AC1225DR-07976R [YAGEO]
THICK FILM WIDE TERMINAL CHIP RESISTORS AUTOMOTIVE GRADE;型号: | AC1225DR-07976R |
厂家: | YAGEO CORPORATION |
描述: | THICK FILM WIDE TERMINAL CHIP RESISTORS AUTOMOTIVE GRADE |
文件: | 总9页 (文件大小:639K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
THICK FILM WIDE TERMINAL CHIP RESISTORS
AUTOMOTIVE GRADE
AC series
±5%, ±1%, ±0.5%
Sizes 0612/1020/1225
RoHS compliant & Halogen free
Product specification
2
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
SCOPE
ORDERING INFORMATION - GLOBAL PART NUMBER
This specification describes AC0612
to AC1225 chip resistors with lead-
free terminations made by thick film
process.
Part number is identified by the series name, size, tolerance, packaging
type, temperature coefficient, taping reel and resistance value.
GLOBAL PART NUMBER
AC XXXX X X X XX XXXX L
( )
( ) ( ) ( ) ( )
( )
6
( )
7
1
2
3
4
5
APPLICATIONS
All general purpose applications
( )
1 SIZE
Car electronics, industrial
0612/1020/1225
application
( )
2 TOLERANCE
D = ±0.5%
F = ±1%
FEATURES
AEC-Q200 qualified
J = ±5% (for Jumper ordering, use code of J)
Moisture sensitivity level: MSL 1
AC series soldering is compliant
( )
3 PACKAGING TYPE
with J-STD-020D
Halogen free epoxy
RoHS compliant
R = Paper taping reel
K = Embossed taping reel
( )
4 TEMPERATURE COEFFICIENT OF RESISTANCE
- Products with lead-free
terminations meet RoHS
requirements
– = Base on spec
( )
5 TAPING REEL
- Pb-glass contained in electrodes,
resistor element and glass are
exempted by RoHS
07 = 7 inch dia. Reel
13 = 13 inch dia. Reel
( )
6 RESISTANCE VALUE
Reduce environmentally
1Ω to 1 MΩ
hazardous waste
There are 2~4 digits indicated the resistance value. Letter R/K/M is decimal point, no
need to mention the last zero after R/K/M, e.g.1K2, not 1K20.
High component and equipment
reliability
Detailed coding rules of resistance are shown in the table of “Resistance rule of
global part number”.
The resistors are 100% performed
by automatic optical inspection
prior to taping.
(7) DEFAULT CODE
Letter L is the system default code for ordering only. (Note)
ORDERING EXAMPLE
Resistance rule of global part
number
The ordering code for an AC0612
chip resistor, value 100 KΩ with
±1% tolerance, supplied in 7-inch
tape reel is: AC0612FR-07100KL.
Resistance coding
rule
Example
1R = 1 Ω
1R5 = 1.5 Ω
9R76 = 9.76 Ω
XRXX
(1 to 9.76 Ω)
NOTE
1. All our R-Chip products are RoHS
compliant and Halogen free. "LFP" of the
internal 2D reel label states "Lead-Free
Process".
XXRX
10R = 10 Ω
(10 to 97.6 Ω)
97R6 = 97.6 Ω
XXXR
(100 to 976 Ω)
100R = 100 Ω
976R = 976 Ω
2. On customized label, "LFP" or specific
symbol can be printed.
XKXX
1K = 1,000 Ω
3. AC series with ±0.5% tolerance is also
available. For further information, please
contact sales.
(1 to 9.76 KΩ)
9K76 = 9760 Ω
XMXX
(1 to 9.76 MΩ)
1M = 1,000,000 Ω
9M76= 9,760,000 Ω
XXMX
(10 MΩ)
10M = 10,000,000 Ω
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Dec. 11, 2015 V.1
Product specification
3
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
MARKING
AC0612 / AC1020 / AC1225
E-24 series: 3 digits, ±5%
First two digits for significant figure and 3rd digit for number of zeros
Fig. 1 Value=10 KΩ
E-24/ E-96 series: 4 digits, ±1% & ±0.5%
First three digits for significant figure and 4th digit for number of zeros
Fig. 2 Value=10 KΩ
CONSTRUCTION
OUTLINES
The resistors are constructed on top of a high-grade
ceramic body. Internal metal electrodes are added at each
end and connected by the resistive glaze. The resistive
glaze is covered by a leadfree glass. The composition of
the glaze is adjusted to give the approximate required
resistance value and laser trimming of this resistive glaze
achieves the value inside tolerance. The whole element is
covered by a protective overcoat. Size 0508 and bigger is
marked with the resistance value on top. Finally, the two
external terminations (Ni / matte tin) are added. See fig.3.
Fig. 3 Chip resistor outlines
DIMENSIONS
Table 1 For outlines, please refer to Fig. 4
TYPE
L (mm)
1.60±0.20
2.50 ±0.20
3.20 ±0.20
W (mm)
3.20 ±0.20
5.00 ±0.20
6.40 ±0.20
H (mm)
0.55±0.10
0.55±0.10
0.55±0.10
I1 (mm)
0.18±0.15
0.25 ±0.20
0.45 ±0.20
I2 (mm)
0.40±0.15
0.90 ±0.20
0.75 ±0.20
AC0612
AC1020
AC1225
For dimension, please refer to Table 1
Side view for all type
Fig. 4 Chip resistor dimensions
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Dec. 11, 2015 V.1
Product specification
4
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
ELECTRICAL CHARACTERISTICS
Table 2
CHARACTERISTICS
Operating
Temperature
Range
Max.
Working
Voltage
Max.
Dielectric Temperature Jumper Criteria
Coefficient
Voltage of Resistance
RESISTANCE
RANGE
TYPE
Overload Withstanding
Voltage
400V
AC0612
AC1020
AC1225
200V
200V
200V
500V
1Ω≤R≤10Ω,
5% (E24) 1Ω to 1MΩ
0.5%, 1% (E24/E96) 1Ω to
1MΩ
Rated Current 2A
Max. Current 10A
±200ppm/℃
–55 °C to +155 °C
400V
500V
10Ω<R≤1MΩ,
Jumper < 50mΩ
±100ppm/℃
400V
500V
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Dec. 11, 2015 V.1
Product specification
5
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
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 AC0612 AC1020 AC1225
DIMENSION
Paper taping reel (R)
7" (178 mm)
13" (330 mm)
7" (178 mm)
5,000
20,000
---
---
---
---
---
Embossed taping reel (K)
4,000
4,000
NOTE
1. For paper/embossed tape and reel specifications/dimensions, please refer to data sheet “Chip resistors packing”.
FUNCTIONAL DESCRIPTION
OPERATING TEMPERATURE RANGE
Range: –55 °C to +155 °C
POWER RATING
Each type rated power at 70 °C:
AC0612 =3/4W (0.75W)
AC1020 =1W
AC1225 =2W
RATED VOLTAGE
The DC or AC (rms) continuous working voltage
corresponding to the rated power is determined by
the following formula:
Fig. 10 Maximum dissipation (P ) in percentage of rated power
max
as a function of the operating ambient temperature (T
)
amb
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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Dec. 11, 2015 V.1
Product specification
6
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
TESTS AND REQUIREMENTS
Table 4 Test condition, procedure and requirements
TEST
TEST METHOD
PROCEDURE
REQUIREMENTS
High Temperature
Exposure
AEC-Q200 Test 3
±(1.0%+0.05Ω) for D/F tol
±(2.0%+0.05Ω) for J tol
<50 mΩ for Jumper
1,000 hours at TA = 155 °C, unpowered
MIL-STD-202 Method 108
Moisture
Resistance
AEC-Q200 Test 6
Each temperature / humidity cycle is defined at
8 hours (method 106F), 3 cycles / 24 hours for
10d. with 25 °C / 65 °C 95% R.H, without steps
7a & 7b, unpowered
±(0.5%+0.05Ω) for D/F tol
±(2.0%+0.05Ω) for J tol
<100 mΩ for Jumper
MIL-STD-202 Method 106
Parts mounted on test-boards, without
condensation on parts
Biased
Humidity
AEC-Q200 Test 7
1,000 hours; 85 °C / 85% RH
10% of operating power
±(1.0%+0.05Ω) for D/F tol
±(3.0%+0.05Ω) for J tol
<100 mΩ for Jumper
MIL-STD-202 Method 103
Measurement at 24±4 hours after test conclusion.
Operational Life
AEC-Q200 Test 8
1,000 hours at 125 °C, derated voltage applied for ±(1.0%+0.05Ω) for D/F tol
1.5 hours on, 0.5 hour off, still-air required
MIL-STD-202 Method 108
±(3.0%+0.05Ω) for J tol
<100 mΩ for Jumper
Resistance to
Soldering Heat
AEC-Q200 Test 15
Condition B, no pre-heat of samples
±(0.5%+0.05Ω) for D/F tol
±(1.0%+0.05Ω) for J tol
<50 mΩ for Jumper
MIL-STD-202 Method 210
Lead-free solder, 260± 5 °C, 10±1 seconds
immersion time
Procedure 2 for SMD: devices fluxed and
cleaned with isopropanol
No visible damage
Thermal Shock
AEC-Q200 Test 16
-55/+125 °C
±(0.5%+0.05Ω) for D/F tol
±(1.0%+0.05Ω) for J tol
<50 mΩ for Jumper
MIL-STD-202 Method 107
Number of cycles is 300. Devices mounted
Maximum transfer time is 20 seconds.
Dwell time is 15 minutes. Air – Air
ESD
AEC-Q200 Test 17
AEC-Q200-002
Human Body Model,
1 pos. + 1 neg. discharges
0612 and above: 2KV
±(3.0%+0.05 Ω)
<50 mΩ for Jumper
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Dec. 11, 2015 V.1
Product specification
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9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
TEST
TEST METHOD
PROCEDURE
REQUIREMENTS
Solderability
- Wetting
Well tinned (≥95% covered)
AEC-Q200 Test 18
J-STD-002
Electrical Test not required Magnification 50X
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
AEC-Q200-005
Chips mounted on a 90mm glass epoxy resin
PCB (FR4)
±(1.0%+0.05Ω)
<50 mΩ for Jumper
Bending for 0612 and above: 2 mm
Holding time: minimum 60 seconds
Temperature
Coefficient of
MIL-STD-202 Method 304
At +25/–55 °C and +25/+125 °C
Refer to table 2
Resistance (T.C.R.)
Formula:
R2–R1
T.C.R= ------------------------- ×106 (ppm/°C)
R1(t2–t1)
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
Overload
IEC60115-1 4.13
ASTM-B-809-95
2.5 times of rated voltage or maximum
overload voltage whichever is less for
±(1.0%+0.05Ω) for D/F tol
±(2.0%+0.05Ω) for J tol
<50 mΩ for Jumper
1225 : 2s
0612/2010: 5s
at room temperature
FOS
±( 1.0%+0.05Ω)
Sulfur (saturated vapor) 500 hours, 60±2℃,
unpowered
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Dec. 11, 2015 V.1
Product specification
8
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
REVISION HISTORY
REVISION DATE
CHANGE NOTIFICATION DESCRIPTION
Version 1
Version 0
Dec. 11, 2015
Aug. 21, 2015
-
- Tests and requirements update
-
- First issue of this specification
www.yageo.com
Dec. 11, 2015 V.1
Product specification
9
9
SERIES
0612/1020/1225
AC
Chip Resistor Surface Mount
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Dec. 11, 2015 V.1
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