WA04X100-PBLJ [WALSIN]

Automotive grade AEC Q-200 compliant;
WA04X100-PBLJ
型号: WA04X100-PBLJ
厂家: Walsin Technology    Walsin Technology
描述:

Automotive grade AEC Q-200 compliant

文件: 总8页 (文件大小:226K)
中文:  中文翻译
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Approval sheet  
WA04X, WA06X  
±1%, ±5%, Convex Type  
General purpose chip resistors array  
Size 0402x4, 0603x4 (8p4R)  
(Automotive )  
Page 1 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
FEATURE  
1. Small size and light weight  
2. Reduced size of final equipment  
3. Lower surface mounted assembly costs  
4. Automotive grade AEC Q-200 compliant  
5. RoHS compliant and Lead (Pb) free terminations.  
APPLICATION  
Consumer electrical equipment  
EDP, Computer application  
Telecom  
Automotive application ( non-safety part )  
DESCRIPTION  
The resistors array is constructed in a high grade ceramic body (aluminum oxide). Internal metal electrodes are  
added at each end and connected by a resistive paste that is applied to the top surface of the substrate. The  
composition of the paste is adjusted to give the approximate resistance required and the value is trimmed to  
within tolerance by laser cutting of this resistive layer.  
The resistive layer is covered with a protective coat. Finally, the two external end terminations are added. For  
ease of soldering the outer layer of these end terminations is a Tin (Pb free) solder alloy.  
Fig 1. Construction of a Chip-R array (convex type)  
Page 2 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
QUICK REFERENCE DATA  
Item  
General Specification  
Series No.  
WA04X  
0402x4 (1005x4)  
Convex  
WA06X  
0603x4 (1608x4)  
Convex  
Size  
Termination construction  
Resistance Tolerance  
Resistance Range  
±5%, ±1%  
±5%, ±1%  
±5%: 3~ 1M, Jumper  
±1%: 10~ 1MΩ  
±5%: 1~ 1M, Jumper  
±1%: 10~ 1MΩ  
TCR (ppm/°C)  
10<R<1MΩ  
R10, R1MΩ  
≤ ± 200  
-300~+500  
≤ ± 200  
-300~+500  
1/16 W  
50V  
1/10 W  
50V  
Max. dissipation at Tamb=70°C  
Max. Operation Voltage  
(DC or RMS)  
Max. overload voltage  
Climatic category  
100V  
100V  
55/155/56  
Note :  
1.  
2.  
Climatic category refer to IEC 60068  
This is the maximum voltage that may be continuously supplied to the resistor element, see “IEC publication  
60115-8”  
3.  
Max. Operation Voltage : So called RCWV (Rated Continuous Working Voltage) is determined by  
RCWV = RatedPower ×Resistance Value or Max. RCWV listed above, whichever is lower.  
DIMENSIONS (unit : mm)  
WA04X  
WA06X  
L
W
T
2.00 ± 0.10  
1.00 ± 0.10  
0.45 ± 0.10  
0.50 ± 0.05  
0.40 ± 0.10  
0.20 ± 0.10  
0.30 ± 0.05  
0.25 ± 0.10  
3.20 ± 0.10  
1.60 ± 0.10  
0.50 ± 0.10  
0.80 ± 0.10  
0.60 ± 0.10  
0.30 ± 0.10  
0.40 ± 0.10  
0.30 ± 0.10  
P
A
B
C
G
Page 3 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
MARKING  
3-digits marking for E24 series +/-1% , +/-5% products.  
No marking for E96 series +/-1% , +/-5% products.  
Each resistor is marked with a three digits code on the protective coating to designate the nominal resistance  
value. For values of 10.0 or greater the first 2 digits apply to the resistance value and third digit indicates the  
zeros of multiple to follow.  
Example  
RESISTANCE  
10Ω  
100Ω  
6800Ω  
47000Ω  
3-digits marking  
100  
101  
682  
473  
FUNCTIONAL DESCRIPTION  
Product characterization  
Standard values of nominal resistance are taken from the E24 series for resistors with a tolerance of ±5%,  
The values of the E24 series are in accordance with “IEC publication 60063”  
Standard values of nominal resistance are taken from the E24/E96 series for resistors with a tolerance of  
±1%, The values of the E24/E96 series are in accordance with “IEC publication 60063”  
Derating  
The power that the resistor can dissipate depends on the operating temperature; see Fig.3.  
Figure 3  
Maximum dissipation in percentage of rated power as a  
function of the ambient temperature  
CONSTRUCTION  
R1=R2=R3=R4  
Page 4 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
MOUNTING  
Due to their rectangular shapes and small tolerances, Surface Mountable Resistors are suitable for handling by  
automatic placement systems.  
Chip placement can be on ceramic substrates and printed-circuit boards (PCBs).  
Electrical connection to the circuit is by individual soldering condition.  
The end terminations guarantee a reliable contact.  
SOLDERING CONDITION  
The robust construction of chip resistors allows them to be completely immersed in a solder bath of 260°C for 10  
seconds. Therefore, it is possible to mount Surface Mount Resistors on one side of a PCB and other discrete  
components on the reverse (mixed PCBs).  
Surface Mount Resistors are tested for solderability at 235°C during 2 seconds. The test condition for no  
leaching is 260°C for 30 seconds. Typical examples of soldering processes that provide reliable joints without  
any damage are given in Fig 4.  
Fig 4. Infrared soldering profile for Chip Resistors array  
TEST AND REQUIREMENTS  
Essentially all tests are carried out according to the schedule of IEC publication 115-8, category  
LCT/UCT/56(rated temperature range : Lower Category Temperature, Upper Category Temperature; damp  
heat, long term, 56 days). The testing also meets the requirements specified by EIA, EIAJ and JIS.  
The tests are carried out in accordance with IEC publication 68, "Recommended basic climatic and mechanical  
robustness testing procedure for electronic components" and under standard atmospheric conditions according  
to IEC 60068-1, subclause 5.3. Unless otherwise specified, the following value supplied :  
Temperature: 15°C to 35°C.  
Relative humidity: 45% to 75%.  
Air pressure: 86kPa to 106 kPa (860 mbar to 1060 mbar).  
All soldering tests are performed with midly activated flux.  
Page 5 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
TEST  
REQUIREMENT  
Resistor  
PROCEDURE / TEST METHOD  
0Ω  
Within the specified  
Electrical  
-
-
DC resistance values measurement  
Temperature Coefficient of Resistance (T.C.R)  
tolerance Refer to “QUICK  
REFERENCE DATA”  
Characteristics  
Natural resistance change per change in degree centigrade.  
JISC5201-1: 1998  
<50mΩ  
R2 R  
×106 (ppm/°C) t1 : 20°C+5°C-1°C  
1
Clause 4.8  
R
(
t2 t1  
)
1
R1 : Resistance at reference temperature  
R2 : Resistance at test temperature  
R/R max. ±(1%+0.05)  
<50mΩ  
Un-mounted chips completely immersed for 10±1second in  
a SAC solder bath at 270±5ºC  
Resistance to  
soldering heat  
(R.S.H)  
MIL-STD-202  
method 210  
Solderability  
J-STD-202  
a) Bake the sample for 155dwell time 4hrs/ solder dipping  
235/ 5sec.  
95% coverage min., good tinning  
and no visible damage  
b) Steam the sample dwell time 1 hour/ solder dipping  
260/ 7sec.  
R/R max. ±(1%+0.05)  
R/R max. ±(1%+0.05)  
< 50mΩ  
1000 cycles, -55C ~ +155C, dwell time 5~10min  
Temperature cycling  
JESD22 method  
JA-104  
< 50mΩ  
65C, 80~100% RH, 10 cycles, 24 hours/ cycle  
Moisture Resistance  
MIL-STD-202  
method 106  
1000+48/-0 hours; 85°C, 85% RH, 10% of operation power  
1000+48/-0 hours; 35% of operation power, 125±2°C  
R/R max. ±(2%+0.1)  
Bias Humidity  
MIL-STD-202  
method 103  
No visible damage  
<50mΩ  
< 50mΩ  
Operational Life  
MIL-STD-202  
method 108  
R/R max. ±(2%+0.1)  
No visible damage  
High Temperature  
Exposure  
1000+48/-0 hours; without load in a temperature chamber  
R/R max. ±(2%+0.1)  
controlled 155±3°C  
No visible damage  
<50mΩ  
<50mΩ  
MIL-STD-202G 108  
Board Flex  
Resistors mounted on a 90mm glass epoxy resin PCB(FR4), R/R max. ±(1.0%+0.05).  
AEC-Q200-005  
Terminal strength  
AEC-Q200-006  
Thermal shock  
MIL-STD-202G  
107G  
bending once 2mm for 10sec  
No visible damage  
Pressurizing force: 1Kg, Test time: 60±1sec.  
No remarkable damage or removal  
of the terminations  
Test –55 to 155/ dwell time 15min/ Max transfer time  
R/R max. ±(1%+0.05)  
20sec/ 300cycles  
No visible damage  
<50mΩ  
ESD  
Test contact 1.0KV  
R/R max. ±(1.0%+0.05)  
No visible damage  
<50mΩ  
<50mΩ  
AEC-Q200-002  
Short Time Overload Permanent resistance change after a 5sec application of a  
voltage 2.5xUR or max. overload voltage, whichever is less.  
R/R max. ±(2%+0.10)  
Page 6 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
TEST CONDITION FOR JUMPER (0 )  
Item  
WA04X  
1/16W  
WA06X  
1/10W  
Power Rating At 70°C  
Resistance  
MAX.50mΩ  
1A  
MAX.50mΩ  
1A  
Rated Current  
Peak Current  
1.5A  
3A  
-55~155°C  
-55~155°C  
Operating Temperature  
CATALOGUE NUMBERS  
The resistors have a catalogue number starting with .  
WA  
X
XXXX  
J
T
L
J
Size code  
Type code  
Resistance code  
Tolerance  
F : ±1%  
Packaging code  
T : 7” Reel taping  
B : Bulk  
Termination code Visual code  
06: 0603 (1608)  
04:0402 (1005)  
X : x 4, Convex 5%,E24 :  
2
significant  
J = Automotive  
grade  
L
= Sn base  
(lead free)  
digits followed by  
no. of zeros and a  
blank  
J : ±5%  
P : Jumper  
10Ω  
=100_  
=221_  
=000_  
220Ω  
Jumper  
(“_” means a blank)  
1%,E24+E96:  
3
significant digits  
followed by no. of  
zeros .  
10=10R0  
220=2200  
WA06X,  
1.  
Reeled tape packaging : 8mm width paper taping 5000pcs per reel.  
WA04X,  
1.  
Reeled tape packaging : 8mm width paper taping 10,000pcs per reel.  
Page 7 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  
Approval sheet  
PACKAGING  
Paper Tape specifications (unit :mm)  
Symbol  
WA06X,  
WA04X  
A
B
W
F
E
3.60±0.20  
2.20±0.20  
2.00±0.20  
1.20±0.20  
8.00±0.30  
3.50±0.20  
1.75±0.10  
Symbol  
WA06X,  
WA04X  
P1  
P0  
T
ΦD  
4.00±0.10  
2.00±0.05  
Max. 1.0  
Max. 0.6  
+0.1  
4.00±0.10  
Φ1.50  
0.0  
Reel dimensions  
Symbol  
WA06X,WA04X,  
A
B
C
D
13.0±0.2  
9.0±0.5  
Φ178.0±2.0  
Φ60.0±1.0  
Page 8 of 8  
ASC_WAxxX_J_V06  
Jul - 2014  

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