RES NET,THICK FILM,33K OHMS,50WV,5% +/-TOL,-200,200PPM TC,1206 CASE
CN1J4RTTDD333J Parametric
Parameter Name
Attribute value
Objectid
1225101144
package instruction
SMT, 1206
Reach Compliance Code
unknown
ECCN code
EAR99
Other features
ANTI-SULFUR
structure
Chip
JESD-609 code
e3
Network Type
Isolated
Number of terminals
8
Maximum operating temperature
125 °C
Minimum operating temperature
-55 °C
Package height
0.6 mm
Package length
3.2 mm
Package form
SMT
Package width
1.6 mm
method of packing
TR, Paper, 10 Inch
Rated power dissipation(P)
0.063 W
resistance
33000 Ω
Resistor type
ARRAY/NETWORK RESISTOR
size code
1206
technology
METAL GLAZE/THICK FILM
Temperature Coefficient
200 ppm/°C
Terminal surface
Matte Tin (Sn)
Tolerance
5%
Operating Voltage
50 V
CN1J4RTTDD333J Preview
NETWORKS
CONCAVE TERMINATIONS
ANTI SULFURATION
CN RT • CNZ RT
W
NE
THICK FILM R-NETWORK
STRUCTURE
1
2
3
4
5
6
Ceramic substrate
Inner electrode
RuO
2
resistive film
Inner glass passivation
Outer electrode
Protective coating
NETWORKS
(PASSIVE COMPONENTS)
IDENTIFICATION
TYPE
CN RT
CNZ RT
COATING
COLOR
Black
MARKING
White, 3 digits
+2 marks
All these products have Pb-free terminations
and meet EU-RoHS requirements
CN
PRODUCT CODE
CN (Resistors)
CNZ (Jumpers)
1J
STYLE
1J, 2A, 2B
4
NO. OF
RESISTORS
4
RT
TERMINATION
SURFACE MATERIAL
RT: Sn
TD
TAPING*
TD, TE, BK
*Please see “PACKAGING”
103
NOMINAL
RESISTANCE**
3 digits
** Blank in case of CNZ-series
J
RESISTANCE
TOLERANCE**
J: (±5%)
Contact us when you have
control request for environmen-
tal hazardous material other
than the substance specified
by EU-RoHS
DIMENSIONS (mm)
SIZE
1206 (4 x 0603)
2008 (4 x 0805)
2012 (4 x 1206)
TYPE
CN 1J 4 RT
CN 2A 4 RT
CN 2B 4 RT
L ±0.2
3.2
5.08
W ±0.2
1.6
2.0
3.2
c
0.3 ± 0.2
0.4 ± 0.2
0.5 ± 0.3
d ±0.1
0.40
0.55
t ±0.1
0.6
a (top)
0.5 ± 0.1
0.8 ± 0.1
a (bottom)
0.4 ± 0.15
0.75 ± 0.1
b ±0.1
0.15
P (ref.)
(0.80)
(1.27)
FEATURES
■
Excellent anti-sulfuration characteristic due to using high sulfuration-proof
inner top electrode material
■
Less board space than individual chip resistors
■
High cost reduction efficiency by eliminating mounter operations
■
Higher self-alignment effect in reflow soldering process
■
Suitable for image recognition systems due to square corner design
■
Meets or exceeds IEC 60115-1, JIS C 5201-1
■
Rated ambient temperature: +70°C
■
Operating temperature range: -55°C ... +125°C
■
Ideal for use as damping, as pull-up/pull-down termination resistors,
for digital circuits or for LED current limiting
■
Suitable for reflow and wave soldering
CIRCUIT CONSTRUCTION
CN 1J 4 RT
CN 2A 4 RT
CN 2B 4 RT
RATING (Jumper)
TYPE
CNZ 1J 4 RT
CNZ 2A 4 RT
CNZ 2B 4 RT
MAXIMUM
RESISTANCE
50 mΩ
CURRENT
RATING*
0.5 A
1.0 A
*at 70° C per element
R
1
= R
2
= R
3
= R
4
RATING
SIZE
TYPE
T.C.R.
(ppm/K)
±200
POWER RATING
(per element)*
0.063 W
0.1 W
0.125 W
MAX.
WORKING
VOLTAGE
50 V
100 V
200 V
MAX.
OVERLOAD
VOLTAGE
100 V
200 V
400 V
RESISTANCE RANGE
J (±5%)
E24
NEW
NEW
1206 (4 x 0603)
CN 1J 4 RT
2008 (4 x 0805)
CN 2A 4 RT
2012 (4 x 1206)
CN 2B 4 RT
10 Ω … 1 MΩ
* 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.
I use NRF24L01 module for communication, and configure PIPE0 for automatic response. Why is there only a very small probability of receiving the automatic response signal (almost zero) during the expe...
Fortunately, there are no reports of technical accidents. According to the normal plan, the next batch of more than 100 similar taxis will also be launched in the market in the near future. However, a...
In the early 20th century, nighttime driving was extremely dangerous. Drivers were illuminated by kerosene lamps, using hand signals and shouting to tell others what maneuvers to perform, while guessi...
Recently, I developed a project that needs to use SLE4442 card and AT88SC102 card. The microcontroller needs to automatically identify these two card types. The actual problem is that there are many d...