Τεχνικό φυλλάδιο
Προδιαγραφές
Brand
MurataCapacitance
47nF
Voltage
16V dc
Package/Case
0306
Mounting Type
Surface Mount
Dielectric
X7R
Tolerance
±20%
Dimensions
0.8 x 1.6 x 0.5mm
Length
0.8mm
Depth
1.6mm
Height
0.5mm
Series
LLx
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Terminal Type
Surface Mount
Λεπτομέρειες Προϊόντος
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 coefficient (apart from stock number 841-6747 which is X7S). 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.
P.O.A.
Μονάδας (Σε ένα καρούλι των 4000) (Exc. Vat)Χωρίς Φ.Π.Α
4000
P.O.A.
Μονάδας (Σε ένα καρούλι των 4000) (Exc. Vat)Χωρίς Φ.Π.Α
4000
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Τεχνικό φυλλάδιο
Προδιαγραφές
Brand
MurataCapacitance
47nF
Voltage
16V dc
Package/Case
0306
Mounting Type
Surface Mount
Dielectric
X7R
Tolerance
±20%
Dimensions
0.8 x 1.6 x 0.5mm
Length
0.8mm
Depth
1.6mm
Height
0.5mm
Series
LLx
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Terminal Type
Surface Mount
Λεπτομέρειες Προϊόντος
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 coefficient (apart from stock number 841-6747 which is X7S). 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.