2, 4 or 8 isolated resistor elements included in one array
■
Less board space than individual chip resistors
■
High cost reduction efficiency by eliminating mounter operations
■
High self-alignment effect in reflow soldering process
■
Suitable for image recognition systems due to square corner design
■
Precision type ±1% is available
■ CN1J4 parts are tested according to AEC-Q200 requirements
■
Meets or exceeds IEC 60115-1, JIS C 5201-1
■
Rated ambient temperature: +70°C
■
Operating temperature range: -55°C ... +125°C (+155°C on request)
■
Suitable for reflow and wave soldering
MaX.
WORKIng
VOLTagE
25 V
± 200: R
≥
10 Ω
± 400: R
<
10
0.063 W
0.1 W
0.125 V
50 V
100 V
200 V
CIRCUIT COnSTRUCTIOn
CN1E2
CN1J2
CN2A2
CN2B2
CN1E4
CN1J4
CN2A4
CN2B4
CN1J8
CN2A8
CN2B8
Specifications given herein may be changed at any time without prior notice.
Please confirm technical specifications before you order/or use.
R
1
=R
2
R
1
=R
2
= R
3
=R
4
R
1
=R
2
= R
3
=R
4
=R
5
=R
6
= R
7
=R
8
RaTIng
SIZE
NEW
TYPE
T.C.R.
(ppm/K)*
POWER RaTIng
(per element)**
MaX.
OVERLOaD
VOLTagE
50 V
100 V
200 V
400 V
RESISTanCE RangE
F (±1%)
E24 • E96
g (±2%)
E24
J (±5%)
E24
0404 (2 x 0402)
Cn 1E 2
0804 (4 x 0402)
Cn 1E 4
0606 (2 x 0603)
Cn 1J 2
1206 (4 x 0603)
Cn 1J 4*
2506 (8 x 0603)
Cn 1J 8
1008 (2 x 0805)
Cn 2a 2
2008 (4 x 0805)
Cn 2a 4
4008 (8 x 0805)
Cn 2a 8
1012 (2 x 1206) Cn
2B 2
2012 (4 x 1206)
Cn 2B 4
4012 (8 x 1206)
Cn 2B 8
–
10 Ω… 1 MΩ
–
10 Ω… 1 MΩ
–
–
10 Ω … 100 kΩ
10 Ω … 1 MΩ
1 Ω …1 MΩ
10 Ω … 1 MΩ
10 Ω … 1 MΩ
* CN1J4 (±1%) has TCR ±100ppm/K
** For resistors operated at an ambient temperature of +70°C or above, the power rating shall be derated.
Please note that network resistors generate higher heat rather than single flat chip resistors even under rated power output.
A few cross talks will occur in network resistors. In case of using them for a high frequency circuit, please design circuits taking the effect by the cross talks into consideration.
Rated voltage = Power rating x resistance value or max. working voltage, whichever is lower.
在一些工业现场中,设备长时间运行容易出现故障,为了 监控 这些设备,通常利用数据采集装置采集他们运行时的数据并送给 PC 机,通过运行在PC机上的特定软件对这些数据进行分析,以此判断当前运行设备的状况,进而采取相应措施。当前常用的数据采集装置,在其系统软件设计中,多采用单任务顺序机制。这样就存在系统安全性差的问题。这对于稳定性、实时性要求很高的数据采集装置来说是不允许的,因此有必要引入嵌入式操作...[详细]