199D Series
Manufacturer: Vishay Dale
TANTALUM CAPACITORS - SOLID LEADED 2.2UF 25VOLTS 20% A CASE .10 LS RADIAL
| Part | Tolerance | Operating Temperature (Max) | Operating Temperature (Min) | Manufacturer Size Code | Voltage - Rated | Mounting Type | Height - Seated (Max) | Features | Lifetime | Type | Size / Dimension Diameter | Package / Case | Lead Spacing | Capacitance |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Vishay Dale | 20 % | 125 °C | -55 °C | A | 25 VAC | Through Hole | 0.28 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.1 in | 2.2 µF |
Vishay Dale | 20 % | 85 °C | -55 °C | A | 50 V | Through Hole | 0.376 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.2 in | 0.1 µF |
Vishay Dale | 10 % | 125 °C | -55 °C | C | 20 V | Through Hole | 0.36 in | General Purpose | 1000 Hrs | Conformal Coated | 0.217 in | Radial | 0.1 in | 10 µF |
Vishay Dale | 10 % | 85 °C | -55 °C | C | 25 VAC | Through Hole | 0.42 in | General Purpose | 1000 Hrs | Conformal Coated | 0.217 in | Radial | 0.1 in | 6.8 µF |
Vishay Dale | 10 % | 125 °C | -55 °C | A | 25 VAC | Through Hole | 0.34 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.1 in | 1 µF |
Vishay Dale | 10 % | 125 °C | -55 °C | C | 25 VAC | Through Hole | 0.36 in | General Purpose | 1000 Hrs | Conformal Coated | 0.217 in | Radial | 0.1 in | 6.8 µF |
Vishay Dale | 20 % | 85 °C | -55 °C | A | 35 V | Through Hole | 0.376 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.2 in | 0.68 µF |
Vishay Dale | 10 % | 125 °C | -55 °C | A | 35 V | Through Hole | 0.28 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.1 in | 0.82 µF |
Vishay Dale | 10 % | 125 °C | -55 °C | A | 35 V | Through Hole | 0.28 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.1 in | 1.5 µF |
Vishay Dale | 20 % | 85 °C | -55 °C | A | 35 V | Through Hole | 0.376 in | General Purpose | 1000 Hrs | Conformal Coated | 0.173 in | Radial | 0.2 in | 0.1 µF |