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polar capacitor
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100 micro farad electrolytic capacitorAbstract: 100 microfarad electrolytic capacitor temperature Temperature of the air surrounding the capacitor, usually considered to be 20°C if in open air. Anode The positive electrode of a polar capacitor. Also used to refer to the capacitor during the , the opened site. Reverse voltage The voltage applied to a polar capacitor in the opposite , capacitor, or the extent to which the capacitor is not a perfect capacitor. DF is usually expressed as a percentage or a decimal equivalent. DF for a tantalum capacitor is measured at 120 Hz at 20°C using a 
AVX Original 


78L12CPAbstract: 2SK44SP put 2 R*cl.R»2 inv. in2 Vcc AG Gell 2 R*ct. In2 Rect.ap2 I NO Tt CERAM IC capacitor A ll ceramic capacitors are above 25V rating M Y L A R capacitor. A ll m ylor capacitors are above 50V rating NP: NON POLAR capacitor And all capacitors are E LE C TO LY TIC capacitors, unless otherwise marked. Unless 
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MN3102Abstract: MN3207 c m NP ! NON POLAR capacitor. 2SK11 8 ( 0 ) r ^ i "I t . i T : T A N T A L U M c a p a c 
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TL022CP MN3102 MN3207 NON POLAR capacitor ScansU9X24 2SK118 2SC1S83F 2SC18T5 
Glossary of Terms Used in the Tantalum IndustryAbstract: CAPACITOR Tantalum 2906 temperature Temperature of the air surrounding the capacitor, usually considered to be 20°C if in open air. Anode The positive electrode of a polar capacitor. Also used to refer to the capacitor during the , the opened site. Reverse voltage The voltage applied to a polar capacitor in the opposite , capacitor, or the extent to which the capacitor is not a perfect capacitor. DF is usually expressed as a percentage or a decimal equivalent. DF for a tantalum capacitor is measured at 120 Hz at 20°C using a 
AVX Original 

Glossary of Terms Used in the Tantalum Industry CAPACITOR Tantalum 2906 ELCO EUROPE DATE CODE avx date code AVX solid tantalum capacitor 5M795C 
Abstract: Miniature Aluminum Electrolytic Capacitors Ripple Current of Miniature Size Aluminum Electrolytic Capacitors s Maximum Permissible Ripple Current Diagram 1 qVoltage Limitation A polar capacitor can be used, but the peak voltage (VH) applied VH Voltage to the capacitor should not exceed its rated voltage. (Refer to Diagram 1) qCurrent Limitation Ripple current should not exceed the maximum , down to such a level that the surface temperature of the capacitor rises no more than 3°C above room 
SANYO Electronic Components Original 

1000C 
CX20172Abstract: THD10 SBfiHBfi3 00111^4 444 CX20172 SONY, BTL Mode Application Circuit ION) * Use tantalum capacitor as a polar , capacitor as a polar capacitor wherever possible. Note) Notes for the above are almost same as in BTL.  7  , is connected to the ground via a coupling capacitor. the same one as used for the input pin, when the , via a coupling capacitor, the same one as used for the input pin, when the prn is not used as an input , unused input pins via a coupling capacitor which is the same one used for the input pin. â'¢ Gain setting 
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THD10 S10S11S12 S55S3 MFP14PL01 60517TO 
Abstract: niobium capacitor is a polar capacitor. It has a wide range of capacitance and a flameretardant features , ratings Vishay Polytech is also introducing an additional capacitor technology with an alternative 
Vishay Intertechnology Original 


Abstract: Miniature Aluminum Electrolytic Capacitors Ripple Current of Miniature Size Aluminum Electrolytic Capacitors Maximum Permissible Ripple Current D iagram · V o ltag e Lim ita tio n A polar capacitor can be used, but the peak voltage (V H ) applied to the capacitor should not exceed its rated voltage. (R efe r to Diagram · Current L im ita tio n Ripple current should not exceed the maximum permissible , surface temperature of the capacitor rises no more than 3 °C above room temperature. SANYO Table 1 
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Abstract: capacitor is a polar capacitor. Low profile Niobium chip capacitors were developed to meet growing needs 
Hitachi AIC Original 

C51011 NMCUA0E156 NMCUB0E226 NMCUB0E336 NMCUB0E476 NMCUA0G156 
Abstract: TANTALUM ELECTROLYTIC CAPACITORS NMC Series Product specifications (Miniaturized Niobium Capacitors) NMC Test conditions JIS C51011:1998 Operating temperature range â'"55Â°C ~ +105Â°C Rated voltage DC2.5 ~ 10V 85Â°C Surge voltage DC3.3 ~ 13V 85Â°C Derated voltage DC1.7 ~ 7V 105Â°C Capacitance 10 ~ 470ÂµF 120 Hz, 1.5V Capacitance tolerance Â±20% Paragraph 4.7, 120 Hz, 1.5V Leakage current Features A niobium capacitor is a polar capacitor which 
Hitachi AIC Original 

NMCB0E686 NMCC0E686 NMCB0E107 NMCC0E107 NMCC0E157 NMCE0E157 
swdpdtAbstract: P87C52 J2 ISP11811 U3 LED D10 D9 SN74HC04 U4 Description TEST PIN CAPACITOR POLAR CAPACITOR NONPOLAR CAPACITOR NONPOLAR CAPACITOR NONPOLAR RESISTER RESISTER RESISTER CAPACITOR POLAR RESISTER CAPACITOR NONPOLAR RESISTER RESISTER RESISTER RESISTER RESISTER CAPACITOR POLAR CAPACITOR NONPOLAR CRYSTAL OSC, CRYSTAL RESISTER CAPACITOR NONPOLAR CAPACITOR NONPOLAR RESISTER RESISTER CRYSTAL CMOS , hub or host PC via a USB cable. A toggle switch (S1) selects the power supply mode. 5V Polar of 
Philips Semiconductors Original 

ISP1181 TL16C550C swdpdt P87C52 ISP1181A ISP118x 87C52 ADM213E UM1000201 ISP118 F/10V 80C51 
BurrBrown 4341Abstract: level could be averaged. Since the output is always a positive voltage, C can be polar capacitor. A , contains the external capacitor takes the time average of the i2 signal and produces Eom which is , capacitor on ripple magnitude and response time. As the frequency of the input approaches DC, the 4341 , the 4341 will accurately convert DC input voltages, the averaging capacitor must be made very large , averaging capacitor to minimize ripple at output, (see Figure 2). STANDARD TRIM PROCEDURE If the 4341 
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BurrBrown 4341 PDS323A 000VDC 
transistor 4341Abstract: BurrBrown 4341 . Since the output is always a positive voltage, C can be a polar capacitor. EXPANDED TRIM PROCEDURE FOR , / Eout The A, circuit, which contains the external capacitor, takes the time average of the i2 signal , effects of the external filter capacitor on ripple magnitude and response time. As the frequency of the , capacitor must be made very large to minimize ripple at low frequencies. CHOOSING THE AVERAGING CAPACITOR , typical values of capacitor. Response time vs capacitor value is shown in Figure 3. (Note that rise times 
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transistor 4341 burr+brown+4341 54W132 15VDC 
SQUARE WAVE TO SINE WAVE schematic diagramAbstract: 4341 RMS '2  log Eout) = log"' (log Em2/Eout) = Ein2/Eout The A3 circuit which contains the external capacitor , value of Eiâ'. Figures 2 and 3 show the effects of the external filter capacitor on ripple magnitude , convert DC input voltages, the averaging capacitor must be made very large to minimize ripple at low , require a large value of averaging capacitor to minimize ripple at output, (see Figure 2). MECHANICAL co , Vol. 33 CHOOSING THE AVERAGING CAPACITOR A singlepole lowpass RC filter provides the averaging 
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SQUARE WAVE TO SINE WAVE schematic diagram 4341 RMS burr brown 4341 4341 FULL WAVE RECTIFIER and waveforms logarithmic converter 10JIF 
Abstract: voltage, C can be polar capacitor. FIGURE 2. O utput Ripple Magnitude vs. Input Signal Frequency , ) Em2/E out) = Eiâ'2/Eouc The A3 circuit which contains the external capacitor takes the time , "¢. Figures 2 and 3 show the effects of the external filter capacitor on ripple magnitude and response time , input voltages, the averaging capacitor must be m ade very large to minimize ripple at low frequencies , convert DC inputs. Lower frequency AC inputs require a large value of averaging capacitor to minimize 
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burr brown 4341Abstract: 4341 Burr Brown polar capacitor. EXPANDED TRIM PROCEDURE FOR GREATER ACCURACY If the 4341 is used in applications to , capacitor, takes the time average of the i2 signal and produces E0UT, which is directly proportional to the rms value of Figures 2 and 3 show the effects of the external filter capacitor on ripple magnitude and , input voltages, the averaging capacitor must be made very large to minimize ripple at low frequencies. CHOOSING THE AVERAGING CAPACITOR A singlepole lowpass RC filter provides the averaging function. The 
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4341 Burr Brown 4341 Converter BurrBrown 14VDC 91M521111 06M491 54M132 17313L 
Abstract: a polar capacitor. EXPANDED TRIM PROCEDURE FOR GREATER ACCURACY If the 4341 is used in , ^ circuit, which contains the external capacitor, takes the time average of the i2 signal and produces E0 , time. Figure 2 shows the ripple magnitude vs frequency for several typical values of capacitor , different for the same value of capacitor). 10 100 FIGURE 3. Response Time vs V alue of Averaging Capacitor. While the ripple magnitude for signals other than sine waves can be analytically determined 
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B5706 PDS323B 
NMCB0J107Abstract: hitachi NMC NIOBIUM ELECTROLYTIC CAPACITORS NMC Series Product specifications (Miniaturized Niobium Capacitors) NMC Test conditions JIS C51011:1998 Operating temperature range 55°C ~ +105°C Rated voltage DC2.5 ~ 16V 85°C Surge voltage DC3.0~ 19V 85°C Derated voltage DC1.7 ~ 10.7V 105°C Capacitance 4.7 ~ 470µF 120 Hz, 1.5V Capacitance tolerance ±20% Paragraph 4.7, 120 Hz, 1.5V Leakage current Features A niobium capacitor is a polar capacitor which 
 Original 

NMCB0G107 NMCB0J107 NMCB1A336 NMCE1A157 hitachi NMC nmca NMCA0E226 NMCB0E336 NMCB0E476 NMCC0E227 NMCE0E227 NMCE0E337 
s11sAbstract: CX20172 ) * Use tantalum capacitor as a polar capacitor wherever possible. Note) Place a decoupling capacitor , CX20172 SONY. Dual Mode Application Circuit 1 0 N > H * Use tantalum capacitor as a polar , . · Ground the unused input pins via a coupling capacitor which is the same one used for the input pin , a phasecompensation capacitor can be altered considerably according to patterns on mounting , phasecompensation capacitor can be altered considerably according to patterns on mounting substrate. 3. Common 
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s11s polar capacitor CH8F 
NON POLAR capacitorAbstract: TRW TDC1029 circuit for the TDC1029. The analog input is AC coupled with a VF non polar capacitor, then offset by , interface circuit for the TDC1029. The analog input is AC coupled with a 1/uF non polar capacitor, then , capacitor to Aqnq is recommended. If the reference inputs are varied dynamically (as in an AGC circuit), a , a parallel bypass capacitor to ground. The purpose of the inductor is to isolate the analog supply , with the supply and a parallel bypass capacitor to ground. The purpose of the inductor is to isolate 
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TDC1029B7C TRW TDC1029 uf non polar capacitor by741 R3M marking trw resistor ECL 100151 40G01198 F11/90 1029B7C 
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