Solder-In Style High Temp EMI Filters
ZS/ZR Series – .128 Dia. – Circuits Available – C & L
APPLICATIONS
The ZS series provides effective filtering
in the MICROWAVE frequency spectrum
from 10 MHz through 26 GHz. Designed
to be soldered into a package, bracket or
bulkhead (and maintain hermeticity), it is
ideal for high impedance circuits where
large capacitance values are not practical.
In the “L” section version an internal fer-
rite bead element provides both induc-
tance and series resistance (lossy charac-
teristic) which improves insertion loss and
provides superior transient performance.
Alternate lead lengths or special capaci-
tance values may be ordered.
Custom packages or bracket assemblies
utilizing this feedthru can be furnished to
your specifications.
CHARACTERISTICS
• Meets or exceeds the applicable portions
of MIL-F-28861/12. See QPL listings.
• High temperature construction with-
stands 300°C installation temperatures.
• Features rugged monolithic discoidal
capacitor construction.
• Glass hermetic seal on one end with
epoxy seal on the opposite end.
• High purity gold plating provides excel-
lent solderability or compatibility with
thermal and ultrasonic wire bonding.
SPECIFICATIONS
1. Plating: Gold standard –
Silver and solder coat available
2. Material:
Case: Cold rolled steel
Leads: Alloy 52 steel
3. Operating Temperature Range:
-55°C to +125°C
4. Insulation Resistance:
At 25°C: 1,000 megohm-microfarad
min., or 100,000 megohms
min., whichever is less
At 125°C: 100 megohm-microfarad
min., or 10,000 megohms
min., whichever is less
5. Dielectric Withstanding Voltage (DWV):
R-level designs:
2.0 times rated DC voltage
Class B, Class S designs:
2.5 times rated DC voltage
6. DC Resistance (DCR): .01 ohm,
maximum
7. Dissipation Factor (DF): 3% maximum
8. Rated DC Current: 5 Amps, maximum
9. Maximum Installation Temperature:
300°C
10. Supplied with 60/40 solder preform for
easy installation
11. Insertion Loss for the “C” and “L” circuits
are equivalent due to the saturation
characteristic of the ferrite bead element
at full rated current. At lower currents the
“L” becomes much more effective.
STANDARD CONFIGURATION
.128
±.005
.030
±.002
.020
±.005
GLASS SEAL
A
.156
±.005
B
.25
±.03
CIRCUIT DIAGRAMS
FLANGE
END
GLASS
SEAL
END
ZS2
Notes:
1. Outline drawing shows stan-
dard ZS configuration. Also
available with glass seal at
the opposite end, ZR reverse
configuration.
2. MIL-F-28861/12 style FS70
equivalent to standard ZS
configuration. Style FS71 is
reverse ZR configuration.
MIL-F-28861/12 (See Note 2)
3. For ZS2 or ZR2 L-Section
Filters inductor always posi-
tioned at epoxy-filled end.
4. Metric equivalent dimensions
given for information only.
FLANGE
END
(See Note 3)
C
ZS1, ZR1
GLASS
SEAL
END
ZR2
millimeters (inches)
0.05 (.002) 3.25 (.128)
0.13 (.005) 3.96 (.156)
0.51 (.020) 5.08 (.200)
0.76 (.030) 6.4 (.25)
0.8 (.03) 15.88 (.625)
2.79 (.110) 18.16 (.715)
(See Note 4)
Circuit
Diagram
L
C
Dimensions
A
B
±.005 Nom.
.200
.110
.715
.625
Dash No.
001 through 016,
033 and 034
017 through 032,
035 and 036
Style
FS70
FS71
9
Solder-In Style High Temp EMI Filters
ZS/ZR Series – .128 Dia. – Circuits Available – C & L
SPECIFICATIONS
AVX
P/N
ZS1C2-501H
ZS1C2-102H
ZS1C2-122H
ZS1C2-272H
ZS1C2-502H
ZS1C2-103H
ZS1C2-153H
ZS2C2-501H
ZS2C2-102H
ZS2C2-122H
ZS2C2-272H
ZS2C2-502H
ZS2C2-103H
ZS2C2-153H
ZS1A2-101H
ZS1A2-501H
ZS1A2-102H
ZS1A2-122H
ZS1A2-272H
ZS1A2-502H
ZS1A2-103H
ZS1A2-153H
ZS2A2-100H
ZS2A2-250H
ZS2A2-101H
ZS2A2-501H
ZS2A2-102H
ZS2A2-122H
ZS2A2-272H
ZS2A2-502H
ZS2A2-103H
ZS2A2-153H
1
Current
AMP
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
CKT
C
C
C
C
C
C
C
L
L
L
L
L
L
L
C
C
C
C
C
C
C
C
L
L
L
L
L
L
L
L
L
L
DC
Voltage
50
50
50
50
50
50
50
50
50
50
50
50
50
50
100
100
100
100
100
100
100
100
100
100
100
100
100
100
100
100
100
100
CAP
1
Min.
500
1000
1200
2700
5000
.010
.015
500
1000
1200
2700
5000
.010
.015
100
500
1000
1200
2700
5000
.010
.015
10
25
100
500
1000
1200
2700
5000
.010
.015
500
KHz
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
Insertion Loss
2
Per MIL-STD-220, +25°C
1
10
100
1000
MHz
MHz
MHz
MHz
–
–
15
30
–
4
20
31
–
5
20
35
–
10
25
40
–
15
30
45
4
20
35
48
7
25
40
50
–
–
15
30
–
4
20
33
–
5
20
37
–
10
25
40
–
15
30
45
4
20
38
50
7
25
42
50
–
–
3
20
–
–
15
30
–
4
20
31
–
5
20
35
–
10
25
40
–
15
30
45
4
20
35
48
7
25
40
50
–
–
–
5
–
–
–
10
–
–
3
20
–
–
15
30
–
4
20
33
–
5
20
37
–
10
25
40
–
15
30
45
4
20
38
50
7
25
42
50
10
GHz
50
55
55
60
60
60
60
50
55
55
60
60
60
60
30
50
55
55
60
60
60
60
10
15
30
50
55
55
60
60
60
60
continued
Decimal point values indicate capacitance in microfarads.
Non-decimal point values indicate capacitance in picofarads.
Insertion loss limits are based on theoretical values.
Actual measurements may vary due to internal capacitor
resonances and other design constraints.
2
NOTE:
AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal
opposite the flange end. All parts are capable of the reverse configuration with the glass
seal at the flange end. All parameters are otherwise identical. The part number changes
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).
For special multi-unit assemblies see Multi-Component Filter Brackets section.
10
Solder-In Style High Temp EMI Filters
ZS/ZR Series – .128 Dia. – Circuits Available – C & L
SPECIFICATIONS
AVX
P/N
ZS1B2-100H
ZS1B2-250H
ZS1B2-101H
ZS1B2-501H
ZS1B2-102H
ZS1B2-122H
ZS1B2-272H
ZS2B2-100H
ZS2B2-250H
ZS2B2-101H
ZS2B2-501H
ZS2B2-102H
ZS2B2-122H
ZS2B2-272H
1
Current
AMP
5
5
5
5
5
5
5
5
5
5
5
5
5
5
CKT
C
C
C
C
C
C
C
L
L
L
L
L
L
L
DC
Voltage
200
200
200
200
200
200
200
200
200
200
200
200
200
200
CAP
1
Min.
10
25
100
500
1000
1200
2700
10
25
100
500
1000
1200
2700
500
KHz
–
–
–
–
–
–
–
–
–
–
–
–
–
–
Insertion Loss
2
Per MIL-STD-220, +25°C
1
10
100
1000
MHz
MHz
MHz
MHz
–
–
–
4
–
–
–
10
–
–
3
20
–
–
15
30
–
4
20
31
–
5
20
35
–
10
25
40
–
–
–
5
–
–
–
10
–
–
3
20
–
–
15
30
–
4
20
33
–
5
20
37
–
10
25
40
10
GHz
10
15
30
50
55
55
60
10
15
30
50
55
55
60
Decimal point values indicate capacitance in microfarads.
Non-decimal point values indicate capacitance in picofarads.
Insertion loss limits are based on theoretical values.
Actual measurements may vary due to internal capacitor
resonances and other design constraints.
2
NOTE:
AVX Filters' Standard configurations (e.g. ZS, YS, XS, WS) have the hermetic glass seal
opposite the flange end. All parts are capable of the reverse configuration with the glass
seal at the flange end. All parameters are otherwise identical. The part number changes
from “S” to “R” (e.g., standard = ZS1C2-153H; reverse = ZR1C2-153H).
For special multi-unit assemblies see Multi-Component Filter Brackets section.
11