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Rev Date: 06/18/2012 3 www.seielect.com
This specification may be changed at any time without prior notice marketing@seielect.com
Please confirm technical specifications before you order and/or use.
RNCP Series
High Power Anti-Sulfur Thin Film Chip Resistor
Stackpole Electronics, Inc.
Resistive Product Solutions
High Power Chip Resistors and Thermal Management
Stackpole has developed several surface mount resistor series in addition to our current sense resistors,
which have had higher power ratings than standard resistor chips. This has caused some uncertainty and
even confusion by users as to how to reliably use these resistors at the higher power ratings in their designs.
The data sheets for the RHC, RMCP, RNCP, CSR, CSRN, CSRF, CSS, and CSSH state that the rated
power assumes an ambient temperature of no more than 100 degrees C for the CSS / CSSH series and 70
degrees C for all other high power resistor series. In addition, IPC and UL best practices dictate that the
combined temperature on any resistor due to power dissipated and ambient air shall be no more than 105C.
At first glance this wouldn’t seem too difficult, however the graph below shows typical heat rise for the CSR
½ 100 milliohm at full rated power. The heat rise for the RMCP and RNCP would be similar. The RHC with
its unique materials, design, and processes would have less heat rise and therefore would be easier to
implement for any given customer.
The 102 degrees C heat rise shown here would indicate there will be additional thermal reduction techniques
needed to keep this part under 105C total hot spot temperature if this part is to be used at 0.75 watts of
power. However, this same part at the usual power rating for this size would have a heat rise of around 72
degrees C. This additional heat rise may be dealt with using wider conductor traces, larger solder pads and
land patterns under the solder mask, heavier copper in the conductors, vias through PCB, air movement, and
heat sinks, among many other techniques. Because of the variety of methods customers can use to lower
the effective heat rise of the circuit, resistor manufacturers simply specify power ratings with the limitations
on ambient air temperature and total hot spot temperatures and leave the details of how to best accomplish
this to the design engineers. Design guidelines for products in various market segments can vary widely so it
would be unnecessarily constraining for a resistor manufacturer to recommend the use of any of these
methods over another.
Note: The final resistance value can be affected by the board layout and assembly process, especially the size of the
mounting pads and the amount of solder used. This is especially notable for resistance values ≤ 50 mΩ.
This should be taken into account when designing.