Technical Document
Specifications
Brand
MurataCapacitance
100nF
Voltage
6.3V dc
Package/Case
0402 (1005M)
Mounting Type
Surface Mount
Dielectric
X6S
Tolerance
±20%
Dimensions
0.5 x 1 x 0.3mm
Length
0.5mm
Depth
1mm
Height
0.3mm
Series
LLL15
Maximum Operating Temperature
+105°C
Minimum Operating Temperature
-55°C
Terminal Type
Surface Mount
Product details
Murata LLL Series Reversed Type Low ESL Monolithic Ceramic Capacitors
LLL series monolithic ceramic capacitors (MLCC) with standard 2 terminals, reversed geometry and X7R temperature coefficiient. These LLL series monolithic ceramic capacitors have a low ESL of 150 to 250pH and are suitable for noise reduction at high frequencies (>200MHz). These LLL series monolithic ceramic capacitors are designed for use in power supply decoupling circuits for very high-speed (>1GHz) CPU applications and offer reduced "ground bounce", noise reduction and improved power supply response time.
0204 Range
Stock information temporarily unavailable.
Price on asking
Each (Supplied on a Reel) (Exc. VAT)
Production pack (Reel)
250
Price on asking
Each (Supplied on a Reel) (Exc. VAT)
Stock information temporarily unavailable.
Production pack (Reel)
250
Technical Document
Specifications
Brand
MurataCapacitance
100nF
Voltage
6.3V dc
Package/Case
0402 (1005M)
Mounting Type
Surface Mount
Dielectric
X6S
Tolerance
±20%
Dimensions
0.5 x 1 x 0.3mm
Length
0.5mm
Depth
1mm
Height
0.3mm
Series
LLL15
Maximum Operating Temperature
+105°C
Minimum Operating Temperature
-55°C
Terminal Type
Surface Mount
Product details
Murata LLL Series Reversed Type Low ESL Monolithic Ceramic Capacitors
LLL series monolithic ceramic capacitors (MLCC) with standard 2 terminals, reversed geometry and X7R temperature coefficiient. These LLL series monolithic ceramic capacitors have a low ESL of 150 to 250pH and are suitable for noise reduction at high frequencies (>200MHz). These LLL series monolithic ceramic capacitors are designed for use in power supply decoupling circuits for very high-speed (>1GHz) CPU applications and offer reduced "ground bounce", noise reduction and improved power supply response time.
