EXSC0202 10nF (30V)
935.125.72C.510
Embedded & Wirebond Extreme
Temperature Silicon Capacitor
The IPDiA Technology features a Capacitor Integration Capa-
bility (up to 250nF/mm2) which allows a capacitance value
similar to X8R dielectric, but with better electrical perfor-
mances than C0G/NP0 dielectrics.
This technology also offers high reliability, up to 10 times
better than alternative capacitor technologies.
Pb
Key Features
This silicon based technology is RoHS compliant and com-
patible with lead free reflow soldering process.
• Ultra High Operating Temperature up to 250°C
• Low Profile (250µm)
Key Applications
• High Stability of Capacitance Value;
• Temperature <±1.5% (-55 to +250°C)
• Voltage < 0.1 % / V
• Negligible Capacitance Loss through Ageing
• High Reliability
• Low Leakage Current down to 100pA
• Aluminium Pad Finish
• All Applications up to 250°C, such as Downhole & Defence
Industries.
• High Reliability Applications
• Decoupling / Filtering / Charge Pump (ie. Temperature
Sensors, Motor Managment)
• Replacement of X8R and C0G Dielectrics
• Downsizing
Part Number
935.132.
B. 2
S.
U.
xx
Breakdown
Size:
Unit:
Value
ie. 100nF/0404 case (EXSC type)
935.125.42F.610
Voltage:
4 = 11V
7 = 30V
F = 0404 G = 0605
H = 0505 C = 0202
I = 0302 V = 1612
S = 1208 Y = 1616
V = 1216 X = 2016
0 = 10f 5 = 1n
1 = 0.1p 6 = 10n
2 = 1p
7 = 0.1u
3 = 10p 8 = 1u
4 = 0.1n 9 = 10u
Parameters
Value
Capacitance Range 390pF to 4.7µF
Capacitance Tolerances ±15%
Operating Temperature Range -55°C to 250°C
Storage Temperatures -70°C to 265°C
Temperature Coefficient <±1.5%, from -55°C to +250°C
Breakdown Voltage (BV) 11V, 30V
Capacitance Variation Vs. RVDC 0.1% IV (from 0 V to RVDC)
Equivalent Serial Inductor (ESL) Max 100pH
Equivalent Serial Resistor (ESR) Max 0.1Ω
Insulation Resistance 50GΩ min @ 3V,25°C
10GΩ min @ 3V, 250°C
Ageing Negligible, < 0.001% / 1000h
Reliability FIT < 0.017 parts / billion hours
Capacitor Height Max 250µm
2 & 4 Hellesdon Park Road, Norwich, Norfolk, NR6 5DR
+44 (0)1603 788967
www.micross.com
chipcomponents@micross.com