HAU, HAZ, HAE, HAX Series
www.vishay.com
Vishay Roederstein
Ceramic Singlelayer DC Disc Capacitors,
1 kVDC General Purpose
FEATURES
• High capacitance in small sizes
• Low losses
• Wide range of different lead styles
• Material categorization:
for definitions of compliance please see
www.vishay.com/doc?99912
APPLICATIONS
• Lighting ballasts
• Switching power supplies
• Bypassing, coupling and decoupling
• DC blocking
DESIGN
QUICK REFERENCE DATA
DESCRIPTION
VALUE
Ceramic Class
1
Ceramic Dielectric
N750, Y5T, Y5U, Y5V
Voltage (VDC)
2
1000
Min. Capacitance (pF)
10
47
Max. Capacitance (pF)
680
22 000
Mounting
The capacitors consist of a ceramic disc which is silver
plated on both sides. Connection leads are made of tinned
copper having diameters of 0.6 mm or 0.8 mm.
The capacitors may be supplied with straight or kinked
leads having a lead spacing of 5.0 mm or 7.5 mm.
Coating is made of blue colored flame retardant epoxy resin
in accordance with UL 94 V-0.
Radial
OPERATING TEMPERATURE RANGE
-40 °C to +85 °C (1)
Note
(1) For explanation about the difference of operating temperature
range and temperature characteristic of capacitance please see
www.vishay.com/doc?48299
CAPACITANCE RANGE
10 pF to 22 nF
RATED VOLTAGE
1000 VDC
DIELECTRIC STRENGTH
TEMPERATURE CHARACTERISTICS
1750 VDC, 2 s
Component test
Class 1: N750
INSULATION RESISTANCE AT 500 VDC
Class 2: Y5T, Y5U, Y5V
≥ 10 000 MΩ (60 s)
SECTIONAL SPECIFICATIONS
TOLERANCE ON CAPACITANCE
Climatic category (according to EN 60068-1):
40 / 085 / 21
± 10 %, ± 20 %, -20 % +50 %
DISSIPATION FACTOR
Class 1:
100 pF
-4
C < 30 pF: ------------------- + 0.7 x 10 max. ( 1 MHz )
C
C ≥ 30 pF: max. 0.1 % (1 MHz)
Class 2:
Revision: 28-Jan-2022
max. 2.5 % (1 kHz)
Document Number: 22161
1
For technical questions, contact: slcap@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
HAU, HAZ, HAE, HAX Series
www.vishay.com
Vishay Roederstein
DIMENSIONS in millimeters
Smax.
3.0 max.
Dmax.
V
F
30 - 3
or 10 ± 1
Ø d ± 0.05
ORDERING INFORMATION
CAPACITANCE
(pF)
TOLERANCE
(%)
BODY
DIAMETER
Dmax. (mm)
BODY
THICKNESS
Smax. (mm)
LEAD
SPACING (1)
F (mm)
± 1 mm
LEAD
DIAMETER (1)
d (mm)
± 0.05 mm
WIDTH (1)
V (mm)
± 0.5 mm
ORDERING CODE
MISSING DIGITS
SEE ORDERING
CODE BELOW
1.4
HAU100KBA###KR
HAU150KBA###KR
HAU220KBA###KR
HAU330KBA###KR
HAU470KBA###KR
HAU680KBA###KR
HAU820KBA###KR
HAU101KBA###KR
HAU151KBA###KR
HAU221KBA###KR
HAU331KBA###KR
HAU471KBA###KR
HAU561KBA###KR
HAU681KBA###KR
1.2
HAZ470#BA###KR
HAZ560#BA###KR
HAZ680#BA###KR
HAZ820#BA###KR
HAZ101#BA###KR
HAZ151#BA###KR
HAZ221#BA###KR
HAZ331#BA###KR
HAZ471#BA###KR
HAZ681#BA###KR
HAZ102#BA###KR
HAZ152#BA###KR
HAZ222#BA###KR
HAZ332#BA###KR
HAZ472#BA###KR
1.2
HAE102MBA###KR
HAE152MBA###KR
HAE222MBA###KR
HAE332MBA###KR
HAE472MBA###KR
HAE682MBA###KR
HAE103MBA###KR
N750
10
15
22
33
47
68
82
100
150
220
330
470
560
680
7.0
3.0
8.0
± 10
7.5
10.0
11.0
12.5
14.5
16.5
18.0
0.6
3.5
Y5T
47
56
68
82
100
150
220
330
470
680
1000
1500
2200
3300
4700
7.0
5.0
± 10, ± 20
3.0
0.6
9.0
11.0
13.0
15.0
7.5
Y5U
1000
1500
2200
3300
4700
6800
10 000
Revision: 28-Jan-2022
7.0
9.0
± 20
11.0
13.0
15.0
5.0
3.0
0.6
7.5
Document Number: 22161
2
For technical questions, contact: slcap@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
HAU, HAZ, HAE, HAX Series
www.vishay.com
Vishay Roederstein
ORDERING INFORMATION
CAPACITANCE
(pF)
TOLERANCE
(%)
BODY
DIAMETER
Dmax. (mm)
BODY
THICKNESS
Smax. (mm)
LEAD
DIAMETER (1)
d (mm)
± 0.05 mm
LEAD
SPACING (1)
F (mm)
± 1 mm
WIDTH (1)
V (mm)
± 0.5 mm
ORDERING CODE
MISSING DIGITS
SEE ORDERING
CODE BELOW
Y5V
2200
7.0
3300
9.0
HAX222#BA###KR
HAX332#BA###KR
5.0
4700
HAX472#BA###KR
6800
- 20 / + 50 (2)
3.0
12.0
10 000
15 000
17.0
22 000
18.0
0.6
HAX682#BA###KR
1.2
HAX103#BA###KR
7.5
HAX153#BA###KR
HAX223#BA###KR
Notes
(1) Standard lead configuration, other lead spacing and diameter available on request
(2) ± 20 % available on request
ORDERING CODE
#
7th digit
Capacitance tolerance
± 10 % = K, ± 20 % = M, - 20 % / + 50 % = S
###
10th to 12th digit
Lead configuration
See “General Information” www.vishay.com/doc?22001
Example
HAU
101
K
BA
BFG
K
R
Series
Capacitance
value
Tolerance code
Voltage code
Lead
configuration
Internal code
RoHS
compliant
MARKING
33p K
1 kV U
HAX
n56 K
2n2 S
1 kV
HAU 10 pF to 330 pF
HAU 470 pF to 680 pF
HAX 2.2 nF to 6.8 nF
HAZ 47 pF to 2.2 nF
HAE 1.0 nF to 4.7 nF
HAZ 3.3 nF to 4.7 pF
HAE 6.8 nF to 10 nF
10n S
HAX 10 nF to 22 nF
STORAGE
The capacitors must not be stored in a corrosive atmosphere, where sulphide or chloride gas, acid, alkali or salt are present.
Exposure of the components to moisture, should be avoided. The solderability of the leads is not affected by storage of up to
24 months (temperature +10 °C to +35 °C, relative humidity up to 60 %). Class 2 ceramic dielectric capacitors are also subject
to aging, see www.vishay.com/doc?22001.
SOLDERING
SOLDERING SPECIFICATIONS
Soldering test for capacitors with wire leads: (according to IEC 60068-2-20, solder bath method)
Soldering temperature
Soldering duration
Distance from component body
Revision: 28-Jan-2022
SOLDERABILITY
RESISTANCE TO SOLDERING HEAT
235 °C ± 5 °C
260 °C ± 5 °C
2 s ± 0.5 s
10 s ± 1 s
≥ 2 mm
≥ 5 mm
Document Number: 22161
3
For technical questions, contact: slcap@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
HAU, HAZ, HAE, HAX Series
www.vishay.com
Vishay Roederstein
SOLDERING RECOMMENDATIONS
Soldering of the component should be achieved using a Sn60/40 type or a silver-bearing Sn62/36/2Ag type solder. Ceramic
capacitors are very sensitive to rapid changes in temperature (thermal shock) therefore the solder heat resistance specification
(see Soldering Specifications table) should not be exceeded. Subjecting the capacitor to excessive heating may result in thermal
shocks that can crack the ceramic body. Similarly, excessive heating can cause the internal solder junction to melt.
CLEANING
The components should be cleaned immediately following the soldering operation with vapor degreasers.
SOLVENT RESISTANCE
The coating and marking of the capacitors are resistant to the following test method: IEC 60068-2-45 (method XA).
MOUNTING
If a defined product stop is required for mounting on a PCB, a mechanically formed product stop (kinked or inline wire) or a
mounting tool should be used.
We do not recommend modifying the lead terminals, e.g. bending or cropping. This action could break the coating or crack the
ceramic insert. If however, the lead must be modified in any way, we recommend support of the lead with a clamping fixture
next to the coating.
OPERATING VOLTAGE
In case the voltage is applied to the circuit, starting as well as stopping, may generate irregular voltage for a transit period
because of resonance or switching. Be sure to use a capacitor with a rated voltage range that includes these irregular voltages.
OPERATING TEMPERATURE AND SELF-GENERATED HEAT
Keep the surface temperature of a capacitor below the upper limit of its rated operating temperature range. Be sure to take into
account the heat generated by the capacitor itself. When the capacitor is used in a high frequency, pulse, or similar application,
it may have self-generated heat due to dielectric dissipation.
Temperature increase due to self-generated heating should not exceed 20 °C while operating at an atmosphere temperature of
25 °C.
When measuring, the surface temperature, make sure that the capacitor is not affected by radiant, conductive and convective
heat by its surroundings. Excessive heat may lead to thermo-mechanical deterioration of the capacitor's characteristics and
reliability.
RELATED DOCUMENTS
General Information
Revision: 28-Jan-2022
www.vishay.com/doc?22001
Document Number: 22161
4
For technical questions, contact: slcap@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Legal Disclaimer Notice
www.vishay.com
Vishay
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Revision: 01-Jan-2023
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Document Number: 91000