WF08K49R9BGL [WALSIN]

SMD Thick film resistor;
WF08K49R9BGL
型号: WF08K49R9BGL
厂家: Walsin Technology    Walsin Technology
描述:

SMD Thick film resistor

文件: 总8页 (文件大小:489K)
中文:  中文翻译
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WF12K, WF08K, WF06K, WF04K  
1.0%, 0.5%, 0.25%, 0.1%  
Thick film TC50  
High Precision Thick Film chip resistors  
Size 1206, 0805, 0603, 0402  
Page 1 of 8  
WFxxK_V02  
Feb-2013  
FEATURE  
1. SMD Thick film resistor  
2. High reliability and stability  
3. High performance of TCR: 50 ppm/K  
4. High precision  
5. RoHS compliant & Lead free  
APPLICATION  
Medical equipment  
Measuring instrument  
Communication device  
Computer  
Printer  
DESCRIPTION  
The resistors are constructed in a high grade ceramic body (aluminum oxide). Internal metal electrodes are  
added at each end and connected by a resistive layer that is applied to the top surface of the substrate. The  
composition of the resistive layer is adjusted to give the approximate resistance required and the value is  
trimmed to nominated value within tolerance which controlled by laser trimming of this resistive layer.  
The resistive layer is covered with a protective coat. Finally, the two external end terminations are added. For  
environmental soldering issue, the outer layer of these end terminations is a Lead-free solder .  
Fig 1. Construction of Chip-R WFxxK  
Page 2 of 8  
WFxxK_V02  
Feb-2013  
QUICK REFERENCE DATA  
Item  
Series No.  
General Specification  
WF12K  
WF08K  
WF06K  
WF04K  
Size code  
1206 ( 3216 )  
0805 ( 2012 )  
0603 ( 1608 )  
0402 ( 1005 )  
Resistance Tolerance  
Resistance Range  
1.0%, 0.5%, 0.25%, 0.1%  
10~ 1M  
100~ 1M  
( E24 +E96 )  
( E24 +E96 )  
TCR (ppm/C)  
50 ppm/C  
1/4W  
200V  
400V  
1/8W  
150V  
300V  
1/10W  
50V  
1/16W  
50V  
Max. dissipation at Tamb=70C  
Max. Operation Voltage (DC or RMS)  
Max. Overload Voltage (DC or RMS)  
100V  
100V  
Operation temperature  
Note :  
- 55 ~ +155C  
1.  
This is the maximum voltage that may be continuously supplied to the resistor element, see “IEC publication  
60115-8”  
2.  
Max. Operation Voltage : So called RCWV (Rated Continuous Working Voltage) is determined by  
RCWV RatedPowerResistance Valueor Max. RCWV listed above, whichever is lower.  
DIMENSIONS(unit : mm)  
WF12K  
WF08K  
WF06K  
WF04K  
Type  
3.10 0.10  
1.60 0.10  
0.50 0.20  
0.45 0.20  
0.60 0.15  
2.00 0.10  
1.25 0.10  
0.40 0.20  
0.40 0.20  
0.50 0.15  
1.60 0.10  
0.80 0.10  
0.30 0.10  
0.30 0.15  
0.45 0.10  
1.00 0.05  
0.50 0.05  
0.20 0.10  
0.25 0.10  
0.35 0.05  
L
W
A
B
t
Protective coat  
t
End termination  
B
Resistive layer  
A
Ceramic Substrate  
1001  
T
W
L
Page 3 of 8  
WFxxK_V02  
Feb-2013  
MARKING  
3-digits marking for 0603 size  
WFxxK has same marking rule as commodity ±1%.  
3-digits marking1% : 0603)  
Nominal resistance  
Description  
1.E-24 series  
2.E-96 series  
As 0603 WR06X 5%.  
The 1st two digit codes are referring to the CODE on the table, the 3rd code is the index of resistance  
value :  
Y=10-2X=10-1A=100B=101C=102D=103E=104F=105  
EX :  
17.8Ω=25X178Ω=25A1K78 =25B  
17K8=25C178K=25D1M78=25E  
3. Remark  
There is no marking for the items are not under E-24 and E-96 series  
CODE R_value CODE R_value CODE R_Value CODE R_value CODE R_value CODE R_value CODE R_value CODE R_value  
01  
02  
03  
04  
05  
06  
07  
08  
09  
10  
11  
12  
100  
102  
105  
107  
110  
113  
115  
118  
121  
124  
127  
130  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
133  
137  
140  
143  
147  
150  
154  
158  
162  
165  
169  
174  
25  
26  
27  
28  
29  
30  
31  
32  
33  
34  
35  
36  
178  
182  
187  
191  
196  
200  
205  
210  
215  
221  
226  
232  
37  
38  
39  
40  
41  
42  
43  
44  
45  
46  
47  
48  
237  
243  
249  
255  
261  
267  
274  
280  
287  
294  
301  
309  
49  
50  
51  
52  
53  
54  
55  
56  
57  
58  
59  
60  
316  
324  
332  
340  
348  
357  
365  
374  
383  
392  
402  
412  
61  
62  
63  
64  
65  
66  
67  
68  
69  
70  
71  
72  
422  
432  
442  
453  
464  
475  
487  
499  
511  
523  
536  
549  
73  
74  
75  
76  
77  
78  
79  
80  
81  
82  
83  
84  
562  
576  
590  
604  
619  
634  
649  
665  
681  
698  
715  
732  
85  
86  
87  
88  
89  
90  
91  
92  
93  
94  
95  
96  
750  
768  
787  
806  
825  
845  
866  
887  
909  
931  
953  
976  
4-digits marking for 1206, 0805 size  
Each resistor is marked with a four digits code on the protective coating to designate the nominal resistance  
value of E24+E96. For values below 976 the R is used as a digit. For values of 100or greater, the first 3  
digits are significant, the fourth digit indicates the number of multiple to follow.  
Example  
RESISTANCE  
10  
12  
100  
6800  
47000  
10R0  
12R0  
1000  
6801  
4702  
4-digits marking  
No marking code for 0402 size  
Page 4 of 8  
WFxxK_V02  
Feb-2013  
FUNCTIONAL DESCRIPTION  
Product characterization  
Standard values of nominal resistance are taken from the E24 & E96 series for resistors with a tolerance of  
1.0%, 0.5%, 0.25%, 0.1%. 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.2  
Figure 2. Maximum dissipation in percentage of rated power  
As a function of the ambient temperature  
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.  
Page 5 of 8  
WFxxK_V02  
Feb-2013  
SOLDERING CONDITION  
The robust construction of chip resistors allows them to be completely immersed in a solder bath of 260C 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 235C during 2 seconds within lead-free solder bath. The  
test condition for no leaching is 260C for 30 seconds. Typical examples of soldering processes that provide  
reliable joints without any damage are given in Fig 3.  
CATALOGUE NUMBERS  
The resistors have a catalogue number starting with .  
WF08  
Size code  
K
xxxx  
D
Tolerance  
F : 1.0%  
D : 0.5%  
C: 0.25%  
B : 0.1%  
T
L
Type code  
TCR 50ppm  
Resistance code  
E24+E192:  
Packaging  
code  
Termination  
code  
WF12: 1206  
WF08: 0805  
WF06: 0603  
WF04: 0402  
T : 7reel  
G : 13reel  
L : lead free  
R is first code followed by  
3 significant digits.  
E24: 39R0=>39R0  
820R =>8200  
E96: 49R9 =>49R9  
499R =>4990  
1. Reeled tape packaging: 8mm width paper taping.  
for WF12, WF08, WF06, 5,000pcs/ 7reel; 20kpcs/ 13reel  
for WF04, 10,000pcs/ 7reel ; 70kpcs/ 13reel  
Page 6 of 8  
WFxxK_V02  
Feb-2013  
TEST AND REQUIREMENTS(JIS C 5201-1 : 1998)  
REQUIREMENT  
Resistor  
TEST  
PROCEDURE  
DC resistance  
DC resistance values measured  
Within the specified tolerance  
Clause 4.5  
<10@0.1V, <100@0.3V, <1K@1.0V,  
<10K@3V, <100K@10V,<1M@25V,  
<10M@30V  
Temperature  
Natural resistance change per change in degree Refer to “QUICK REFERENCE DATA”  
centigrade.  
Coefficient of  
Resistance(T.C.R)  
R2 R  
R
1t2 t1  
106 (ppm/C)  
1
Clause 4.8  
R1 : Resistance at reference temperature  
R2 : Resistance at test temperature  
t1 : 20°C+5°C-1°C  
Short time overload  
(S.T.O.L)  
Permanent resistance change after a 5second  
application of a voltage 2.5 times RCWV or the  
maximum overload voltage specified in the above  
list, whichever is less.  
R/R max. ±(0.5%+0.05)  
Clause 4.13  
Resistance to soldering  
heat(R.S.H)  
Clause 4.18  
Un-mounted chips completely immersed for no visible damage  
10±1second in a SAC solder bath at 260±5ºC  
R/R max. ±(0.25%+0.05)  
Solderability  
Un-mounted chips completely immersed for 2±0.5 good tinning (>95% covered)  
second in a SAC solder bath at 235±5℃  
Clause 4.17  
no visible damage  
Temperature cycling  
no visible damage  
30 minutes at -55C3C, 2~3 minutes at  
Clause 4.19  
20°C+5°C-1°C, 30 minutes at +125C3C,  
2~3 minutes at 20°C+5°C-1°C, total  
continuous cycles  
R/R max. ±(0.5%+0.05)  
5
Load life (endurance)  
Clause 4.25  
70±2ºC, 1000 hours, loaded with RCWV or  
Vmax,1.5 hours on and 0.5 hours off  
R/R max. (1.0%+0.05)  
R/R max. (1.0%+0.05)  
Load life in Humidity  
Clause 4.24  
1000 hours, at rated continuous working voltage in  
humidity chamber controller at 40C2C and  
90~95% relative humidity, 1.5hours on and 0.5  
hours off  
Bending strength  
Clause 4.33  
Adhision  
Resistors mounted on a 90mm glass epoxy resin  
PCB(FR4); bending : 3 mm, once for 10 seconds.  
R/R max. ±(0.5%+0.05)  
Pressurizing force: 5N, Test time: 10±1sec.  
No remarkable damage or removal of the  
terminations.  
Clause 4.32  
Insulation Resistance  
R10GΩ  
Apply the maximum overload voltage (DC) for  
1minute  
Clause 4.6  
Dielectric Withstand  
Apply the maximum overload voltage (AC) for 1 No breakdown or flashover  
minute  
Voltage  
Clause 4.7  
Page 7 of 8  
WFxxK_V02  
Feb-2013  
PACKAGING  
Paper Tape specifications (unit :mm)  
P0  
F
D
Series No.  
WF12  
A
B
W
D
E
3.60±0.20  
2.40±0.20  
1.90±0.20  
1.20±0.10  
2.00±0.20  
1.65±0.20  
1.10±0.20  
0.7±0.10  
8.00±0.30  
8.00±0.30  
8.00±0.30  
8.00±0.20  
3.50±0.20  
3.50±0.20  
3.50±0.20  
3.50±0.05  
1.75±0.10  
1.75±0.10  
1.75±0.10  
1.75±0.10  
WF08  
WF06  
WF04  
Series No.  
WF12  
F
P0  
T
D  
0.1  
4.00±0.10  
4.00±0.10  
Max. 1.0  
1.50  
0.0  
0.1  
WF08  
WF06  
4.00±0.10  
4.00±0.10  
4.00±0.10  
4.00±0.10  
Max. 1.0  
1.50  
0.0  
0.1  
0.0  
0.65±0.05  
1.50  
0.1  
0.0  
2.00±0.10  
4.00±0.10  
0.40±0.05  
WF04  
1.50  
Reel dimensions  
B
A
C
D
Symbol  
A
B
C
D
7reel  
13.0±0.2  
13.0±0.2  
9.0±0.5  
9.0±0.5  
178.0±2.0  
330.0±2.0  
60.0±1.0  
13reel  
100.0±1.0  
Taping quantity  
-
-
Chip resistors 5,000 pcs per 7reel; 20,000 pcs per 13: reel ( WF12, WF08, WF06 )  
Chip resistors 10,000 pcs per 7reel; 70,000 pcs per 13reel ( WF04 )  
Page 8 of 8  
WFxxK_V02  
Feb-2013  

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