Precondition for Class II MLCC measurement: Apply a preheat treatment @150±10°C for 1 hour. The measurement
should be applied after 24±2 hrs the part was stored under ambient conditions. There is not any precondition necessary
for Class I MLCC.
C Schematic:
E General information:
General Purpose MLCC
Ceramic Type:
Temperature Coeffecient:
Storage Conditions:
Operating Temperature:
Dielectric Strength:
General Test conditions:
FIT according to
DESCRIPTION
NP0 Class I
± 30 ppm max.
35°C, <45% RH
-55 °C bis +125 °C
5 sec. @250% UR; Charge & Discharge Current < 50mA
25°C, 30-70% RH; if not specified differently
separate documentation
L ± 0.1
W ± 0.1
H ± 0.07
E ± 0.15
l - Reflow
p - Reflow
w - Reflow
1.6
0.8
0.8
0.4
2.30
0.70
0.80
l - Wave
p - Wave
w - Wave
2.40
1.00
0.80
1.0
REV
2014-11-06
DATE
SSt
BY
PSL
CHECKED
Würth Elektronik eiSos GmbH & Co. KG
EMC & Inductive Solutions
Max-Eyth-Str. 1
74638 Waldenburg
Germany
Tel. +49 (0) 79 42 945 - 0
www.we-online.com
eiSos@we-online.com
WCAP-CSGP Ceramic Capacitors
Order.- No.
SIZE
A4
885012006014
Size: 0603
This electronic component has been designed and developed for usage in general electronic equipment only. This product is not authorized for use in equipment where a higher safety standard and reliability standard is especially required or where a failure of the product is reasonably expected to cause severe personal injury or death, unless the parties have executed an agreement specifically governing such use.
Moreover Würth Elektronik eiSos GmbH & Co KG products are neither designed nor intended for use in areas such as military, aerospace, aviation, nuclear control, submarine, transportation (automotive control, train control, ship control), transportation signal, disaster prevention, medical, public information network etc.. Würth Elektronik eiSos GmbH & Co KG must be informed about the intent of such usage before
the design-in stage. In addition, sufficient reliability evaluation checks for safety must be performed on every electronic component which is used in electrical circuits that require high safety and reliability functions or performance.
D2 Mechanical Properties:
Properties
Adhesive Strength of Termination
Definition
0402 & 0603
> 0603
Vibration Resistance
Resistance to Solder Heat
Solder Temperature
Dipping Time
Specific
10 ±1 sec; 5N
10 ±1 sec; 10N
all 3 directions, 2 hours each @ 10 - 55 - 10 Hz,
amplitude 0.75 mm or 10 g
260°C ±5°C
10 ±1 sec
Refer to Soldering Profile
DESCRIPTION
WCAP-CSGP Ceramic Capacitors
Würth Elektronik eiSos GmbH & Co. KG
EMC & Inductive Solutions
Max-Eyth-Str. 1
74638 Waldenburg
Germany
Tel. +49 (0) 79 42 945 - 0
www.we-online.com
eiSos@we-online.com
Order.- No.
SIZE
A4
1.0
REV
2014-11-06
DATE
SSt
BY
PSL
CHECKED
885012006014
Size: 0603
This electronic component has been designed and developed for usage in general electronic equipment only. This product is not authorized for use in equipment where a higher safety standard and reliability standard is especially required or where a failure of the product is reasonably expected to cause severe personal injury or death, unless the parties have executed an agreement specifically governing such use.
Moreover Würth Elektronik eiSos GmbH & Co KG products are neither designed nor intended for use in areas such as military, aerospace, aviation, nuclear control, submarine, transportation (automotive control, train control, ship control), transportation signal, disaster prevention, medical, public information network etc.. Würth Elektronik eiSos GmbH & Co KG must be informed about the intent of such usage before
the design-in stage. In addition, sufficient reliability evaluation checks for safety must be performed on every electronic component which is used in electrical circuits that require high safety and reliability functions or performance.
H Soldering Specifications:
H1: Classification Reflow Profile for SMT components:
H2: Classification Reflow Profiles
Profile Feature
Preheat
- Temperature Min (Tsmin)
- Temperature Max (Tsmax)
- Time (ts) from (Tsmin to Tsmax)
Ramp-up rate (TL to TP)
Liquidous temperature (TL)
Time (tL) maintained above TL
Peak package body temperature (Tp)
Time within 5°C of actual peak temperature (tp)
Ramp-down rate (TP to TL)
Time 25°C to peak temperature
refer to IPC/JEDEC J-STD-020D
Pb-Free Assembly
150°C
200°C
60-120 seconds
3°C/ second max.
217°C
60-150 seconds
See Table H3
20-30 seconds
6°C/ second max.
8 minutes max.
H3: Package Classification Reflow Temperature
Package Thickness
PB-Free Assembly
PB-Free Assembly
PB-Free Assembly
refer to IPC/JEDEC J-STD-020D
< 1.6 mm
1.6 - 2.5 mm
≥ 2.5 mm
Volume mm³
<350
260°C
260°C
250°C
Volume mm³
350 - 2000
260°C
250°C
245°C
Volume mm³
>2000
260°C
245°C
245°C
DESCRIPTION
WCAP-CSGP Ceramic Capacitors
Würth Elektronik eiSos GmbH & Co. KG
EMC & Inductive Solutions
Max-Eyth-Str. 1
74638 Waldenburg
Germany
Tel. +49 (0) 79 42 945 - 0
www.we-online.com
eiSos@we-online.com
Order.- No.
SIZE
A4
1.0
REV
2014-11-06
DATE
SSt
BY
PSL
CHECKED
885012006014
Size: 0603
This electronic component has been designed and developed for usage in general electronic equipment only. This product is not authorized for use in equipment where a higher safety standard and reliability standard is especially required or where a failure of the product is reasonably expected to cause severe personal injury or death, unless the parties have executed an agreement specifically governing such use.
Moreover Würth Elektronik eiSos GmbH & Co KG products are neither designed nor intended for use in areas such as military, aerospace, aviation, nuclear control, submarine, transportation (automotive control, train control, ship control), transportation signal, disaster prevention, medical, public information network etc.. Würth Elektronik eiSos GmbH & Co KG must be informed about the intent of such usage before
the design-in stage. In addition, sufficient reliability evaluation checks for safety must be performed on every electronic component which is used in electrical circuits that require high safety and reliability functions or performance.
H Soldering Specifications:
H4: Classification Wave Soldering Profile:
H5: Classification Wave Profile
Profile Feature
Preheat
- Temperature Min (Tsmin)
- Temperature Typical (Tstypical)
- Temperature Max (Tsmax)
- Time (ts) from (Tsmin to Tsmax)
Δ preheat to max Temperature
Peak temperature (Tp)
Time of actual peak temperature (tp)
Ramp-down rate
- Min
- Typical
- Max
Time 25°C to 25°C
refer to EN 61760-1:2006
Pb-Free Assembly
100°C
120°C
130°C
70 seconds
150°C max.
250°C - 260°C
max. 10 seconds
max. 5 second each wave
~ 2 K/s
~ 3.5 K/s
~ 5 K/s
4 minutes
Sn-Pb Assembly
100°C
120°C
130°C
70 seconds
150°C max.
235°C - 260°C
max. 10 seconds
max. 5 second each wave
~ 2 K/s
~ 3.5 K/s
~ 5 K/s
4 minutes
DESCRIPTION
WCAP-CSGP Ceramic Capacitors
Würth Elektronik eiSos GmbH & Co. KG
EMC & Inductive Solutions
Max-Eyth-Str. 1
74638 Waldenburg
Germany
Tel. +49 (0) 79 42 945 - 0
www.we-online.com
eiSos@we-online.com
Order.- No.
SIZE
A4
1.0
REV
2014-11-06
DATE
SSt
BY
PSL
CHECKED
885012006014
Size: 0603
This electronic component has been designed and developed for usage in general electronic equipment only. This product is not authorized for use in equipment where a higher safety standard and reliability standard is especially required or where a failure of the product is reasonably expected to cause severe personal injury or death, unless the parties have executed an agreement specifically governing such use.
Moreover Würth Elektronik eiSos GmbH & Co KG products are neither designed nor intended for use in areas such as military, aerospace, aviation, nuclear control, submarine, transportation (automotive control, train control, ship control), transportation signal, disaster prevention, medical, public information network etc.. Würth Elektronik eiSos GmbH & Co KG must be informed about the intent of such usage before
the design-in stage. In addition, sufficient reliability evaluation checks for safety must be performed on every electronic component which is used in electrical circuits that require high safety and reliability functions or performance.
I Cautions and Warnings:
The following conditions apply to all goods within the product series of WCAP-CSGP
of Würth Elektronik eiSos GmbH & Co. KG:
1. General
•The capacitor is engineered, designed and manufactured to be used within the datasheet specified values.
•Do not use the capacitor neither short term nor long term outside the specified values, which are given in the data sheet.
•Do not apply any kind of flexural or compressive force onto soldered or unsoldered component.
•Prevent the capacitor surface from any damage or scratches with sharp edges (e.g. chassis, screwdrivers, pincers)
2. Product specific
The responsibility for the applicability of customer specific products and use in a particular customer design is always within the authority of
the customer. All technical specifications for standard products do also apply to customer specific products.
Follow all instructions mentioned in the data sheet, especially the following items:
2.1 Storage conditions
•These ceramic capacitors must be stored in stable conditions within an ambient temperature between 5°C to 40°C with a relative humi-
dity of <70%.
•The environment in which the capacitors are operated and stored has to have atmospheric characteristics and must be free of dew con-
densation and toxic gases (e.g. chlorine, ammonia, sulfur, hydrogen sulphide and hydrogen sulfate).
•All products shall be used before the end of the period of 12 months based on the product date code, if not, a 100% solderability cannot
be guaranteed.
•The capacitance tolerance as specified within the datasheet is only valid on the date of delivery.
2.2 Operating climatic conditions
•Do not exceed the lower nor the upper specified temperature under no condition.
•Be aware that the specified capacitance tolerance is only valid at the date delivery and according specified measurement criteria.
•Do not use the capacitors under high humidity, high temperature nor under high or low atmospheric pressure which may affect capacitors
reliability.
•Surface temperature including self-heating must be kept below the maximum operating temperature.
•The temperature rise of the capacitor´s temperature compared to ambient temperature shall be below 20°C.
•Avoid any water or heavy dust on capacitors surface, which may cause electrical leakage, damage, overheating or corrosion.
2.3 Operating load conditions
•Do not use the capacitor with any higher than specified voltage.
•Violation of the technical product specifications such as exceeding the specified voltage will void the warranty.
•Operating voltage across the terminals including AC and DC peaks and AC or pulse overshooting, Vp-p as well as irregular voltage becau-
se of resonance or switching must be below the rated voltage.
•Due to self-heating the reliability of the capacitor may be reduced, if high frequency AC or pulse is applied.
•Avoid any overload or conditions that are not specified in the capacitors datasheet.
•Consider carefully possible specific changes of electrical characteristics like capacitance over temperature, voltage and time as well as
the specific performance over frequency for the actual use conditions. For detailed information see datasheet.
2.4 Design of the P.C. board
•The chip capacitor shall be located to minimize any possible mechanical stress from deflection or board wrap.
•It is recommended to position the chip capacitor in parallel to slits and perforations and as far away from slits, perforations, separation
points, screw holes, frames and edges of the P.C. board to avoid mechanical stress.
•Determine the shape and size of the solder pads to have proper amount of solder on the terminations as the amount of solder at the ter-
minations has a direct effect on the reliability of the capacitor.
•Provide individual solder pads for each termination. Solder pads are specified in the datasheet.
•The PCB design (e.g. land pattern design and grounding planes) must be evaluated for each individual circuit to achieve the optimal sol-
dering results.
2.5 Mounting
•Avoid any stress from the mounting head to avoid cracks.
•Adjust the bottom dead center of the mounting head not to press on the P.C. board surface.
•The mounting head pressure has to be adjusted to 1 N up to 3 N of static force.
•Provide support from the bottom side of the P.C. board by a support pin for minimizing the impact energy from the mounting head.
•Provide sufficient close up dimension, preventive maintenance and replacement of the centering jaw to avoid a crack when it is worn out.
2.6 Adhesive
Selection of adhesive
•The adhesive should have sufficient coating and viscosity and should harden rapidly.
•The adhesive should be strong enough to hold parts on the board during the mounting and solder process and should have sufficient
strength at high temperatures.
•The adhesive should have corrosion resistance, excellent insulation characteristics and no emission of toxic gasses nor any effect on the
human body.
•Do not use too much adhesive to avoid pollution of the soldering pads.
DESCRIPTION
WCAP-CSGP Ceramic Capacitors
Würth Elektronik eiSos GmbH & Co. KG
EMC & Inductive Solutions
Max-Eyth-Str. 1
74638 Waldenburg
Germany
Tel. +49 (0) 79 42 945 - 0
www.we-online.com
eiSos@we-online.com
Order.- No.
SIZE
A4
1.0
REV
2014-11-06
DATE
SSt
BY
PSL
CHECKED
885012006014
Size: 0603
This electronic component has been designed and developed for usage in general electronic equipment only. This product is not authorized for use in equipment where a higher safety standard and reliability standard is especially required or where a failure of the product is reasonably expected to cause severe personal injury or death, unless the parties have executed an agreement specifically governing such use.
Moreover Würth Elektronik eiSos GmbH & Co KG products are neither designed nor intended for use in areas such as military, aerospace, aviation, nuclear control, submarine, transportation (automotive control, train control, ship control), transportation signal, disaster prevention, medical, public information network etc.. Würth Elektronik eiSos GmbH & Co KG must be informed about the intent of such usage before
the design-in stage. In addition, sufficient reliability evaluation checks for safety must be performed on every electronic component which is used in electrical circuits that require high safety and reliability functions or performance.
[Transfer] [font=宋体, SimSun]Among the loads, the voltage stabilizer plays a more important role. The voltage stabilizer can provide stable AC and DC power to the load. For different circuits, the swit...
The peripheral connections of mega16 are as follows: the phase difference pulse signal is input from the PD6 port, and the phase difference relationship judgment signal is input from the PD7 port (the...
According to statistics, 50% of Bluetooth technology is used for embedded and bundled mobile phones, 30% is used for Bluetooth headsets, and a total of 80% of Bluetooth products are related to mobile ...
RT, I saw that the National Technology N32G457 has a complete port of RT-Thread, so I want to see if the N32WB452 has it. The RT-Thread routines in the N32WB452 software suite are only the nano versio...
1. Several nouns
ABI:
The specifications that an executable file must follow in order to run in a specific execution environment;
Separately generated relocatabl...[Details]
In recent years, with the increasing demand for manufacturing and automated production management, industrial barcode scanners have gradually become an indispensable part of the industrial manufact...[Details]
Whether it is an electric car or an ordinary fuel car, for the vast majority of car buyers, the final cost of use is what they care about most. For fuel cars, how to save fuel is what drivers care ...[Details]
Limited vocabulary recognition
According to the number of characters, words or short sentences in the vocabulary, it can be roughly divided into: less than 100 is small vocabulary; 100-1000 is...[Details]
Amidst the wave of intelligent automotive transformation, advanced driver assistance is gradually emerging from cutting-edge technology into the mainstream, becoming a new frontier of industry comp...[Details]
Recently, South Korean robotics giant WIRobotics launched its first general-purpose humanoid robot, ALLEX, at the Robotics Innovation Center (RIH) at the Korea University of Science and Technology....[Details]
1 Source of creativity
With the further development of electronic technology, electronic pets have gradually entered people's family life. At present, there are two main categories of relative...[Details]
Have you ever heard stories about "crazy appliances"? Think of microwaves that turn on automatically or ovens that preheat without any human input? With radios and electromagnetic interfaces ubiqui...[Details]
With the development of science, the use of variable frequency technology is becoming more and more widespread, and it is used in both industrial equipment and household appliances. Inverter air co...[Details]
Charging is a familiar process for new energy vehicles, and as a source of battery energy, charging piles are crucial. New energy vehicle charging can be divided into fast charging and slow chargin...[Details]
During daily operation of an R-type power transformer, the voltage used varies as the equipment being used adjusts. This raises the question: can the transformer change voltage at this point? The a...[Details]
To improve the lateral active safety of intelligent connected vehicles, the identification and definition of unexpected functional safety scenarios for the EPS (Electronic Steering System) ...[Details]
Common methods for troubleshooting roller press bearing wear include repair welding, thermal spraying, brush plating, and scrapping and replacement. However, these methods are often subject to asse...[Details]
As the range of electric vehicles continues to increase, driving electric vehicles for long-distance travel has become a trend. For high-speed travel, how much impact will high-speed driving of ele...[Details]
For today's new energy vehicles, they have different configurations from fuel vehicles, and some configurations have also become a selling point for manufacturers. Compared with traditional vehicle...[Details]