EXB-D10C102J

更新时间:2024-10-29 22:17:23
品牌:PANASONIC
描述:Chip Resistor Networks

EXB-D10C102J 概述

Chip Resistor Networks

EXB-D10C102J 数据手册

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Chip Resistor Networks  
Chip Resistor Networks  
Type:  
EXBD:1206  
EXBE:1608  
EXBA:2512  
EXBQ:1506  
Features  
High density placing for digital signal circuits  
·
Bussed 8 or 15 resistors for pull up/down circuits  
×
×
EXBD: 3.2 mm 1.6 mm 0.55 mm, 0.635 mm pitch  
×
×
EXBE: 4.0 mm 2.1 mm 0.55 mm, 0.8 mm pitch  
×
×
EXBA: 6.4 mm 3.1 mm 0.55 mm, 1.27 mm pitch  
×
×
EXBQ: 3.8 mm 1.6 mm 0.45 mm, 0.5 mm pitch  
Available direct placing on the bus line by means of half pitch spacing without through-holes on PWB  
·
( High density placing is shown below)  
High speed mounting using conventional placing machine  
Reference Standard IEC 60115-9, JIS C 5201-9, EIAJ RC-2130  
RoHS compliant  
<High density placing>  
Pull up resistors  
VCC  
Direct placement on the bus line  
EXBE10C  
VCC  
EXBA10P  
VCC  
IC  
IC  
IC  
IC  
IC  
IC  
No through hole  
Through holes  
0.4 mm pitch  
0.635 mm pitch  
Packaging Methods, Land Pattern, Soldering Conditions and Safety Precautions  
Please see Data Files  
Explanation of Part Numbers  
1
2
3
4
5
6
7
8
9
10  
11  
12  
&
9
#
&
$
+
Circuit Configuration  
Resistance Value  
Product Code  
Dimension Code of  
Chip Resistor Network  
Resistance Suffix for Special  
Tolerance Requirements  
5 ꢀ  
Code Common Terminal Position  
The first two digits are  
significant figures of  
resistance value and  
the third one denotes  
the number of zeros  
following.  
Thick Film  
Resistor  
Network  
Type: inches  
D : 1206  
E : 1608  
A : 2512  
Q : 1506  
Dimensions  
3.2 mmL1.6 mm  
4.0 mmL2.1 mm  
6.4 mmL3.1 mm  
3.8 mmL1.6 mm  
J
Center common circuit  
(EXBD, EXBE)  
C
Diagonal common circuit  
(Terminal 5 and Terminal 10)  
(EXBA)  
P
One side common circuit  
(Terminal 16)  
(EXBQ)  
P
E
Number of  
Terminals  
Diagonal common circuit  
(Terminal 1 and Terminal 6)  
(EXBA)  
10(EXBD,E,A)  
16(EXBQ)  
Design and specications are each subject to change without notice. Ask factory for the current technical specications before purchase and/or use.  
Should a safety concern arise regarding this product, please be sure to contact us immediately.  
01 Aug. 2012  
37  
Chip Resistor Networks  
Construction (Example : EXBD)  
Protective coating  
Protective coating  
Electrode  
(Inner)  
Alumina substrate  
Electrode (Outer)  
Electrode (Between)  
Electrode (Inner)  
Thick film  
resistive element  
Alumina substrate  
Thick film  
resistive element  
Dimensions in mm (not to scale)  
EXBD  
EXBE  
EXBA  
EXBQ  
0.33 0.15  
0.5 0.2  
0.2 0.1  
+0.15  
+0.1  
–0.2  
f0.2 0.1  
0.2 0.1  
0.7 0.2  
0.15  
f0.3  
–0.05  
0.2 0.1  
0.3 0.2  
+0.1  
–0.2  
0.3 0.2  
0.3 0.1  
f0.3  
EXBA10P  
*ꢁꢂ  
*ꢁꢂ  
*ꢁꢂ  
ꢃꢄꢅ  
0.5 0.1  
0.8 0.1  
0.635 0.10  
0.55 0.10  
1.27 0.10  
6.4 0.2  
0.55 0.10  
0.25 0.10  
4.0 0.2  
3.20 0.15  
0.3 0.1  
0.25 0.10  
0.55 0.10  
0.45 0.10  
0.4 0.2  
3.8 0.2  
0.5 0.2  
0.35 0.20  
EXBA10E  
0.35 0.20  
+0.20  
0.15  
–0.05  
*ꢁꢂ  
Mass (Weight)[1000 pcs.] : 10 g  
Mass (Weight)[1000 pcs.] : 16 g  
EXBA10P  
Mass (Weight)[1000 pcs.] : 40 g  
Mass (Weight)[1000 pcs.] : 9 g  
Circuit Configuration  
EXBD, EXBE  
EXBA  
EXBQ  
EXBA10E  
10  
10  
9
8
7
5
9
2
8
3
7
4
6
5
10  
9
8
7
6
10  
7
16 15 14 13 12 11  
9
8
1
6
1
2
3
4
5
6
2
3
4
1
1
2
3
4
5
Ratings  
Item  
Specifications  
Series  
EXBD  
EXBE  
EXBA  
EXBQ  
Resistance Range  
47 Ω to 1 MΩ (E12)  
100 Ω to 470 kΩ (E6 series)  
Resistance Tolerance  
Number of Terminals  
Number of Resistors  
Power Rating at 70 °C  
Limiting Element Voltage(1)  
Maximum Overload Voltage(2)  
T. C. R.  
5ꢀ  
10 terminals  
8 element  
16 terminals  
15 element  
0.025 W/element  
25V  
0.05 W/element  
0.063 W/element  
50 V  
100 V  
200 × 10–6/ °C  
–55 °C to +125 °C  
25V  
50 V  
50 V  
Category Temperature Range  
(1) Rated Continuous Working Voltage (RCWV) shall be determined from RCWV= Power Rating × Resistance Value, or Limiting Element Voltage  
listed above, whichever less.  
(2) Overload (Short-time Overload) Test Voltage (SOTV) shall be determined  
from SOTV=2.5 × RCWVor Maximum Overload Voltage listed above whichever less.  
Power Derating Curve  
–55 °C  
70 °C  
100  
80  
60  
40  
20  
0
For resistors operated in ambient temperature above  
70 °C, power rating shall be derated in accordance  
with the figure on the right.  
125 °C  
20 40 60 80 100120140160180  
Ambient Temperature (°C)  
–60 –40 –20  
0
Design and specications are each subject to change without notice. Ask factory for the current technical specications before purchase and/or use.  
Should a safety concern arise regarding this product, please be sure to contact us immediately.  
01 Aug. 2012  
38  

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