F931A106MAA vs T491A105M016AT

Part Number
F931A106MAA
T491A105M016AT
Category Tantalum Capacitors Tantalum Capacitors
Manufacturer KYOCERA AVX KEMET
Description CAP TANT 10UF 20% 10V 1206 CAP TANT 1UF 20% 16V 1206
Package Tape & Reel (TR) -Reel®
Series F93 T491
Type Molded Molded
Features General Purpose General Purpose
Operating Temperature -55°C ~ 125°C -55°C ~ 125°C
Mounting Type Surface Mount Surface Mount
Package / Case 1206 (3216 Metric) 1206 (3216 Metric)
Tolerance ±20% ±20%
Size / Dimension 0.126" L x 0.063" W (3.20mm x 1.60mm) 0.126" L x 0.063" W (3.20mm x 1.60mm)
Voltage - Rated 10 V 16 V
Lead Spacing - -
Ratings - -
Height - Seated (Max) 0.071\" (1.80mm) 0.071\" (1.80mm)
Capacitance 10 µF 1 µF
ESR (Equivalent Series Resistance) 3Ohm @ 100kHz 10Ohm
Lifetime @ Temp. 2000 Hrs @ 125°C 2000 Hrs @ 125°C
Failure Rate - -
Manufacturer Size Code A A
Tantalum Capacitor: All Things You Need to Know
2024-09-03 21:29:25, Tantalum Capacitor: All Things You Need to Know
What is Tantalum Capacitor? Tantalum capacitors are small in size and can achieve large capacitance products, is first developed by the United States Bell Laboratories in 1956, its performance is excellent.
  • 1. Disadvantages of tantalum capacitors

    The price is relatively high.
    If used improperly or the circuit design is defective, it may fail, including explosion.
    It is polarity sensitive and can only work in the specified direction.
    It may fail easily under certain conditions (such as overvoltage, surge current).

  • 2. Why do tantalum capacitors explode?

    The main reason is that excessive voltage or current shocks cause internal short circuits, which trigger thermal runaway.
    Excessive ambient temperature may also exacerbate this situation.

  • 3. Is tantalum better than tungsten?

    It depends on the application. For capacitors, tantalum is preferred due to its unique properties; while in some other industrial uses, such as making filaments, tungsten is preferred.

  • 4. What causes tantalum capacitors to burn out?

    Common causes include applying a voltage exceeding the maximum allowable value, excessive current, high ambient temperature, and manufacturing defects.

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