DATA SHEET
THICK FILM CHIP RESISTORS
AUTOMOTIVE GRADE
AC series
±5%, ±1%, ±0.5%
Sizes 0201/0402/0603/0805/1206/
1210/1218/2010/2512
RoHS compliant & Halogen free
Product specification – June 20, 2017 V.6
Product specification 2
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
SCOPE ORDERING INFORMATION - GLOBAL PART NUMBER
This specification describes AC0201 Part number is identified by the series name, size, tolerance, packaging
to AC2512 chip resistors with lead- type, temperature coefficient, taping reel and resistance value.
free terminations made by thick film GLOBAL PART NUMBER
process.
AC XXXX X X X XX XXXX L
APPLICATIONS (1) (2) (3) (4) (5) (6) (7)
All general purpose applications (1) SIZE
Car electronics, industrial 0201/ 0402 / 0603 / 0805 / 1206 / 1210 / 1218 / 2010 / 2512
application
(2) TOLERANCE
FEATURES D = ± 0.5%
AEC-Q200 qualified F = ± 1%
Moisture sensitivity level: MSL 1 J = ± 5% (for Jumper ordering, use code of J)
AC series soldering is compliant (3) PACKAGING TYPE
with J-STD-020D
Halogen free epoxy R = Paper taping reel K = Embossed taping reel
RoHS compliant (4) TEMPERATURE COEFFICIENT OF RESISTANCE
- Products with lead-free – = Base on spec
terminations meet RoHS
requirements (5) TAPING REEL
- Pb-glass contained in electrodes, 07 = 7 inch dia. Reel 10 = 10 inch dia. Reel
resistor element and glass are
exempted by RoHS 13 = 13 inch dia. Reel 7W = 7 inch dia. Reel & 2 x standard power
Reduce environmentally
hazardous waste (6) RESISTANCE VALUE
High component and equipment 1Ω to 22 MΩ
reliability There are 2~4 digits indicated the resistance value. Letter R/K/M is decimal point, no
The resistors are 100% performed need to mention the last zero after R/K/M, e.g.1K2, not 1K20.
by automatic optical inspection Detailed coding rules of resistance are shown in the table of “Resistance rule of
prior to taping. global part number”.
(7) DEFAULT CODE
Letter L is the system default code for ordering only. (Note)
Resistance rule of global part ORDERING EXAMPLE
number The ordering code for an AC0402
Resistance coding Example chip resistor, value 100 KΩ with
rule ±1% tolerance, supplied in 7-inch
XRXX 1R = 1Ω tape reel is: AC0402FR-07100KL.
(1 to 9.76Ω) 1R5 = 1.5Ω NOTE
9R76 = 9.76Ω 1. All our R-Chip products are RoHS
XXRX 10R = 10Ω compliant and Halogen free. "LFP" of the
(10 to 97.6Ω) 97R6 = 97.6Ω internal 2D reel label states "Lead-Free
XXXR 100R = 100Ω Process".
(100 to 976Ω) 976R = 976Ω 2. On customized label, "LFP" or specific
XKXX 1K = 1,000Ω symbol can be printed.
(1 to 9.76 KΩ) 9K76 = 9760Ω 3. AC series with ±0.5% tolerance is also
XMXX 1M = 1,000,000Ω available. For further information, please
(1 to 9.76 MΩ) 9M76= 9,760,000Ω contact sales.
XXMX 10M = 10,000,000Ω
(10 MΩ)
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Jun. 20, 2017 V.6
Product specification 3
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
MARKING
AC0201 / AC0402
No marking
Fig. 1
AC0603 / AC0805 / AC1206 / AC1210 / AC2010 / AC2512
03 E-24 series: 3 digits, ±5%
First two digits for significant figure and 3rd digit for number of zeros
Fig. 2 Value=10 KΩ
AC0603
0 E-24 series: 3 digits, ±1% & ±0.5%
One short bar under marking letter
Fig. 3 Value = 24 Ω
E-96 series: 3 digits, ±1% & ±0.5%
First two digits for E-96 marking rule and 3rd letter for number of zeros
Fig. 4 Value = 12.4 KΩ
AC0805 / AC1206 / AC1210 / AC2010 / AC2512
Both E-24 and E-96 series: 4 digits, ±1% & ±0.5%
First three digits for significant figure and 4th digit for number of zeros
Fig. 5 Value = 10 KΩ
AC1218
E-24 series: 3 digits, ±5%
First two digits for significant figure and 3rd digit for number of zeros
Fig. 6 Value = 10 KΩ
00 Both E-24 and E-96 series: 4 digits, ±1% & ±0.5%
First three digits for significant figure and 4th digit for number of zeros
Fig. 7 Value = 10 KΩ
NOTE
For further marking information, please refer to data sheet “Chip resistors marking”. Marking of AC series is the same as RC series.
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Jun. 20, 2017 V.6
Product specification 4
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
CONSTRUCTION
The resistors are constructed on top of an automotive grade ceramic body. Internal metal electrodes are added at
each end and connected by a resistive glaze. The resistive glaze is covered by a protective glass.
The composition of the glaze is adjusted to give the approximately required resistance value and laser trimming of this
resistive glaze achieves the value within tolerance. The whole element is covered by a protective overcoat. Size 0603 and
bigger is marked with the resistance value on top. Finally, the two external terminations (Ni / matte tin) are added, as
shown in Fig.8.
OUTLINES
marking layer marking layer
overcoat overcoat
protective glass protective glass
resistive layer resistive layer
(Jumper chip is a conductor) (Jumper chip is a conductor)
inner electrode inner electrode
termination(Ni/matte tin) termination(Ni/matte tin)
inner electrode inner electrode
YNSC088 ceramic substrate YNSC088_1 ceramic substrate
Fig. 8_1 Chip resistor outlines Fig. 8_2 AC2010/ 2512 double power chip resistor outlines
DIMENSIONS
Table 1 For outlines, please refer to Fig. 9
TYPE L (mm) W (mm) H (mm) I1 (mm) I2 (mm)
AC0201 0.60± 0.03 0.30± 0.03 0.23± 0.03 0.12± 0.05 0.15± 0.05
AC0402 1.00 ± 0.05 0.50 ± 0.05 0.32 ± 0.05 0.20 ± 0.10 0.25 ± 0.10
AC0603 1.60 ± 0.10 0.80 ± 0.10 0.45 ± 0.10 0.25 ± 0.15 0.25 ± 0.15
AC0805 2.00 ± 0.10 1.25 ± 0.10 0.50 ± 0.10 0.35 ± 0.20 0.35 ± 0.20
AC1206 3.10 ± 0.10 1.60 ± 0.10 0.55 ± 0.10 0.45 ± 0.20 0.40 ± 0.20
AC1210 3.10 ± 0.10 2.60 ± 0.15 0.55 ± 0.10 0.45 ± 0.15 0.50 ± 0.20
AC1218 3.10 ± 0.10 4.60 ± 0.10 0.55 ± 0.10 0.45 ± 0.20 0.40 ± 0.20
AC2010 5.00 ± 0.10 2.50 ± 0.15 0.55 ± 0.10 0.55 ± 0.15 0.50 ± 0.20
AC2512 6.35 ± 0.10 3.10 ± 0.15 0.55 ± 0.10 0.60 ± 0.20 0.50 ± 0.20
For dimension, please refer to Table 1 AC0201/0402 0603/0805/1206/1210/ AC1218 Side view for all type
2010/2512
Fig. 9 Chip resistor dimensions
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Jun. 20, 2017 V.6
Product specification 5
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
ELECTRICAL CHARACTERISTICS
Table 2
CHARACTERISTICS
Operating Max. Max. Dielectric Resistance Temperature Jumper
TYPE POWER Temperature Working Overload Withstanding Range Coefficient Criteria
Range Voltage Voltage Voltage
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 10MΩ -100/+350ppm℃ 0.5A
1% (E24/E96) 10Ω < R ≤ 10M Maximum
AC0201 1/20 W –55 °C to 25V 50V 50V Current
155 °C 1Ω ≤ R ≤ 10MΩ ± 200ppm℃
0.5% (E24/E96) 1.0A
10Ω ≤ R ≤ 1MΩ
Jumper<50mΩ
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 1A
1/16 W –55 °C to 50V 100V 100V 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
155 °C 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 2A
AC0402
± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1/8W –55 °C to 50V 100V 100V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 1A
–55 °C to 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
1/10 W 75V 150V 150V 1Ω ≤ R ≤ 10MΩ Current
155 °C ± 100ppm°C
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 2A
AC0603 ± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1/5 W –55 °C to 75V 150V 150V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
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Jun. 20, 2017 V.6
Product specification 6
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
CHARACTERISTICS
Operating Max. Max. Dielectric Resistance Temperature Jumper
TYPE POWER Temperature Working Overload Withstanding Range Coefficient Criteria
Range Voltage Voltage Voltage
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22 MΩ ± 200ppm°C 2A
–55 °C to 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
1/8 W 150V 300V 300V 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
155 °C
Jumper < 50mΩ 10MΩ < R ≤ 22MΩ 5A
AC0805 ± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1/4 W –55 °C to 150V 300V 300V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 2A
1/4 W –55 °C to 200V 400V 500V 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
155 °C 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 10A
AC1206
± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1/2 W –55 °C to 200V 400V 500V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 2A
1/2 W –55 °C to 200V 500V 500V 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
155 °C 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 10A
AC1210
± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1W –55 °C to 200V 500V 500V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
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Jun. 20, 2017 V.6
Product specification 7
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
CHARACTERISTICS
Operating Max. Max. Dielectric Resistance Temperature Jumper
TYPE POWER Temperature Working Overload Withstanding Range Coefficient Criteria
Range Voltage Voltage Voltage
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 1MΩ ± 200ppm°C 6A
1W –55 °C to 200V 500V 500V Maximum
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 1MΩ
1Ω ≤ R ≤ 1MΩ ± 100ppm°C Current
AC1218 Jumper<50mΩ 10A
5% (E24) 1Ω ≤ R ≤ 10Ω
1.5W –55 °C to 200V 500V 500V 1Ω ≤ R ≤ 1MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 1MΩ
1Ω ≤ R ≤ 1MΩ ± 100 ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 2A
3/4 W –55 °C to 200V 500V 500V 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
155 °C 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 10A
AC2010
± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
1.25W –55 °C to 200V 500V 500V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω Rated Current
1Ω ≤ R ≤ 22MΩ ± 200ppm°C 2A
1W –55 °C to 200V 500V 500V 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ Maximum
155 °C 1Ω ≤ R ≤ 10MΩ ± 100ppm°C Current
Jumper<50mΩ 10MΩ < R ≤ 22MΩ 10A
AC2512
± 200ppm°C
5% (E24) 1Ω ≤ R ≤ 10Ω
2W –55 °C to 200V 400V 500V 1Ω ≤ R ≤ 10MΩ ± 200 ppm°C
155 °C 0.5%, 1% (E24/E96) 10Ω < R ≤ 10MΩ
1Ω ≤ R ≤ 10MΩ ± 100 ppm°C
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Jun. 20, 2017 V.6
Product specification 8
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
FOOTPRINT AND SOLDERING PROFILES
Recommended footprint and soldering profiles of AC-series is the same as RC-series. Please refer to data sheet
“Chip resistors mounting”.
PACKING STYLE AND PACKAGING QUANTITY
Table 3 Packing style and packaging quantity
PACKING STYLE REEL AC0201 AC0402 AC0603 AC0805 AC1206 AC1210 AC1218 AC2010 AC2512
DIMENSION
Paper taping reel (R) 7" (178 mm) 10,000 10,000 5,000 5,000 5,000 5,000 --- --- ---
10" (254 mm) 20,000 20,000 10,000 10,000 10,000 10,000 --- --- ---
13" (330 mm) 50,000 50,000 20,000 20,000 20,000 20,000 --- --- ---
Embossed taping reel (K) 7" (178 mm) --- --- --- --- --- --- 4,000 4,000 4,000
NOTE RESISTANCE TEMPERATURE COEFFICIENT OF RESISTANCE
1. For papRerA/eNmbGoEssed tape and reel specifications/dimensions, please refer to data sheet “Chip resistors packing”.
PT040 100 mΩ to 910 mΩ
F2UNCTIONAL DESCRIPTIO±N200 ppm/°C
OPTP0E6R0ATING TEMPERATURE RANGE
± 200 ppm/°C
R3 ange: –55 °C to +155 °C
PPTO0W80ER RATING ± 200 ppm/°C
E5ach type rated power at 70 °C:
AAP6TCC100242000211==0110//12M60ΩWWT((O00.0.9061520W5MW)Ω);110/08mWΩ (0.125W)
> 100 mΩ
AC0603=1/10W (0.1W); 1/5W (0.2W)
APTC2008105=1/8W (0.125W); 1/±41W00(p0p.m2/5°CW) ± 75 ppm/°C
A0 C1206=1/4W (0.25W); 1/2 W (0.5 W)
APTC2152110=1/2W (0.5W); 1W ± 100 ppm/°C ± 75 ppm/°C
A2 C1218=1W; 1.5W
AC2010=3/4W (0.75W); 1.25W
AC2512=1 W; 2W Fig. 10 Maximum dissipation (Pmax) in percentage of rated power
RATED VOLTAGE as a function of the operating ambient temperature (T amb)
The DC or AC (rms) continuous working voltage
corresponding to the rated power is determined by
the following formula:
V= (PxR)
Or Maximum working voltage whichever is less
Where
V = Continuous rated DC or AC (rms) working
voltage (V)
P = Rated power (W)
R = Resistance value (Ω)
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Jun. 20, 2017 V.6
Product specification 9
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
TESTS AND REQUIREMENTS
Table 4 Test condition, procedure and requirements
TEST TEST METHOD PROCEDURE REQUIREMENTS
High Temperature AEC-Q200 Test 3 1,000 hours at TA = 155 °C, unpowered ± (1.0%+0.05Ω) for D/F tol
Exposure MIL-STD-202 Method 108 ± (2.0%+0.05Ω) for J tol
<50 mΩ for Jumper
Moisture AEC-Q200 Test 6 Each temperature / humidity cycle is defined at ± (0.5%+0.05Ω) for D/F tol
Resistance MIL-STD-202 Method 106 8 hours (method 106F), 3 cycles / 24 hours for ± (2.0%+0.05Ω) for J tol
10d. with 25 °C / 65 °C 95% R.H, without steps <100 mΩ for Jumper
7a & 7b, unpowered
Biased AEC-Q200 Test 7 1,000 hours; 85 °C / 85% RH ± (1.0%+0.05Ω) for D/F tol
Humidity MIL-STD-202 Method 103 10% of operating power ± (3.0%+0.05Ω) for J tol
Measurement at 24± 4 hours after test conclusion. <100 mΩ for Jumper
Operational Life AEC-Q200 Test 8 1,000 hours at 125 °C, derated voltage applied for ± (1.0%+0.05Ω) for D/F tol
MIL-STD-202 Method 108 1.5 hours on, 0.5 hour off, still-air required ± (3.0%+0.05Ω) for J tol
<100 mΩ for Jumper
Resistance to AEC-Q200 Test 15 Condition B, no pre-heat of samples ± (0.5%+0.05Ω) for D/F tol
Soldering Heat MIL-STD-202 Method 210 Lead-free solder, 260± 5 °C, 10± 1 seconds ± (1.0%+0.05Ω) for J tol
immersion time <50 mΩ for Jumper
Procedure 2 for SMD: devices fluxed and No visible damage
cleaned with isopropanol
Thermal Shock AEC-Q200 Test 16 -55/+125 °C ± (0.5%+0.05Ω) for D/F tol
MIL-STD-202 Method 107 Number of cycles is 300. Devices mounted ± (1.0%+0.05Ω) for J tol
Maximum transfer time is 20 seconds. <50 mΩ for Jumper
Dwell time is 15 minutes. Air – Air
ESD AEC-Q200 Test 17 Human Body Model, ± (3.0%+0.05 Ω)
AEC-Q200-002 1 pos. + 1 neg. discharges <50 mΩ for Jumper
0201: 500V
0402/0603: 1KV
0805 and above: 2KV
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Jun. 20, 2017 V.6
Product specification 10
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
TEST TEST METHOD PROCEDURE REQUIREMENTS
Solderability AEC-Q200 Test 18 Electrical Test not required Magnification 50X Well tinned (≥95% covered)
- Wetting J-STD-002 SMD conditions:
No visible damage
(a) Method B, aging 4 hours at 155 °C dry heat,
dipping at 235± 3 °C for 5± 0.5 seconds.
(b) Method B, steam aging 8 hours, dipping at
215± 3 °C for 5± 0.5 seconds.
(c) Method D, steam aging 8 hours, dipping at
260± 3 °C for 7± 0.5 seconds.
Board Flex AEC-Q200 Test 21 Chips mounted on a 90mm glass epoxy resin ± (1.0%+0.05Ω)
AEC-Q200-005 PCB (FR4) <50 mΩ for Jumper
Bending for 0201/0402: 5 mm
0603/0805: 3 mm
1206 and above: 2 mm
Holding time: minimum 60 seconds
Temperature MIL-STD-202 Method 304 At +25/–55 °C and +25/+125 °C Refer to table 2
Coefficient of
Resistance (T.C.R.)
Formula:
R2–R1
T.C.R= ----R---1--(--t-2--–---t-1--)----- × 106 (ppm/°C)
Where
t1=+25 °C or specified room temperature
t2=–55 °C or +125 °C test temperature
R1=resistance at reference temperature in ohms
R2=resistance at test temperature in ohms
Short Time IEC60115-1 4.13 2.5 times of rated voltage or maximum ± (1.0%+0.05Ω) for D/F tol
Overload overload voltage whichever is less for 5 sec ± (2.0%+0.05Ω) for J tol
at room temperature <50 mΩ for Jumper
FOS ASTM-B-809-95 Sulfur (saturated vapor) 500 hours, 60± 2℃, ± ( 1.0%+0.05Ω)
unpowered
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Jun. 20, 2017 V.6
Product specification 11
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
REVISION HISTORY
REVISION DATE CHANGE NOTIFICATION DESCRIPTION
Version 6 May 31, 2017 - - Add 10" packing
Version 5 Dec. 07, 2015 - - Add in AC double power
Version 4 May 25, 2015 - - Remove 7D packing
- Extend resistance range
- Add in AC0201
- Update FOS test and requirements
Version 3 Feb 13, 2014 - - Feature description updated
- add ± 0.5%
- delete 10" taping reel
Version 2 Feb. 10, 2012 - - Jumper criteria added
- AC1218 marking and outline figure updated
Version 1 Feb. 01, 2011 - - Case size 1210, 1218, 2010, 2512 extended
- Test method and procedure updated
- Packing style of 7D added
Version 0 Nov. 10, 2010 - - First issue of this specification
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Jun. 20, 2017 V.6
Product specification 12
Chip Resistor Surface Mount AC SERIES 0201 to 2512 12
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inaccuracies or incompleteness contained in any product related information, including but not limited to
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Information provided here is intended to indicate product specifications only. Yageo reserves all the rights for
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Jun. 20, 2017 V.6
Mouser Electronics
Authorized Distributor
Click to View Pricing, Inventory, Delivery & Lifecycle Information:
Yageo:
AC0603FR-0733KL AC0603FR-0710RL AC0603FR-070RL AC0603FR-071KL AC0603FR-071K37L AC0603FR-
071K5L AC0603FR-071K8L AC0603FR-071ML AC0603FR-0710KL AC0603FR-07100KL AC0603FR-07120RL
AC0603FR-07191KL AC0603FR-072K21L AC0603FR-0720KL AC0603FR-074K7L AC0603FR-074R75L AC0603FR-
07470RL AC1206FR-07150RL AC1206FR-0760R4L AC1206FR-0751KL AC1206FR-07100KL AC2010JK-070RL
AC0402FR-07100KL AC0402FR-07100RL AC0402FR-0710KL AC0402FR-07110RL AC0402FR-07120RL
AC0402FR-0712KL AC0402FR-0712RL AC0402FR-07130RL AC0402FR-07150RL AC0402FR-0715KL AC0402FR-
07180KL AC0402FR-0718KL AC0402FR-071K5L AC0402FR-071K8L AC0402FR-071KL AC0402FR-071ML
AC0402FR-07200KL AC0402FR-0720KL AC0402FR-07220KL AC0402FR-07220RL AC0402FR-0722KL AC0402FR-
0722RL AC0402FR-07240KL AC0402FR-0724KL AC0402FR-07270KL AC0402FR-07270RL AC0402FR-072K2L
AC0402FR-072K7L AC0402FR-072KL AC0402FR-07300KL AC0402FR-0730KL AC0402FR-07330KL AC0402FR-
0733RL AC0402FR-07360KL AC0402FR-073K3L AC0402FR-073KL AC0402FR-07430KL AC0402FR-0743RL
AC0402FR-07470KL AC0402FR-07470RL AC0402FR-0747KL AC0402FR-0747RL AC0402FR-074K7L AC0402FR-
0751KL AC0402FR-0751RL AC0402FR-07560RL AC0402FR-075K6L AC0402FR-0762RL AC0402FR-07680RL
AC0402FR-0768KL AC0402FR-0768RL AC0402FR-07750KL AC0402FR-0775RL AC0402FR-07820RL AC0402FR-
0782RL AC0402FR-07910KL AC0402FR-079K1L AC0603FR-07100RL AC0603FR-07110KL AC0603FR-07110RL
AC0603FR-0711KL AC0603FR-0711RL AC0603FR-07120KL AC0603FR-0712KL AC0603FR-0712RL AC0603FR-
07130KL AC0603FR-0713KL AC0603FR-07150KL AC0603FR-07150RL AC0603FR-0715KL AC0603FR-0715RL
AC0603FR-07160KL AC0603FR-0716KL AC0603FR-0716RL AC0603FR-07180KL AC0603FR-07180RL
AC0603FR-0718KL AC0603FR-07200KL