SMPS Molded Radial MLC Capacitors
SXP Style for High Temperature Applications up to 200ºC
SXP-style, encapsulated radial leaded MLC capacitors are ideally suited
for high temperature applications up to 200ºC. This product is intended
for downhole oil exploration, including logging while drilling, geophysical
probes, as well as space, aerospace and hybrid automotive applications.
This product supplements the SMX family of capacitors and offers
mechanical protection to the ceramic element in extreme harsh environ-
ment. The high temperature solder utilized in the construction of SXP-
style parts assures reliable operation in high temperature and rugged
environments. The SXP-style capacitors are ideally suited for applica-
tions as DC filters in high power, high frequency motor drives, high
pulsed-current circuitry, as well as standard electronic equipment
designed for high temperature applications.
SXP-style, switch mode power supply capacitors are characterized with
excellent performance. The main benefits of SXP product include:
• Low ESR, low ESL
• Low DC leakage
• Excellent high frequency performance
HOW TO ORDER
M
SXP
3
1
C
104
A
A
Capacitance
Tolerance
AVX Style
Size
See
Dimensions
chart
Voltage
Code
Temperature
Coefficient
C0G = A
Capacitance
Code
(2 significant digits
+ number of zeros)
100 pF = 101
22,000 pF = 223
1μF = 105
Test Level
A = Standard
Leads
A = Standard
Sn/Pb (min. 5ꢀ Pb)
C0G:
50V = 5
J = 5ꢀ
K = 10ꢀ
M = 20ꢀ
100V = 1
200V = 2
500V = 7
1000V = A
X7R/X9U = C
X7R:
J = 5ꢀ
K = 10ꢀ
M = 20ꢀ
Z = +80ꢀ, -20ꢀ
Tighter tolerances
available upon
request
ELECTRICAL SPECIFICATIONS
Temperature Coefficient
C0G:
A Temperature Coefficient
0
30 ppm/ꢁC, -55ꢁ to +200ꢁC
15ꢀ, -55ꢁC to +125ꢁC
+15ꢀ - 56ꢀ, -55ºC to +200ꢁC
X7R/X9U: C Temperature Coefficient
Capacitance Test (MIL-STD-202 Method 305)
25ꢁC, 1.0 0.2 Vrms (open circuit voltage) at 1KHz
Dissipation Factor 25°C
C0G:
0.15ꢀ Max @ 25ꢁC, 1.0 0.2 Vrms (open circuit voltage) at 1KHz
X7R/X9U: 2.5ꢀ Max @ 25ꢁC, 1.0 0.2 Vrms (open circuit voltage) at 1KHz
Insulation Resistance 25°C (MIL-STD-202 Method 302)
100K MΩ or 1000 MΩ-μF, whichever is less.
Insulation Resistance 125°C (MIL-STD-202 Method 302)
10K MΩ or 100 MΩ-μF, whichever is less.
Insulation Resistance 200°C (MIL-STD-202 Method 302)
100 MΩ or 1 MΩ -μF, whichever is less.
Dielectric Withstanding Voltage 25°C (Flash Test)
250ꢀ rated voltage for 5 seconds with 50 mA max
charging current. (150ꢀ for 500 VDC and 1000 VDC)
1