LPSC0201 10nF 935.121.423.510

LPSC0201 10nF
935.121.423.510
Low Profile Silicon Capacitor
The IPDiA Technology features High Reliability, up to 10 times better than alternative capacitor technologies &
eliminates cracking phenomena.
Silicon Capacitor Technology also offers a very stable value over the full operating voltage & temperature range with a high & stable Insulation Resistance.
This silicon based technology is RoHS compliant and
compatible with lead free reflow soldering process.
Key Applications
• All Demanding Applications such as Medical, Telecom, Computer Industries
• High Reliability Applications
• Decoupling / Filtering / Charge Pump (ie. Pacemakers, Mobile Phones)
• Devices with Battery Operations
• Suitable for Embedded Technologies
• Extreme Miniaturization
Pb
Key Features
• Ultra Low Profile (100µm)
• High Stability of Capacitance Value;
• Temperature <±0.5% (-55 to +150°C)
• Voltage < 0.1 % / V
• Negligible Capacitance Loss through Ageing
• Unique High Capacitance in EIA/0201 Package Size, up to 10nF
• High Reliability (FIT < 0.017 parts / billion hours)
• Low Leakage Current < 100pA
• Low ESL and Low ESR
• Suitable with Lead Free Reflow-Soldering
Part Number
935.132.B. 2 S. U.xx
Breakdown
Size:Unit:Value
ie. 10nF/0201 case (LPSC type)
935.121.423.510
Voltage:
2 = 1005
0 = 10f 5 = 1n
4 = 11V
3 = 0201
1 = 0.1p 6 = 10n
7 = 30V
4 = 0402
2 = 1p
7 = 0.1u
3 = 10p
8 = 1u
4 = 0.1n
9 = 10u
Parameters
Value
Capacitance Range 10nF
Capacitance Tolerances ±15%
Operating Temperature Range -55°C to 150°C
Storage Temperatures -70°C to 165°C
Temperature Coefficient <±0.5%, from -55°C to +150°C
Breakdown Voltage (BV) 11VDC, 30VDC
Capacitance Variation Vs. RVDC 0.1% IV (from 0 V to RVDC)
Equivalent Serial Inductor (ESL) Max 100pH
Equivalent Serial Resistor (ESR) Max 400mΩ
Insulation Resistance 100GΩ min @ 3V, 25°C
Ageing Negligible, < 0.001% / 1000h
Reliability FIT < 0.017 parts / billion hours
Capacitor Height Max 100µm
2 & 4 Hellesdon Park Road, Norwich, Norfolk, NR6 5DR
+44 (0)1603 788967
[email protected]
www.micross.com