(TRWL) Wire Wound Chip Ceramic Inductor
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- Clementine Thompson
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1 Version: April 12, 2018 (TRWL) Wire Wound Chip Ceramic Inductor Token Electronics Industry Co., Ltd. Web: Taiwan: No.137, Sec. 1, Zhongxing Rd., Wugu District, New Taipei City, Taiwan, R.O.C Tel: Fax: China: 12F, Zhong Xing Industry Bld., Chuang Ye Road, Nan Shan District, Shen Zhen City, Guang Dong, China Tel: ; Fax:
2 Product Introduction Token Wire wound Ceramic Inductor Simplifies Power Management Issues. Features : Tighter of ±2%. Fully Automated Assembly. Smaller Size of 0402 (1005). Miniature ultra-compact size. High s, exceptional values. Low profile, High Current are Available. Applications : Remote Control, Security System, Wireless PDA. TCWLL, Wireless LAN / Mouse / Keyboard / Earphone. Cellular Phone (CDMA/GSM/PHS), Cordless Phone (DECT/CT1CT2). CATV Filter, VCO, RF Module & Other Wireless Products. Tunerk, Set Top Box, Base Station, Repeater GPS Receiver. USB 2.0, IEEE 1394, Cable Modem / XDSL Tuner. Token (TRWL) series is a wire wound and ceramic technology that offers the highest usable frequency range, highest current carrying capability, and the best factor of the three technologies. The combination of these three advantages ensures that design engineers will have the right product for many more high frequency applications than most competitors. High frequency inductors are specifically used for their frequency dependent properties. Depending on the technology, size and inductance value, the inductor will pass a certain desired range of frequencies, but will block or attenuate frequencies above the desired range. This eliminates high frequency noise or interference from communications signals. The Construction of Token (TRWL) open-type series chip wire wound ceramic inductors are designed to provide high s. The full (TRWL) series conform to the RoHS directive and Lead-free. Customed designs and tighter tolerances are available on request. Primarily, Token (TRWL) series as power inductors required by power supply circuits of multifunctional and small mobile phones must be small in size and low in height. These products must exhibit performance that is commensurate with the high power conversion efficiency of power supply circuits. Power supply circuits must also exhibit resistance to noise in the power supply state. All performance requirements of this component is expected based on the wire-wound inductors manufactured by Token. Application of specific designs also available including different inductance values and specifications adjusted to frequency requirements. The (TRWL) series is supplied in tape and reel packaging ready for use with automated assembly processes. Contact us with your specific needs. For more information, please link to Token official website RF Inductors. Page: 1/17
3 Configurations & Dimensions Configurations & Dimensions (Unit: mm) (TRWL) Series A Max. B Max. C Max. D Ref. E F G H I J Standard TRWL02 (EIA 0402) TRWL03 (EIA 0603) TRWL05 (EIA 0805) TRWL06 (EIA 1206) TRWL08 (EIA 1008) Low Profile TRWL05 (EIA 0805) TRWL08 (EIA 1008) High Current / High TRWL03 (EIA 0603) TRWL05 (EIA 0805) TRWL08 (EIA 1008) Reel Dimensions Tape Packing Dimensions Note: Color Coding: 0603 / 0805 / 1206 / 1008 Series (0402 Series is No Color Coding) Because of small sizes, these parts are marked with a single color dot. The inductance value represented by the dot is shown on the data page for each series. Page: 2/17
4 Reel & Packaging Packaging uantity & Reel Specifications (Unit: mm) (TRWL) Type Emboss Plastic Tape (PCS) TRWL Packaging uantity & Reel Specifications (TRWL) TRWL TRWL TRWL TRWL Emboss Plastic Tape Specifications (Unit: mm) (TRWL) s A ±0.10 B ±0.10 W ±0.2 E ±0.10 F ±0.1 P0 ±0.10 P1 ±0.10 P2 ±0.05 ΦD TRWL TRWL TRWL TRWL TRWL t ±0.05 Emboss Plastic Tape Specifications (TRWL) Page: 3/17
5 Mechanical Test Mechanical Performance Test (TRWL) Item Specification Test Method Vibration Test Resistance to Soldering-Heat Component Adhesion (Push Test) Drop Test Solderability Test Resistance to Solvent Test Appearance: No damage L change: within ±5% change: within ±10% 1 lbs. For lbs. For lbs. For the rest No damage 90% covered with solder. No damage on appearance and marking. Test device shall be soldered on the substrate Oscillation Frequency: 10 to 55 to 10Hz for 1min Amplitude: 1.5mm Time: 2hrs for each axis (X, Y & Z), total 6hrs Solder Temperature: 260±5 Immersion Time: 10±2sec The device should be soldered (260±5 for 10 seconds) to a tinned copper subs rate. A dynamiter force gauge should be applied to the side of the component. The device must with stand a minimum force of 2 or 4 pounds without a failure of adhesion on termination Dropping chip by each side and each corner. Drop 10 times in total Drop height: 100cm Drop weight: 125g Inductor shall be dipped in a melted solder bath at 235±5 for 5 seconds. MIL-STD202F, Method 215D Electrical Test Electrical Performance Test (TRWL) Item Specification Test Method DC Resistance RDC Rated Current Over Load Test Withstanding Voltage Test Refer to standard electrical characteristic spec. Inductors shall have no evidence of electrical and mechanical damage Inductors shall be no evidence of electrical and mechanical damage. HP4291B HP4291B HP8753D Micro-Ohm meter (Gom-801G) Applied the current to coils, The inductance change should be less than 10% to initial value Applied 2 times of rated allowed DC current to inductor for a period of 5 minute AC voltage of 500 VAC applied between inductors terminal and case for 1 minute. Insulation Resistance Test 1000M ohm min 100 VDC applied between inductor terminal and case Page: 4/17
6 Climatic Test Climatic Test (TRWL) Item Specification Test Method Temperature Characteristic Humidity Resistance Low Temperature Storage Test Thermal Shock Test High Temperature Storage Test High Temperature Load Life Test Humidity Load Life Appearance: No damage L change: within ±10% change: within ±20% There should be no evidence of short of open circuit. Note: Storage Temperature: 25±3 ; Humidity: <80%RH -40 ~+125 Temperature: 40±2 Relative Humidity: 90~95% Time: 96hrs±2hrs Measured after exposure in the room condition for 2hrs Temperature: -40±2 Time: 48±2hrs Inductors are tested after 1 hour at room temperature One cycle: Total: 5 cycles Step Temperature time ( ) 1-25± ± ± ±2 15 Temperature: 125±2 Time: 48±2hrs Measured after exposure in the room condition for 1hr Temperature: 85±2 Time: 1000±12hrs Load: Allowed DC current Temperature: 40±2 Relative Humidity: 90~95% Time: 1000±12hrs Load: Allowed DC current Page: 5/17
7 Standard Electrical Specifications Standard Electrical Specifications Standard (TRWL02) - EIA 250MHz (GHz) 900MHz 1.7GHz L L TRWL02*T1N TRWL02*T1N , TRWL02*T2N , TRWL02*T2N , TRWL02*T2N , TRWL02*T2N , TRWL02*T3N ,5, TRWL02*T3N ,5, TRWL02*T3N ,5, TRWL02*T4N ,5, TRWL02*T4N ,5, TRWL02*T5N ,5, TRWL02*T5N ,5, TRWL02*T6N ,5, TRWL02*T6N ,5, TRWL02*T7N ,5, TRWL02*T8N ,5, TRWL02*T8N ,5, TRWL02*T9N ,5, TRWL02*T9N ,5, TRWL02*T10N 10 10,5, TRWL02*T11N 11 10,5, TRWL02*T12N 12 10,5, TRWL02*T13N 13 10,5, TRWL02*T15N 15 10,5, TRWL02*T16N 16 10,5, TRWL02*T18N 18 10,5, TRWL02*T19N 19 10,5, TRWL02*T20N 20 10,5, TRWL02*T22N 22 10,5, TRWL02*T23N 23 10,5, TRWL02*T24N 24 10,5, TRWL02*T27N 27 10,5, TRWL02*T30N 30 10,5, TRWL02*T33N 33 10,5, TRWL02*T36N 36 10,5, TRWL02*T39N 39 10,5, TRWL02*T40N 40 10,5, TRWL02*T43N 43 10,5, TRWL02*T47N 47 10,5, TRWL02*T51N 51 10,5, TRWL02*T56N 56 10,5, TRWL02*T68N 68 10,5, Page: 6/17
8 Standard Electrical Specifications Standard (TRWL03) - EIA 0603 (GHz) 900MHz 1.7GHz Color L L Test 250MHz TRWL03*T1N , Blue TRWL03*T1N , Black TRWL03*T2N , White TRWL03*T2N ,5 16 > Yellow TRWL03*T3N ,5,2 22 > Red TRWL03*T3N ,5, Violet TRWL03*T3N ,5,2 22 > Brown TRWL03*T4N , Orange TRWL03*T4N , Gray TRWL03*T4N ,5, Violet TRWL03*T5N ,5, Green TRWL03*T5N ,5, Yellow TRWL03*T6N ,5, Black TRWL03*T6N ,5, Black TRWL03*T6N ,5, Red TRWL03*T7N ,5, Brown TRWL03*T8N ,5, Green TRWL03*T8N ,5, Yellow TRWL03*T9N ,5, Black TRWL03*T9N ,5, Blue TRWL03*T10N ,5, Orange TRWL03*T11N ,5, Gray TRWL03*T12N ,5, Yellow TRWL03*T15N ,5, Green TRWL03*T16N ,5, White TRWL03*T17N ,5, Red TRWL03*T18N ,5, Blue TRWL03*T20N ,5, Green TRWL03*T22N ,5, Violet TRWL03*T23N ,5, Orange TRWL03*T24N ,5, Black TRWL03*T27N ,5, Gray TRWL03*T30N ,5, Brown TRWL03*T33N ,5, White TRWL03*T36N ,5, Red TRWL03*T39N ,5, Black Test 200MHz TRWL03*T43N ,5, Orange TRWL03*T47N ,5, Brown TRWL03*T51N ,5, Blue TRWL03*T56N ,5, Red TRWL03*T62N ,5, Gray Page: 7/17
9 (GHz) 900MHz 1.7GHz Color L L TRWL03*T68N ,5, Orange Test 150MHz TRWL03*T72N ,5, Yellow TRWL03*T82N ,5, Green TRWL03*T91N ,5, Brown TRWL03*TR ,5, Blue TRWL03*TR ,5, Violet TRWL03*TR ,5, Gray TRWL03*TR ,5, White Test 100MHz TRWL03*TR ,5, Blue TRWL03*TR ,5, White TRWL03*TR ,5, Yellow TRWL03*TR ,5, Black TRWL03*TR ,5, Brown TRWL03*TR ,5, Violet TRWL03*TR ,5, Red TRWL03*TR ,5, Green TRWL03*TR ,5, Orange TRWL03*TR ,5, Blue TRWL03*TR ,5, Yellow Page: 8/17
10 Standard Electrical Specifications Standard (TRWL05) - EIA 0805 (GHz) TRWL05*T2N7 250MHz 10,5 1500MHz Brown TRWL05*T2N8 250MHz 10,5 1500MHz Gray TRWL05*T3N0 250MHz 10,5 1500MHz White Color TRWL05*T3N3 250MHz 10,5 1500MHz Black TRWL05*T5N6 250MHz 10,5 1000MHz Orange TRWL05*T6N2 250MHz 10,5 1000MHz Green TRWL05*T6N8 250MHz 10,5 1000MHz Brown TRWL05*T7N5 250MHz 10,5 1000MHz Green TRWL05*T8N2 250MHz 10,5 1000MHz Red TRWL05*T8N7 250MHz 10,5 1000MHz White TRWL05*T10N 250MHz 10,5,2 500MHz Blue TRWL05*T12N 250MHz 10,5,2 500MHz Orange TRWL05*T15N 250MHz 10,5,2 500MHz Yellow TRWL05*T18N 250MHz 10,5,2 500MHz Green TRWL05*T22N 250MHz 10,5,2 500MHz Blue TRWL05*T24N 250MHz 10,5,2 500MHz Gray TRWL05*T27N 250MHz 10,5,2 500MHz Violet TRWL05*T33N 250MHz 10,5,2 500MHz Gray TRWL05*T36N 250MHz 10,5,2 500MHz Orange TRWL05*T39N 250MHz 10,5,2 500MHz White TRWL05*T43N 200MHz 10,5,2 500MHz Yellow TRWL05*T47N 200MHz 10,5,2 500MHz Black TRWL05*T56N 200MHz 10,5,2 500MHz Brown TRWL05*T68N 200MHz 10,5,2 500MHz Red TRWL05*T72N 150MHz 10,5,2 500MHz Green TRWL05*T82N 150MHz 10,5,2 500MHz Orange TRWL05*T91N 150MHz 10,5,2 500MHz Black TRWL05*TR10 150MHz 10,5,2 500MHz Yellow TRWL05*TR11 150MHz 10,5,2 250MHz Brown TRWL05*TR12 150MHz 10,5,2 250MHz Green TRWL05*TR15 100MHz 10,5,2 250MHz Blue TRWL05*TR18 100MHz 10,5,2 250MHz Violet TRWL05*TR20 100MHz 10,5,2 250MHz Orange TRWL05*TR22 100MHz 10,5,2 250MHz Gray TRWL05*TR24 100MHz 10,5,2 250MHz Red TRWL05*TR25 100MHz 10,5,2 250MHz Green TRWL05*TR27 100MHz 10,5,2 250MHz White TRWL05*TR30 100MHz 10,5,2 250MHz Yellow TRWL05*TR33 100MHz 10,5,2 250MHz Black TRWL05*TR36 100MHz 10,5,2 250MHz Green TRWL05*TR39 100MHz 10,5,2 250MHz Brown TRWL05*TR43 50MHz 10,5,2 100MHz Blue TRWL05*TR47 50MHz 10,5,2 100MHz Red Page: 9/17
11 (GHz) Color TRWL05*TR56 25MHz 10,5,2 50MHz Orange TRWL05*TR60 25MHz 10,5,2 50MHz White TRWL05*TR62 25MHz 10,5,2 50MHz Yellow TRWL05*TR68 25MHz 10,5,2 50MHz Green TRWL05*TR75 25MHz 10,5,2 50MHz Blue TRWL05*TR82 25MHz 10,5,2 50MHz Violet TRWL05*T1R0 25MHz 10,5,2 50MHz Gray TRWL05*T1R2 7.9MHz 10,5,2 25MHz White TRWL05*T1R5 7.9MHz 10,5,2 25MHz Black TRWL05*T1R8 7.9MHz 10,5,2 7.9MHz Brown TRWL05*T2R2 7.9MHz 10,5,2 7.9MHz Red TRWL05*T2R7 7.9MHz 10,5,2 7.9MHz Orange Page: 10/17
12 Standard Electrical Specifications Standard (TRWL06) - EIA 1206 (GHz) TRWL06*T6N8 100MHz 10,5 300MHz Brown TRWL06*T10N 100MHz 10,5 300MHz Red TRWL06*T12N 100MHz 10,5 300MHz Orange TRWL06*T15N 100MHz 10,5 300MHz Yellow TRWL06*T18N 100MHz 10,5 300MHz Green TRWL06*T22N 100MHz 10,5 300MHz Blue TRWL06*T24N 100MHz 10,5 300MHz Red TRWL06*T27N 100MHz 10,5,2 300MHz Violet TRWL06*T33N 100MHz 10,5,2 300MHz Gray TRWL06*T39N 100MHz 10,5,2 300MHz White TRWL06*T47N 100MHz 10,5,2 300MHz Black TRWL06*T56N 100MHz 10,5,2 300MHz Brown TRWL06*T62N 100MHz 10,5,2 300MHz Violet TRWL06*T68N 100MHz 10,5,2 300MHz Red TRWL06*T82N 100MHz 10,5,2 300MHz Orange TRWL06*T91N 100MHz 10,5,2 300MHz White TRWL06*TR10 100MHz 10,5,2 300MHz Yellow TRWL06*TR12 100MHz 10,5,2 300MHz Green TRWL06*TR15 100MHz 10,5,2 300MHz Blue TRWL06*TR18 50MHz 10,5,2 300MHz Violet TRWL06*TR22 50MHz 10,5,2 300MHz Gray TRWL06*TR27 50MHz 10,5,2 300MHz White TRWL06*TR30 50MHz 10,5,2 150MHz Green TRWL06*TR33 50MHz 10,5,2 150MHz Black TRWL06*TR36 50MHz 10,5,2 150MHz Blue TRWL06*TR39 50MHz 10,5,2 150MHz Brown TRWL06*TR47 50MHz 10,5,2 150MHz Red TRWL06*TR56 35MHz 10,5,2 150MHz Orange TRWL06*TR62 35MHz 10,5,2 150MHz Gray TRWL06*TR68 35MHz 10,5,2 150MHz Yellow TRWL06*TR75 35MHz 10,5,2 150MHz White TRWL06*TR82 35MHz 10,5,2 150MHz Green TRWL06*TR91 35MHz 10,5,2 150MHz Green TRWL06*T1R0 35MHz 10,5,2 150MHz Blue TRWL06*T1R2 35MHz 10,5,2 150MHz Violet Color Page: 11/17
13 Standard Electrical Specifications Standard (TRWL08) - EIA 1008 (GHz) Color TRWL08*T5N6 50MHz 10,5 1500MHz Black TRWL08*T10N 50MHz 10,5,2 500MHz Brown TRWL08*T12N 50MHz 10,5,2 500MHz Red TRWL08*T15N 50MHz 10,5,2 500MHz Orange TRWL08*T18N 50MHz 10,5,2 350MHz Yellow TRWL08*T22N 50MHz 10,5,2 350MHz Green TRWL08*T24N 50MHz 10,5,2 350MHz Blue TRWL08*T27N 50MHz 10,5,2 350MHz Violet TRWL08*T33N 50MHz 10,5,2 350MHz Gray TRWL08*T36N 50MHz 10,5,2 350MHz Orange TRWL08*T39N 50MHz 10,5,2 350MHz White TRWL08*T47N 50MHz 10,5,2 350MHz Black TRWL08*T56N 50MHz 10,5,2 350MHz Brown TRWL08*T62N 50MHz 10,5,2 350MHz Blue TRWL08*T68N 50MHz 10,5,2 350MHz Red TRWL08*T75N 50MHz 10,5,2 350MHz White TRWL08*T82N 50MHz 10,5,2 350MHz Orange TRWL08*TR10 25MHz 10,5,2 350MHz Yellow TRWL08*TR12 25MHz 10,5,2 350MHz Green TRWL08*TR15 25MHz 10,5,2 100MHz Blue TRWL08*TR18 25MHz 10,5,2 100MHz Violet TRWL08*TR22 25MHz 10,5,2 100MHz Gray TRWL08*TR24 25MHz 10,5,2 100MHz White TRWL08*TR27 25MHz 10,5,2 100MHz Black TRWL08*TR30 25MHz 10,5,2 100MHz Brown TRWL08*TR33 25MHz 10,5,2 100MHz Red TRWL08*TR36 25MHz 10,5,2 100MHz Orange TRWL08*TR39 25MHz 10,5,2 100MHz Yellow TRWL08*TR43 25MHz 10,5,2 100MHz Green TRWL08*TR47 25MHz 10,5,2 100MHz Blue TRWL08*TR56 25MHz 10,5,2 100MHz Violet TRWL08*TR62 25MHz 10,5,2 100MHz Gray TRWL08*TR68 25MHz 10,5,2 100MHz White TRWL08*TR75 25MHz 10,5,2 100MHz Black TRWL08*TR82 25MHz 10,5,2 100MHz Brown TRWL08*TR91 25MHz 10,5,2 50MHz Red TRWL08*T1R0 25MHz 10,5,2 50MHz Orange TRWL08*T1R2 7.9MHz 10,5,2 50MHz Yellow TRWL08*T1R5 7.9MHz 10,5,2 50MHz Green TRWL08*T1R8 7.9MHz 10,5,2 50MHz Blue TRWL08*T2R2 7.9MHz 10,5,2 50MHz Violet TRWL08*T2R7 7.9MHz 10,5,2 25MHz Gray TRWL08*T3R3 7.9MHz 10,5,2 25MHz White TRWL08*T3R9 7.9MHz 10,5,2 25MHz Black TRWL08*T4R7 7.9MHz 10,5,2 25MHz Brown TRWL08*T5R6 7.9MHz 10,5,2 7.96MHz Red TRWL08*T6R8 7.9MHz 10,5,2 7.96MHz Orange TRWL08*T8R2 7.9MHz 10,5,2 7.96MHz Yellow TRWL08*T MHz 10,5,2 7.96MHz Green TRWL08*T MHz 10,5,2 7.96MHz Blue TRWL08*T MHz 10,5,2 7.96MHz Violet Test Methods/Instrument: Network Spectrum Analyzer. Page: 12/17
14 Standard Electrical Specifications Low Profile (TRWL05) - EIA 0805 (GHz) Color TRWL05*TL1N8 250MHz MHz Black TRWL05*TL3N9 250MHz 10,5 1000MHz Brown TRWL05*TL4N7 250MHz 10,5 1000MHz Red TRWL05*TL6N8 250MHz 10,5 1000MHz Orange TRWL05*TL8N2 250MHz 10,5 1000MHz Yellow TRWL05*TL10N 250MHz 10,5,2 750MHz Green TRWL05*TL12N 250MHz 10,5,2 750MHz Blue TRWL05*TL15N 250MHz 10,5,2 500MHz Violet TRWL05*TL18N 250MHz 10,5,2 500MHz Gray TRWL05*TL22N 250MHz 10,5,2 500MHz Whit TRWL05*TL27N 250MHz 10,5,2 500MHz Black TRWL05*TL33N 250MHz 10,5,2 500MHz Brown TRWL05*TL39N 250MHz 10,5,2 500MHz Red TRWL05*TL47N 200MHz 10,5,2 500MHz Orange TRWL05*TL56N 200MHz 10,5,2 500MHz Yellow TRWL05*TL68N 200MHz 10,5,2 500MHz Green TRWL05*TL82N 150MHz 10,5,2 500MHz Blue TRWL05*TLR10 150MHz 10,5,2 500MHz Violet TRWL05*TLR12 150MHz 10,5,2 250MHz Gray TRWL05*TLR15 150MHz 10,5,2 250MHz Whit TRWL05*TL1R0 25MHz 10,5,2 50MHz Black Page: 13/17
15 Standard Electrical Specifications Low Profile (TRWL08) - EIA 1008 (GHz) TRWL08*TL4N2 50MHz 10,5 1500MHz Black Color TRWL08*TL6N8 50MHz 10,5 1500MHz Brown TRWL08*TL8N2 50MHz 10,5 1500MHz Red TRWL08*TL15N 50MHz 10,5 500MHz Orange TRWL08*TL20N 50MHz 10,5 500MHz Yellow TRWL08*TL27N 50MHz 10,5 350MHz Green TRWL08*TL30N 50MHz 10,5 500MHz Blue TRWL08*TL40N 50MHz 10,5 500MHz Violet TRWL08*TL50N 50MHz 10,5,2 500MHz Gray TRWL08*TL60N 50MHz 10,5,2 500MHz White TRWL08*TL70N 50MHz 10,5,2 500MHz Black TRWL08*TL80N 50MHz 10,5,2 500MHz Brown TRWL08*TLR56 25MHz 10,5,2 100MHz Red Standard Electrical Specifications High Current (TRWL03) - EIA 0603 (GHz) TRWL03*TH1N6 250MHz 10, Black TRWL03*TH3N6 250MHz 10, Brown TRWL03*TH3N9 250MHz 10, Red Color TRWL03*TH6N8 250MHz 10, Orange TRWL03*TH7N5 250MHz 10, Yellow TRWL03*TH8N2 250MHz 10, White TRWL03*TH10N 250MHz 10,5, Green TRWL03*TH12N 250MHz 10,5, Blue TRWL03*TH15N 250MHz 10,5, Violet TRWL03*TH18N 250MHz 10,5, Gray TRWL03*TH22N 250MHz 10,5, White TRWL03*TH24N 250MHz 10,5, Black Page: 14/17
16 Standard Electrical Specifications High (TRWL05) - EIA 0805 (GHz) TRWL05*TH2N5 250MHz 10,5 1500MHz Black TRWL05*TH5N6 250MHz 10,5 1500MHz Brown TRWL05*TH6N2 250MHz 10,5 1000MHz Red TRWL05*TH6N8 250MHz 10,5 1000MHz White TRWL05*TH8N2 250MHz 10,5 1000MHz Gray TRWL05*TH12N 250MHz 10,5 1000MHz Orange TRWL05*TH15N 250MHz 10,5,2 1000MHz Black TRWL05*TH16N 250MHz 10,5,2 500MHz Yellow TRWL05*TH18N 250MHz 10,5,2 500MHz Green TRWL05*TH20N 250MHz 10,5,2 500MHz Blue TRWL05*TH22N 250MHz 10,5,2 500MHz Black TRWL05*TH27N 250MHz 10,5,2 500MHz Violet TRWL05*TH30N 250MHz 10,5,2 500MHz Gray TRWL05*TH39N 250MHz 10,5,2 500MHz White TRWL05*TH48N 200MHz 10,5,2 500MHz Black TRWL05*TH51N 200MHz 10,5,2 500MHz Brown Standard Electrical Specifications High (TRWL08) - EIA 1008 (GHz) TRWL08*TH3N0 50MHz 10,5 1500MHz Black TRWL08*TH4N1 50MHz 10,5 1500MHz Brown TRWL08*TH7N8 50MHz 10,5 500MHz Red TRWL08*TH10N 50MHz 10,5,2 500MHz Orange TRWL08*TH12N 50MHz 10,5,2 500MHz Yellow TRWL08*TH18N 50MHz 10,5,2 350MHz Green TRWL08*TH22N 50MHz 10,5,2 350MHz Blue TRWL08*TH33N 50MHz 10,5,2 350MHz Violet TRWL08*TH39N 50MHz 10,5,2 350MHz Gray TRWL08*TH47N 50MHz 10,5,2 350MHz White TRWL08*TH56N 50MHz 10,5,2 350MHz Black TRWL08*TH68N 50MHz 10,5,2 350MHz Brown Color Color TRWL08*TH82N 50MHz 10,5,2 350MHz Red TRWL08*THR10 50MHz 10,5,2 350MHz Orange s (3.0nH, 7.8nH) are wound on a low profile bobbin with High. Page: 15/17
17 Order s Order s (TRWL) TRWL 03 J T S 1N6 S TRWL Dimensions (L W) (mm) EIA EIA EIA EIA EIA1008 Resistance G ±2% J ±5% K ±10% M ±20% T Package Taping Reel S L H Design code Standard Inductor Low Profile Inductor High Current and High 1N6 1.6nH 82N 82nH R27 270nH 1R0 1000nH nH G S Terminal Mo / Mn Or W with Gold plated. Pd / Ag with Tin plated. Page: 16/17
18 General Information Token Cuts Inductor Size and Cost Token utilizes the latest technology enabling the most cost-effective designs in manufacturing inductors. The 0402, 0603, 0805, 1206, 1210, to 1812 series of RF Miniature Inductors all contain wire wound or multi-layer technology with material substrate in ceramic or ferrite cores. Thus providing economic cost with the ultimate performance demanded by today's RF applications. Inductors feature high factor, s (self-resonant or series resonant frequency), and Idc (maximum current carrying capacity). How to quickly search RF inductors for all of the characteristics? Searching and comparing data sheets of inductor manufacturers can be time consuming. Token s Parameter Sorting Search Mode allows selection of inductors based on different parameters. To enter Searching Mode: By entering just the inductance value, By sorting parameter to narrow down searching range, Or by enter keyword / part number / size dimensions L*W*H to partial or exact searching. Inductors Selection Notes: For choke applications, the s (self-resonant or series resonant frequency) is the frequency that provides the best signal blocking. At the, impedance is at its maximum. At frequencies below the, impedance increases with frequency. At frequencies above the, impedance decreases with frequency. For higher order filter or impedance matching applications, in general, the choice of inductance value typically determines the and vice versa. The higher the inductance value, the lower the, due to increased winding capacitance. It is more important to have a relatively flat inductance curve (constant inductance vs. frequency) near the required frequency. This suggests selecting an inductor with an well above the design frequency. A rule of thumb is to select an inductor with an that is a decade (10X) higher than the operating frequency. What is factor? High leads to low insertion loss, minimizing power consumption, and narrow bandwidth. It is important if the inductor is to be used as part of an LC (oscillator) circuit or in narrow band pass applications. In general, wire wound inductors have much higher values than multilayer inductors of the same size and value. Token's material science and manufacturing expertise effectively bridges the gap between wire-wound performance and multi-layer inductors with its TRMF (EIA 0402) and TRMI (EIA 0603) series. How does current requirement affect inductor? Higher current requires larger wire or more threads of the same wire size to keep losses and temperature rise to a minimum. Larger wire lowers the and increases the factor. Using a ferrite core inductor with a lower turn count can achieve higher current capacity and lower. Ferrite, however, may introduce new limitations such as larger variation of inductance with temperature, looser tolerances, lower, and reduced saturation current ratings. Token's ferrite inductors with open magnetic structures, will not saturate, even at full rated current. Page: 17/17
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