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ER9.5/2.5/5-3F3-A160-S
Transformer Cores, Planar ER Core, Planar ER, ER9.5, 3F3, 14.2 mm, 8.47 mm²
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: FERROXCUBE
- Product type: Transformer Cores
- Core Type:Planar ER; Core Size:ER9.5; Core Material Grade:3F3; For Use With:-; Effective Magnetic Path Length:14.2mm; Ae Effective Cross Section Area:8.47mm²; Inductance Factor Al:160nH; Pro
- Core Size: ER9.5
- Core Type: Planar ER
- For Use With: -
- Product Range: -
- Core Material Grade: 3F3
- Inductance Factor Al: 160nH
- Effective Magnetic Path Length: 14.2mm
- Ae Effective Cross Section Area: 8.47mm²
| Delivery and price | |
|---|---|
| Units per pack | 1 |
| Price | 1.34 € |
| Current stock | 10+ |
| Lead time | 30 days |
_**FERROXCUBE**_ **ER9.5/2.5/5** Planar ER cores and accessories Supersedes data of September 2004 2008 Sep 01 **==> picture [347 x 67] intentionally omitted <==** Ferroxcube ## Planar ER cores and accessories ## ER9.5/2.5/5 ## **CORE SETS** ## **Effective core parameters** |**SYMBOL**|**PARAMETER**|**VALUE**|**UNIT**| |---|---|---|---| |Σ(I/A)|core factor (C1)|1.67|mm−1| |Ve|effective volume|120|mm3| |Ie|effective length|14.2|mm| |Ae|effective area|8.47|mm2| |Amin|minimum area|7.60|mm2| |m|mass of core half|≈0.35|g| **==> picture [242 x 277] intentionally omitted <==** **----- Start of picture text -----**<br> handbook, halfpage<br>1.6 [+][0.15] 2.45<br>0<br>±0.05<br>9.5 −0.3 [0 ]<br>7.5 [+][0.25]<br>0<br>7.1 [+][0.2]<br>0<br>3.5 −0.2 [0 ]<br>5 −0.2 [0 ]<br>CBW092<br>Dimensions in mm.<br>Fig.1 ER9.5/2.5/5 core half.<br>**----- End of picture text -----**<br> **Core sets for general purpose transformers and power applications** Clamping force for AL measurements, 10 ±5 N. |**GRADE**|**AL**<br>**(nH)**|µ**e**|**AIR GAP**<br>**(**µ**m)**|**TYPE NUMBER**| |---|---|---|---|---| |3C92|750 ±25%|≈1000|≈0|ER9.5/2.5/5-3C92-S| |3C93|850 ±25%|≈1130|≈0|ER9.5/2.5/5-3C93-S| |3C94|63 ±3%|≈84|≈200|ER9.5/2.5/5-3C94-A63-S| ||100 ±5%|≈133|≈120|ER9.5/2.5/5-3C94-A100-S| ||160 ±8%|≈213|≈70|ER9.5/2.5/5-3C94-A160-S| ||1000 ±25%|≈1330|≈0|ER9.5/2.5/5-3C94-S| |3C95|1150 ±25%|≈1540|≈0|ER9.5/2.5/5-3C95-S| |3C96|900 ±25%|≈1200|≈0|ER9.5/2.5/5-3C96-S| |3F3|63 ±3%|≈84|≈200|ER9.5/2.5/5-3F3-A63-S| ||100 ±5%|≈133|≈120|ER9.5/2.5/5-3F3-A100-S| ||160 ±8%|≈213|≈70|ER9.5/2.5/5-3F3-A160-S| ||850 ±25%|≈1130|≈0|ER9.5/2.5/5-3F3-S| |3F35|700 ±25%|≈930|≈0|ER9.5/2.5/5-3F35-S| |3F4|40 ±3%|≈53|≈340|ER9.5/2.5/5-3F4-A40-S| ||63 ±5%|≈84|≈190|ER9.5/2.5/5-3F4-A63-S| ||100 ±5%|≈133|≈100|ER9.5/2.5/5-3F4-A100-S| ||525 ±25%|≈700|≈0|ER9.5/2.5/5-3F4-S| |3F45|525 ±25%|≈700|≈0|ER9.5/2.5/5-3F45-S| 2008 Sep 01 2 Ferroxcube ## Planar ER cores and accessories ## ER9.5/2.5/5 ## **Core sets of high permeability grades** Clamping force for AL measurements, 10 ±5 N. |**GRADE**|**AL**<br>**(nH)**|µ**e**|**AIR GAP**<br>**(**µ**m)**|**TYPE NUMBER**| |---|---|---|---|---| |3E5|3600 +40/−30%|≈4800|≈0|ER9.5/2.5/5-3E5-S| |3E6|4800 +40/−30%|≈6400|≈0|ER9.5/2.5/5-3E6-S| ## **Properties of core sets under power conditions** |**GRADE**|**B (mT) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**| |---|---|---|---|---|---|---| ||**H = 250 A/m;**<br>**f = 25 kHz;**<br>**T = 100**°**C**|**f = 100 kHz;**<br>**= 100 mT;**<br>**T = 100**°**C**<br>**B**ˆ|**f = 100 kHz;**<br>**= 200 mT;**<br>**T = 25** °**C**<br>**B**ˆ|**f = 100 kHz;**<br>**= 200 mT;**<br>**T = 100**°**C**<br>**B**ˆ|**f = 400 kHz;**<br>**= 50 mT;**<br>**T = 100** °**C**<br>**B**ˆ|**f = 500 kHz;**<br>**= 50 mT;**<br>**T = 100**°**C**<br>**B**ˆ| |3C92|≥370|≤0.011|−|≤0.072|−|−| |3C93|≥320|≤0.011(1)|−|≤0.072(1)|−|−| |3C94|≥320|≤0.011|−|≤0.072|−|−| |3C95|≥320|−|≤0.07|≤0.07|−|−| |3C96|≥340|≤0.0085|−|≤0.058|≤0.018|≤0.045| |3F3|≥300|≤0.015|−|−|≤0.025|−| |3F35|≥300|−|−|−|≤0.011|≤0.016| |3F4|≥250|−|−|−|−|−| 1. Measured at 140 °C. ## **Properties of core sets under power conditions (continued)** |**GRADE**|**B (mT) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**|**CORE LOSS (W) at**| |---|---|---|---|---|---| ||**H = 250 A/m;**<br>**f = 25 kHz;**<br>**T = 100**°**C**|**f = 500 kHz;**<br>**= 100 mT;**<br>**T = 100** °**C**<br>**B**ˆ|**f = 1 MHz;**<br>**= 30 mT;**<br>**T = 100** °**C**<br>**B**ˆ|**f = 1 MHz;**<br>**= 50 mT;**<br>**T = 100**°**C**<br>**B**ˆ|**f = 3 MHz;**<br>**= 10 mT;**<br>**T = 100**°**C**<br>**B**ˆ| |3F35|≥300|≤0.13|−|−|−| |3F4|≥250|−|≤0.036|−|≤0.056| |3F45|≥250|−|≤0.027|≤0.1|≤0.048| 2008 Sep 01 3 Ferroxcube ## Planar ER cores and accessories ## ER9.5/2.5/5 ## **COIL FORMERS** ## **General data** **==> picture [497 x 370] intentionally omitted <==** **----- Start of picture text -----**<br> PARAMETER SPECIFICATION<br>Coil former material liquid crystal polymer (LCP), glass reinforced, flame retardant<br>in accordance with “UL 94V-0” ; UL file number E54705(M)<br>Pin material copper-tin alloy (CuSn), tin (Sn) plated<br>Maximum operating temperature 155 °C, “IEC 60085” , class F<br>Resistance to soldering heat “IEC 60068-2-20” , Part 2, Test Tb, method 1B: 350 °C, 3.5 s<br>Solderability “IEC 60068-2-20” , Part 2, Test Ta, method 1: 235 °C, 2 s<br>∅7.3 ±0.1 1.6<br>∅4.45<br>handbook, full pagewidth±0.08 1.7<br>∅3.6<br>±0.08<br>2.95 2.05<br>±0.1 min. 4.4<br>max. 9.1<br>2 0.7 8.1 0.25<br>6 11.7 max.<br>8.6 max.<br>2 CBW093<br>Dimensions in mm.<br>Fig.2 ER9.5/2.5/5 coil former (SMD); 8-solder pads.<br>**----- End of picture text -----**<br> ## **Winding data and area product for ER9.5/2.5/5 coil former (SMD) with 8 solder pads** |**NUMBER OF**<br>**SECTIONS**|<br>**WINDING**<br>**AREA**<br>**(mm2)**|**MINIMUM**<br>**WINDING**<br>**WIDTH**<br>**(mm)**|**AVERAGE**<br>**LENGTH OF**<br>**TURN**<br>**(mm)**|**AREA**<br>**PRODUCT**<br>**Ae x Aw**<br>**(mm4)**|**TYPE NUMBER**| |---|---|---|---|---|---| |1|2.8|2.05|18.4|23.7|CPVS-ER9.5-1S-8P-Z| 2008 Sep 01 4 Ferroxcube ## Planar ER cores and accessories ## ER9.5/2.5/5 ## **MOUNTING PARTS** ## **General data and ordering information** |**ITEM**|**REMARKS**|**FIGURE**|**TYPE NUMBER**| |---|---|---|---| |Clamp|stainless steel (CrNi); clampingforce≈20 N|3|CLM-ER9.5| **==> picture [242 x 228] intentionally omitted <==** **----- Start of picture text -----**<br> handbook, halfpage 9.8<br>4<br>5.5<br>CBW094<br>Dimensions in mm.<br>Fig.3 ER9.5/2.5/5 clamp.<br>**----- End of picture text -----**<br> 2008 Sep 01 5 Ferroxcube ER9.5/2.5/5 Planar ER cores and accessories ## **DATA SHEET STATUS DEFINITIONS** |**DATA SHEET**<br>**STATUS**|**PRODUCT**<br>**STATUS**|**DEFINITIONS**| |---|---|---| |Preliminary<br>specification|Development|This data sheet contains preliminary data. Ferroxcube reserves the right to<br>make changes at any time without notice in order to improve design and<br>supplythe best possible product.| |Product specification|Production|This data sheet contains final specifications. Ferroxcube reserves the right<br>to make changes at any time without notice in order to improve design and<br>supplythe best possible product.| ## **DISCLAIMER** **Life support applications** These products are not designed for use in life support appliances, devices, or systems where malfunction of these products can reasonably be expected to result in personal injury. Ferroxcube customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify Ferroxcube for any damages resulting from such application. ## **PRODUCT STATUS DEFINITIONS** |**STATUS**|**INDICATION**|**DEFINITION**| |---|---|---| |**Prototype**||These are products that have been made as development samples for the purposes of<br>technical evaluation only. The data for these types is provisional and is subject to<br>change.| |**Design-in**||These products are recommended for new designs.| |**Preferred**||These products are recommended for use in current designs and are available via our<br>sales channels.| |**Support**||These products are**not**recommended for new designs and may not be available<br>through all of our sales channels. Customers are advised to check for availability.| 2008 Sep 01 6
Updated at April 28, 2026
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