DATA SHEET

120
DATA SHEET
ARRAY CHIP RESISTORS
YC104 (8Pin/4R)
5%, 1%
sizes 4 × 0201
Product Specification – Feb. 23, 2012 V.0 Supersedes Date of Mar. 06, 2003
RoHS compliant & Halogen Free
Product specification
Chip Resistor Surface Mount
YC
2
7
104 (RoHS Compliant)
SERIES
SCOPE
ORDERING INFORMATION - GLOBAL PART NUMBER
This specification describes
YC104 (convex) series chip
resistor arrays with lead-free
terminations made by thick film
process.
Both part numbers are identified by the series, size, tolerance, packing
type, temperature coefficient, taping reel and resistance value.
YAGEO BRAND ordering code
GLOBAL PART NUMBER
( PREFERRED )
YC104 – X X X XX XXXX L
APPLICATIONS
Terminal for SDRAM and
DDRAM
applications: laptop
computer, desktop computer
(1) (2) (3)
electronic
equipment: PDAs, PNDs
Mobile
phone, telecom…
(5)
(6)
(1) TOLERANCE
F = ±1%
J = ±5% (for Jumper ordering, use code of J)
Computer
Consume
(4)
(2) PACKAGING TYPE
R = Paper taping reel
(3) TEMPERATURE COEFFICIENT OF RESISTANCE
– = Base on spec
FEATURES
RoHS compliant
-
Products with lead free
terminations meet RoHS
requirements
-
Pb-glass contained in electrodes
-
Resistor element and glass are
exempted by RoHS
(4) TAPING REEL
07 = 7 inch dia. Reel
(5) RESISTANCE VALUE
There are 2~4 digits indicated the resistor value. Letter R/K/M is decimal point, no need
to mention the last zero after R/K/M, e.g.1K2, not 1K20.
Detailed resistance rules show in table of “Resistance rule of global part number”.
(6) OPTIONAL CODE
Reducing
environmentally
hazardous wastes
High
component and equipment
reliability
Saving
of PCB space
None
forbidden-materials used
in products/production
Halogen
Free Epoxy
Letter L is system default code for ordering only (Note)
Resistance rule of global part
number
Resistance code rule
Example
ORDERING EXAMPLE
XXRX
(10 to 97.6 Ω)
10R = 10 Ω
97R6 = 97.6 Ω
The ordering code of a YC104
convex chip resistor array, value
1,000 X with ±5% tolerance,
supplied in 7-inch tape reel is:
YC104-JR-071KL.
XXXR
(100 to 976 Ω)
100R = 100 Ω
NOTE
976R = 976Ω
XKXX
(1 to 9.76 KΩ)
1K = 1,000 Ω
9K76 = 9760 Ω
1. All our RSMD products meet RoHS
compliant. "LFP" of the internal 2D reel
label mentions "Lead Free Process"
0R
XMXX
(1 MΩ)
0R = Jumper
1M = 1,000,000 Ω
2. On customized label, "LFP" or specific
symbol printed and the optional "L" at
the end of GLOBAL PART NUMBER
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Feb. 23, 2012 V.0
Product specification
Chip Resistor Surface Mount
YC
SERIES
3
7
104 (RoHS Compliant)
MARKING
YC104
No marking
YNSC108
Fig. 1
Jumper = 0 Ω
CONSTRUCTION
The resistor is constructed on top
of a high-grade ceramic body.
Internal metal electrodes are added
on each end to make the contacts to
the thick film resistive element. The
composition of the resistive element
is a noble metal imbedded into a
glass and covered by a second glass
to prevent environment influences.
The resistor is laser trimmed to the
rated resistance value. The resistor
is covered with a protective epoxy
coat, finally the two external
terminations (matte tin on Nibarrier) are added. See fig.2
OUTLINES
overcoat
protective glass
resistive layer
inner electrode
termination (Ni/matte tin)
inner electrode
ceramic substrate
YNSC111
Fig. 2 Chip resistor outlines
DIMENSIONS
Table 1
TYPE
YC104
B (mm)
0.15 ±0.05
H (mm)
0.20 ±0.10
P (mm)
0.40 (Typical)
L (mm)
1.40 ±0.10
T (mm)
0.35 ±0.10
W1 (mm)
0.15 ±0.10
W2 (mm)
0.60 ±0.10
H
T
B
W1
W2
P
L
YNSC109
Fig. 3 YC104 series chip resistors dimension
SCHEMATIC
For dimension, please refer to Fig. 3 and Table 1
8
7
R1
6
R2
5
R3
R4
R1 = R2 = R3 = R4
YNSC110
1
2
3
4
Fig. 4 Equivalent circuit diagram
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Feb. 23, 2012 V.0
Product specification
Chip Resistor Surface Mount
YC
SERIES
ELECTRICAL CHARACTERISTICS
4
7
104 (RoHS Compliant)
FOOTPRINT AND SOLDERING
PROFILES
Table 2
For recommended footprint and
soldering profiles, please refer to
the data sheet “Chip resistors
mounting”.
YC104
CHARACTERISTICS
Operating Temperature Range
–55 °C to +125 °C
Rated Power
1/32 W
Maximum Working Voltage
12.5 V
Maximum Overload Voltage
25 V
Dielectric Withstanding Voltage
25 V
Number of Resistors
4
5% (E24) 10 Ω to 1 MΩ
Resistance Range
1% (E24/E96) 10 Ω to 1 MΩ
< 0.05 Ω
Jumper
Temperature Coefficient
±200 ppm/°C
Jumper Criteria
Rated Current
0.5 A
Maximum Current
1.0 A
PACKING STYLE AND PACKAGING QUANTITY
Table 3 Packing style and packaging quantity
PRODUCT TYPE
PACKING STYLE
REEL DIMENSION
YC104
Paper Taping Reel (R)
7" (178 mm)
QUANTITY PER REEL
10,000 units
NOTE
1. For paper tape and reel specifications/dimensions, please refer to the data sheet “Chip resistors packing”.
FUNCTIONAL DESCRIPTION
OPERATING TEMPERATURE RANGE
–55 °C to +125 °C
POWER RATING
handbook, halfpage
MLB206_1
P
(%Prated )
100
YC104 rated power at 70 °C is 1/32 W
RATED VOLTAGE
The DC or AC (rms) continuous working voltage
corresponding to the rated power is determined by
the following formula:
V=√(P X R)
or max. working voltage whichever is less
50
0
55
0
50
70
100 125
o
Tamb ( C)
Fig. 5 Maximum dissipation (P) in percentage of rated power as a
function of the operating ambient temperature (Tamb)
Where
V=Continuous rated DC or
AC (rms) working voltage (V)
P=Rated power (W)
R=Resistance value (X)
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Feb. 23, 2012 V.0
Product specification
Chip Resistor Surface Mount
YC
SERIES
5
7
104 (RoHS Compliant)
TESTS AND REQUIREMENTS
Table 4 Test condition, procedure and requirements
TEST
TEST METHOD
PROCEDURE
REQUIREMENTS
Life/
Operational
Life/
Endurance
MIL-STD-202G-method 108A
1,000 hours at 70±5 °C applied RCWV
1.5 hours on, 0.5 hour off, still air required
±(2%+0.05 Ω)
High
Temperature
Exposure/
Endurance at
upper category
temperature
MIL-STD-202G-method 108A
1,000 hours at maximum operating temperature
depending on specification, unpowered
±(1%+0.05 Ω)
<50 mΩ for Jumper
Moisture
Resistance
MIL-STD-202G-method 106F
IEC 60115-1 4.24.2
IEC 60115-1 4.25.1
<100 mΩ for Jumper
JIS C 5202-7.10
IEC 60115-1 4.25.3
JIS C 5202-7.11
No direct impingement of forced air to the
parts
Tolerances: 125±3 °C
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
±(2%+0.05 Ω)
<100 mΩ for Jumper
Parts mounted on test-boards, without
condensation on parts
Measurement at 24±2 hours after
test conclusion
Thermal Shock
MIL-STD-202G-method
107G
-55/+125 °C
±(1%+0.05 Ω)
Note: Number of cycles required is 300.
Devices unmounted
<50 mΩ for Jumper
Maximum transfer time is 20 seconds. Dwell
time is 15 minutes. Air – Air
Short time
overload
MIL-R-55342D-para 4.7.5
IEC60115-1 4.13
2.5 times RCWV or maximum overload voltage
whichever is less for 5 sec at room temperature
±(2%+0.05 Ω)
<50 mΩ for Jumper
No visible damage
Board Flex/
Bending
IEC60068-2-21
Device mounted on PCB test board as
described, only 1 board bending required
±(1%+0.05 Ω)
3 mm bending
No visible damage
<50 mΩ for Jumper
Bending time: 60±5 seconds
Ohmic value checked during bending
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Feb. 23, 2012 V.0
Product specification
Chip Resistor Surface Mount
YC
SERIES
6
7
104 (RoHS Compliant)
TEST
TEST METHOD
PROCEDURE
REQUIREMENTS
Solderability
- Wetting
J-STD-002B test B
Electrical Test not required
IEC 60068-2-58
Magnification 50X
Well tinned (≥95% covered)
No visible damage
SMD conditions:
1st step: method B, aging 4 hours at 155 °C
dry heat
2nd step: leadfree solder bath at 245±3 °C
Dipping time: 3±0.5 seconds
- Leaching
J-STD-002B test D
IEC 60068-2-58
- Resistance to
Soldering
Heat
MIL-STD-202G-method
210F
IEC 60068-2-58
Leadfree solder, 260 °C, 30 seconds
immersion time
No visible damage
Condition B, no pre-heat of samples
±(1%+0.05 Ω)
Leadfree solder, 260 °C, 10 seconds
immersion time
<50 mΩ for Jumper
No visible damage
Procedure 2 for SMD: devices fluxed and
cleaned with isopropanol
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Feb. 23, 2012 V.0
Product specification
Chip Resistor Surface Mount
YC
SERIES
7
7
104 (RoHS Compliant)
REVISION HISTORY
REVISION
DATE
CHANGE NOTIFICATION
DESCRIPTION
Version 0
Feb. 23, 2012
-
- New datasheet for 4 × 0201 thick film 1% and 5% with lead-free
terminations
“ Yageo reserves all the rights for revising the content of this datasheet without further notification, as long as the products itself are unchanged. Any
product change will be announced by PCN.”
www.yageo.com
Feb. 23, 2012 V.0