ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag Precision Thin Film Chip Resistor Array Superior Moisture Resistivity FEATURES • Superior moisture resistivity, |R/R| < 0.5 % (85 °C; 85 % RH; 1000 h) • Rated dissipation P70 up to 125 mW per resistor • ESD stability 1000 V, human body model • Relative TCR down to ± 5 ppm/K (tracking) • Relative tolerance down to ± 0.05 % (matching) ACAS 0606 AT and ACAS 0612 AT precision automotive grade thin film chip resistor arrays with convex terminations combine the proven reliability of discrete chip resistors with the advantages of chip resistor arrays. Defined relative tolerance (matching) and relative TCR (tracking) make this product perfectly suited for applications with outstanding requirements towards stable fixed resistor ratios. The ACAS AT is available with equal or different resistor values. Find out more about Vishay’s automotive grade product requirements at: www.vishay.com/applications • AEC-Q200 qualified • Material categorization: For definitions of compliance please see www.vishay.com/doc?99912 APPLICATIONS • Precision analogue circuits • Voltage divider • Feedback circuits • Signal conditioning TECHNICAL SPECIFICATIONS DESCRIPTION EIA size Metric size Configuration, isolated ACAS 0606 AT ACAS 0612 AT 0606 0612 RR1616M RR1632M 2 x 0603 4 x 0603 AE AE Design: All equal values (AE) Two pairs of values (TP) Different values (DF) TP DF Resistance values 47 to 150 k (1) Absolute tolerance ± 0.1 % Relative tolerance ± 0.05 % Absolute temperature coefficient 25 ppm/K; ± 15 ppm/K; ± 10 ppm/K Relative temperature coefficient 15 ppm/K; ± 10 ppm/K; ± 5 ppm/K Max. resistance ratio Rmin./Rmax. 1:20 Rated dissipation: P70 Element 0.125 W Package 0.2 W Operating voltage, Umax. AC/DC 0.125 W 0.4 W 75 V Operating temperature range - 55 °C to 155 °C Permissible film temperature 155 °C Insulation voltage (Uins) against ambient and between integrated resistors, continuous 75 V Notes • The relative figures of tolerance, TCR and drift are related to a medial axis between the maximum and minimum permissable deviation of the resistor array. For detailed information please refer to the application note: Increasing Accuracy in Feedback Circuits and Voltage Dividers with Thin Film Chip Resistor Arrays (www.vishay.com/doc?28194) (1) Resistance values to be selected from E24; E192. Revision: 12-Apr-13 Document Number: 28770 1 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag APPLICATION INFORMATION The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heat flow support of the printed-circuit board (thermal resistance). The rated dissipation applies only if the permitted film temperature is not exceeded. These resistors do not feature a limited lifetime when operated within the permissible limits. MAXIMUM RESISTANCE CHANGE AT RATED POWER DESCRIPTION ACAS 0606 AT ACAS 0612 AT 2 x 0603 4 x 0603 Configuration, isolated Operation mode (1) Standard Power Standard Power Rated power per element, P70 0.1 W 0.125 W 0.1 W 0.125 W Rated power per package, P70 0.15 W 0.2 W 0.3 W 0.4 W Film temperature 125 °C 155 °C 125 °C 155 °C 1000 h ± 0.1 % ± 0.25 % ± 0.1 % ± 0.25 % 8000 h ± 0.25 % ± 0.5 % ± 0.25 % ± 0.5 % 1000 h ± 0.05 % ± 0.125 % ± 0.05 % ± 0.125 % 8000 h ± 0.125 % ± 0.25 % ± 0.125 % ± 0.25 % Max. resistance change at P70 R/R max., after: Max. relative resistance change (relative drift) at P70 R/R max., after: Note (1) Figures are given for arrays with equal values, design type AE. CIRCUITS 4 3 R1 Pin 1 7 8 R2 R1 2 Pin 1 ACAS 0606 AT 6 R2 2 5 R3 3 R4 4 ACAS 0612 AT Marking on ACAS 0606 AT: For types with different resistor values pin 1 is marked. DESIGN AE ACAS 0606 AT ACAS 0612 AT R1 = R2 R1 = R2 = R3 = R4 TP R1 = R4 < R2 = R3 DF R1 < R2 Revision: 12-Apr-13 Document Number: 28770 2 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag PART NUMBER AND PRODUCT DESCRIPTION Part Number: ACASA1100S2200P5AT A MODEL/ SIZE ACA C A S A 1 1 0 0 S 2 2 0 0 P 5 A T TERMINAL SIZE RESISTANCE (1) ACCURACY GRADE (2) RESISTANCE (1) PACKAGING Special S = Convex square N = 0606 A = 0612 3 digit resistance value R1, R4 1 digit multiplier TCR, Tracking, Tolerance and Matching S, T, or U 3 digit resistance value R2, R3 1 digit multiplier P1 P5 AT = Automotive MULTIPLIER 9 = *10-1 0 = *100 1 = *101 2 = *102 3 = *103 MULTIPLIER 9 = *10-1 0 = *100 1 = *101 2 = *102 3 = *103 Product Description: ACAS 0612 110R S 220R AT P5 ACA S 0612 110R S 220R AT P5 MODEL/ SIZE TERMINAL SIZE RESISTANCE R1, R4 (1) ACCURACY GRADE (2) RESISTANCE R2, R3 (1) SPECIAL PACKAGING ACA = Chip Array S = Convex square 0606 0612 110R = 110 1K1 = 1.1 k 22K1 = 22.1 k TCR, Tracking, Tolerance and Matching S, T, or U 220R = 220 1K1 = 1.1 k 22K1 = 22.1 k AT = Automotive P1 P5 Notes • Products can be ordered using either the PART NUMBER or the PRODUCT DESCRIPTION. (1) R = R R = R . 1 4 2 3 (2) For historical temperature coefficient and resistance ranges please refer to the end of the data sheet. TEMPERATURE COEFFICIENT AND RESISTANCE RANGE TYPE ACAS 0606 AT ACAS 0612 AT ABSOLUTE RELATIVE ACCURACY GRADE TCR TOLERANCE TCR TOLERANCE RESISTANCE VALUE S ± 25 ppm/K ± 0.1 % ± 15 ppm/K ± 0.05 % 47 to 150 k T ± 15 ppm/K ± 0.1 % ± 10 ppm/K ± 0.05 % 47 to 150 k U ± 10 ppm/K ± 0.1 % ± 5 ppm/K ± 0.05 % 47 to 100 k Notes • For historical temperature coefficent and resistance range please refer to the end of the data sheet. • Relative TCR (tracking) down to ± 2.5 ppm/K on request. • Relative tolerance for resistance values < 80 on request. Revision: 12-Apr-13 Document Number: 28770 3 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag PACKAGING TYPE CODE QUANTITY P1 1000 P5 5000 ACAS 0606 AT ACAS 0612 AT PACKAGING STYLE WIDTH PITCH REEL DIAMETER Tape and reel cardboard tape acc. IEC 60286-3 Type I 8 mm 4 mm 180 mm/7" DIMENSIONS ACAS 0606 AT ACAS 0612 AT W W A Pin 4 Pin 3 A Pin 8 T2 T2 L T1 H Pin 1 H Pin 1 A1 L T1 Pin 2 A1 A DIMENSION AND MASS L (mm) W (mm) H (mm) P (mm) A1 (mm) A (mm) T1 (mm) T2 (mm) MASS (mg) ACAS 0606 AT 1.5 ± 0.15 1.6 ± 0.15 0.45 ± 0.1 - 0.6 ± 0.1 0.4 ± 0.1 0.3 ± 0.15 0.4 ± 0.15 3.6 ACAS 0612 AT 1.5 ± 0.15 3.2 ± 0.15 0.45 ± 0.1 0.8 ± 0.1 0.6 ± 0.1 0.4 ± 0.1 0.3 ± 0.15 0.4 ± 0.15 6.8 TYPE PATTERN STYLES FOR CHIP RESISTOR ARRAYS I X U I Y Y G Pin 1 X G Z Pin 1 0.1 limits for solder resist P Z Dimensions in mm 0.1 limits for solder resist RECOMMENDED SOLDER PAD DIMENSIONS G (mm) Y (mm) X (mm) U (mm) Z (mm) I (mm) P (mm) ACAS 0606 AT 0.7 0.7 0.64 - 2.1 0.3 0.8 ACAS 0612 AT 0.7 0.7 0.64 0.5 2.1 0.3 0.8 TYPE Revision: 12-Apr-13 Document Number: 28770 4 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag DESCRIPTION The production of the components is strictly controlled and follows an extensive set of instructions established for reproducibility. A homogeneous film of metal alloy is deposited on a high grade (Al2O3) ceramic substrate using a mask to separate the adjacent resistors and conditioned to achieve the desired temperature coefficient. Specially designed inner contacts are realized on both sides. A special laser is used to achieve the target value by smoothly cutting a meander groove in the resistive layer without damaging the ceramics. The suitability of conformal coatings, if applied, shall be qualified by appropriate means to ensure the long-term stability of the whole system. The resistors are RoHS compliant; the pure tin plating provides compatibility with lead (Pb)-free and lead-containing soldering processes. The permitted storage time is 20 years, whereas the solderability is specified for 2 years after production or requalification. The immunity of the plating against tin whisker growth has been proven under extensive testing. The resistor elements are covered by a protective coating designed for electrical, mechanical and climatic protection. The terminations receive a final pure tin on nickel plating. All products comply with the GADSL (1) and the CEFIC-EECA-EICTA (2) list of legal restrictions on hazardous substances. This includes full compliance with the following directives: The result of the determined production is verified by an extensive testing procedure and optical inspection performed on 100 % of the individual chip resistors. Only accepted products are laid directly into the paper tape in accordance with IEC 60286-3 (3). ASSEMBLY The resistors are suitable for processing on automatic SMD assembly systems. They are suitable for automatic soldering using reflow or vapour phase as shown in IEC 61760-1 (3). The encapsulation is resistant to all cleaning solvents commonly used in the electronics industry, including alcohols, esters and aqueous solutions. • 2000/53/EC End of Life Vehicle Directive (ELV) and Annex II (ELV II) • 2011/65/EC Restriction of the use of Hazardous Substances directive (RoHS) • 2002/96/EC Waste Electrical and Electronic Equipment Directive (WEEE) APPROVALS The chip resistor array is AEC-Q200 qualified. Where applicable, the resistors are tested in accordance with EN 140401-801 which refers to EN 60115-1 and EN 140400. Notes (1) Global Automotive Declarable Substance List, see www.gadsl.org. (2) CEFIC (European Chemical Industry Council), EECA (European Electronic Component Manufacturers Association), EICTA (European trade organisation representing the information and communications technology and consumer electronics), see www.eicta.org policy environmental policy group chemicals jig Joint Industry Guide (JIG-101 Ed 2.0). (3) The quoted IEC standards are also released as EN standards with the same number and identical contents. Rated Power in % FUNCTIONAL PERFORMANCE Power Mode Standard Mode 100 80 60 40 20 0 - 55 0 50 70 100 125 155 180 Ambient Temperature in °C For permissible resistance change please refer to table MAXIMUM RESISTANCE CHANGE AT RATED POWER, above Derating Revision: 12-Apr-13 Document Number: 28770 5 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag TESTS AND REQUIREMENTS EN 60115-1, generic specification Lower category temperature, upper category temperature; damp heat, long term, 56 days) is valid (LCT = - 55 °C/ UCT = 125 °C). EN 140400, sectional specification Unless otherwise specified the following values apply: EN 140401-801, detail specification Temperature: 15 °C to 35 °C The testing also covers most of the requirements specified by EIA/IS-703 and JIS-C-5202. Relative humidity: 45 % to 75 % The tests are are carried out under standard atmospheric conditions according to IEC 60068-1 (1), 5.3. Climatic category LCT/UCT/56 (rated temperature range: The requirements stated in the “Test Procedures and Requirements” table are based on the required tests and permitted limits of EN 140401-801 where applicable. Essentially all tests are carried out in accordance with the following specifications: Air pressure: 86 kPa to 106 kPa (860 mbar to 1060 mbar) TEST PROCEDURES AND REQUIREMENTS EN 60 115-1 CLAUSE IEC 60 068-2 (1) TEST METHOD TEST PROCEDURE REQUIREMENTS PERMISSIBLE CHANGE (2) (R) Stability for product types: ACAS 0606 AT ACAS 0612 AT 4.5 - 4.8.4.2 - 47 to 150 k 47 to 150 k Resistance - 0.1 % Temperature coefficient At (20/- 55/ 20) °C and (20/125/20) °C 25 ppm/K; 15 ppm/K; 10 ppm/K U = P 70 x R or U = Umax.; 1.5 h on; 0.5 h off; whichever is the less severe; Endurance at 70 °C: Standard operation mode 4.25.1 - 4.24 4.39 - ± (0.1 % R + 0.05) ± (0.05 % R + 0.05) 8000 h: Absolute Relative ± (0.25 % R + 0.05) ± (0.125 % R + 0.05) U = P 70 x R or U = Umax.; 1.5 h on; 0.5 h off; whichever is the less severe; Endurance at 70 °C: Power operation mode 4.25.3 1000 h: Absolute Relative Endurance at upper category temperature 1000 h: Absolute Relative ± (0.25 % R + 0.05) ± (0.125 % R + 0.05) 8000 h: Absolute Relative ± (0.5 % R + 0.05) ± (0.25 % R + 0.05) 125 °C; 1000 h: Absolute Relative ± (0.25 % R + 0.05 ) ± (0.125 % R + 0.05 ) 125 °C; 8000 h: Absolute Relative ± (0.5 % R + 0.05 ) ± (0.25 % R + 0.05 ) 155 °C; 1000 h: Absolute Relative ± (0.4 % R + 0.05 ) ± (0.2 % R + 0.05 ) 78 (Cab) Damp heat, steady state (40 2)C; 56 days; (93 3) % RH ± (0.25 % R + 0.05) 67 (Cy) Damp heat, steady state, accelerated (85 ± 2) °C (85 ± 5) % RH U = 0.1 x P 70 x R ; U 0.3 x Umax.; 1000 h ± (0.5 % R + 0.05) Revision: 12-Apr-13 Document Number: 28770 6 For technical questions, contact: [email protected] 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 ACAS 0606 AT, ACAS 0612 AT - Precision www.vishay.com Vishay Beyschlag TEST PROCEDURES AND REQUIREMENTS EN 60 115-1 CLAUSE IEC 60 068-2 (1) TEST METHOD TEST REQUIREMENTS PERMISSIBLE CHANGE (2) (R) PROCEDURE Stability for product types: 4.13 - Short time overload (3) Standard operation mode 4.40 - Electrostatic discharge (human body model) (3) 4.19 14 (Na) Rapid change of temperature 4.18.2 58 (Td) Resistance to soldering heat 4.17.2 58 (Td) Solderability 4.32 21 (Ue3) Shear (adhesion) ACAS 0606 AT ACAS 0612 AT U = 2.5 x P 70 x R or U = 2 x Umax.; 5s IEC 61340-3-1; 3 pos. + 3 neg. (equivalent to MIL-STD-883, Method 3015); 1000 V 30 min at - 55 °C and 30 min at 125 °C; 1000 cycles Reflow method 2 (IR/forced gas convection); (260 ± 5) C; (10 1) s Solder bath method; SnPb; non-activated flux accelerated aging 4 h/155 °C (215 ± 3) °C; (3 ± 0.3) s Solder bath method; SnAgCu; non-activated flux accelerated aging 4 h/155 °C (235 ± 3) °C; (2 ± 0.2) s 45 N 4.33 21 (Ue1) Substrate bending Depth 2 mm, 3 times 4.35 - Flammability 4.22 6 (Fc) Vibration 4.7 - Voltage proof IEC 60695-11-5, needle flame test; 10 s Endurance by sweeping; 10 Hz to 2000 Hz; no resonance; amplitude 1.5 mm or 200 m/s2; 7.5 h URMS = Uins 60 s ± 5 s; against ambient, between adjacent resistors 47 to 150 k 47 to 150 k ± (0.1 % R + 0.01) no visible damage ± (0.5 % R + 0.05) ± (0.25 % R + 0.05) no visible damage ± (0.1 % R + 0.01 ) no visible damage Good tinning ( 95 % covered); no visible damage No visible damage ± (0.1 % R + 0.01 ) no visible damage; no open circuit in bent position No burning after 30 s ± (0.1 % R + 0.01 ) no visible damage No flashover or breakdown Notes (1) The quoted IEC standards are also released as EN standards with the same number and identical contents. (2) Figures are given for arrays with equal values, design type AE. (3) For a single element. HISTORICAL TEMPERATURE COEFFICIENT AND RESISTANCE RANGES DESCRIPTION RESISTANCE VALUE ACCURACY GRADE ABSOLUTE TCR TCR TRACKING ABSOLUTE TOLERANCE TOLERANCE MATCHING ACAS 0606 AT ACAS 0612 AT A ± 25 ppm/K 10 ppm/K ± 0.25 % 0.1 % 47 to 150 k B ± 25 ppm/K 10 ppm/K ± 0.5 % 0.25 % 47 to 150 k E ± 25 ppm/K 15 ppm/K ± 0.25 % 0.1 % 47 to 150 k F ± 25 ppm/K 15 ppm/K ± 0.5 % 0.25 % 47 to 150 k J ± 25 ppm/K 25 ppm/K ± 0.25 % 0.1 % 47 to 150 k K ± 25 ppm/K 25 ppm/K ± 0.5 % 0.25 % 47 to 150 k N ± 50 ppm/K 25 ppm/K ± 0.5 % 0.5 % 47 to 150 k P ± 50 ppm/K 50 ppm/K ± 0.5 % 0.5 % 47 to 150 k Note • Special temperature coefficent and resistance combinations remain available. For optimized availability please refer to the table TEMPERATURE COEFFICENT AND RESISTANCE. Revision: 12-Apr-13 Document Number: 28770 7 For technical questions, contact: [email protected] THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. 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Vishay Intertechnology, Inc. hereby certifies that all its products that are identified as Halogen-Free follow Halogen-Free requirements as per JEDEC JS709A standards. Please note that some Vishay documentation may still make reference to the IEC 61249-2-21 definition. We confirm that all the products identified as being compliant to IEC 61249-2-21 conform to JEDEC JS709A standards. Revision: 02-Oct-12 1 Document Number: 91000