Image not available
Illustrative purposes only
3613C470K
Wirewound Inductor, 47 µH, 5 ohm, 10 MHz, 140 mA, 1812 [4532 Metric], 3613C
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: Sigmainductors
- Product type: Wirewound Inductors
- Inductance: 47µH
- Core Material: Ferrite
- Product Range: 3613C
- Product Width: 3.2mm
- Product Height: 3.2mm
- Product Length: 4.5mm
- DC Current Rating: 140mA
- DC Resistance Max: 5ohm
- Inductor Case Style: 1812 [4532 Metric]
- Inductance Tolerance: ± 10%
- Inductor Construction: Shielded
- Inductor Case / Package: 1812 [4532 Metric]
- Self Resonant Frequency: 10MHz
| Delivery and price | |
|---|---|
| Units per pack | 5000 |
| Price | 0.258 € |
| Current stock | 1000+ |
| Lead time | 7 days |
**MEGGITT SIGMA MOULDED INDUCTORS, THIN FILM INDUCTORS FOR HIGH FREQUENCY APPLICATIONS, POWER CHOKES, FERRITE BEADS FOR EMC PROTECTION** ## Moulded Chip Inductor 18:12 **TYPE 3613C SERIES** Specially developed for automatic mounting applications, this exciting range of chip inductors are ferrite based and sealed in a thermoset plastic body. They employ solder coated copper terminations with barrier layer. Customers can therefore expect consistent quality, performance and reliability. Its smooth top surface makes it particulary well suited to pick and place equipments. Truly the last word in 1812 chip inductors. ## **MEGGITT SIGMA KEY FEATURES** **HIGH RELIABILITY** **TWO VERSATILE TYPES SMALL, VERSATILE SIZE - 3.2 x 4.5mm TEMPERATURE RANGE -25°C to +100°C SUPPLIED IN STANDARD CARRIER TAPE SUITABLE FOR DIP AND WAVE SOLDER INSULATION 1000M R min AVAILABLE FROM STOCK** ## **MEGGITT ELECTRONIC COMPONENTS** **SALES ACTION DESK TEL: (01793 611666) FAX: (01793 611777) EMAIL: sales@megelec.co.uk WEB SITE: www.megelec.co.uk** **LOG No FO628** **Issue 2** **4 Pages** **04-00** **SPECIFICATIONS** **TYPE 3613C SERIES Page 2 of 4** ## **3613C Style Operating Characteristics** |**Nominal**<br>**Inductance**<br>**(****`m`H)**|**Value Coding**<br>**Marking**|**Inductance**<br>**Tolerance**<br>**(±%)**|**Q**<br>**(min)**|**Self-resonant**<br>**Frequency**<br>**(MHz) (min)**|**DC**<br>**Resistance**<br>**(****`W` max)**|**Allowance**<br>**DC**<br>**(mA)**|**Measuring**<br>**Frequency**<br>**(MHz)**| |---|---|---|---|---|---|---|---| |0.10<br>0.12<br>0.15<br>0.18<br>0.22<br>0.27<br>0.33<br>0.39<br>0.47<br>0.56<br>0.68<br>0.82<br>1.0<br>1.2<br>1.5<br>1.8<br>2.2<br>2.7<br>3.3<br>3.9<br>4.7<br>5.6<br>6.8<br>8.2<br>10.0<br>12.0<br>15.0<br>18.0<br>22.0<br>27.0<br>33.0<br>39.0<br>47.0<br>56.0<br>68.0<br>82.0<br>100<br>120<br>150<br>180<br>220<br>270<br>330<br>390<br>470<br>560<br>680<br>820<br>1000|R10M<br>R12M<br>R15M<br>R18M<br>R22M<br>R27M<br>R33M<br>R39M<br>R47M<br>R56M<br>R68M<br>R82M<br>1R0K<br>1R2K<br>1R5K<br>1R8K<br>2R2K<br>2R7K<br>3R3K<br>3R9K<br>4R7K<br>5R6K<br>6R8K<br>8R2K<br>100K<br>120K<br>150K<br>180K<br>220K<br>270K<br>330K<br>390K<br>470K<br>560K<br>680K<br>820K<br>101K<br>121K<br>151K<br>181K<br>221K<br>271K<br>331K<br>391K<br>471K<br>561K<br>681K<br>821K<br>102K|±20%|35|300<br>280<br>250<br>220<br>200<br>180<br>165<br>150<br>145<br>140<br>135<br>130<br>100<br>80<br>70<br>60<br>55<br>50<br>45<br>40<br>35<br>33<br>27<br>25<br>20<br>18<br>17<br>15<br>13<br>12<br>11<br>10<br>10<br>9.0<br>9.0<br>8.0<br>8.0<br>6.0<br>5.0<br>5.0<br>4.0<br>4.0<br>3.5<br>3.0<br>3.0<br>3.0<br>3.0<br>2.5<br>2.5|0.18<br>0.20<br>0.22<br>0.24<br>0.25<br>0.26<br>0.28<br>0.30<br>0.32<br>0.36<br>0.40<br>0.45<br>0.50<br>0.55<br>0.60<br>0.65<br>0.70<br>0.75<br>0.80<br>0.90<br>1.00<br>1.10<br>1.20<br>1.40<br>1.60<br>2.00<br>2.50<br>2.80<br>3.20<br>3.60<br>4.00<br>4.50<br>5.00<br>5.50<br>6.00<br>7.00<br>8.00<br>8.00<br>9.00<br>9.50<br>10.0<br>12.0<br>14.0<br>18.0<br>26.0<br>30.0<br>30.0<br>35.0<br>40.0|800<br>770<br>730<br>700<br>665<br>635<br>605<br>575<br>545<br>520<br>500<br>475<br>450<br>430<br>410<br>390<br>380<br>370<br>355<br>330<br>315<br>300<br>285<br>270<br>250<br>225<br>200<br>190<br>180<br>170<br>160<br>150<br>140<br>135<br>130<br>120<br>110<br>110<br>105<br>102<br>100<br>92<br>85<br>80<br>62<br>50<br>50<br>30<br>30|25.2| ||||40||||| |||±10%|50||||7.96| ||||||||2.52| ||||40||||0.796| ||||30||||| ||||||||0.252| 5% Tolerance available on selected value ranges. Please enquire. ## **SPECIFICATIONS** ## **TYPE 3613C SERIES Page 3 of 4** ## DIMENSIONS **==> picture [13 x 8] intentionally omitted <==** **----- Start of picture text -----**<br> 1.0<br>**----- End of picture text -----**<br> ## PACKAGING (REEL) ## PACKAGING (TAPE) **==> picture [230 x 123] intentionally omitted <==** **----- Start of picture text -----**<br> 16.4<br>TT" 2±0.5<br>O13±0.5<br>i /<br>Reel Qty. oR<br>500 pcs. -——“eocr’ ~Cn O21±0.5<br>Po: Bl<br>| | '<br>ee O178 14±1.5<br>21 50<br>**----- End of picture text -----**<br> ## ENVIRONMENTAL ## TEST NOTES Insulation: 1000 Meg ohms The measuring method for the test data given overpage are as follows: Temperature Range: -20°C to +100°C Inductance: Direct reading from Q-meter (equivalent to YHP 4342A, jig used) `D` L/L within ± 10% Q: Direct reading from Q-meter (equivalent to YHP 4342A, jig used) Humidity Load life: `D` L/L within ± 5% Self resonant frequency: Grid Dipo Meter (equivalent to Measurement M159) DC resistance: Wheatstone bridge (equivalent to YEW 2755) Vibration (see test method): Unless otherwise specified, the temperature is 20°C ± 5°C and the humidity is 65% ± 20% ## HOW TO ORDER 3613C 1R5 K **Standard Part Inductance Tolerance** 3613C - Value Code J - ±5% 18:12 Inductor (See Table) K - ±10% M - ±20% ## **TEST METHODS** ## **TYPE 3613C SERIES Page 4 of 4** |**ITEM**|**STANDARD**|**TEST METHOD**| |---|---|---| |**DC SUPERPOSITION**|DL/L Within -10%|When the allowable current was applied, the| |**CHARACTERISTICS**||inductance was measured with a YHP 4262A and<br>compared with the initial value.| |**TEMPERATURE**|Within 20°C|When the allowable current was applied, the| |**RISE**||amount of temperature rise was measured by the<br>change in resistance.| |**TEMPERATURE**|DL/L Within ± 5%|Measurements were taken in a temperature range of| |**RISE**||-25°C to 85°C and the value at +20°C was used as<br>the standard value.| |**OVERCURRENT**|No smoke and no fire|Twice the allowable current was applied for a| |**TEST**||period of five minutes.| |**SOLDERING HEAT**|No pronounced abnormality|Immersion twice for a period of 5 ± 0.5 seconds| |**RESISTANCE TEST**|in appearance|in H63A solder at a temperature 260°C<br>± 5°C| |**SOLDERABILITY**|Not less than 90% bonding to|Immersion for a period of 2 ± 0.5 seconds in| ||electrode surfaces|H63A solder at a temperature of 230 ± 5°C. Flux| |||used was a rosin-core solution containing| |||approximately 25% methanol.| |**INSULATION**|Not less than 1000 M|0.3mm diameter copper wires were wound around| |**RESISTANCE**||the coils three times and measurements were taken<br>after 250VDC was applied between the wire and the| |||terminals for a period of 1 minute.| |**TENSILE**|No seperation from substrate|After the inductors were soldered to substrates, a| |**STRENGTH TEST**||force of 1.0kg was applied in both the x and y<br>directions for a period of 5 seconds.| |**STRESS TEST**|No breakage|After the inductors were mounted on substrates,| |||1-mins. 10-55-10 cycle per seconds sweeps| |||1.5mm stroke vibrations were applied for 2 hrs.| |||each in the X, Y and Z directions| |**DROP TEST**|No pronounced abnormality in|The inductors were dropped 10 times from a| ||appearance|height of 1.0 metre onto a concrete floor.| |**VIBRATION TEST**|DL/L Within ± 10%|After the inductors were mounted on substrates,| ||Q Not less than 30|1-mins. 10-55-10 cycle per seconds sweeps| |||1.5mm stroke vibrations were applied for 2 hours| |||each in the X, Y and Z directions| |**HUMIDITY RESISTANCE**|DL/L Within ± 10%|Measurements were taken after the allowable| |**LOAD TEST**|Q Not less than 30|current was applied while the inductors were<br>stored at 60°C ± 2°C in 90 to 95% RH for a| |||period of 500 hours.| |**LOW TEMPERATURE**|DL/L Within ± 10%|Measurements were taken after the inductors were| |**RESISTANCE TEST**|Q Not less than 30|stored at -40°C ± 2°C for period 1000 hours.| |**TEMPERATURE**|DL/L Within ± 10%|Measurements were taken after the inductors were| |**CYCLE TEST**|Q Not less than 30|stored for 30 minutes, during which they were<br>subjected to 20 temperature cycles of between| |||-25°C and +85°C.| |**HIGH TEMPERATURE**|DL/L Within ± 10%|Measurements were taken after the allowable was| |**RESISTANCE**<br>**LOAD TEST**|Q Not less than 30|applied while the inductors were stored at 85°C<br>for a period of 1000 hours.| Meggitt Electronic Components Ltd. Ohmic House, Westmead Industrial Estate, Swindon, Wilts. SN5 7US Telephone:(01793)487301(Admin.) (01793)611666 (Sales) Email:sales@megelec.co.uk Fax:(01793) 611777 Nj This publication is issued to provide outline information only and (unless specifically agreed to the contrary by the Company in writing) is not to form part of any order This publication is issued to provide outline information only and (unless specifically agreed to the contrary by the Company in writing) is not to form part of any order or be regarded as a representation relating to the products or service concerned. We reserve the right to alter without notice the specification, design, price or conditions of supply of any product or service. Whilst Meggitt Electronic Components products are of the very highest quality and reliability, all electronic components can occasionally be subject to failure. Where failure of a Meggitt Electronic Components product could result in life threatening consequences, then the circuit and application must be discussed with the Company. Such areas might include ECG, respiratory. and other medical and nuclear applications and any non fail safe applications circuit.
Updated at February 9, 2023
About Novapart
Novapart is a B2B electronic component broker specialising in stock shortages and cost reduction. We source hard-to-find parts and identify compliant alternatives across a catalogue of 410,000+ components from 500+ manufacturers.
Learn more →Stock Shortage Specialist
When a component is unavailable, discontinued or has an unacceptable lead time, we tap into our network of vetted European and Asian distributors to source what you need — without compromising on quality or traceability.
Request a quote →Compliant Alternatives
We identify pin-to-pin, electrically equivalent substitutes that meet the same certifications (RoHS, AEC-Q100, REACH) as your original specification — validated against datasheets, not just part numbers. Often at a lower cost.
BOM Analysis service →