 100 100 1K 10K 100K 1M 10M

50 V, Case Size “C”

Impedance (Ω) Frequency (Hz) +125 °C +85 °C +25 °C -20 °C -55 °C -40 °C

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