TCUU98V471DP TOKEN | Alldatasheet
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Specification Changed or Version Updated will be posted at irregular intervals. All Updated and Final Specifications, Please Confirm with TOKEN ELECTRONICS REPRESENITIVES. http://www.token.com.tw rfq token.com.tw Notice: Information Product Index Through Hole Inductors
Through Hole General Information Through Hole Inductors General Infornation TOKEN Token Electronics brand passive component specializes in standard and custom solutions offering t he latest in state-of-the-art low profile high power density inductor components. Token provides cost-effective, comprehensive solutions that meet the evolving needs of technology-driven markets. In working closely with the industry leaders in chipset and core development, we remain at the forefront of innovation and new technology to deliver the optimal mix of packaging, high efficiency and unbeatable reliability. Our designs utilize high frequency, low core loss materials, new and custom core shapes in combination with innovative construction and packaging to provide designers with the highest performance parts available on the market. Find Inductor Solutions Faster Find Your Inductor - wt.moc.nekot@qfr Only timely and accurate information can help manage the changing needs of your customers. The Token InductorFinder puts you only a click away from all of the inductor information you need. Find Your Solution - wt.moc.nekot@qfr Selecting the correct inductor solution will not only save you time, but it will give you a competitive edge. At Token, we are committed to helping you find the most efficient alternative for your power design. Our inductor and power supply design experts can help you make that selection. Please forward us:
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Inductor and Magnetic Product Terminology & Glossary Fixed Inductor Terminology Glossary Fixed Inductor Terminology Glossary Air Core Inductor (Ceramic Core Inductor) Air core inductors are often referred to as “Ceramic Core” inductors. Air core inductor is most often used in high frequency applications where low inductance values, very low core losses and high Q values are required. Ceramic has no magnetic properties. Thus, there is no increase in permeability due to the core material. Its main purpose is to provide a form for the coil. In some designs it also provides the structure to hold the terminals in place. Ceramic has a very low thermal coefficient of expansion. This allows for relatively high inductance stability over the operating temperature ranges. Axial Inductor An inductor constructed on a core with concentric leads on opposite ends of the core. Axial inductors are available for both power applications and RF applications, and are available in many core materials including the basic phenolic, ferrite and powdered iron types. Both rod and bobbin shapes are utilized. Axial inductors are very suitable for tape and reel packaging for auto placement. RF Choke Another name for a radio frequency inductor which is intended to filter or choke out signals. What is Inductor? A passive component designed to resist changes in current. Inductors are often referred to as “AC Resistors”. The ability to resist changes in current and the ability to store energy in its magnetic field,account for the bulk of the useful properties of inductors. Current passing through an inductor will produce a magnetic field. A changing magnetic field induces a voltage which opposes the field-producing current. This property of impeding changes of current is known as inductance. The voltage induced across an inductor by a change of current is defined as: Equation V = L di/dt where V (Induced Voltage); L (Inductance Value). Thus, the induced voltage is proportional to the inductance value and the rate of current change. TOKEN
Fixed Inductor Terminology Glossary Inductor and Magnetic Product Terminology & Glossary DCR (DC Resistance) The resistance of the inductor winding measured with no alternating current. The DCR is most often mini- mized in the design of an inductor. The unit of measure is ohms, and it is usually specified as a maximum rating. EMI EMI is an acronym for Electromagnetic Interference. It is unwanted electrical energy in any form. EMI is often used interchangeably with “Noise”. Ferrite Core Ferrite is a magnetic material which consists of a mixed oxide of iron and other elements that are made to have a crystalline molecular structure. The general composition of ferrites is xxFe2O4 where xx represents one or several metals. The most popular metal combinations are manganese and zinc (MnZn) and nickel and zinc (NiZn). These metals can be easily magnetized. Impedance The impedance of an inductor is the total resistance to the flow of current, including the AC and DC component. The DC component of the impedance is simply the DC resistance of the winding. The AC component of the impedance includes the inductor reactance. The following formula calculates the inductive reactance of an ideal inductor (i.e., one with no losses) to a sinusoidal AC signal. Equation Z = XL = 2ΠƒL. This equation indicates that higher impedance levels are achieved by higher inductance values or at higher frequencies. Inductance & Tolerance The property of a circuit element which tends to oppose any change in the current flowing through it. The inductance for a given inductor is influenced by the core material, core shape and size, the turns count and the shape of the coil. Inductors most often have their inductances expressed in microhenries (μH). Tolerance Letter of Inductance Table Letter Tolerance Inductance F ± 1 % 1 henry (H) = 106 μH 1 millihenry (mH) = 103 μH 1 microhenry (μH) = 1 μH 1 nanohenry (nH) = 10-3 μH G ± 2 % H ± 3 % J ± 5 % K ± 10 % L ± 15 % M ± 20 % TOKEN
Fixed Inductor Terminology Glossary Matched Impedance The condition that exists when two coupled circuits are adjusted so that the output impedance of one circuit equals the input impedance of the other circuit connected to the first. There is a minimum power loss be- tween two circuits when their connecting impedances are equal. Multilayer Inductor An inductor constructed by layering the coil between layers of core material. The coil typically consists of a bare metal material (no insulation). This technology is sometimes referred to as “non-wirewound”. The inductance value can be made larger by adding additional layers for a given spiral pattern. Quality Factor Q The Q value of an inductor is a measure of the relative losses in an inductor. The Q is also known as the “quality factor” and is technically defined as the ratio of inductive reactance to effective resistance and is represented by: Equation Q = XL / Re = 2πƒL / Re Since XL and Re are functions of frequency, the test frequency must be given when specifying Q. XL typically increases with frequency at a faster rate than Re at lower frequencies, and vice versa at higher frequencies. This results in a bell shaped curve for Q vs frequency. Re is mainly comprised of the DC resistance of the wire, the core losses and skin effect of the wire. Based on the above formula, it can be shown that the Q is zero at the self resonant frequency since the inductance is zero at this point. Rated Current The level of continuous DC current that can be passed through the inductor. This DC current level is based on a maximum temperature rise of the inductor at the maximum rated ambient temperature. The rated current is related to the inductor’s ability to minimize the power losses in the winding by having a low DC resistance. It is also related to the inductor’s ability to dissipate this power lost in the windings. Thus, the rated current can be increased by reducing the DC resistance or increasing the inductor size. For low frequency current waveforms, the RMS current can be substituted for the DC rated current. The rated current is not related to the magnetic properties of the inductor. Saturation Current The DC bias current flowing through the inductor which causes the inductance to drop by a specified amount from the initial zero DC bias inductance value. Common specified inductance drop percentages include 10 % and 20 %. It is useful to use the 10 % inductance drop value for ferrite cores and 20 % for powdered iron cores in energy storage applications. The cause of the inductance to drop due to the DC bias current is related to the magnetic properties of the core. The core, and some of the space around the core, can only store a given amount of magnetic flux density. Beyond the maximum flux density point, the permeability of the core is reduced. Thus, the inductance is caused to drop. Core saturation does not apply to “air-core” inductors. Self-Resonant Frequency (SRF) The frequency at which the inductor’s distributed capacitance resonates with the inductance. It is at this frequency that the inductance is equal to the capacitance and they cancel each other. The inductor will act purely resistive with a high impedance at the SRF point. TOKEN
Fixed Inductor Terminology Glossary Self-Resonant Frequency (SRF) The frequency at which the inductor’s distributed capacitance resonates with the inductance. It is at this frequency that the inductance is equal to the capacitance and they cancel each other. The inductor will act purely resistive with a high impedance at the SRF point. The distributed capacitance is caused by the turns of wire layered on top of each other and around the core. This capacitance is in parallel to the inductance. At frequencies above the SRF, the capacitive reactance of the parallel combination will become the dominant component. Also, the Q of the inductor is equal to zero at the SRF point since the inductive reactance is zero. The SRF is specified in MHz and is listed as a minimum value on product data sheets. Shielded Inductor An inductor designed for its core to contain a majority of its magnetic field. Some inductor designs are self shielding. Examples of these are magnetic core shapes which include toroids, pot cores and E-cores. Magnetic core shapes such as slug cores and bobbins require the application of a magnetic sleeve or similar method to yield a shielded inductor. It should be noted that magnetic shielding is a matter of degree. A certain percentage of the magnetic f ield will escape the core material. This is even applicable for toroidal cores as lower core permeabilities will have higher fringing fields than will high permeability toroidal cores. Toroidal Inductor An inductor constructed by placing a winding(s) on a core that has a donut shaped surface. Toroidal cores are available in many magnetic core materials within the four basic types: Ferrite, Powdered Iron, Alloy and High Flux, and Tape Wound. Characteristics of toroidal inductors include: self shielding (closed magnetic path), efficient energy transfer, high coupling between windings, and early saturation. TOKEN
Measurements of Fixed Inductors Measurements of Fixed Inductors Measurements of Fixed Inductors Inductance The inductance is measured with a Q-meter, LCR meter or animpedance analyzer.
- Fixed inductors for signals: Use of a Q-meter in which the frequency is for direct readout of the inductance or at the specified frequency.
- Inductors for high current power line circuits: 1kHz or 100kHz. Q Factor The unloaded Q is measured with a Q-meter, LCR meter orimpedance analyzer. The frequency of measurement is that at which the inductance hasbeen measured or at a different frequency as specified. However, forhigh current power line inductors, the resistance is measured andthe Q may be neglected. DCR (DC Resistance), SRF (Self-Resonant Frequency) DCR: A digital multimeter is used for measurement; SRF: Measured with a Q-meter, impedance analyzer or network analyzer. Dielectric Strength For specimen coil, apply 100V DC for 5 seconds between the shielding case and terminals. There should be no damage orabnormalities in the inductor. Maximum Allowable Current The maximum allowable current is a DC Current which causes initialinductance to decrease by 10% or 30%. Or coil temperature to rise by 20°C or 40°C, whichever is smaller. (Reference ambient tem- perature: 20°C) TOKEN
Measurements of Fixed Inductors Maximum Allowable Current The maximum allowable current is a DC Current which causes initialinductance to decrease by 10% or 30%. Or coil temperature to rise by 20°C or 40°C, whichever is smaller. (Reference ambient temperature: 20°C) Solderability After immersion of terminals in flux for 5 to 10 seconds, dip theterminals in the solder bath at 245±5°C for 2±0.5 seconds. Makecertain that more than 3/4 of the surface of the terminals are coatedwith new solder. Dry Heat Test The change in inductance, if any, is measured after exposure to 85±2°C in a test chamber for 500±12 hours and for 1 to 2 hours at room temperature. Shock Tests The change in inductance, if any, is measured after the following tests.
- Free Fall Drop Test: A specimen coil is mounted on a test board and dropped freely 3 times from a height of 1 meter.
- Impact Tester: A specimen inductor is mounted on a test board and dropped 3 times in three directions with shock applied for 0.01 seconds at 981 m/s2. The change in inductance, if any, is measured after the tests. Vibration Test The change in inductance, if any, is measured after the following condition:
- A specimen coil/inductor is mounted on a test board of vibration instrument.
- Overall amplitude: 1.5mm, frequency range: 10~55Hz, and swept in the (10~55~10)Hz order per minute for 2 hrs in each of the 3 directions for total of 6 hrs. Humidity Test The change in inductance, if any, is measured after exposure in a test chamber to humidity of 90% to 95% R.H. at 60±2°C for 500±12 hours and 1 hour exposure at room temperature. TOKEN
EMI Line Filters for filtering common mode power line noise (TCUU) Preview In recent times there has been a growing need for energy storage inductors for noise filtering in both mains line filters and DC chokes used in switched-mode power supplies. In mains line filter applications the filtering falls into two categories: common-mode noise and differential-mode noise. The line filter arrangement consists of two sections bobbin between the mains supply and the equipment. Note that the common-mode filter is wound on a single core and the differential mode filter consists of two indiviual wound cores. The common-mode noise is in relation to ground and is common to both lines. Differential mode noise is the noise between the two lines. Both types of noise are usually present to varying degrees. Token line filters TCUU series common mode choke coils are used in a wide range of prevention of radio frequency interference (RFI) and electromagnetic interference (EMI) from power supply lines and for prevention of multifunctioning of products such as measuring equipment and system equipment. Features wide range of selection, high impedance at applicable frequency, and high self-resonant frequency. The TCUU series is designed to reduce stray capacity between windings by using a single-layer coil and two sections bobbin construction on high permeability ferrite core, which offer excellent high frequency characteristics. This series provides excellent noise suppression for high frequency ranges including the FM band. This filter can also be used as a signal line with excellent withstanding voltage, since the windings are divided into two sections. Token is equipped to design and produce custom components to meet many design and reliability demands. Custom parts are available on request. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Easily inserted into PCB. - Small size and inexpensive type. - Highly reliable, compact & lightweight. - Magnetic shielded construction available. - Characteristics in Low Frequency Band. - AC common mode choke coil which has excellent attenuation. Applications : - Multi-Function Telephones. - Common Mode Chokes for Effective AC line Noise Prevention. - AC Adapters, Faxs Small Size Fluorescent Lights, VCRS,Color TVS. TOKEN
Magnetic Shielded Construction (TCUU98V) Configurations & Dimensions Common Mode Chokes (TCUU98V) at 25°C Electrical Characteristics Type A (max) B (max) C (max) D E F G Note: Design as Customer’s Requested Specifications. Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCUU98H-471 0.47 25 0.15 1.00 TCUU98H-681 0.68 25 0.25 0.85 TCUU98H-102 1.0 50 0.35 0.70 TCUU98H-222 2.2 50 0.7 0.50 TCUU98H-392 3.9 100 1.20 0.38 TCUU98H-472 4.7 100 1.60 0.34 TCUU98H-682 6.8 150 2.50 0.25 TCUU98H-103 10.0 200 4.00 0.20 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) A B C D E F G TOKEN
A B C D E F (TCUU98H) Configurations & Dimensions Type A (max) B (max) C (max) D E F Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCUU98H) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCUU98H-471 0.47 25 0.15 1.00 TCUU98H-681 0.68 25 0.25 0.85 TCUU98H-102 1.0 50 0.35 0.70 TCUU98H-222 2.2 50 0.7 0.50 TCUU98H-392 3.9 100 1.20 0.38 TCUU98H-472 4.7 100 1.60 0.34 TCUU98H-682 6.8 150 2.50 0.25 TCUU98H-103 10.0 200 4.00 0.20 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
(TCUU10) Configurations & Dimensions A B C D E F G Type A (max) B (max) C (max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCUU10) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCUU10-332 3.3 100 0.71 0.65 TCUU10-682 6.8 200 1.26 0.435 TCUU10-123 12.0 360 2.20 0.34 TCUU10-223 22.0 440 3.64 0.25 TCUU10-333 33.0 660 5.74 0.20 TCUU10-513 51.0 1000 9.12 0.15 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
AC Common Mode Choke Coils (TCUU16) Configurations & Dimensions B A C DE F G Type A (max) B (max) C (max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCUU16) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCUU16-152 1.5 40 0.125 1.90 TCUU16-402 4.0 60 0.27 1.20 TCUU16-802 8.0 80 0.46 0.90 TCUU16-203 20.0 150 1.60 0.50 TCUU16-303 30.0 200 2.50 0.40 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
AC Common Mode Choke Coils (TCUT20) Configurations & Dimensions A B C D E F G Type A (max) B (max) C (max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCUT20) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCUT20-222 2.2 150 0.24 1.30 TCUT20-392 3.9 150 0.41 1.00 TCUT20-103 10.0 550 1.00 0.60 TCUT20-183 18.0 600 1.63 0.50 TCUT20-223 22.0 800 2.04 0.40 TCUT20-333 33.0 800 3.42 0.30 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
Magnetic Shielded Core (TCET24B) Configurations & Dimensions A B C D E F G Type A (max) B(max) C(max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCET24B) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCET24B-252 2.5 100 0.13 2.00 TCET24B-352 3.5 150 0.18 1.70 TCET24B-452 4.5 200 0.21 1.50 TCET24B-103 10.0 300 0.47 1.00 TCET24B-153 15.0 400 0.73 0.80 TCET24B-203 20.0 600 0.87 0.70 TCET24B-353 35.0 800 1.58 0.60 Note: Test Freq.: 1.0kHz. Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
Magnetic Shielded Core (TCET24H) Configurations & Dimensions A B C D E F G Type A (max) B(max) C(max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCET24H) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCET24H-252 2.5 100 0.13 2.00 TCET24H-352 3.5 150 0.18 1.70 TCET24H-452 4.5 200 0.21 1.50 TCET24H-103 10.0 300 0.47 1.00 TCET24H-153 15.0 400 0.73 0.80 TCET24H-203 20.0 600 0.87 0.70 TCET24H-353 35.0 800 1.58 0.60 Note: Test Freq.: 1.0kHz Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
Magnetic Shielded Core (TCET28B) Configurations & Dimensions A B C D E F G Type A (max) B(max) C(max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCET28B) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCET28B-182 1.8 100 0.072 2.60 TCET28B-682 6.8 200 0.23 1.60 TCET28B-123 12.0 400 0.38 1.20 TCET28B-223 22.0 500 0.65 1.00 TCET28B-393 39.0 700 1.43 0.70 TCET28B-683 68.0 850 1.82 0.60 Note: Test Freq.: 1.0kHz Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
Magnetic Shielded Core (TCET24H) Configurations & Dimensions A B E C D G F Type A (max) B(max) C(max) D E F G Note: Design as Customer’s Requested Specifications. Common Mode Chokes (TCET28H) at 25°C Electrical Characteristics Part Number Inductance (mH)(min) Inductance Balance (µH)(max) DCR (Ω)(max) IDC (A)(max) TCET28H-182 1.8 100 0.072 2.60 TCET28H-682 6.8 200 0.23 1.60 TCET28H-123 12.0 400 0.38 1.20 TCET28H-223 22.0 500 0.65 1.00 TCET28H-393 39.0 700 1.43 0.70 TCET28H-683 68.0 850 1.82 0.60 Note: Test Freq.: 1.0kHz Allowable Current : D.C. Current When Temperature of Coil Increased up to 40°C .(Ta=25°C ) TOKEN
Back to 1st Page - EMI Line Filters (TCUU) Part Number: TCUU98V Vertical Type, TCUU98H Horizontal Type, TCUU10, TCUU16 (TCUU98V , TCUU98H, TCUU10, TCUU16) How to Order 471TCUU98V Code Inductance 471 0.47mH 681 0.68mH 102 1.0mH 222 2.2mH Inductance Winding Code Tolerance None Standard Winding D Sectional Winding P Package : P ( Bulk ) Part Number: TCUT20, TCET24B, TCET24H, TCET28B, TCET28H (TCUT20, TCET24B, TCET24H, TCET28B, TCET28H) How to Order 471TCUU98V P Code Inductance 222 2.2mH 392 3.9mH 103 10.0mH 183 20.0mH Inductance Package : P ( Bulk ) TOKEN
TCAL Through Hole Fixed Inductors Token fixed inductors meet the needs of a variety of manufacturing methods (TCAL) Preview Token TCAL series fixed inductor utilizes the latest winding technology with special core material, sturdy construction, outer layer of epoxy resin processing, high Q value and self-resonance frequency, wide inductance range, high reliability, and low price. The TCAL series is ideal for consumer electronics such as digital set-top boxes (DVB), digital video disc players (DVD), video cassette recorders (VCR), television (TV), computers, audio equipment, mobile communications, telephone, and various general-purpose electronic applications. Token highly efficient automated production processes offer a full range of high-quality inductors products suitable for automatic plug-in operation. The TCAL provides 0204,0307,0410, and 0510 size varieties of different forming, such as Normal & Short Form, F Forming, U Forming, Pana Forming, and bulk products to meet the needs of a variety of manufacturing methods. Token TCAL Series fixed inductors are full line confirming with RoHS specifications, Pb-free standards. Provide a complete inductor size and full range inductance, and custom parts are available on request. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Low Cost. - Coating epoxy resin that ensures the humidity resistance to be long life. Applications : - TV , VCR. - Computer Devices - Electronics products. - Communication equipment. TOKEN
TCAL Through Hole Fixed Inductors Normal Form & Short Form F Forming TCALN0204 TCALN0307,TCALN0410,TALN0510 A B CC D A C D E B E A Type Φ A(max) B(max) C ± 3.0 Φ D ± 0.05 E ± 1.5 TCALFB0204 TCALFB0307,TCALFB0410 TCALFB0510 W DBC A W DBC A Sym. TCALFB0204 TCALFB0307 TCALFB0410 TCALFB0510 A (max) 2.80 3.00 4.00 5.00 B (max) 5.00 7.00 10.00 10.00 C (max) 6.00 6.00 6.00 6.00 D (min) 3.60 3.60 4.00 4.00 TOKEN
TCAL Through Hole Fixed Inductors U Forming TCALUB0204 TCALUB0307,TCALUB0410 TCALUB0510 B A W F C A W F C B Sym. TCALUB0204 TCALUB0307 TCALUB0410 TCALUB0510 A (max) 2.80 3.00 4.00 5.00 B (max) 5.00 7.00 10.00 10.00 C (min) 3.60 3.60 3.60 3.60 F 6 ~ 15 10 ~ 20 12.5 ~ 20 12.5 ~ 20 (TCAL 0307 Series) Pana Forming A h p p2 B C H 0 W 2 P 0 F1F H DO h 1 Coating Unit in mm T W0 W A B C D0 F H H0 H1 h h1 3.00 (max) 7.00 (max) 3.00 +0.00 -1.00 4.00±0.3 5.00 +0.80 -0.20 19.00 +1.00 -0.30 16.00±0.5 28.50 (max) 0.00 ±2.0 (±5°) 0.00 ±2.0 (±5°) P P0 P1 P2 T W W0 W1 W2 18.00 +1.00 -0.50 13.00±1.0 9.00 +0.75 -0.50 4.00 (max) TOKEN
TCAL Through Hole Fixed Inductors (Axial Lead Type) Dimensions of Tape & Reel (Axial Lead Type) Packing Unit for Reel Label R K T(T’) W(W’) C A G E F D Sym. Dimensions Sym. Dimensions Sym. Dimensions C 6.00 ± 1.00 K 355.00 ± 0.50 D 26.00 ± 0.50 R 15.00 ± 0.50 D’ 13.00 ± 0.50 T 71.00 ± 0.50 Item TCAL0204 TCAL0307 TCAL0410 TCAL0510 Q’ TY/ Reel 5,000 PCS 5,000 PCS 5,000 PCS 3,000 PCS Q’ TY/CTN. 25,000 PCS 25,000 PCS 25,000 PCS 15,000 PCS Carton Size (mm) 397 × 397 × 479 397 × 397 × 479 397 × 397 × 479 397 × 397 × 479 TOKEN
TCAL Through Hole Fixed Inductors (Axial Lead Type) Dimensions of Ammo Box B A C C’A’ Sym. Dimensions Sym. Dimensions Sym. Dimensions (Axial Lead Type) Packing Unit for Box Item TCAL0204 TCAL0307 TCAL0410 TCAL0510 Q’ TY / Ammo Box 3,000 PCS 3,000 PCS 2,000 PCS 1,500 PCS Q’ TY / CTN. 30,000 PCS 30,000 PCS 20,000 PCS 10,000 PCS Carton Size (mm) 438 × 295 × 270 438 × 295 × 270 438 × 295 × 270s 438 × 295 × 270 (Axial Lead Type) Packing Unit for Bulk Item TCAL0204 TCAL0307 TCAL0410 TCAL0510 Q’ TY / Bag 1,000 PCS 1,000 PCS 1,000 PCS 500 PCS TOKEN
TCAL Through Hole Fixed Inductors Part Number: TCAL How to Order NTCAL TR Code Form N Normal Form S Short Form F F Forming U U Forming P Pana Forming without coating of lead wire PC Pana Forming with coating of lead wire Form Package Code Package P Bulk TR Taping Reel TB Taping Box 0204 Size R10 M Code Size 0204 2.8×5.0mm 0307 3.0×7.0mm 0410 4.0×10.0mm 0510 5.0×10.0mm Inductance Code Inductance R10 0.10µH 1R0 1.00µH 100 10.00µH 101 100.00µH 102 1000.00µH Tolerance Code Tolerance J 5% K 10% M 20% TOKEN
TCAL Through Hole Fixed Inductors How to Select a fixed inductor Perfectly, inductors should have zero resistance and capacitance. This is not practically possible, as the conducting copper wires, used for fixed inductors, have small internal resistance. Important criteria for the selection are:
- Inductance Range (H): The rated inductance range of the inductor. This is designated by ±10% of the inductance.
- Quality Factor (Q): The Q value of an inductor is a measure of the relative losses in an inductor. The Q is also known as the “quality factor” and is technically defined as the ratio of inductive reactance to effective resistance.
- Self-Resonant Frequency (SRF): The frequency at which the inductor’s distributed capacitance resonates with the inductance. It is at this frequency that the inductance is equal to the capacitance and they cancel each other. The inductor will act purely resistive with a high impedance at the SRF point.
- Permissible DC Current: Measured in Ohms, it is the maximum DC current that the inductor should be exposed to. TOKEN
TCAL Through Hole Fixed Inductors (TCAL0204) Characteristics Part Number Inductance (µH) Q (min) Freq. (MHz) SRF (MHz)(min) DCR (Ω)(max) RDC (mA)(max) TCAL0204-R22M 0.22±20% 40 25.2 175 0.20 705 TCAL0204-R27M 0.27±20% 40 25.2 160 0.22 670 TCAL0204-R33M 0.33±20% 40 25.2 150 0.24 645 TCAL0204-R39M 0.39±20% 50 25.2 150 0.27 605 TCAL0204-R47M 0.47±20% 50 25.2 150 0.30 575 TCAL0204-R56M 0.56±20% 50 25.2 150 0.34 540 TCAL0204-R68M 0.68±20% 50 25.2 150 0.38 510 TCAL0204-R82M 0.82±20% 50 25.2 150 0.43 480 TCAL0204-1R0K 1.0±10% 50 25.2 150 0.46 465 TCAL0204-1R2K 1.2±10% 50 7.96 110 0.52 435 TCAL0204-1R5K 1.5±10% 50 7.96 80 0.57 415 TCAL0204-1R8K 1.8±10% 50 7.96 66 0.60 405 TCAL0204-2R2K 2.2±10% 50 7.96 60 0.65 390 TCAL0204-2R7K 2.7±10% 50 7.96 54 0.73 370 TCAL0204-3R3K 3.3±10% 50 7.96 48 0.82 345 TCAL0204-3R9K 3.9±10% 50 7.96 44 0.90 330 TCAL0204-4R7K 4.7±10% 50 7.96 38 1.00 315 TCAL0204-5R6K 5.6±10% 50 7.96 34 1.10 300 TCAL0204-6R8K 6.8±10% 50 7.96 30 1.20 285 TCAL0204-8R2K 8.2±10% 50 7.96 26 1.30 275 TCAL0204-100K 10±10% 50 7.96 24 1.40 265 TCAL0204-120K 12±10% 50 2.52 22 1.50 255 TCAL0204-150K 15±10% 50 2.52 20 1.65 245 TCAL0204-180K 18±10% 50 2.52 18 1.90 225 TCAL0204-220K 22±10% 50 2.52 17 2.20 210 TCAL0204-270K 27±10% 50 2.52 16 2.50 200 TCAL0204-330K 33±10% 50 2.52 14 3.80 160 TCAL0204-390K 39±10% 50 2.52 13 4.20 150 TCAL0204-470K 47±10% 50 2.52 12 4.60 145 TCAL0204-560K 56±10% 40 2.52 11 5.10 140 TCAL0204-680K 68±10% 40 2.52 10 5.60 130 TCAL0204-820K 82±10% 40 2.52 9.5 9.60 100 TCAL0204-101K 100±10% 40 2.52 8.0 10.8 95 TCAL0204-121K 120±10% 40 0.796 6.5 12.5 85 TCAL0204-151K 150±10% 40 0.796 6.0 14.5 80 TCAL0204-181K 180±10% 40 0.796 5.5 16.3 75 TCAL**0204-221K 220±10% 40 0.796 5.0 20.0 70 TOKEN
TCAL Through Hole Fixed Inductors (TCAL0307) Characteristics Part Number Inductance(µH) Q(min) Freq.(MHz) SRF(MHz)(min) DCR(Ω)(max) RDC(mA)(max) TCAL0307-R22M 0.22±20% 30 25.2 380 0.075 1150 TCAL0307-R27M 0.27±20% 30 25.2 360 0.08 1110 TCAL0307-R33M 0.33±20% 30 25.2 350 0.08 1110 TCAL0307-R39M 0.39±20% 30 25.2 320 0.09 1000 TCAL0307-R47M 0.47±20% 30 25.2 300 0.10 1000 TCAL0307-R56M 0.56±20% 30 25.2 280 0.11 950 TCAL0307-R68M 0.68±20% 30 25.2 250 0.12 900 TCAL0307-R82M 0.82±20% 30 25.2 200 0.12 900 TCAL0307-1R0K 1.0±10% 40 25.2 180 0.15 815 TCAL0307-1R2K 1.2±10% 40 7.96 165 0.18 740 TCAL0307-1R5K 1.5±10% 40 7.96 150 0.20 700 TCAL0307-1R8K 1.8±10% 50 7.96 125 0.23 655 TCAL0307-2R2K 2.2±10% 50 7.96 110 0.25 630 TCAL0307-2R7K 2.7±10% 50 7.96 95 0.28 595 TCAL0307-3R3K 3.3±10% 50 7.96 70 0.30 575 TCAL0307-3R9K 3.9±10% 45 7.96 65 0.32 555 TCAL0307-4R7K 4.7±10% 45 7.96 50 0.35 530 TCAL0307-5R6K 5.6±10% 45 7.96 40 0.40 500 TCAL0307-6R8K 6.8±10% 40 7.96 30 0.45 470 TCAL0307-8R2K 8.2±10% 40 7.96 28 0.55 425 TCAL0307-100K 10±10% 40 7.96 22 0.72 370 TCAL0307-120K 12±10% 40 2.52 20 0.80 350 TCAL0307-150K 15±10% 50 2.52 16 0.88 335 TCAL0307-180K 18±10% 50 2.52 15 1.00 315 TCAL0307-220K 22±10% 50 2.52 13 1.20 285 TCAL0307-270K 27±10% 50 2.52 11 1.35 270 TCAL0307-330K 33±10% 50 2.52 10 1.50 255 TCAL0307-390K 39±10% 50 2.52 9.5 1.70 240 TCAL0307-470K 47±10% 60 2.52 8.5 2.30 205 TCAL0307-560K 56±10% 60 2.52 7.5 2.60 195 TCAL0307-680K 68±10% 60 2.52 6.5 2.90 185 TCAL0307-820K 82±10% 60 2.52 6.0 3.20 175 TCAL0307-101K 100±10% 60 2.52 5.5 3.50 165 TCAL0307-121K 120±10% 60 0.796 5.4 3.80 160 TCAL0307-151K 150±10% 60 0.796 4.75 4.40 150 TCAL0307-181K 180±10% 60 0.796 4.35 5.00 140 TCAL0307-221K 220±10% 60 0.796 4.0 5.70 130 TCAL0307-271K 270±10% 60 0.796 3.7 6.50 120 TCAL0307-331K 330±10% 60 0.796 3.4 9.50 100 TCAL0307-391K 390±10% 60 0.796 2.8 10.5 95 TCAL0307-471K 470±10% 60 0.796 2.55 11.6 90 TCAL0307-561K 560±10% 60 0.796 2.35 13.0 85 TCAL0307-681K 680±10% 60 0.796 2.0 18.0 75 TCAL0307-821K 820±10% 60 0.796 1.5 23.0 65 TCAL**0307-102K 1000±10% 60 0.796 1.2 26.0 60 TOKEN
TCAL Through Hole Fixed Inductors (TCAL0410) Characteristics Part Number Inductance(µH) Q(min) Freq.(MHz) SRF(MHz)(min) DCR(Ω)(max) RDC(mA)(max) TCAL0410-R22M 0.22±20% 25 25.2 380 0.21 880 TCAL0410-R27M 0.27±20% 25 25.2 340 0.24 800 TCAL0410-R33M 0.33±20% 25 25.2 300 0.28 750 TCAL0410-R39M 0.39±20% 25 25.2 280 0.32 680 TCAL0410-R47M 0.47±20% 25 25.2 250 0.36 650 TCAL0410-R56M 0.56±20% 25 25.2 230 0.41 600 TCAL0410-R68M 0.68±20% 25 25.2 210 0.47 550 TCAL0410-R82M 0.82±20% 45 25.2 172 0.17 980 TCAL0410-1R0K 1.0±10% 45 25.2 157 0.19 920 TCAL0410-1R2K 1.2±10% 50 7.96 144 0.21 880 TCAL0410-1R5K 1.5±10% 50 7.96 131 0.23 830 TCAL0410-1R8K 1.8±10% 55 7.96 121 0.25 790 TCAL0410-2R2K 2.2±10% 55 7.96 110 0.28 750 TCAL0410-2R7K 2.7±10% 60 7.96 100 0.30 720 TCAL0410-3R3K 3.3±10% 60 7.96 94 0.34 670 TCAL0410-3R9K 3.9±10% 60 7.96 86 0.37 640 TCAL0410-4R7K 4.7±10% 60 7.96 80 0.39 620 TCAL0410-5R6K 5.6±10% 60 7.96 74 0.43 590 TCAL0410-6R8K 6.8±10% 60 7.96 68 0.48 550 TCAL0410-8R2K 8.2±10% 60 7.96 53 0.52 530 TCAL0410-100K 10±10% 60 7.96 45 0.58 500 TCAL0410-120K 12±10% 60 2.52 34 0.63 480 TCAL0410-150K 15±10% 60 2.52 20 0.72 460 TCAL0410-180K 18±10% 60 2.52 14 0.77 430 TCAL0410-220K 22±10% 60 2.52 9.9 0.84 410 TCAL0410-270K 27±10% 50 2.52 7.6 0.94 390 TCAL0410-330K 33±10% 50 2.52 6.3 1.03 370 TCAL0410-390K 39±10% 50 2.52 6.3 1.12 350 TCAL0410-470K 47±10% 50 2.52 6.3 1.22 340 TCAL0410-560K 56±10% 40 2.52 6.2 1.34 320 TCAL0410-680K 68±10% 40 2.52 5.7 1.47 305 TCAL0410-820K 82±10% 35 2.52 5.3 1.62 290 TCAL0410-101K 100±10% 35 2.52 4.8 1.80 275 TCAL0410-121K 120±10% 60 0.796 3.8 3.70 185 TCAL0410-151K 150±10% 60 0.796 3.5 4.20 175 TCAL0410-181K 180±10% 60 0.796 3.3 4.60 165 TCAL0410-221K 220±10% 60 0.796 3.0 5.10 155 TCAL0410-271K 270±10% 60 0.796 2.8 5.80 145 TCAL0410-331K 330±10% 60 0.796 2.6 6.40 137 TCAL0410-391K 390±10% 60 0.796 2.4 7.00 133 TCAL0410-471K 470±10% 60 0.796 2.25 7.70 126 TCAL0410-561K 560±10% 60 0.796 2.1 8.50 120 TCAL0410-681K 680±10% 55 0.796 1.95 9.40 113 TCAL0410-821K 820±10% 55 0.796 1.85 10.5 100 TCAL**0410-102K 1000±10% 50 0.796 1.4 14.0 100 TOKEN
TCAL Through Hole Fixed Inductors Fixed Inductors (TCAL0510) Characteristics Part Number Inductance(µH) Q(min) Freq.(MHz) SRF(MHz)(min) DCR(Ω)(max) RDC(mA)(max) TCAL0510-R56M 0.56±10% 50 25.2 280 0.14 1150 TCAL0510-R68K 0.68±10% 50 25.2 250 0.15 1100 TCAL0510-R82M 0.82±10% 50 25.2 220 0.22 900 TCAL0510-1R0K 1.0±10% 50 25.2 200 0.29 785 TCAL0510-1R2K 1.2±10% 33 7.96 180 0.42 650 TCAL0510-1R5K 1.5±10% 33 7.96 160 0.50 600 TCAL0510-1R8K 1.8±10% 33 7.96 150 0.65 525 TCAL0510-2R2K 2.2±10% 33 7.96 135 0.95 435 TCAL0510-2R7K 2.7±10% 33 7.96 120 1.5 385 TCAL0510-3R3K 3.3±10% 33 7.96 110 2.0 300 TCAL0510-3R9K 3.9±10% 33 7.96 100 2.3 280 TCAL0510-4R7K 4.7±10% 33 7.96 90 2.8 260 TCAL0510-5R6K 5.6±10% 45 7.96 60 0.32 495 TCAL0510-6R8K 6.8±10% 45 7.96 55 0.5 395 TCAL0510-8R2K 8.2±10% 45 7.96 50 0.6 360 TCAL0510-100K 10±10% 45 7.96 45 0.9 290 TCAL0510-120K 12±10% 60 2.52 42 1.2 265 TCAL0510-150K 15±10% 65 2.52 40 1.7 240 TCAL0510-180K 18±10% 65 2.52 34 2.3 185 TCAL0510-220K 22±10% 65 2.52 30 2.6 175 TCAL0510-270K 27±10% 45 2.52 25 2.0 170 TCAL0510-330K 33±10% 45 2.52 19 2.3 165 TCAL0510-390K 39±10% 45 2.52 15 2.5 165 TCAL0510-470K 47±10% 45 2.52 14 2.6 165 TCAL0510-560K 56±10% 50 2.52 12 3.0 164 TCAL0510-680K 68±10% 50 2.52 11 3.3 156 TCAL0510-820K 82±10% 50 2.52 10 3.9 143 TCAL0510-101K 100±10% 50 2.52 9 4.5 133 TCAL0510-121K 120±10% 60 0.796 8.5 5.2 124 TCAL0510-151K 150±10% 40 0.796 7.8 6.18 114 TCAL0510-181K 180±10% 60 0.796 7.0 6.8 108 TCAL0510-221K 220±10% 60 0.796 6.2 7.5 103 TCAL0510-271K 270±10% 60 0.796 5.6 8.2 103 TCAL0510-331K 330±10% 60 0.796 5.0 9.1 102 TCAL0510-391K 390±10% 60 0.796 4.5 10 102 TCAL0510-471K 470±10% 60 0.796 4.0 11 100 TCAL0510-561K 560±10% 60 0.796 3.6 12.3 85 TCAL0510-681K 680±10% 60 0.796 3.6 13.7 81 TCAL0510-821K 820±10% 60 0.796 1.32 3.1 180 TCAL0510-102K 1000±10% 60 0.796 1.25 4.1 156 Back to 1st Page - Fixed Inductors (TCAL) TOKEN
Large Current Power Inductor, Low DCR - TCDA Series Large Current Power Inductor TCDA Large Current Power Inductor Technology of Diagonal Through Hole Power Inductor Design (TCDA) Preview Token’s TCDA Large Current Series power inductors feature with high current, low DC resistance, high frequency, easy heat dissipation, and high reliability advantages. Token utilizes the latest technology of diagonal through hole power inductor design enabling the most cost- effective propose in manufacturing TCDA Products. Token will also produce devices outside these specifications to meet customer requirements, with comprehensive application engineering and design support available for customers worldwide. The TCDA series is lead-free and RoHS compliant. Detailed specifications, both mechanical and electrical, please contact our sales representative for more information. Features : - Low DCR. - High Frequency (up to 1MHz). - Low Profile: 7.5mm ~ 10.0mm - For Large Current Use: 12 ~ 45 amp. - Diagonal Through Hole Power Inductor. Applications : - Graphic Card/ VGA Module. - Inductor for general purpose use. - Laptop Computer / Notebook Computer. - DC/DC converter or VRM applications. - Thin type on-board power supply module for exchanger. TOKEN
TCDA Large Current Power Inductor (TCDA1312) Configurations & Dimensions (TCDA1210) Configurations & Dimensions B D E C B A F Type A B C D E F B B C D E F A Type A B C D E F TOKEN
TCDA Large Current Power Inductor (TCDA1109 & TCDA1090) Configurations & Dimensions B D E C B A F Type A B C D E F Large Current (TCDA0707) Configurations & Dimensions B D E C B A F Type A B C D E F TOKEN
TCDA Large Current Power Inductor (TCDA1312) Electrical Characteristics Part Number Inductance (µH) ±20% @0A C (max) (mm) D ± 0.1 (mm) DCR (mΩ) Heat Rating Current Idc (Amp) Typical Saturation Current Isat (Amp) Typical (Typical) (Max) TCDA1312-R22M 0.22 9 1.7 0.40 0.55 45 60 TCDA1312-R30M 0.30 9 1.7 0.55 0.70 40 60 TCDA1312-R33M 0.33 9 1.7 0.55 0.70 40 60 TCDA1312-R39M 0.39 9 1.7 0.55 0.70 40 60 TCDA1312-R47M 0.47 10 1.7 0.70 0.80 40 60 TCDA1312-R50M 0.50 10 1.7 0.70 0.80 40 60 TCDA1312-R56M 0.56 10 1.7 0.70 0.80 40 60 TCDA1312-R60M 0.60 10 1.7 0.70 0.80 40 60 TCDA1312-R68M 0.68 10 1.7 0.70 0.80 40 50 TCDA1312-R80M 0.8 10 1.7 0.70 0.85 40 50 TCDA1312-1R0M 1.0 10 1.5 1.20 1.35 30 50 TCDA1312-1R2M 1.2 10 1.5 1.20 1.50 30 40 TCDA1312-1R5M 1.5 10 1.4 1.50 1.70 25 30 TCDA1312-2R0M 2.0 10 1.2 2.90 3.30 17 25 TCDA1312-2R2M 2.2 10 1.2 2.90 3.30 17 25 Note: All test Data is referenced to 25°C ambient. Typical Heat Rating DC Current would cause an approximately ΔT of 40°C. Typical Saturation DC Current would cause Lo to drop approximately 20%. Operating Temperature Range: -25°C to +125°C. TOKEN
TCDA Large Current Power Inductor (TCDA1210) Electrical Characteristics Part Number Inductance (µH) ±20% @0A C (max) (mm) D ± 0.1 (mm) DCR (mΩ) Heat Rating Current Idc (Amp) Typical Saturation Current Isat (Amp) Typical (Typical) (Max) TCDA1210-R47M 0.47 10 1.5 0.85 1.0 30 40 TCDA1210-R56M 0.56 10 1.5 0.85 1.0 30 40 TCDA1210-R68M 0.68 10 1.5 0.85 1.0 30 40 TCDA1210-R80M 0.8 10 1.4 1.25 1.45 26 36 TCDA1210-1R0M 1.0 10 1.2 1.75 2.0 24 32 TCDA1210-1R2M 1.0 10 1.2 1.75 2.0 24 30 TCDA1210-1R5M 1.5 10 1.0 3.0 3.5 22 30 TCDA1210-2R2M 2.2 10 1.0 3.8 4.6 20 25 TCDA1210-2R8M 2.8 10 1.0 4.5 5.0 18 20 TCDA1210-3R3M 3.3 10 0.8 6.4 7.2 14 16 TCDA1210-4R7M 4.7 10 0.8 8.3 9.8 12 15 Note: All test Data is referenced to 25°C ambient. Typical Heat Rating DC Current would cause an approximately ΔT of 40°C. Typical Saturation DC Current would cause Lo to drop approximately 20%. Operating Temperature Range: -25°C to +125°C. TOKEN
TCDA Large Current Power Inductor (TCDA1109) Electrical Characteristics Part Number Inductance (µH) ±20% @0A C (max) (mm) D ± 0.1 (mm) DCR (mΩ) Heat Rating Current Idc (Amp) Typical Saturation Current Isat (Amp) Typical (Typical) (Max) TCDA1109-R30M 0.30 8 1.5 0.70 0.80 45 60 TCDA1109-R33M 0.33 8 1.5 0.70 0.80 45 60 TCDA1109-R36M 0.36 8 1.5 0.70 0.80 45 60 TCDA1109-R40M 0.40 8 1.5 0.70 0.80 45 60 TCDA1109-R47M 0.47 9 1.5 0.90 1.00 40 60 TCDA1109-R50M 0.50 9 1.5 0.90 1.00 40 60 TCDA1109-R56M 0.56 9 1.5 0.90 1.00 40 50 TCDA1109-R60M 0.60 9 1.5 0.90 1.00 40 50 TCDA1109-R68M 0.68 9 1.5 0.90 1.00 40 40 TCDA1109-R80M 0.8 10 1.4 1.30 1.60 25 45 TCDA1109-1R0M 1.0 10 1.4 1.40 1.80 25 45 TCDA1109-1R5M 1.5 10 1.2 2.20 2.50 21 32 TCDA1109-2R0M 2.0 10 1.0 3.30 4.00 15 27 TCDA1109-2R2M 2.2 10 1.0 4.50 5.00 15 40 TCDA1109-2R5M 2.5 10 1.0 4.50 5.00 15 30 Note: All test Data is referenced to 25°C ambient. Typical Heat Rating DC Current would cause an approximately ΔT of 40°C. Typical Saturation DC Current would cause Lo to drop approximately 20%. Operating Temperature Range: -25°C to +125°C. TOKEN
TCDA Large Current Power Inductor (TCDA1090) Electrical Characteristics Part Number Inductance (µH) ±20% @0A C (max) (mm) D ± 0.1 (mm) DCR (mΩ) Heat Rating Current Idc (Amp) Typical Saturation Current Isat (Amp) Typical (Typical) (Max) TCDA1090-R15M 0.15 9 1.4 0.45 0.60 40 60 TCDA1090-R20M 0.20 9 1.4 0.45 0.60 40 60 TCDA1090-R30M 0.30 10 1.4 0.65 0.75 40 60 TCDA1090-R33M 0.33 10 1.4 0.65 0.75 40 60 TCDA1090-R36M 0.36 10 1.4 0.65 0.75 40 50 TCDA1090-R39M 0.39 10 1.4 0.65 0.75 40 50 TCDA1090-R60M 0.60 10 1.4 0.90 1.10 35 50 TCDA1090-R68M 0.68 10 1.4 0.90 1.10 35 40 TCDA1090-R80M 0.8 10 1.4 1.10 1.30 33 40 TCDA1090-1R0M 1.0 10 1.2 1.55 1.80 27 40 TCDA1090-1R2M 1.2 10 1.2 1.90 2.20 25 30 TCDA1090-1R5M 1.5 10 1.0 2.70 3.00 21 30 TCDA1090-1R8M 1.8 10 1.0 2.70 3.00 21 30 TCDA1090-2R2M 2.2 10 1.2 3.70 4.00 18 30 Note: All test Data is referenced to 25°C ambient. Typical Heat Rating DC Current would cause an approximately ΔT of 40°C. Typical Saturation DC Current would cause Lo to drop approximately 20%. Operating Temperature Range: -25°C to +125°C. TOKEN
TCDA Large Current Power Inductor (TCDA0707) Electrical Characteristics Part Number Inductance (µH) ±20% @0A C (max) (mm) D ± 0.1 (mm) DCR (mΩ) Heat Rating Current Idc (Amp) Typical Saturation Current Isat (Amp) Typical (Typical) (Max) TCDA0707-R30M 0.30 8 0.8 1.80 2.60 20 36 TCDA0707-R36M 0.36 8 0.8 1.80 2.60 20 34 TCDA0707-R39M 0.39 8 0.8 1.80 2.60 20 32 TCDA0707-R47M 0.47 8 0.8 2.40 3.30 18 30 TCDA0707-R60M 0.60 8 0.8 2.40 3.30 18 28 TCDA0707-R68M 0.68 8 0.8 2.40 3.30 18 27 TCDA0707-R80M 0.8 8 0.8 3.30 4.50 16 26 TCDA0707-1R0M 1.0 8 0.8 3.30 4.50 16 25 TCDA0707-1R8M 1.8 9 0.8 4.00 4.80 15 20 TCDA0707-2R2M 2.2 10 0.8 5.00 6.00 10 15 Note: All test Data is referenced to 25°C ambient. Typical Heat Rating DC Current would cause an approximately ΔT of 40°C. Typical Saturation DC Current would cause Lo to drop approximately 20%. Operating Temperature Range: -25°C to +125°C. TOKEN
TCDA Large Current Power Inductors Back to 1st Page - Large Current Power Inductor Through Hole (TCDA) Part Number: TCDA (TCUU98V , TCUU98H, TCUU10, TCUU16) How to Order 1312TCDA R22 Code Size 1312 12.0×13.0mm 1210 10.2×12.3mm 1109 11.0×11.0mm 1090 11.0×11.0mm 0707 7.4×7.4mm Size Inductance Code Inductance R22 0.22µH 1R0 1.00µH M Tolerance Code Tolerance M 20% TOKEN
TCRB Coil Choke Inductors Radial Radial Choke Coils with open magnetic circuit construction design makes better TCR (TCRB) Preview Token TCRB series structure with open magnetic circuit construction design and protect by UL or PVC Heat- shrinkable tube. The TCRB features with small size, space savings, low cost, wide inductance range, high Q value, high availability of a large induced current, high self-resonance frequency, small magnetic flux leakage and so on. Choke coils, also known as: Choke, differential mode inductors, is used to limit the alternating current through the coil, high-frequency and low frequency choke coils. The TCRB is idael for broadband modems, game consoles, lighting equipment, notebook computers, inkjet printers, photocopying machines, color TV , VCR, camera, microwave ovens, display monitors, mobile phones, automotive electronics products. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Open magnetic circuit construction - Low cost and high reliability Applications : - Video Camera, Video Tape Recorder, - Notebook, Inkjet Printer, Copying Machine, - Display Monitor, Cellular Phone, ADSL Modem, - Microwave Oven, Lighting and Car Electronics. TOKEN
Configurations & Dimensions TCRB0605) Electrical Characteristics B C EA F Type ΦA(max) B(max) C ± 1.0 E ± 0.05 F ± 0.5 Note: Design as Customer’s Requested Specifications. Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0605 - 220M 22.00 1 0.180 0.90 TCRB0605 - 270M 27.00 1 0.210 0.81 TCRB0605 - 330M 33.00 1 0.270 0.74 TCRB0605 - 390M 39.00 1 0.290 0.68 TCRB0605 - 470M 47.00 1 0.340 0.62 TCRB0605 - 560M 56.00 1 0.420 0.57 TCRB0605 - 680M 68.00 1 0.480 0.51 TCRB0605 - 820M 82.00 1 0.550 0.47 TCRB0605 - 101M 100.00 1 0.680 0.42 TCRB0605 - 121M 120.00 1 0.770 0.39 TCRB0605 - 151M 150.00 1 0.950 0.35 TCRB0605 - 181M 180.00 1 1.150 0.32 TCRB0605 - 221M 220.00 1 1.300 0.29 TCRB0605 - 271M 270.00 1 1.550 0.26 TCRB0605 - 331M 330.00 1 2.180 0.23 TCRB0605 - 391M 390.00 1 2.470 0.21 TCRB0605 - 471M 470.00 1 2.920 0.20 TCRB0605 - 561M 560.00 1 3.970 0.18 TCRB0605 - 681M 680.00 1 4.570 0.16 TCRB0605 - 821M 820.00 1 5.280 0.15 TCRB0605 - 102M 1000.00 1 7.060 0.13 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TCRB Coil Choke Inductors Radial TOKEN
(TCRB0606) Electrical Characteristics Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0606 - 220M 22.00 1 0.110 1.27 TCRB0606 - 270M 27.00 1 0.140 1.14 TCRB0606 - 330M 33.00 1 0.170 1.03 TCRB0606 - 390M 39.00 1 0.190 0.95 TCRB0606 - 470M 47.00 1 0.230 0.87 TCRB0606 - 560M 56.00 1 0.260 0.80 TCRB0606 - 680M 68.00 1 0.280 0.72 TCRB0606 - 820M 82.00 1 0.390 0.66 TCRB0606 - 101M 100.00 1 0.430 0.59 TCRB0606 - 121M 120.00 1 0.540 0.54 TCRB0606 - 151M 150.00 1 0.640 0.48 TCRB0606 - 181M 180.00 1 0.740 0.44 TCRB0606 - 221M 220.00 1 0.960 0.40 TCRB0606 - 271M 270.00 1 1.120 0.36 TCRB0606 - 331M 330.00 1 1.480 0.33 TCRB0606 - 391M 390.00 1 1.660 0.30 TCRB0606 - 471M 470.00 1 1.910 0.27 TCRB0606 - 561M 560.00 1 2.310 0.25 TCRB0606 - 681M 680.00 1 2.670 0.23 TCRB0606 - 821M 820.00 1 3.100 0.21 TCRB0606 - 102M 1000.00 1 4.450 0.19 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TCRB Coil Choke Inductors Radial TOKEN
(TCRB0805) Electrical Characteristics Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0805 - 100M 10.00 1 0.070 2.50 TCRB0805 - 120M 12.00 1 0.080 2.40 TCRB0805 - 150M 15.00 1 0.090 2.10 TCRB0805 - 180M 18.00 1 0.100 2.00 TCRB0805 - 220M 22.00 1 0.120 1.70 TCRB0805 - 270M 27.00 1 0.140 1.60 TCRB0805 - 330M 33.00 1 0.170 1.40 TCRB0805 - 390M 39.00 1 0.210 1.30 TCRB0805 - 470M 47.00 1 0.240 1.20 TCRB0805 - 560M 56.00 1 0.310 1.10 TCRB0805 - 680M 68.00 1 0.340 1.00 TCRB0805 - 820M 82.00 1 0.400 0.93 TCRB0805 - 101M 100.00 1 0.520 0.81 TCRB0805 - 121M 120.00 1 0.590 0.76 TCRB0805 - 151M 150.00 1 0.710 0.67 TCRB0805 - 181M 180.00 1 0.890 0.62 TCRB0805 - 221M 220.00 1 1.040 0.54 TCRB0805 - 271M 270.00 1 1.280 0.49 TCRB0805 - 331M 330.00 1 1.470 0.44 TCRB0805 - 391M 390.00 1 1.670 0.41 TCRB0805 - 471M 470.00 1 1.950 0.38 TCRB0805 - 561M 560.00 1 2.830 0.35 TCRB0805 - 681M 680.00 1 3.250 0.32 TCRB0805 - 821M 820.00 1 3.820 0.31 TCRB0805 - 102M 1000.00 1 5.280 0.25 TCRB0805 - 122M 1200.00 1 6.030 0.23 TCRB0805 - 152M 1500.00 1 7.150 0.21 TCRB0805 - 182M 1800.00 1 8.260 0.20 TCRB0805 - 222M 2200.00 1 11.100 0.18 TCRB0805 - 272M 2700.00 1 13.100 0.16 TCRB0805 - 332M 3300.00 1 15.900 0.14 TCRB0805 - 392M 3900.00 1 18.000 0.13 TCRB0805 - 472M 4700.00 1 23.900 0.12 TCRB0805 - 562M 5600.00 1 26.800 0.11 TCRB0805 - 682M 6800.00 1 31.700 0.098 TCRB0805 - 822M 8200.00 1 46.500 0.088 TCRB0805 - 103M 10000.00 1 55.700 0.081 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TCRB Coil Choke Inductors Radial TOKEN
(TCRB0807) Electrical Characteristics Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0807 - 100M 10.00 1 0.050 2.90 TCRB0807 - 120M 12.00 1 0.060 2.50 TCRB0807 - 150M 15.00 1 0.070 2.20 TCRB0807 - 180M 18.00 1 0.080 1.90 TCRB0807 - 220M 22.00 1 0.090 1.80 TCRB0807 - 270M 27.00 1 0.110 1.70 TCRB0807 - 330M 33.00 1 0.130 1.50 TCRB0807 - 390M 39.00 1 0.140 1.30 TCRB0807 - 470M 47.00 1 0.150 1.30 TCRB0807 - 560M 56.00 1 0.180 1.20 TCRB0807 - 680M 68.00 1 0.200 1.10 TCRB0807 - 820M 82.00 1 0.240 1.00 TCRB0807 - 101M 100.00 1 0.280 0.89 TCRB0807 - 121M 120.00 1 0.360 0.81 TCRB0807 - 151M 150.00 1 0.420 0.72 TCRB0807 - 181M 180.00 1 0.570 0.66 TCRB0807 - 221M 220.00 1 0.630 0.57 TCRB0807 - 271M 270.00 1 0.880 0.51 TCRB0807 - 331M 330.00 1 1.050 0.46 TCRB0807 - 391M 390.00 1 1.170 0.44 TCRB0807 - 471M 470.00 1 1.340 0.41 TCRB0807 - 561M 560.00 1 1.720 0.36 TCRB0807 - 681M 680.00 1 1.960 0.33 TCRB0807 - 821M 820.00 1 2.560 0.30 TCRB0807 - 102M 1000.00 1 2.940 0.27 TCRB0807 - 122M 1200.00 1 4.040 0.24 TCRB0807 - 152M 1500.00 1 4.700 0.22 TCRB0807 - 182M 1800.00 1 5.050 0.20 TCRB0807 - 222M 2200.00 1 6.250 0.18 TCRB0807 - 272M 2700.00 1 8.720 0.16 TCRB0807 - 332M 3300.00 1 10.600 0.15 TCRB0807 - 392M 3900.00 1 14.200 0.14 TCRB0807 - 472M 4700.00 1 16.700 0.12 TCRB0807 - 562M 5600.00 1 18.700 0.11 TCRB0807 - 682M 6800.00 1 21.800 0.10 TCRB0807 - 822M 8200.00 1 28.700 0.093 TCRB0807 - 103M 10000.00 1 33.000 0.084 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TCRB Coil Choke Inductors Radial TOKEN
(TCRB0809) Electrical Characteristics Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0809 - 100M 10.00 1 0.040 2.60 TCRB0809 - 120M 12.00 1 0.040 2.60 TCRB0809 - 150M 15.00 1 0.050 2.10 TCRB0809 - 180M 18.00 1 0.050 2.00 TCRB0809 - 220M 22.00 1 0.060 1.70 TCRB0809 - 270M 27.00 1 0.060 1.60 TCRB0809 - 330M 33.00 1 0.070 1.40 TCRB0809 - 390M 39.00 1 0.080 1.40 TCRB0809 - 470M 47.00 1 0.100 1.30 TCRB0809 - 560M 56.00 1 0.110 1.20 TCRB0809 - 680M 68.00 1 0.140 1.10 TCRB0809 - 820M 82.00 1 0.160 1.00 TCRB0809 - 101M 100.00 1 0.190 0.90 TCRB0809 - 121M 120.00 1 0.220 0.82 TCRB0809 - 151M 150.00 1 0.270 0.74 TCRB0809 - 181M 180.00 1 0.310 0.71 TCRB0809 - 221M 220.00 1 0.380 0.64 TCRB0809 - 271M 270.00 1 0.530 0.57 TCRB0809 - 331M 330.00 1 0.610 0.51 TCRB0809 - 391M 390.00 1 0.690 0.48 TCRB0809 - 471M 470.00 1 0.890 0.43 TCRB0809 - 561M 560.00 1 1.010 0.40 TCRB0809 - 681M 680.00 1 1.180 0.35 TCRB0809 - 821M 820.00 1 1.570 0.32 TCRB0809 - 102M 1000.00 1 1.840 0.30 TCRB0809 - 122M 1200.00 1 2.100 0.27 TCRB0809 - 152M 1500.00 1 2.800 0.23 TCRB0809 - 182M 1800.00 1 3.210 0.21 TCRB0809 - 222M 2200.00 1 4.210 0.19 TCRB0809 - 272M 2700.00 1 4.940 0.17 TCRB0809 - 332M 3300.00 1 6.160 0.15 TCRB0809 - 392M 3900.00 1 6.840 0.14 TCRB0809 - 472M 4700.00 1 7.890 0.13 TCRB0809 - 562M 5600.00 1 11.500 0.12 TCRB0809 - 682M 6800.00 1 13.200 0.11 TCRB0809 - 822M 8200.00 1 15.200 0.10 TCRB0809 - 103M 10000.00 1 22.000 0.089 TCRB0809 - 123M 12000.00 1 25.000 0.073 TCRB0809 - 153M 15000.00 1 29.100 0.068 TCRB0809 - 183M 18000.00 1 38.900 0.066 Continued on the following page. TCRB Coil Choke Inductors Radial TOKEN
Back to 1st Page - Coil Choke Inductors Radial (TCRB) Part Number: TCRB How to Order ULTCRB 0605 Code TUBE V UL P PVC NONE NO TUBE TUBE Inductance Code Inductance 1R0 1.00µH 100 10.00µH 101 100.00µH 102 1000.00µH 220 Tolerance Code Tolerance J 5% K 10% L 15% M 20% N 30% Y min Part Number Inductance (µH) Test Freq. (KHz) DCR (Ω)(max) IDC (A)(max) TCRB0809 - 223M 22000.00 1 44.900 0.059 TCRB0809 - 273M 27000.00 1 55.700 0.052 TCRB0809 - 333M 33000.00 1 64.200 0.048 TCRB0809 - 393M 39000.00 1 74.200 0.042 TCRB0809 - 473M 47000.00 1 96.400 0.038 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. Continued from the preceding page. 220 Code Size 0605 6.50×5.5mm 0606 6.50×6.50mm 0805 8.30×5.5mm 0807 8.30×7.50mm 0809 8.30×9.50mm Size TCRB Coil Choke Inductors Radial TOKEN
TCRC Choke Coil Inductors Radial Limit the alternating current through the choke coils (TCRC) Preview Choke coils, also known as: Choke, differential mode inductors, is used to limit the alternating current through the coil, high-frequency and low frequency choke coils. Token TCRC series structure with open magnetic circuit design and protect by UL or PVC Heat-shrinkable tube. The TCRC features with small size, high Q value, low cost, high self-resonance frequency, high availability of a large induced current, small magnetic flux leakage and so on. The TCRC is idael for notebook computers, inkjet printers, photocopying machines, display monitors, mobile phones, broadband modems, game consoles, color TV , VCR, camera, microwave ovens, lighting equipment, automotive electronics products. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Open magnetic circuit construction - Low cost and high reliability Applications : - Notebook, Inkjet printer, Copying machine, - Display Monitor, Cellular Phone, ADSL Modem, - Gaming machine, Color TV , Video tape recorder, - Microwave Oven, Lighting and Car Electronics. TOKEN
TCRC Choke Coil Inductors Radial Configurations & Dimensions Bottom View A B C E F Type ΦA(max) B(max) C ± 1.5 ΦE ± 0.05 F ± 0.5 Note: Design as Customer’s Requested Specifications. TOKEN
TCRC Choke Coil Inductors Radial Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC0406 - 1R0N 1.00 1 0.030 3.00 TCRC0406 - 1R5N 1.50 1 0.035 2.80 TCRC0406 - 1R8N 1.80 1 0.040 2.70 TCRC0406 - 2R2N 2.20 1 0.045 2.50 TCRC0406 - 2R7N 2.70 1 0.050 2.50 TCRC0406 - 3R3N 3.30 1 0.055 2.20 TCRC0406 - 3R9N 3.90 1 0.055 2.20 TCRC0406 - 4R7N 4.70 1 0.065 2.00 TCRC0406 - 5R6N 5.60 1 0.070 1.80 TCRC0406 - 6R8N 6.80 1 0.080 1.70 TCRC0406 - 8R2N 8.20 1 0.090 1.50 TCRC0406 - 100M 10.00 1 0.110 1.40 TCRC0406 - 120M 12.00 1 0.140 1.20 TCRC0406 - 150M 15.00 1 0.160 1.00 TCRC0406 - 180M 18.00 1 0.180 1.00 TCRC0406 - 220M 22.00 1 0.250 0.90 TCRC0406 - 270M 27.00 1 0.370 0.80 TCRC0406 - 330M 33.00 1 0.420 0.70 TCRC0406 - 390M 39.00 1 0.450 0.70 TCRC0406 - 470M 47.00 1 0.500 0.60 TCRC0406 - 560M 56.00 1 0.560 0.60 TCRC0406 - 680M 68.00 1 0.630 0.55 TCRC0406 - 820M 82.00 1 0.770 0.50 TCRC0406 - 101M 100.00 1 0.850 0.40 TCRC0406 - 121M 120.00 1 1.300 0.40 TCRC0406 - 151M 150.00 1 1.400 0.30 TCRC0406 - 181M 180.00 1 2.200 0.30 TCRC0406 - 221M 220.00 1 2.500 0.28 TCRC0406 - 271M 270.00 1 2.700 0.25 TCRC0406 - 331M 330.00 1 3.000 0.22 TCRC0406 - 391M 390.00 1 3.400 0.21 TCRC0406 - 471M 470.00 1 3.900 0.20 TCRC0406 - 561M 560.00 1 5.000 0.16 TCRC0406 - 681M 680.00 1 7.000 0.15 TCRC0406 - 821M 820.00 1 7.700 0.14 TCRC0406 - 102M 1000.00 1 8.700 0.12 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. (TCRC0406) Electrical Characteristics TOKEN
TCRC Choke Coil Inductors Radial (TCRC0608) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC0608 - 1R0N 1.00 1 0.015 3.00 TCRC0608 - 1R2N 1.20 1 0.015 2.80 TCRC0608 - 1R5N 1.50 1 0.015 2.70 TCRC0608 - 2R2N 2.20 1 0.015 2.60 TCRC0608 - 2R7N 2.70 1 0.020 2.50 TCRC0608 - 3R3N 3.30 1 0.020 2.50 TCRC0608 - 3R9N 3.90 1 0.025 2.50 TCRC0608 - 4R7N 4.70 1 0.025 2.30 TCRC0608 - 5R6N 5.60 1 0.030 2.10 TCRC0608 - 6R8N 6.80 1 0.030 1.80 TCRC0608 - 8R2N 8.20 1 0.035 1.20 TCRC0608 - 100M 10.00 1 0.045 1.00 TCRC0608 - 120M 12.00 1 0.050 1.00 TCRC0608 - 150M 15.00 1 0.055 0.90 TCRC0608 - 180M 18.00 1 0.090 0.90 TCRC0608 - 220M 22.00 1 0.095 0.80 TCRC0608 - 270M 27.00 1 0.110 0.75 TCRC0608 - 330M 33.00 1 0.125 0.70 TCRC0608 - 390M 39.00 1 0.140 0.65 TCRC0608 - 470M 47.00 1 0.160 0.60 TCRC0608 - 560M 56.00 1 0.180 0.60 TCRC0608 - 680M 68.00 1 0.200 0.56 TCRC0608 - 820M 82.00 1 0.270 0.48 TCRC0608 - 101M 100.00 1 0.310 0.45 TCRC0608 - 121M 120.00 1 0.370 0.43 TCRC0608 - 151M 150.00 1 0.470 0.40 TCRC0608 - 181M 180.00 1 0.540 0.40 TCRC0608 - 221M 220.00 1 0.730 0.38 TCRC0608 - 271M 270.00 1 0.830 0.32 TCRC0608 - 331M 330.00 1 0.950 0.30 TCRC0608 - 391M 390.00 1 1.220 0.25 TCRC0608 - 471M 470.00 1 1.630 0.22 TCRC0608 - 561M 560.00 1 1.800 0.20 TCRC0608 - 681M 680.00 1 2.100 0.18 TCRC0608 - 821M 820.00 1 2.900 0.17 TCRC0608 - 102M 1000.00 1 3.200 0.15 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRC Choke Coil Inductors Radial (TCRC0810) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC0810 - 1R0N 1.00 1 0.015 4.50 TCRC0810 - 1R5N 1.50 1 0.020 4.50 TCRC0810 - 2R2N 2.20 1 0.020 4.20 TCRC0810 - 2R7N 2.70 1 0.020 4.20 TCRC0810 - 3R3N 3.30 1 0.020 4.00 TCRC0810 - 3R9N 3.90 1 0.020 4.00 TCRC0810 - 4R7N 4.70 1 0.025 4.00 TCRC0810 - 5R6N 5.60 1 0.025 4.00 TCRC0810 - 6R8N 6.80 1 0.025 4.00 TCRC0810 - 8R2N 8.20 1 0.035 3.80 TCRC0810 - 100M 10.00 1 0.040 3.80 TCRC0810 - 120M 12.00 1 0.040 3.20 TCRC0810 - 150M 15.00 1 0.045 2.80 TCRC0810 - 180M 18.00 1 0.060 2.50 TCRC0810 - 220M 22.00 1 0.070 2.10 TCRC0810 - 270M 27.00 1 0.085 2.00 TCRC0810 - 330M 33.00 1 0.090 1.80 TCRC0810 - 390M 39.00 1 0.100 1.60 TCRC0810 - 470M 47.00 1 0.110 1.50 TCRC0810 - 560M 56.00 1 0.150 1.30 TCRC0810 - 680M 68.00 1 0.190 1.00 TCRC0810 - 820M 82.00 1 0.210 0.90 TCRC0810 - 101M 100.00 1 0.240 0.80 TCRC0810 - 121M 120.00 1 0.260 0.80 TCRC0810 - 151M 150.00 1 0.310 0.75 TCRC0810 - 181M 180.00 1 0.380 0.70 TCRC0810 - 221M 220.00 1 0.430 0.65 TCRC0810 - 271M 270.00 1 0.490 0.63 TCRC0810 - 331M 330.00 1 0.660 0.60 TCRC0810 - 391M 390.00 1 0.790 0.58 TCRC0810 - 471M 470.00 1 0.910 0.52 TCRC0810 - 561M 560.00 1 1.130 0.50 TCRC0810 - 681M 680.00 1 1.300 0.40 TCRC0810 - 821M 820.00 1 1.530 0.30 TCRC0810 - 102M 1000.00 1 1.800 0.27 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRC Choke Coil Inductors Radial (TCRC0912) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC0912 - 1R0N 1.00 1 0.015 5.00 TCRC0912 - 1R5N 1.50 1 0.015 5.00 TCRC0912 - 1R8N 1.80 1 0.015 5.00 TCRC0912 - 2R2N 2.20 1 0.015 5.00 TCRC0912 - 3R3N 3.30 1 0.020 4.80 TCRC0912 - 3R9N 3.90 1 0.020 4.80 TCRC0912 - 4R7N 4.70 1 0.020 4.50 TCRC0912 - 5R6N 5.60 1 0.025 4.00 TCRC0912 - 6R8N 6.80 1 0.025 3.90 TCRC0912 - 8R2N 8.20 1 0.025 3.50 TCRC0912 - 100M 10.00 1 0.030 3.40 TCRC0912 - 120M 12.00 1 0.030 3.20 TCRC0912 - 150M 15.00 1 0.040 3.00 TCRC0912 - 180M 18.00 1 0.045 2.80 TCRC0912 - 220M 22.00 1 0.050 2.70 TCRC0912 - 270M 27.00 1 0.055 2.50 TCRC0912 - 330M 33.00 1 0.055 2.50 TCRC0912 - 390M 39.00 1 0.060 2.00 TCRC0912 - 470M 47.00 1 0.070 1.80 TCRC0912 - 560M 56.00 1 0.080 1.70 TCRC0912 - 680M 68.00 1 0.090 1.50 TCRC0912 - 820M 82.00 1 0.110 1.40 TCRC0912 - 101M 100.00 1 0.160 1.20 TCRC0912 - 121M 120.00 1 0.170 1.10 TCRC0912 - 151M 150.00 1 0.200 1.00 TCRC0912 - 181M 180.00 1 0.220 0.90 TCRC0912 - 221M 220.00 1 0.260 0.80 TCRC0912 - 271M 270.00 1 0.390 0.70 TCRC0912 - 331M 330.00 1 0.450 0.50 TCRC0912 - 391M 390.00 1 0.490 0.45 TCRC0912 - 471M 470.00 1 0.620 0.43 TCRC0912 - 561M 560.00 1 0.640 0.40 TCRC0912 - 681M 680.00 1 0.790 0.38 TCRC0912 - 821M 820.00 1 1.340 0.35 TCRC0912 - 102M 1000.00 1 1.820 0.30 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRC Choke Coil Inductors Radial (TCRC1012) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC1012 - 1R0N 1.00 1 0.010 6.00 TCRC1012 - 1R5N 1.50 1 0.010 6.00 TCRC1012 - 1R8N 1.80 1 0.015 6.00 TCRC1012 - 2R7N 2.70 1 0.015 5.50 TCRC1012 - 3R3N 3.30 1 0.015 5.50 TCRC1012 - 3R9N 3.90 1 0.020 5.00 TCRC1012 - 4R7N 4.70 1 0.020 5.00 TCRC1012 - 5R6N 5.60 1 0.025 4.80 TCRC1012 - 6R8N 6.80 1 0.025 4.80 TCRC1012 - 8R2N 8.20 1 0.025 4.50 TCRC1012 - 100M 10.00 1 0.025 4.50 TCRC1012 - 120M 12.00 1 0.025 4.30 TCRC1012 - 150M 15.00 1 0.035 4.30 TCRC1012 - 180M 18.00 1 0.040 4.00 TCRC1012 - 220M 22.00 1 0.045 3.70 TCRC1012 - 270M 27.00 1 0.045 3.50 TCRC1012 - 330M 33.00 1 0.055 3.00 TCRC1012 - 390M 39.00 1 0.060 2.50 TCRC1012 - 470M 47.00 1 0.080 2.30 TCRC1012 - 560M 56.00 1 0.085 2.00 TCRC1012 - 680M 68.00 1 0.095 2.00 TCRC1012 - 820M 82.00 1 0.110 1.80 TCRC1012 - 101M 100.00 1 0.140 1.70 TCRC1012 - 121M 120.00 1 0.160 1.50 TCRC1012 - 151M 150.00 1 0.180 1.40 TCRC1012 - 181M 180.00 1 0.250 1.30 TCRC1012 - 221M 220.00 1 0.280 1.00 TCRC1012 - 271M 270.00 1 0.420 0.90 TCRC1012 - 331M 330.00 1 0.540 0.80 TCRC1012 - 391M 390.00 1 0.600 0.80 TCRC1012 - 471M 470.00 1 0.660 0.70 TCRC1012 - 561M 560.00 1 0.740 0.60 TCRC1012 - 681M 680.00 1 0.840 0.50 TCRC1012 - 821M 820.00 1 1.080 0.50 TCRC1012 - 102M 1000.00 1 1.390 0.50 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRC Choke Coil Inductors Radial (TCRC1016) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRC1016 - 1R0N 1.00 1 0.010 9.00 TCRC1016 - 1R5N 1.50 1 0.015 9.00 TCRC1016 - 1R8N 1.80 1 0.015 9.00 TCRC1016 - 2R7N 2.70 1 0.015 9.00 TCRC1016 - 3R3N 3.30 1 0.015 8.50 TCRC1016 - 3R9N 3.90 1 0.015 8.00 TCRC1016 - 4R7N 4.70 1 0.020 7.50 TCRC1016 - 5R6N 5.60 1 0.025 7.50 TCRC1016 - 6R8N 6.80 1 0.025 7.50 TCRC1016 - 8R2N 8.20 1 0.025 7.20 TCRC1016 - 100M 10.00 1 0.030 7.20 TCRC1016 - 120M 12.00 1 0.030 7.00 TCRC1016 - 150M 15.00 1 0.035 6.50 TCRC1016 - 180M 18.00 1 0.035 6.30 TCRC1016 - 220M 22.00 1 0.045 5.50 TCRC1016 - 270M 27.00 1 0.050 4.50 TCRC1016 - 330M 33.00 1 0.070 4.00 TCRC1016 - 390M 39.00 1 0.070 3.80 TCRC1016 - 470M 47.00 1 0.070 3.60 TCRC1016 - 560M 56.00 1 0.080 3.20 TCRC1016 - 680M 68.00 1 0.090 3.00 TCRC1016 - 820M 82.00 1 0.095 2.60 TCRC1016 - 101M 100.00 1 0.120 2.50 TCRC1016 - 121M 120.00 1 0.140 2.30 TCRC1016 - 151M 150.00 1 0.170 2.10 TCRC1016 - 181M 180.00 1 0.190 2.00 TCRC1016 - 221M 220.00 1 0.250 1.80 TCRC1016 - 271M 270.00 1 0.340 1.50 TCRC1016 - 331M 330.00 1 0.450 1.50 TCRC1016 - 391M 390.00 1 0.510 1.30 TCRC1016 - 471M 470.00 1 0.560 1.20 TCRC1016 - 561M 560.00 1 0.640 1.00 TCRC1016 - 681M 680.00 1 0.710 1.00 TCRC1016 - 821M 820.00 1 1.010 0.90 TCRC1016 - 102M 1000.00 1 1.200 0.80 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRC Choke Coil Inductors Radial Back to 1st Page - Choke Coil Inductors Radial (TCRC) Part Number: TCRC How to Order ULTCRC 0406 Code TUBE V UL P PVC NONE NO TUBE TUBE Inductance Code Inductance 1R0 1.00µH 100 10.00µH 101 100.00µH 102 1000.00µH 1R0 Tolerance Code Tolerance J 5% K 10% L 15% M 20% N 30% Y min M Code Size 0406 6.0×9.5mm 0608 8.0×11.5mm 0810 10.0×14.0mm 0912 11.0×16.5mm 1012 12.0×16.5mm 1016 12.5×21.0mm Size TOKEN
TCRS Choke Coil Inductors Radial Choke coils shielded construction design for higher frequency (TCRS) Preview Token TCRS series structure with magnetic shielded construction design and protect by UL or PVC Heat- shrinkable tube. The TCRS features with small size, space savings, wide inductance range, high Q value, low cost, high availability of a large induced current, high self-resonance frequency, small magnetic flux leakage and so on. Choke coils, also known as: Choke, differential mode inductors, is used to limit the alternating current through the coil, high-frequency and low frequency choke coils. The TCRS is idael for notebook computers, inkjet printers, photocopying machines, color TV , VCR, camera, microwave ovens, display monitors, mobile phones, broadband modems, game consoles, lighting equipment, automotive electronics products. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Magnetic shielded construction. - Ideal for use as an inductor for high current power supplies in all types of electronic instruments. Applications : - Notebook, Inkjet printer, Copying machine, - Display Monitor, Cellular Phone, ADSL Modem, - Gaming machine, Color TV , Video tape recorder, - Microwave Oven, Lighting and Car Electronics. TOKEN
TCRS Choke Coil Inductors Radial Configurations & Dimensions B A C D E Type ΦA (max) B (max) C ± 1.0 D ± 0.05 E ± 0.5 Note: Design as Customer’s Requested Specifications. (TCRS0606) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRS0606 - 220M 22.00 1 0.130 0.96 TCRS0606 - 270M 27.00 1 0.180 0.87 TCRS0606 - 330M 33.00 1 0.210 0.78 TCRS0606 - 390M 39.00 1 0.260 0.72 TCRS0606 - 470M 47.00 1 0.290 0.66 TCRS0606 - 560M 56.00 1 0.330 0.60 TCRS0606 - 680M 68.00 1 0.360 0.55 TCRS0606 - 820M 82.00 1 0.390 0.50 TCRS0606 - 101M 100.00 1 0.540 0.45 TCRS0606 - 121M 120.00 1 0.620 0.41 TCRS0606 - 151M 150.00 1 0.720 0.37 TCRS0606 - 181M 180.00 1 0.880 0.34 TCRS0606 - 221M 220.00 1 0.990 0.30 TCRS0606 - 271M 270.00 1 1.520 0.27 TCRS0606 - 331M 330.00 1 1.690 0.25 TCRS0606 - 391M 390.00 1 1.850 0.23 TCRS0606 - 471M 470.00 1 2.850 0.21 TCRS0606 - 561M 560.00 1 3.210 0.19 TCRS0606 - 681M 680.00 1 3.600 0.17 TCRS0606 - 821M 820.00 1 4.870 0.16 TCRS0606 - 102M 1000.00 1 5.560 0.14 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRS Choke Coil Inductors Radial (TCRS0807) Electrical Characteristics Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TCRS0807 - 220M 22.00 1 0.080 1.60 TCRS0807 - 270M 27.00 1 0.100 1.40 TCRS0807 - 330M 33.00 1 0.140 1.30 TCRS0807 - 390M 39.00 1 0.150 1.20 TCRS0807 - 470M 47.00 1 0.170 1.10 TCRS0807 - 560M 56.00 1 0.190 0.99 TCRS0807 - 680M 68.00 1 0.210 0.89 TCRS0807 - 820M 82.00 1 0.270 0.81 TCRS0807 - 101M 100.00 1 0.320 0.74 TCRS0807 - 121M 120.00 1 0.360 0.67 TCRS0807 - 151M 150.00 1 0.510 0.60 TCRS0807 - 181M 180.00 1 0.570 0.55 TCRS0807 - 221M 220.00 1 0.760 0.50 TCRS0807 - 271M 270.00 1 0.860 0.45 TCRS0807 - 331M 330.00 1 0.970 0.41 TCRS0807 - 391M 390.00 1 1.280 0.37 TCRS0807 - 471M 470.00 1 1.440 0.34 TCRS0807 - 561M 560.00 1 1.610 0.31 TCRS0807 - 681M 680.00 1 2.070 0.28 TCRS0807 - 821M 820.00 1 2.330 0.26 TCRS0807 - 102M 1000.00 1 2.720 0.23 TCRS0807 - 122M 1200.00 1 3.980 0.21 TCRS0807 - 152M 1500.00 1 4.500 0.19 TCRS0807 - 182M 1800.00 1 6.810 0.17 TCRS0807 - 222M 2200.00 1 7.560 0.16 TCRS0807 - 272M 2700.00 1 8.540 0.14 TCRS0807 - 332M 3300.00 1 9.740 0.13 TCRS0807 - 392M 3900.00 1 12.900 0.12 TCRS0807 - 472M 4700.00 1 14.700 0.11 TCRS0807 - 562M 5600.00 1 20.400 0.099 TCRS0807 - 682M 6800.00 1 23.000 0.089 TCRS0807 - 822M 8200.00 1 30.600 0.081 TCRS0807 - 103M 10000.00 1 35.000 0.074 Note: Test Freq.: 1KHz / 0.25V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. TOKEN
TCRS Choke Coil Inductors Radial Back to 1st Page - Choke Coil Inductors Radial (TCRS) Part Number: TCRS How to Order 0606TCRS 220 Inductance Code Inductance 220 22.00µH 101 100.00µH 102 1000.00µH 103 10000.00µH M Tolerance Code Tolerance J 5% K 10% L 15% M 20% N 30% Y min Code Size 0606 6.5×6.5mm 0807 8.5×7.3mm Size TOKEN
TC19 Power Gap Toroidal Inductors Through Hole Gap Toroidal Coils Make Your Design More Cost-Effective (TC19) Preview Gapped toroidal coils usually require that the gap be filled with some type of insulating material to facilitate the winding process. Split core current coils can be assembled directly on a conductor while toroids must be passed over a disconnected end of the conductor. Toroidal inductors are electronic components with the high performers among inductors, typically consisting of a circular ring-shaped magnetic core of iron powder, ferrite, or other material around which wire is coiled to make an inductor. Their windings cool better because of the proportionally larger surface area. Toroidal inductors with a round core cross section are better performers than toroidal inductors with a rectangular cross section. Token utilizes the latest micro gap toroid technology enabling the most cost-effective designs in manufacturing through hole (TC19) products. Token’s TC19 Toroidal Series manufactured by Low loss powdered iron cores offer the compact size and lower electromagnetic interference (EMI). Token toroidal can have higher Q factors and higher inductance than similarly constructed solenoid coils. This is due largely to the smaller number of turns required when the core provides a closed magnetic path. The magnetic flux in a toroid is largely confined to the core, preventing its energy from being absorbed by nearby objects, making toroidal cores essentially self-shielding. The TC19 series is suitable for a broad range of applications, such as high-frequency coils and transformers. Full line products meet RoHS compliant. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Micro gap toroid technology. - Not easy magnetic saturation. Applications : - VCD, DVD. TOKEN
TC19 Power Gap Toroidal Inductors Configurations & Dimensions TC19 A B D C E Land Pattern TC19A Top view Bottom View A 2 A B C61 E F D Type A B C D E F Note: Design as Customer’s Requested Specifications.
Electrical Characteristics
Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) IDC (A)(max) TC19 19.5 100 0.093 3.00 TC19A 19.5 100 0.093 3.00 Note: Test Freq.: 100KHz / 0.1V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at IDC. How to Order 0606TC19 Back to 1st Page - Power Inductor Gap Toroidal coils (TC19) Power Inductor Through Hole Gap Toroidal Coils: TC19, TC19A TOKEN
TCPC Through Hole Choke Coil Inductors Choke Coils Lot of Dimensions to Choose (TCPC) Preview Token TCPC series structure with epoxy resin encapsulated mould sealed and are available with vertical and horizontal type. The TCPC features with small size, high Q value, low cost, high self-resonance frequency, high availability of a large induced current, small magnetic flux leakage. The TCPC is suotable for display monitors, camera, microwave ovens, lighting equipment, mobile phones, broadband modems, game consoles, color TV , VCR, notebook computers, inkjet printers, photocopying machines, automotive electronics products. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - High rated current for high current circuits. - Have lot of dimensions to choose. Applications : - Switching Regulators, Power amplifiers. - Power Suppliers, Typewriter, Car Electronics. TOKEN
TCPC Through Hole Choke Coil Inductors Configurations & Dimensions Part Number: TCPC How to Order 0513TCPC Tolerance Code Tolerance J 5% K 10% L 15% M 20% N 30% Y min Core Dimension: Outside Diameter & Height Back to 1st Page - Choke Coils Through Hole (TCPC) 101 K Inductance TOKEN
TC1213 Through Hole Power Inductors Token Develops High-Efficiency Coiled Power Inductors (TC1213) Preview Token has announced a wire-wound power inductor designed for use in the Mother Board of PC and Notebook and various other power devices. The TC1213, measures only 14.0 x 14.5 mm, with a maximum height of 9.5 mm. Most conventional DC-DC converters use inductors with cores made of relatively expensive metallic materials. By contrast, this product, with a ferrite material, realizes the same DC bias characteristics and other performance features as same-size inductors made with more expensive materials. The TC1213 offers customers much greater design freedom with large current and low DCR by meeting the need to replace power inductors. Full line products meet RoHS compliant. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Large Current and Low DCR. Applications : - Mother Board of PC. - Mother Board of Notebook. TOKEN
TC1213 Through Hole Power Inductors Configurations & Dimensions A B D C BottomView TC F E I G HTop View Land Pattern Type A(max) B(max) C ± 1.0 D(max) E(Ref.) F(Ref.) G H I Note: Design as Customer’s Requested Specifications. Part Number Inductance(µH) Test Freq.(KHz) DCR (Ω)(max) Peak Current (A) (max) Irms (A)(max) TC1213 - R68N 0.68 100 0.0015 40.00 20.00 TC1213A - R33N 0.33 100 0.0015 40.00 20.00 TC1213B - 1R0N 1.00 100 0.0015 35.00 20.00 Note: Test Freq.: 100KHz / 0.1V. Operating Temp.: -40°C ~ +85°C Inductance drop = 10% typ. at Peak Current. ΔT=40°C rise at Irms. Part Number: TC1213, TC1213A , TC1213B How to Order 1R0TC1213B N Code Inductance R68 0.68µH 1R0 1.00µH Inductance Tolerance Code Tolerance N 30% Back to 1st Page - Power Inductors Through Hole (TC1213) TOKEN
Token introduces high-current & high saturation flux density compact power inductor (TCLP/TCVP) Preview Token Electronics Power Solutions has enhanced its toroidal surface-mount and radial lead inductor portfolios with the addition of four new ranges of RoHS compliant components. The surface mount (TCLP/TCVP) series are general-purpose radial leaded inductors suitable for providing high saturation flux density and higher current ratings applications such as those found in power supplies. The (TCLP/TCVP) series of toroidal surface-mount inductors meanwhile are designed for use in switching AC/DC power supplies and DC/DC converters. Both of TCLP and TCVP version secure 4 terminal mounting inductor more versatile inductance combination by series or parallel connections. Token (TCLP/TCVP) surface mount magnetics that can be used as single, or coupled inductors, or 1:1 transformers that provide isolation between two windings are designed around high frequency low loss material. The (TCLP/TCVP) series toroidal surface-mount inductors have compact overall dimensions with a maximum overall height of less than 13 mm and 21 mm. The toroidal construction of the new inductors aids design engineers by helping minimise EMI issues. Custom parts are available on request. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - high saturation for surface mounting. - Large Current and Low DCR. Applications : - TV BOX. - Power supply applications. - Output Ripple Current Filter. TOKEN
Configurations & Dimensions A B E D F G H J K TCVP Side View Bottom View TCLP A B E D C F G H I J C 2 3 4 2 1 4 1 4 Type A(max) B(max) C D E F G H I J Note: Design as Customer’s Requested Specifications. Part Number Inductance(µH) Test Freq.(KHz) L@IDC(µH)(min) DCR (Ω)(max) IDC (A)(max) TC*P - 60E - 151M 150 100 125 0.210 1.70 TC*P - 60E - 221M 220 100 180 0.250 1.50 TC*P - 60E - 331M 330 100 280 0.480 1.00 TC*P - 60E - 471M 470 100 400 0.660 0.90 TC*P - 60E - 681M 680 100 590 0.930 0.85 TC*P - 60E - 821M 820 100 700 1.300 0.75 TC*P - 60E - 102M 1000 100 930 1.600 0.50 TOKEN
Part Number: TCLP, TCVP How to Order 60ETCLP 151 Core Material Tolerance Code Tolerance M 20% N 30% Back to 1st Page - Large Current Power Inductors (TCLP/TCVP) M Code Inductance 151 150µHc 471 470.00µH 102 1000.00µH Inductance TOKEN
Air Coils Inductors, Spring Coils - TCAC Series Air Coils Inductors TCAC Air Coils Inductors Spring Coils Token will do any custom coil windings of Air Coils for you (TCAC) Preview Token manufactures all types of air coils inductors. Air Coils’ another name is Spring Coils. Token’s Air Core Coil TCAC Series has advantages of free from iron losses, non-linearity, single layer coils structure, low self- capacitance, and self-resonant frequency. TCAC’s inductance is unaffected by the current it carries. This contrasts with the situation with coils using ferromagnetic cores whose inductance tends to reach a peak at moderate field strengths before dropping towards zero as saturation approaches. Sometimes non-linearity in the magnetization curve can be tolerated; for example in switching converters. In circuits such as audio cross over networks in Hi-Fi speaker systems you must avoid distortion; then you need an air coil. Most radio transmitters rely on air coils to prevent the production of harmonics. Token’s TCAC Series is custom coil windings. Please call Token Sales for your requirements to have high quality work at a reasonable tooling cost and low cost volume production. Features : - High Q values - High frequency Applications : - Set up box, CATV & Electronic Products. TOKEN
TCAC Air Coils Inductors, Spring Coils Configurations Note: Design as Customer’s Requested Specifications. TOKEN
TCAC Air Coils Inductors, Spring Coils Winding Formula & Q Factor Single layer air coil winding formula Methods and Increasing Q Factor The following single layer air coil formula is most accurate when the coil length is greater than 0.67r and the frequency is less than 10 MHz. As the frequency goes above 10MHz, the formula becomes less accurate, because parasitics dominate the circuit. In all cases, the length is 4 times the radius. Formula in Inch Units: L = r2N2 / (9r + 10A); N = (L(9r + 10A) / r2)1/2 Formula in Metric Units: L = 0.394r2N2 / (9r + 10A); N = (L(9r + 10A) / 0.394r2)1/2 Where:
- L = inductance (in microhenries).
- r = radius of coil (in inches or cm).
- N = number of turns.
- A = length of winding (in inches or cm). The Q or Quality Factor of an inductor is the ratio of its inductive reactance XL to its series resistance RS. The larger the ratio, the better the inductor. Formula: Q = XL / RS, Where:
- XT = 2πƒL. where ƒ = Frequency (Hz); L = Inductance in Henries.
- RS is determined by multiplying the length of the wire used to wind the coil by the D.C. resistance per unit length for the wire gage used.
- Q changes dramatically as a function of frequency.
- At lower frequencies, Q is very good because only the D.C. resistance of the windings has an effect which is very low.
- As frequency goes up, Q will increase up to about the point where the skin effect and the combined distributed capacitances begin to dominate.
- From then on, Q falls rapidly and becomes 0 at the self resonance frequency of the coil. Increasing Q of Inductors:
- Spread the windings. Air gaps between the windings decrease the distributed capacitances.
- Use a ferrite core or powdered iron to wind the coil on. This will increase the permeability of the space around the core.
- Decrease the series resistance of the windings by increasing the wire gage used. Larger wire has a lower resistance per unit length. TOKEN
TCAC Air Coils Inductors, Spring Coils Part Number: TCAC How to Order RTCAC 0.8 Type of Winding Inner Diameter(mm) Back to 1st Page - Air Coils Inductors, Spring Coils (TCAC) 3.1 Wire Diameter(mm) 8.5 Code Type of Winding R Clockwise winding L Counter clockwise winding Number of Turns TOKEN
TCB7T Choke Coil Inductors Leaded type common mode inductor Chokes clean up high-speed signals (TCB7T) Preview Token TCB7T series wire-wound common-mode choke coil includes a magnetic core having a winding core portion and a pair of flanges provided at respective ends of the winding core portion, external electrodes provided on the respective flanges, a pair of windings wound around the winding core portion, each end of the pair of the windings being extended and connected to the external electrode. For designers seeking to suppress common mode noise on high speed differential signal lines, without distortion, Token has announced the TCB7T Series of compact through hole common-mode choke coils. Taking advantage of Token’s advanced winding technology and superior ferrite materials, the TCB7T coils are ultracompact and provide accurate transmission of high-speed differential signals. Common mode choke coil circuits are increasingly being used for the effective suppression of common mode noise without distorting the waveform of high-speed signals. The TCB7T wirewound coils measure just 7.2 x 7.1 x 4.5 mm in maximum profile, with a tight ±0.5 mm dimensional tolerance, making them ideal for today’s high speed products, particularly those incorporating double balance mixers, impedance transformers,broad-band transformers applications. Custom parts are available on request. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Pair wire coil for high stability. Applications : - Double balance mixers, impedance transformers. - broad-band transformers. TOKEN
TCB7T Choke Coil Inductors Configurations & Dimensions A B C E D Type A(max) B(max) C ± 1.0 D ± 0.5 E ± 0.05 Note: Design as Customer’s Requested Specifications Part Number Winding Turns Operating Freq. Ranges ( MHz ) Insertion Loss (dB) Figure Double balanced mixer TCB7T - 456DB1013 1 50 ~ 400 10dB(max) 1 TCB7T - 456DB1014 2 10 ~ 1.0 GHz 6dB(max) 1 TCB7T - 456DB1005 3 8 ~ 800 3.5dB(max) 1 TCB7T - 456DB1006 4 6 ~ 600 2.5dB(max) 1 TCB7T - 456DB1007 5 5 ~ 500 2dB(max) 1 TCB7T - 456DB1009 2 400 ~ 1.3 GHz 4dB(max) 1 Distributor TCB7T - 456DS1012 - 20 ~ 600 In to Out-1,2 4.5dB(max) Out-1 to Out-2 (Isolation)10dB(min) Directional coupler TCB7T - 456PS1015 4 6 ~ 600 In to Out-1 1.3dB(max) In to Out-2 11dB-14dB 3 TCB7T - 456PS1016 5 6 ~ 600 In to Out-1 0.9dB(max) In to Out-2 13dB-16dB 3 TCB7T - 456PS1011 6 6 ~ 600 In to Out-1 0.8dB(max) In to Out-2 15dB-17dB 3 TOKEN
TCB7T Choke Coil Inductors Pin connections Diagram Double Balanced Mixer Fig. 1 Fig. 2 Fig. 3 Distributor Directional coupler In Out 1 Out 2 In Out 2 Out 1 Part Number: TCB7T How to Order 456DB1013TCB7T Type Code Type 456DS Distributor 456PS Directional coupler 456DB Double balance mixer Back to 1st Page - Common Mode Choke Coil Inductors (TCB7T) TOKEN
TCTK Toroidal Coils Power Inductor Toroidal Inductors with closed magnetic circuit for lowest EMI (TCTK) Preview Toroidal coils are electronic components with the high performers among inductors, typically consisting of a circular ring-shaped magnetic core of iron powder, ferrite, or other material around which wire is coiled to make an inductor. Their windings cool better because of the proportionally larger surface area. Toroidal inductors with a round core cross section are better performers than toroidal inductors with a rectangular cross section. With vertical base mounted Token TCTK series toroidal coils introduces advanced materials of iron core and special-purpose resins to produce the greatest inductance, high current, Lowest EMI, and Low cost. The TCTK is the most common kind of power inductors. Token TCTK utilizes closed magnetic circuit design enabling the lowest EMI and is suitable for Copying Machine, Display Monitor, ADSL Modem, Refrigerator, Laundry Machine, Microwave Oven, Car Electronics, Gaming Machine, Color TV , Video Camera, and Air Conditioner. Full line products meet RoHS compliant. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Vertical base mounted. - Low cost, High current. - Closed magnetic circuit for lowest EMI. Applications : - Copying Machine, Display Monitor, ADSL Modem, - Gaming Machine, Color TV , Video Camera, Air Conditioner, - Refrigerator, Laundry Machine, Microwave Oven and Car Electronics. TOKEN
TCTK Toroidal Coils Power Inductor Configurations & Dimensions A B C E D D F TC-XXX BOTTOM VIEW Note: Design as Customer’s Requested Specifications Part Number: TCTK4452, TCTK5052, TCTK6852, TCTK8052 How to Order 1R0TCTK4452 Inductance Code Tolerance K 10% L 15% M 20% N 30% Y minS Back to 1st Page - Power Inductor Toroidal Coils (TCTK) 1R0 Tolerance TOKEN
TCTC High Current Toroidal Inductors Low Loss Powdered Iron Cores, Low EMI Toroidal Coils (TCTC) Preview Toroidal inductors and transformers are electronic components with the high performers among inductors, typically consisting of a circular ring-shaped magnetic core of iron powder, ferrite, or other material around which wire is coiled to make an inductor. Their windings cool better because of the proportionally larger surface area. Toroidal inductors with a round core cross section are better performers than toroidal inductors with a rectangular cross section. Token’s TCTC Toroidal Series manufactured by Low loss powdered iron cores offer the smallest size by volume and weight, and lower electromagnetic interference (EMI). Token toroidal can have higher Q factors and higher inductance than similarly constructed solenoid coils. This is due largely to the smaller number of turns required when the core provides a closed magnetic path. The magnetic flux in a toroid is largely confined to the core, preventing its energy from being absorbed by nearby objects, making toroidal cores essentially self-shielding. The TCTC series is suitable for a broad range of applications, such as high-frequency coils and transformers. Full line products meet RoHS compliant. Token will also produce devices outside these specifications to meet specific customer requirements, please contact our sales for more information. Features : - Low EMI. - Low Cost. - High Current. Applications : - Notebook, Inkjet Printer,Copying Machine, - Copying Machine, Display Monitor, ADSL Modem, - Color TV , Video Camera, Air Conditioner, Refrigerator, - Laundry Machine, Microwave Oven and Car Electronics, etc.. TOKEN
TCTC High Current Toroidal Inductors Configurations & Dimensions Back to 1st Page - Toroidal Inductors (TCTC) A B DC Part Number Dimentions (mm) Turns Inductance L (µH) RDC Note: Design as Customer’s Requested Specifications. How to Order IRTCTC 330 1506 J Part Number: TCTC Core Size Code Tolerance J 5% K 10% L 15% M 20% N 30% Y minS Core Type Tolerance Code Inductance 330 33µH 121 120µH Inductance TOKEN
TCFB Inductor Filter Ferrite Beads Ferrite Beads Filter Radio Frequency Interference and Noise (TCFB) Preview Ferrite bead is a kind of anti-jamming applications the fastest growing components, cheap, easy to use, filtering high-frequency noise were improved significantly. Ferrite beads commonly used in filtering and electromagnetic noise reduction, Token’s Ferrite Beads TCFB series manufactured by using iron, nickel, zinc oxide mixture made with high resistivity and high magnetic permeability. Ferrite bead in series with the signal or power path, it can be used to suppress differential mode noise. By comparing with traditional inductors, Token’s TCFB has better high-frequency filter characteristics. Ferrites at high frequencies showed resistance characteristics at high frequencies, equivalent to a low inductor quality factor, it can be quite a wide frequency range, to maintain a high impedance, thereby enhancing the effectiveness of high-frequency filter. The TCFB series is lead-free and RoHS compliant. Detailed specifications, both mechanical and electrical, please contact our sales representative for more information. Features : - Low cost, high reliability. - Reducing radio frequency interference and noise. Applications : - VGA card, EGA card, Mother board, TV game. TOKEN
TCFB Inductor Filter Ferrite Beads Configurations & Dimensions A B C Type A B C Impedance (Ω) Min. 10MHz 100MHz Note: Only available some sizes for Radial Double & Single core type. TOKEN
TCFB Inductor Filter Ferrite Beads Back to 1st Page - Inductor Filter Ferrite Beads (TCFB) How to Order 3547TCFB TB R Part Number: TCFB Form Code Type of Winding P Bulk TR Taping Reel TB Tapping Box Outside Diameter “A” & Length “B” Inductance Code Type of Winding A Axial Type D Radial double core type S Radial single core type TOKEN
TCWB Broadband Choke Inductors Excellent EMI Suppression Capability Inductor Filter Coils Wide Band Chokes (TCWB) Preview Broadband choke inductors, also known as choke coils, is a common mode ferrite as the core of the interference suppression devices. It consists of two same size, the same number of turns of coils, symmetrically wound on the same ferrite toroidal cores, and forming a four-terminal device. Shown on the common-mode signal inhibits the growth of large inductor, but for differential-mode signal showing a small leakage inductance is almost ineffective. Choke coils used in a balanced circuit can effectively suppress common mode interference signals (such as lightning interference), while the normal transmission line differential-mode signal has no effect. Token’s TCWB series use of insulation between the coil core winding method. To ensure that the transient over-voltage under the action of short circuit breakdown does not occur. And when the instantaneous high currents flowing through the coil, the core is not saturated. The wide band choke cores mainly used in the PC boards to filters the EMI from the outsides. Token utilizes the latest winding technology reducing parasitic capacitance of the coil and enhancing the ability of transient over-voltage. Token Electronics will also produce devices outside these specifications to meet customer requirements, with comprehensive application engineering and design support available for customers worldwide. Features : - Ferrite core construction of low cost. Applications : - VGA card, EGA card, Mother board, TV game. TOKEN
TCWB Broadband Choke Inductors Configurations & Dimensions Back to 1st Page - Broadband Choke Inductors (TCWB) A A A A D D D D C C C C B B B B 2 Ts 3 Ts 1.5Ts+1.5Ts 2.5 Ts Type ΦA ± 0.5 B ± 0.5 C ± 3.0 ΦD ± 0.05 Note: Design as Customer’s Requested Specifications. How to Order 2.5TCWB R6H Part Number: TCWB Hole Code Type of Winding R6H 6 holes R8H 8 holes No. of Turns TOKEN