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4700-008LF
Power Line Filter, General Purpose, 100 V, 10 A, 1 Stage, Surface Mount
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: CTS / TUSONIX
- Product type:
- Capacitance:4000pF; Voltage Rating:100V; Filter Type:General Purpose; Current Rating:10A; Filter Terminals:SMD; Inductance Min:100mH; Leakage Current Max:-; Product Range:-; SVHC:No SV
- SVHC: Lead (16-Jan-2020)
- No. of Phases: -
- No. of Stages: 1 Stage
- Product Range: -
- Current Rating: 10A
- Voltage Rating: 100V
- Filter Mounting: Surface Mount
- Filter Applications: General Purpose
- Filter Input Terminals: SMD
- Filter Output Terminals: SMD
| Delivery and price | |
|---|---|
| Units per pack | 500 |
| Price | 1.97 € |
| Current stock | 1000+ |
| Lead time | 30 days |
## **EMI/RFI Surface Mount π & C Filters for SMT Applications** ## **APPLICATION** **TUSONIX 4700/4701 Series π Filters & 4702 Series C Filters** are used where cost and space savings have priority and improved insertion loss is required. TUSONIX’ unique design makes the filter suitable for common production soldering processes. TUSONIX’ state-of-the-art manufacturing process results in excellent electrical and mechanical performance. The square or round body allows easy handling, positioning and soldering onto the PCB. This is another cost effective quality product from TUSONIX. ## **FEATURES** - **Excellent Performance** - **Easy Placement** - **Excellent Solderability** - **Reduces PCB Component Count** ## Pi Filter Data **==> picture [213 x 294] intentionally omitted <==** **----- Start of picture text -----**<br> Typical Shielded<br>Insertion Loss vs. Frequency<br>80<br>70<br>8200pF<br>60<br>50<br>1000pF<br>5000pF<br>40<br>30 2000pF 470pF<br>20<br>10 100pF<br>0<br>1MHz 10MHz 100MHz 1GHz 10GHz<br>FREQUENCY<br>Typical Unshielded<br>Insertion Loss vs. Frequency<br>80<br>70<br>60<br>50<br>40 8200pF<br>30 5000pF<br>20 2000pF iy, 1 000pF —<br>10 470pF<br>0 _ 100pF<br>1MHz 10MHz 100MHz 1GHz 10GHz<br>FREQUENCY<br>INSERTION LOSS (dB)<br>INSERTION LOSS (dB)<br>**----- End of picture text -----**<br> ## **EMI/RFI Filter Specifications** ## **1.0 Scope** This specification describes the basic performance requirements of the TUSONIX EMI/RFI surface mount Filters. ## **2.0 Capacitance** - 2.1 Measurement Conditions: Capacitance measured at 25°±2°C, 50% max R.H. and Frequency of 1 KHz @ 1±0.2VRMS. - 2.2 Capacitance Tolerance: Listed capacitances are minimum value at 25°±2°C unless otherwise specified. ## **3.0 Insertion Loss** - 3.1 Measurement Conditions: Attenuations listed are measured in a 50 Ω system at 25°C±2°C under no-load conditions (per MIL-STD-220). - 3.2 Insertion Loss Tolerance: The attenuations listed are typical values under indicated conditions. - 3.3 Listed insertion loss data is a measurement of filter performance in a matched 50 Ω system. It is highly recommended that filter performance be verified under actual circuit operation conditions. ## **4.0 Operating Conditions** Filters are designed to operate continuously at the temperature, voltage and current stated for each TUSONIX part number. Operating temperature ranges are from -55°C to either 85°C or 125°C. ## **5.0 Dielectric Withstanding Voltage** Filters shall withstand three times the DC working voltage applied between either terminal and ground electrode. ## **6.0 Insulation Resistance** Measured at 25°C±2°C with 100Vdc and charging current limited to 50mA max. The IR after two minutes maximum shall be a minimum of 10,000 Megohms. ## **7.0 Packaging** Tape and reeled for auto placement. Revised 9/01/01 **7741 North Business Park Drive Tucson, Arizona 85743 Ph: 520-744-0400 Fax: 520-744-6155 Website: www.tusonix.com E-mail: sales@tusonix.com** ## **Revision 5, Updated 03-26-03** ## **EMI/RFI Surface Mount π & C Filters for SMT Applications** **Product Installation Recommendations for Surface Mount π & C Filters** ## **Soldering Notes:** Surface Mount **π** & C Filters may be soldered to Printed Circuit Boards and substrates in a variety of methods: solder wave, hot air, oven soldering, vapor phase reflow, infrared soldering or immersion soldering. Ceramic Components require careful soldering techniques to avoid the possible effects of thermal shock. These effects can be minimized by using a preheat process prior to soldering. Both time and temperature are important in the preheat cycle. Dielectric Withstanding - 300VDC Direct Current Rating - 10 ADC Inductance Value - 100nH Minimum **Please note:** Additional Capacitance Values and Mounting Patterns are available upon request. ◗ Denotes “C” type filters - 20 Adc ## **SQUARE FILTERS** |**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**|**SQUARE FILTERS**| |---|---|---|---|---|---|---|---| |**TUSONIX**<br>**Part**<br>**Number**<br>4700-006<br>4700-009<br>4700-005<br>4700-003<br>4700-008<br>4701-002<br>4701-001<br>◗4702-000<br>◗4702-001<br>◗4702-002<br>◗4702-003<br>◗4702-004<br>◗4702-005|**Working**<br>**Volts DC**||**Cap.**<br>**(pF)**<br>100<br>470<br>1000<br>2000<br>4000<br>6800<br>8200<br>100<br>470<br>1000<br>1500<br>2500<br>4000|**Capacitance**<br>**Tolerance**<br>+80%/-20%<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%<br>+80%/-20%|**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**||| ||**85°C**<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>100|**125°C**<br>100<br>100<br>100<br>100<br>--<br>--<br>--<br>100<br>100<br>100<br>100<br>100<br>--|||**(dB) at 25°C per MIL-Std-220**<br>**10MHz**<br>--<br>1<br>7<br>10<br>13<br>16<br>20<br>--<br>--<br>3<br>5<br>10<br>15|**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>3<br>16<br>40<br>45<br>52<br>60<br>65<br>1<br>12<br>20<br>22<br>25<br>30|**(dB) at 25°C per MIL-Std-220**<br>**1GHz**<br>16<br>40<br>65<br>70<br>70<br>70<br>70<br>19<br>27<br>35<br>37<br>40<br>45| ## **ROUND FILTERS** |**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70|**TUSONIX**<br>**Part**<br>**Number**<br>**Working**<br>**Volts DC**<br>**85°C 125°C**<br>4700-059<br>4700-058<br>4700-053<br>4700-056<br>**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**<br>**100MHz**<br>**10MHz**<br>**1GHz**<br>**Cap.**<br>**(pF)**<br>**Capacitance**<br>**Tolerance**<br>**ROUND FILTERS**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%<br>100<br>100<br>100<br>100<br>100<br>100<br>100<br>--<br>100<br>1000<br>2000<br>5000<br>--<br>7<br>10<br>15<br>3<br>40<br>45<br>55<br>16<br>65<br>70<br>70| |---|---|---|---|---|---|---|---| ||**Working**<br>**Volts DC**||**Cap.**<br>**(pF)**<br>100<br>1000<br>2000<br>5000|**Capacitance**<br>**Tolerance**<br>+80%/-20%<br>GMV<br>GMV<br>+80%/-20%|**Typical No-Load Insertion Loss**<br>**(dB) at 25°C per MIL-Std-220**||| ||**85°C**<br>100<br>100<br>100<br>100|**85°C 125°C**<br>100<br>100<br>100<br>--|||**10MHz**<br>--<br>7<br>10<br>15|**100MHz**<br>3<br>40<br>45<br>55|**1GHz**<br>16<br>65<br>70<br>70| When using soldering irons, it is very important that the solder iron tip does not touch the ceramic body. The iron should be applied only to the termination solder fillet. The temperature of the soldering tip should be controlled to 500°F (260°C) max. Soldering should be achievable in 2-3 seconds. Recommended solder composition is 60% tin and 40% lead. Failure to follow proper preheat and solder practices can result in thermal shock to the ceramic body which may be manifested as: - Micro cracks in the ceramic body - Electrical shorts - Insulation resistance degradation in - accelerated life test conditions. All Surface Mount **π** & C Filters have nickel barrier, solder plated electrodes and are ideally suited for manufacturers who use various soldering techniques on a multitude of products. However, the amount of solder must be controlled to allow for adequate transfer of heat and mechanical stresses from the PCB to the Filter. ## **Handling:** Extreme care should be exercised when handling ceramic components. They should be treated as fragile components. Excessive force or direct impact to the dielectric may result in chips, cracks or breakage. ## **Cleaning:** Components should be cleaned immediately following the soldering operation to optimize flux removal conditions. Cleaning solutions should be kept clean to avoid contaminating the components. The user should consult the manufacturer’s Material Safety Data Sheets for specific handling details. Excessive temperature differences or excessive agitation during cleaning may damage the filters.
Updated at June 10, 2026
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