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MCU08050D4421BP100

MCU08050D4421BP100

MCU08050D4421BP100

For Reference Only

Part Number MCU08050D4421BP100
Manufacturer Vishay Beyschlag
Description RES SMD 4.42K OHM 0.1% 1/8W 0805
Datasheet MCU08050D4421BP100 Datasheet
Package 0805 (2012 Metric)
In Stock 407 piece(s)
Unit Price $ 0.1735 *
Lead Time To be Confirmed
Estimated Delivery Time Dec 6 - Dec 11 (Choose Expedited Shipping)
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Part Number # MCU08050D4421BP100 (Chip Resistor - Surface Mount) is manufactured by Vishay Beyschlag and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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MCU08050D4421BP100 Specifications

ManufacturerVishay Beyschlag
CategoryResistors - Chip Resistor - Surface Mount
Datasheet MCU08050D4421BP100Datasheet
Package0805 (2012 Metric)
SeriesMCU 0805 - Precision
Resistance4.42 kOhms
Tolerance±0.1%
Power (Watts)0.125W, 1/8W
CompositionThin Film
Features-
Temperature Coefficient±25ppm/°C
Operating Temperature-55°C ~ 125°C
Package / Case0805 (2012 Metric)
Supplier Device Package0805
Size / Dimension0.079" L x 0.049" W (2.00mm x 1.25mm)
Height - Seated (Max)0.022" (0.55mm)
Number of Terminations2
Failure Rate-

MCU08050D4421BP100 Datasheet

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 1 Document Number: 28700 For technical questions, contact: thinfilmchip@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 Precision Thin Film Chip Resistors Thin film flat chip resistors combine the proven reliability of the professional products with an advanced level of precision and stability. Therefore they are perfectly suited for applications in the fields of test and measurement equipment together with industrial and medical electronics. FEATURES • Approved to EN 140401-801 • Low TCR: ± 10 ppm/K to ± 25 ppm/K • Precision tolerance of resistance: ± 0.1 % and ± 0.25 % • Superior overall stability: class 0.1 and 0.25 • Sulfur resistance verified according to ASTM B 809 • Material categorization: for definitions of compliance please see www.vishay.com/doc?99912 APPLICATIONS • Automotive • Test and measuring equipment • Medical equipment • Industrial equipment Note (1) Please refer to APPLICATION INFORMATION below. APPLICATION INFORMATION When the resistor dissipates power, a temperature rise above the ambient temperature occurs, dependent on the thermal resistance of the assembled resistor together with the printed circuit board. 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. However, resistance value drift increasing over operating time may result in exceeding a limit acceptable to the specific application, thereby establishing a functional lifetime. TECHNICAL SPECIFICATIONS DESCRIPTION MCS 0402 MCT 0603 MCU 0805 MCA 1206 Imperial size 0402 0603 0805 1206 Metric size code RR1005M RR1608M RR2012M RR3216M Resistance range 100  to 221 k 39  to 511 k 39  to 1.5 M 39  to 2 M Resistance tolerance ± 0.25 %; ± 0.1 % Temperature coefficient ± 25 ppm/K; ± 15 ppm/K; ± 10 ppm/K Rated dissipation, P70 (1) 0.063 W 0.100 W 0.125 W 0.250 W Operating voltage, Umax. ACRMS/DC 50 V 75 V 150 V 200 V Permissible film temperature, F max. (1) 125 °C Operating temperature range -55 °C to 125 °C Permissible voltage against ambient (insulation): 1 min; Uins 75 V 100 V 200 V 300 V Failure rate: FITobserved  0.1 x 10-9/h

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 2 Document Number: 28700 For technical questions, contact: thinfilmchip@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 Note • The presented operation modes do not refer to different types of resistors, but actually show examples of different loads, that lead to different film temperatures and different achievable load-life stability (drift) of the resistance value. A suitable low thermal resistance of the circuit board assembly must be safeguarded in order to maintain the film temperature of the resistors within the specified limits. Please consider the application note “Thermal Management in Surface-Mounted Resistor Applications” (www.vishay.com/doc?28844) for information on the general nature of thermal resistance. Note • Resistance ranges printed in bold are preferred TCR / tolerance combinations with optimized availability. MAXIMUM RESISTANCE CHANGE AT RATED DISSIPATION OPERATION MODE PRECISION STANDARD Rated dissipation, P70 MCS 0402 0.016 W 0.063 W MCT 0603 0.032 W 0.100 W MCU 0805 0.050 W 0.125 W MCA 1206 0.100 W 0.250 W Operating voltage, Umax. ACRMS/DC MCS 0402 12.5 V 50 V MCT 0603 25 V 75 V MCU 0805 35 V 150 V MCA 1206 50 V 200 V Operating temperature range -10 °C to 85 °C -55 °C to 125 °C Permissible film temperature, F max. 85 °C 125 °C Max. resistance change at P70 for resistance range, |R/R| after: MCS 0402 100  to 221 k 100  to 221 k MCT 0603 39  to 511 k 39  to 511 k MCU 0805 39  to 1.5 M 39  to 1.5 M MCA 1206 39  to 2 M 39  to 2 M 1000 h  0.05 %  0.1 % 8000 h  0.1 %  0.25 % 225 000 h  0.25 %  0.5 % TEMPERATURE COEFFICIENT AND RESISTANCE RANGE TYPE / SIZE TCR TOLERANCE RESISTANCE E-SERIES MCS 0402 ± 25 ppm/K ± 0.25 % 100  to 221 k E24; E192 ± 0.1 % 100  to 221 k ± 15 ppm/K ± 0.25 % 100  to 150 k ± 0.1 % 100  to 150 k ± 10 ppm/K ± 0.25 % 100  to 130 k ± 0.1 % 100  to 130 k MCT 0603 ± 25 ppm/K ± 0.25 % 39  to 511 k ± 0.1 % 47  to 511 k ± 15 ppm/K ± 0.25 % 39  to 332 k ± 0.1 % 47  to 332 k ± 10 ppm/K ± 0.25 % 39  to 221 k ± 0.1 % 47  to 221 k MCU 0805 ± 25 ppm/K ± 0.25 % 39  to 1.5 M ± 0.1 % 47  to 1.5 M ± 15 ppm/K ± 0.25 % 39  to 1 M ± 0.1 % 47  to 1 M ± 10 ppm/K ± 0.25 % 39  to 511 k ± 0.1 % 47  to 511 k MCA 1206 ± 25 ppm/K ± 0.25 % 39  to 2 M ± 0.1 % 47  to 2 M ± 15 ppm/K ± 0.25 % 39  to 1.5 M ± 0.1 % 47  to 1.5 M ± 10 ppm/K ± 0.25 % 39  to 1 M ± 0.1 % 47  to 1 M

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 3 Document Number: 28700 For technical questions, contact: thinfilmchip@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 Note • Products can be ordered using either the PART NUMBER or PRODUCT DESCRIPTION. PACKAGING TYPE / SIZE CODE QUANTITY PACKAGING STYLE WIDTH PITCH PACKAGING DIMENSIONS MCS 0402 E1 1000 Paper tape acc. IEC 60286-3, Type 1a 8 mm 2 mm Ø 180 mm/7"E5 5000 E0 10 000 MCT 0603 P1 1000 4 mm Ø 180 mm/7" P5 5000 PW 20 000 Ø 330 mm/13" MCU 0805 P1 1000 Ø 180 mm/7" P5 5000 PW 20 000 Ø 330 mm/13" MCA 1206 P1 1000 Ø180 mm/7" P5 5000 PART NUMBER AND PRODUCT DESCRIPTION Part Number: MCT06030D4641BPW00 TYPE / SIZE VERSION TCR RESISTANCE TOLERANCE PACKAGING MCS0402 MCT0603 MCU0805 MCA1206 0 = neutral F = ± 10 ppm/K E = ± 15 ppm/K D = ± 25 ppm/K 3 digit value 1 digit multiplier Multiplier 9 = *10-1 0 = *100 1 = *101 2 = *102 3 = *103 4 = *104 B = ± 0.1 % C = ± 0.25 % E1 E5 E0 P1 P5 PW Product Description: MCT 0603-25 0.1 % PW 4K64 MCT 0603 -25 0.1 % PW 4K64 TYPE SIZE TCR TOLERANCE PACKAGING RESISTANCE MCS MCT MCU MCA 0402 0603 0805 1206 ± 10 ppm/K ± 15 ppm/K ± 25 ppm/K ± 0.1 % ± 0.25 % E1 E5 E0 P1 P5 PW 4K64 = 4.64 k 50R1 = 50.1  C T 0 6 0 3 0 D 4M 4 1 B P W 0 06

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 4 Document Number: 28700 For technical questions, contact: thinfilmchip@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 DESCRIPTION Production 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 ceramic substrate (Al2O3) and conditioned to achieve the desired temperature coefficient. Specially designed inner contacts are deposited on both sides. A special laser is used to achieve the target value by smoothly fine trimming the resistive layer without damaging the ceramics. A further conditioning is applied in order to stabilize the trimming result. 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. The result of the determined production is verified by an extensive testing procedure and optical inspection performed on 100 % of the individual chip resistors. This includes full screening for the elimination of products with potential risk of early field failures. Only accepted products are laid directly into the paper tape in accordance with IEC 60286-3 Type 1a (1). ASSEMBLY The resistors are suitable for processing on automatic SMD assembly systems and for automatic soldering using wave, reflow or vapor phase. The encapsulation is resistant to all cleaning solvents commonly used in the electronics industry, including alcohols, esters and aqueous solutions. The suitability of conformal coatings, potting compounds and their processes, 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. Solderability is specified for 2 years after production or requalification. The permitted storage time is 20 years. The immunity of the plating against tin whisker growth has been proven under extensive testing. MATERIALS Vishay acknowledges the following systems for the regulation of hazardous substances: • IEC 62474, Material Declaration for Products of and for the Electrotechnical Industry, with the list of declarable substances given therein (2) • The Global Automotive Declarable Substance List (GADSL) (3) • The REACH regulation (1907/2006/EC) and the related list of substances with very high concern (SVHC) (4) for its supply chain The products do not contain any of the banned substances as per IEC 62474, GADSL, or the SVHC list, see www.vishay.com/how/leadfree. Hence the products fully comply with the following directives: • 2000/53/EC End-of-Life Vehicle Directive (ELV) and Annex II (ELV II) • 2011/65/EU Restriction of the Use of Hazardous Substances Directive (RoHS) with amendment 2015/863/EU • 2012/19/EU Waste Electrical and Electronic Equipment Directive (WEEE) Vishay pursues the elimination of conflict minerals from its supply chain, see the Conflict Minerals Policy at www.vishay.com/doc?49037. APPROVALS The resistors are approved within the IECQ-CECC Quality Assessment System for Electronic Components to the detail specification EN 140401-801 which refers to EN 60115-1, EN 60115-8 and the variety of environmental test procedures of the IEC 60068 (1) series. Conformity is attested by the use of the CECC logo ( ) as the mark of conformity on the package label. Vishay Beyschlag has achieved “Approval of Manufacturer” in accordance with IECQ 03-1. The release certificate for “Technology Approval Schedule” in accordance with CECC 240001 based on IECQ 03-3-1 is granted for the Vishay Beyschlag manufacturing process. RELATED PRODUCTS Resistors are available with established reliability in accordance with EN 140401-801 version E. Please refer to the special datasheet (www.vishay.com/doc?28744) for information on failure rate level, available resistance ranges and order codes. For more information about products with higher rated power and higher operation temperature please refer to the Professional Thin Film Chip Resistor datasheet (www.vishay.com/doc?28705). Precision chip resistor arrays may be used in voltage divider applications or precision amplifiers where close matching between multiple resistors is necessary. Please refer to the ACAS 0612 - Precision datasheet (www.vishay.com/doc?28751).   Notes (1) The quoted IEC standards are also released as EN standards with the same number and identical contents. (2) The IEC 62474 list of declarable substances is maintained in a dedicated database, which is available at http://std.iec.ch/iec62474. (3) The Global Automotive Declarable Substance List (GADSL) is maintained by the American Chemistry Council and available at www.gadsl.org. (4) The SVHC list is maintained by the European Chemical Agency (ECHA) and available at http://echa.europa.eu/candidate-list-table.

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 5 Document Number: 28700 For technical questions, contact: thinfilmchip@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 FUNCTIONAL PERFORMANCE Derating - Standard Operation MCT 0603 MCU 0805 MCA 1206 Ambient Temperature °C100 150-50 500 70 0 0.1 0.2 P o w e r D is s ip a ti o n amb MCS 0402 ϑ P 0.3 W Ambient Temperature 100 150-50 500 70 0 0.1 0.2 W P °C MCT 0603 MCU 0805 MCA 1206 MCS 0402 ambϑ P o w e r D is s ip a ti o n 0.3 Derating - Precision Operation Current Noise Voltage Ratio In accordance with IEC 60195 1 µV/V C u rr e n t N o is e V o lt a g e R a ti o 100 Ω Resistance Value R 10 0.1 0.01 1 kΩ 10 kΩ 100 kΩ 1 MΩ MCS 0402 MCT 0603 MCU 0805 MCA 1206

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 6 Document Number: 28700 For technical questions, contact: thinfilmchip@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 TESTS AND REQUIREMENTS All tests are carried out in accordance with the following specifications: EN 60115-1, generic specification EN 60115-8 (successor of EN 140400), sectional specification EN 140401-801, detail specification IEC 60068-2-xx, test methods The components are approved under the IECQ-CECC quality assessment system for electronic components. The parameters stated in the Test Procedures and Requirements table are based on the required tests and permitted limits of EN 140401-801. The table presents only the most important tests, for the full test schedule refer to the documents listed above. However, some additional tests and a number of improvements against those minimum requirements have been included. The testing also covers most of the requirements specified by EIA/ECA-703 and JIS-C-5201-1. The tests are carried out under standard atmospheric conditions in accordance with IEC 60068-1, 4.3, whereupon the following values are applied: Temperature: 15 °C to 35 °C Relative humidity: 25 % to 75 % Air pressure: 86 kPa to 106 kPa (860 mbar to 1060 mbar) A climatic category LCT / UCT / 56 is applied, defined by the lower category temperature (LCT), the upper category temperature (UCT), and the duration of exposure in the damp heat, steady state test (56 days). The components are mounted for testing on printed circuit boards in accordance with EN 60115-8, 2.4.2, unless otherwise specified. TEST PROCEDURES AND REQUIREMENTS EN 60 115-1 CLAUSE IEC 60 068-2 (1) TEST METHOD TEST PROCEDURE REQUIREMENTS PERMISSIBLE CHANGE (R) STABILITY CLASS 0.1 STABILITY CLASS 0.25 Stability for product types: MCS 0402 100  to 10 k > 10 kto 221 k MCT 0603 100  to 10 k 39  to < 100 ; > 10 k to 511 k MCU 0805 100  to 47.5 k 39  to < 100 ; > 47.5 k to 1.5 M MCA 1206 47  to 332 k 39  to < 47 ; > 332 k to 2 M 4.5 - Resistance - ± 0.1 % R; ±0.25 % R 4.8 - Temperature coefficient At (20 / - 10 / 20) °C and (20 / 85 / 20) °C ± 25 ppm/K; ± 15 ppm/K; ± 10 ppm/K - At (20 / - 55 / 20) °C and (20 / 125 / 20) °C - ± 25 ppm/K; ± 15 ppm/K; ± 10 ppm/K 4.25.1 - Endurance at 70 °C: precision operation mode U = or U = Umax.; whichever is the less severe; 1.5 h on; 0.5 h off; 70 °C; 1000 h ± (0.05 % R + 0.02 ) 70 °C; 8000 h ±(0.1 % R + 0.02 ) Endurance at 70 °C: standard operation mode U = or U = Umax.; whichever is the less severe; 1.5 h on; 0.5 h off; 70 °C; 1000 h ± (0.1 % R + 0.02 ) 70 °C; 8000 h ±(0.25 % R + 0.05 ) 4.25.3 - Endurance at upper category temperature 85 °C; 1000 h ±(0.1 % R + 0.02 ) ± (0.2 % R + 0.02 ) 125 °C; 1000 h ± (0.2 % R + 0.02 ) ±(0.25 % R + 0.05 ) 4.24 78 (Cab) Damp heat, steady state (40 ± 2) °C; 56 days; (93 ± 3) % RH ± (0.1 % R + 0.02 ) ±(0.25 % R + 0.05 ) P70 x R P70 x R

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 7 Document Number: 28700 For technical questions, contact: thinfilmchip@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 4.23 Climatic sequence: standard operation mode: 4.23.2 2 (Bb) Dry heat 125 °C; 16 h ± (0.1 % R + 0.02 ) ± (0.25 % R + 0.05 ) 4.23.3 30 (Db) Damp heat, cyclic 55 °C; 24 h; > 90 % RH; 1 cycle 4.23.4 1 (Ab) Cold -55 °C; 2 h 4.23.5 13 (M) Low air pressure 8.5 kPa; 2 h; (25 ± 10) °C 4.23.6 30 (Db) Damp heat, cyclic 55 °C; 24 h; > 90 % RH; 5 cycles 4.23.7 - DC load U = Umax.; 1 min. - 1 (Aa) Cold -55 °C; 2 h ± (0.05 % R + 0.01 ) 4.19 14 (Na) Rapid change of temperature 30 min at LCT and 30 min at UCT; LCT = -10 °C; UCT = 85 °C; 5 cycles ± (0.05 % R + 0.01 ) no visible damage LCT = -55 °C; UCT = 125 °C; 1000 cycles ± (0.25 % R + 0.05 ) no visible damage 4.13 - Short time overload: precision operation mode U = 2.5 x or U = 2 x Umax.; whichever is the less severe; 5 s ±(0.05 % R + 0.01 ) Short time overload: standard operation mode U = 2.5 x or U = 2 x Umax.; whichever is the less severe; 5 s ±(0.05 % R + 0.01 ) 4.27 - Single pulse high voltage overload: standard operation mode Severity no. 4: U = 10 x or U = 2 x Umax.; whichever is the less severe; 10 pulses 10 μs/700 μs ± (0.5 % R + 0.05 ) no visible damage 4.39 - Periodic electric overload: standard operation mode U = or U = 2 x Umax.; whichever is the less severe; 0.1 s on; 2.5 s off; 1000 cycles ± (0.5 % R + 0.05 ) no visible damage TEST PROCEDURES AND REQUIREMENTS EN 60 115-1 CLAUSE IEC 60 068-2 (1) TEST METHOD TEST PROCEDURE REQUIREMENTS PERMISSIBLE CHANGE (R) STABILITY CLASS 0.1 STABILITY CLASS 0.25 Stability for product types: MCS 0402 100  to 10 k > 10 kto 221 k MCT 0603 100  to 10 k 39  to < 100 ; > 10 k to 511 k MCU 0805 100  to 47.5 k 39  to < 100 ; > 47.5 k to 1.5 M MCA 1206 47  to 332 k 39  to < 47 ; > 332 k to 2 M P70 x R P70 x R P70 x R P70 x R 15 x P70 x R

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 8 Document Number: 28700 For technical questions, contact: thinfilmchip@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 Note (1) The quoted IEC standards are also released as EN standards with the same number and identical contents. 4.38 - Electro static discharge (human body model) IEC 61340-3-1 (1); 3 pos. + 3 neg. (equivalent to MIL-STD-883, method 3015) MCS 0402: 500 V MCT 0603: 1000 V MCU 0805: 1500 V MCA 1206: 2000 V ±(0.5 % R + 0.05 ) 4.22 6 (Fc) Vibration Endurance by sweeping; 10 Hz to 2000 Hz; no resonance; amplitude 1.5 mm or  200 m/s2; 7.5 h ± (0.05 % R + 0.01 ) no visible damage 4.17 58 (Td) Solderability Solder bath method; SnPb40; non-activated flux; (215 ± 3) °C; (3 ± 0.3) s Good tinning ( 95 % covered); no visible damage Solder bath method; SnAg3Cu0.5 or SnAg3.5; non-activated flux; (235 ± 3) °C; (2 ± 0.2) s Good tinning ( 95 % covered); no visible damage 4.18 58 (Td) Resistance to soldering heat Solder bath method; (260 ± 5) °C; (10 ± 1) s ±(0.05 % R + 0.01 ) 4.29 45 (XA) Component solvent resistance Isopropyl alcohol; + 50 °C; method 2 No visible damage 4.32 21 (Ue3) Shear (adhesion) MCS 0402 and MCT 0603; 9 N No visible damage MCU 0805 and MCA 1206; 45 N No visible damage 4.33 21 (Ue1) Substrate bending Depth 2 mm, 3 times ±(0.05 % R + 0.01 ) no visible damage, no open circuit in bent position 4.7 - Voltage proof URMS = Uins; (60 ± 5) s No flashover or breakdown 4.35 - Flammability IEC 60695-11-5 (1), needle flame test; 10 s No burning after 30 s TEST PROCEDURES AND REQUIREMENTS EN 60 115-1 CLAUSE IEC 60 068-2 (1) TEST METHOD TEST PROCEDURE REQUIREMENTS PERMISSIBLE CHANGE (R) STABILITY CLASS 0.1 STABILITY CLASS 0.25 Stability for product types: MCS 0402 100  to 10 k > 10 kto 221 k MCT 0603 100  to 10 k 39  to < 100 ; > 10 k to 511 k MCU 0805 100  to 47.5 k 39  to < 100 ; > 47.5 k to 1.5 M MCA 1206 47  to 332 k 39  to < 47 ; > 332 k to 2 M

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MCS 0402, MCT 0603, MCU 0805, MCA 1206 - Precision www.vishay.com Vishay Beyschlag Revision: 16-Aug-16 9 Document Number: 28700 For technical questions, contact: thinfilmchip@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 DIMENSIONS SOLDER PAD DIMENSIONS Notes • The given solder pad dimensions reflect the considerations for board design and assembly as outlined e.g. in standards IEC 61188-5-x (1), or in publication IPC-7351. (1) The quoted IEC standards are also released as EN standards with the same number and identical contents. DIMENSIONS AND MASS TYPE / SIZE H (mm) L (mm) W (mm) WT (mm) Tt (mm) Tb (mm) MASS (mg) MCS 0402 0.32 ± 0.05 1.0 ± 0.05 0.5 ± 0.05 > 75 % of W 0.2 + 0.1 / - 0.15 0.2 ± 0.1 0.6 MCT 0603 0.45 + 0.1 / - 0.05 1.55 ± 0.05 0.85 ± 0.1 > 75 % of W 0.3 + 0.15 / - 0.2 0.3 + 0.15 / - 0.2 1.9 MCU 0805 0.45 + 0.1 / - 0.05 2.0 ± 0.1 1.25 ± 0.15 > 75 % of W 0.4 + 0.1 / - 0.2 0.4 + 0.1 / - 0.2 4.6 MCA 1206 0.55 ± 0.1 3.2 + 0.1 / - 0.2 1.6 ± 0.15 > 75 % of W 0.5 ± 0.25 0.5 ± 0.25 9.2 RECOMMENDED SOLDER PAD DIMENSIONS TYPE / SIZE WAVE SOLDERING REFLOW SOLDERING G (mm) Y (mm) X (mm) Z (mm) G (mm) Y (mm) X (mm) Z (mm) MCS 0402 - - - - 0.35 0.55 0.55 1.45 MCT 0603 0.55 1.10 1.10 2.75 0.65 0.70 0.95 2.05 MCU 0805 0.80 1.25 1.50 3.30 0.90 0.90 1.40 2.70 MCA 1206 1.40 1.50 1.90 4.40 1.50 1.15 1.75 3.80 Tb Tt L H W WT G X Y Z

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SIT8008BC-22-33E-38.880000D SIT8008BC-22-33E-38.880000D SiTIME, OSC MEMS 38.8800MHZ LVCMOS SMD, 4-SMD, No Lead, MCU 0805 - Precision View
BU2006-M3/45 BU2006-M3/45 Vishay Semiconductor Diodes Division, RECTIFIER BRIDGE 20A 600V BU, 4-SIP, BU, MCU 0805 - Precision View
hotBU28TD2WNVX-TL BU28TD2WNVX-TL Rohm Semiconductor, IC REG LINEAR 2.8V 200MA 4SSON, 4-UDFN Exposed Pad, MCU 0805 - Precision View
hotM36W0R6050T4ZAQE M36W0R6050T4ZAQE Micron Technology Inc., IC FLASH PSRAM 96M, -, MCU 0805 - Precision View
LT600302CR LT600302CR Littelfuse Inc., FUSE BLOCK CART 600V 30A CHASSIS, -, MCU 0805 - Precision View
RLR32C7320FRB14 RLR32C7320FRB14 Vishay Dale, RES 732 OHM 1% 1W AXIAL, Axial, MCU 0805 - Precision View
LQH32MN150J23L LQH32MN150J23L Murata, FIXED IND 15UH 170MA 2.2 OHM SMD, Nonstandard, MCU 0805 - Precision View
0395219023 0395219023 Molex, LLC, TERM BLOCK HDR 23POS VERT 5MM, -, MCU 0805 - Precision View
ESW-125-14-L-S ESW-125-14-L-S Samtec Inc., ELEVATED SOCKET STRIPS, -, MCU 0805 - Precision View
DW-30-15-T-S-400 DW-30-15-T-S-400 Samtec Inc., .025" BOARD SPACERS, -, MCU 0805 - Precision View
CA06EA24-28PZF80A95 CA06EA24-28PZF80A95 ITT Cannon, LLC, ER 24C 24#16 PIN PLUG, -, MCU 0805 - Precision View
XC6233H30BGR-G XC6233H30BGR-G Torex Semiconductor Ltd, 10V INPUT 500MA HIGH SPEED LDO R, -, MCU 0805 - Precision View
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MCU08050D4421BP100

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