ERA-S15J103V Panasonic - ECG, ERA-S15J103V Datasheet - Page 4

RES 10K OHM 1/10W 1500PPM 5%0805

ERA-S15J103V

Manufacturer Part Number
ERA-S15J103V
Description
RES 10K OHM 1/10W 1500PPM 5%0805
Manufacturer
Panasonic - ECG
Series
ERASr
Datasheet

Specifications of ERA-S15J103V

Resistance (ohms)
10K
Power (watts)
0.1W, 1/10W
Composition
Metal Film
Temperature Coefficient
±1500ppm/°C
Tolerance
±5%
Size / Dimension
0.079" L x 0.049" W (2.00mm x 1.25mm)
Height
0.020" (0.50mm)
Lead Style
Surface Mount (SMD - SMT)
Package / Case
0805 (2012 Metric)
Resistance In Ohms
10.0K
Case
0805 (2012 metric)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Other names
ERAS15J103V
P10KCBTR
The following are precautions for individual products. Please also refer to the precautions common to Fixed Resistors
shown on page ER2 of this catalog.
1. Keep the rated power and ambient temperature within the specifi ed derating curve.
2. If a transient load (heavy load in a short time) like a pulse is expected to be applied, check and evaluate the operations
3. Do not use halogen-based or other high-activity fl ux. Otherwise, the residue may impair the resistors' per for mance
4. When soldering with a soldering iron, never touch the resistors' bodies with the tip of the soldering iron. When using a
5. As the amount of applied solder becomes larger, the mechanical stress applied to the resistors increases, causing
6. When the resistors' protective coatings are chipped, fl awed, or removed, the characteristics of the resistors may be
7. Do not apply shock to the resistors or pinch them with a hard tool (e.g. pliers and tweezers). Otherwise, the resistors'
8. Avoid excessive bending of printed circuit boards in order to protect the resistors from abnormal stress.
9. Do not immerse the resistors in solvent for a long time. Before using solvent, carefully check the effects of im mer sion.
Design and specifi cations are each subject to change without notice. Ask factory for the current technical specifi cations before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Recommended Soldering Conditions
Recommendations and precautions are described below.
* When positioning and mounting Metal Film Thermosensitive Chip Resistors (hereafter called the resistors), make
allowance for the effect of heat generated through close contact between the resistors and neigh bor ing components
and for the temperature rise of adjacent heat-generating components.
of the resistors when installed in your products before use.
When applying pulses to the resistors, keep the pulse peak within the rated voltage.
and/or reliability.
soldering iron with a high temperature tip, fi nish soldering as quickly as possible (within three seconds at 350 °C max.).
problems such as cracks and faulty characteristics. Avoid applying an excessive amount of solder.
impaired. Take special care not to apply mechanical shock during automatic mounting or cause damage during
handling of the boards with the resistors mounted.
protective coatings and bodies may be chipped, affecting their performance.
● Recommended soldering conditions for refl ow
● Recommended soldering conditions for fl ow
· Refl ow soldering shall be performed a maximum of
· Please contact us for additional information when
· Please measure the temperature of the terminals
Safety Precautions
two times.
used in conditions other than those specifi ed.
and study every kind of solder and printed circuit
board for solderability be fore ac tu al use.
Preheating
Soldering
Preheating
Peak
Time
140 °C to 180 °C
Temperature
245 ± 5 °C
Heating
For soldering
60 s to 120 s
20 s to 30 s
Time
Metal Film Thermosensitive Chip Resistors
For soldering (Example : Sn/Pb)
For lead-free soldering (Example : Sn/Ag/Cu)
Preheating
Main heating
Peak
Preheating
Main heating
Peak
150 °C to 180 °C
Temperature
max. 260 °C
140 °C to 160 °C
150 °C to 180 °C
For lead-free soldering
Above 200 °C
Above 230 °C
Temperature
Temperature
max. 260 °C
235 ± 5 °C
60 s to 120 s
max. 10 s
60 s to 120 s
60 s to 120 s
30 s to 40 s
30 s to 40 s
max. 10 s
Time
max. 10 s
Time
Time
00
Sep. 2010

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