CE-AAEC-Q200

Automotive CE Series Safety Certified Ceramic Capacitors (Class X1/Y2, AEC-Q200)

Safety classX1 440 VAC / Y2 300 VAC (IEC 60384-14)
Automotive qualificationAEC-Q200 qualified part numbers available
Capacitance100–10,000 pF (Y5P / Y5U / Y5V)
Temperature cycling3,000 cycles, −55 °C to +125 °C
Lead spacing7.5 / 10.0 mm
ApprovalsCQC · VDE/ENEC · IECEE CB · UL/cUL
CQC certification markVDE certification markENEC certification markIECEE CB scheme markUL certification mark

Automotive radial ceramic safety capacitors, Class X1 440 VAC / Y2 300 VAC, 100–10,000 pF. AEC-Q200 qualified part numbers available.

Series product photograph
Series product photograph

Part numbers

21

Showing 21 of 21 part numbers

G07B1E101KN0B2HQN0
G07B1E221KN0B2HQN0
G07B1E331KN0B2HQN0
G07B1E471KN0B2HQN0
G07B8E101KP0T2HQP0
G07B8E471KP0T2HQP0
G07E1E102MN0B0EQN0
G07E1E102MN0B2HQN0
G08B1E681KN0B0SQN0
G08B1E681KN0B2HQN0
G09E1E152MN0B2HQN0
G10B1E102KN0B2HQN0
G10E1D222MN0B2HQN0
G10E1E222MN0B2HQN0
G10E3E222MA0B2HQN0
G10E3E222MA0B2HQN6
G10E3E222MA5B2HQN0
G10E8E222MP0T2HQP0
G12E1E332MN0B2HQN0
G14E1E472MN0B2HQN0
G14E2E472MN0B2HQN0

Need a value that is not listed? Send us your specification.

Engineering details

Overview

Radial disc ceramic safety capacitors for automotive power electronics, Class X1 440 VAC / Y2 300 VAC to IEC 60384-14, for EMI suppression and coupling across basic or supplementary insulation. Y5P, Y5U and Y5V, 100–10,000 pF. AEC-Q200 qualified part numbers available; 85 °C / 85% RH for 1,000 h; 3,000 temperature cycles from −55 °C to +125 °C.

Series features

  • Class X1 440 VAC / Y2 300 VAC to IEC 60384-14 for automotive power-conversion interfaces
  • Dielectrics Y5P, Y5U and Y5V, 100–10,000 pF
  • AEC-Q200 qualified part numbers available; 85 °C / 85% RH for 1,000 h; 3,000 temperature cycles from −55 °C to +125 °C
  • Safety approvals: CQC, VDE/ENEC, IECEE CB, UL/cUL
Specifications
FunctionRadial single-layer ceramic safety capacitor for X1/Y2 EMI suppression and coupling. Not a substitute for Y1 reinforced insulation, and not a complete equipment approval.
Safety classIEC 60384-14 · X1 440 VAC / Y2 300 VAC
Insulation classY2: basic or supplementary insulation. Where the equipment requires reinforced insulation, use a Y1 capacitor (CY or CD series).
Automotive qualificationAEC-Q200 qualified part numbers available; AEC-Q200 revision, qualification report and qualified part-number list on request
Damp heat85 °C / 85% RH, 1,000 h
Temperature cycling3,000 cycles, −55 °C to +125 °C
Operating temperature−40 °C to +125 °C (approval range); operating grade and voltage derating on request
Capacitance rangeY5P 100–680 pF (6 values) · Y5U 1,000–10,000 pF (6 values) · Y5V 10,000 pF
Capacitance toleranceY5P K ±10% · Y5U/Y5V M ±20%
Body dimensions, Y5PD max. 7.5 mm (100–470 pF), 8.5 mm (680 pF) · T max. 5.0 mm
Body dimensions, Y5UD max. 7.5 / 9.5 / 10.5 / 12.5 / 15.0 / 17.0 mm at 1 / 1.5 / 2.2 / 3.3 / 4.7 / 10 nF · T max. 5.0 or 5.5 mm
Y5V version, 10,000 pFM ±20% · D max. 14.5 · T max. 5.5 · F 7.5 or 10.0 · d 0.65 mm
LeadsF 7.5 or 10.0 ±0.5 mm · d 0.60 or 0.65 ±0.05 mm, depending on value
Measuring conditionsCapacitance and dissipation factor at 25 °C · 1 kHz · 1 Vrms
Dissipation factor≤2.5% (initial)
Rated voltageX1 440 VAC / Y2 300 VAC
Dielectric strength2,600 VAC
Insulation resistance≥10,000 MΩ
DC ratingRated for X1/Y2 AC. The CE approvals include 1,500 VDC for designated constructions; DC rating of individual part numbers on request
Humidity robustnessCE approvals: Annex I grade IIIB, 1,000 h at 85 °C / 85% RH with rated voltage; applicability to individual automotive part numbers and post-test limits on request
Certified capacitance range100–10,000 pF · Y5P 100–1,000 pF · Y5U 680–10,000 pF · Y5V 1,000–10,000 pF
Lead forms and coating extensionLong straight · short straight · single outer-bent · front/rear raised; coating extension ≤2.5 mm (body ≤10 mm) or ≤3.0 mm (body >10 mm) where applicable
Bulk lead lengthLong straight ≥16.0 mm · short/bent 2.5–<6.0 mm ±0.5 or 6.0–10.0 mm ±1.0
TapingF 7.5/10 mm; P0 12.7 / P 25.4 mm or P0 15 / P 15 mm; 18 mm carrier tape; seating height depends on lead form
Wave solderingPreheat 30–130 s to 115 °C · rapid rise to 260 °C max. · solder ≤10 s · cooling ≤5 °C/s; validate immersion depth and board thermal mass
Hand rework360 °C max. · 3 s max. · solder joint ≥2 mm from coating
Leakage currentNo component limit specified; calculate from maximum C, f and V for every Y capacitor and check the touch-current budget of the equipment
Further data on requestRated-voltage frequency range, derating and repetitive transient limits · damp-heat bias voltage, sample size, recovery and post-test limits · temperature-cycling dwell, transfer time and post-test limits · dielectric-strength frequency, duration and ramp · insulation-resistance measuring voltage and charging time · capacitance versus temperature, AC/DC bias, frequency and aging for Y5P, Y5U and Y5V · reflow suitability, cleaning and coating compatibility, lead-forming limits, storage conditions and shelf life · AEC-Q200 results, impulse, endurance, biased humidity, vibration, shock, lead strength and solder-heat data
Selection guide

Start from the insulation diagram of the equipment and the maximum continuous AC/DC voltage. Then check Y-capacitor leakage, effective capacitance, impulse duty, AEC-Q200 and approval scope, humidity and cycling data, dimensions, marking and assembly process for one part number.

  1. Classify the insulation and circuit position

    Identify line-to-earth, primary-to-secondary or across-the-line duty from the equipment standard. Confirm that Y2 basic or supplementary insulation is sufficient; use Y1 where reinforced insulation is required.

  2. Define continuous AC, DC and impulse voltage

    Use the approval voltage code of the selected part. The 1,500 VDC approval scope, the 2.6 kVAC proof test and the impulse duty are different quantities; none replaces another. Impulse data on request.

  3. Set capacitance from EMI and leakage together

    Calculate common-mode attenuation and I = 2πfCV at maximum voltage, frequency and tolerance for every Y capacitor. Use temperature, bias, frequency and aging curves so that nominal capacitance is not mistaken for effective capacitance.

  4. Request automotive and safety documentation

    Request the AEC-Q200 revision and report, qualified part numbers, grade, site, stress groups, sample sizes, results and PPAP/change control, together with the current CQC, VDE, CB and UL scope for the same marking and construction.

  5. Confirm body, leads, packing and process

    Check the capacitance and approval voltage codes, drawing, blue coating and marking, lead form and length, taping, soldering, cleaning, storage and post-process acceptance of the selected part number.

Approvals & reliability

Approvals & qualifications

AEC-Q200 stress qualification and IEC 60384-14 safety approvals are separate. The approvals below cover the CE construction. Approval and AEC-Q200 coverage of individual part numbers on request.

AgencyStandardCertificateScope
CQC certification markCQCGB/T 6346.14-2023CQC19001213202CE X1/Y2, 100–10,000 pF; X1 440/400 VAC, Y2 300/275/250 VAC; Y5P/Y5U/Y5V, tolerance K/M, 40/125/21/B; Annex H 1,500 VDC; Annex I grade IIIB. Issued 15 Nov 2023, valid subject to surveillance.
VDE certification markENEC certification markVDE / ENECEN 60384-1440025748CE series, 100–10,000 pF; X1 440/400 VAC, Y2 300/275/250 VAC; Y5P/Y5U/Y5V, 40/125/21, class B; Annex H 1,500 VDC; Annex I grade IIIB.
IECEE CB scheme markIECEE CBIEC 60384-14:2013 + AMD1:2016DE1-67721/B2CE series, 100–10,000 pF, X1/Y2, AC ratings as above, 40/125/21/B; Annex H 1,500 VDC; Annex I grade IIIB; voltage proof Test A at 2,600 VAC. Issued 9 Aug 2023.
UL certification markUL / cULANSI/UL 60384-14 / CAN/CSA-E60384-14E208107Recognized component, USA and Canada: CE, 100–10,000 pF, X1 400/440 VAC, Y2 250/275/300 VAC, 1,500 VDC, −40 °C to +125 °C, tolerance K/M, grade IIIB.

Each certificate covers the types and ratings listed on it.

Design notes

Y2 is not reinforced insulation

Select from the insulation diagram of the equipment, not from the capacitor marking alone. Where the circuit requires reinforced insulation, use a Y1 capacitor and verify PCB and enclosure creepage, clearance and abnormal-condition design.

Calculate leakage at maximum conditions

Use maximum capacitance, tolerance, line frequency and voltage for each Y capacitor and total the complete network. Keep margin for the temperature, bias and aging behavior of the dielectric and for the touch-current limits of the equipment.

Keep proof, impulse and working voltage apart

X1/Y2 AC ratings, the 1,500 VDC Annex H scope, the 2.6 kVAC proof test and the impulse duty are different quantities. Check each value and its test method for the selected part and circuit position.

Safety approval and AEC-Q200 are separate

CQC, VDE, CB and UL approvals confirm the safety classification of the component. They do not establish automotive stress qualification, PPAP, site traceability or mission-profile life. Both must apply to the same part number.

Control the radial assembly process

Observe the wave-soldering profile and the 360 °C hand-rework limit. Keep heat and bending stress away from the coating. Review cleaning, coating, storage, shelf-life and vibration data before production.

Part numbering

Example ordering code. Not every combination is available.

G · 10 · E · 3 · E · 222 · M · A0 · B · 2 · H · Q · N · 0

CodeMeaning
GRated-voltage code: G = Y2
10Body diameter code
ETemperature characteristic: B = Y5P, E = Y5U, F = Y5V
3Lead form: 1 = long straight, 2 = single outer-bent, 3 = short straight, 8 = front/rear raised
ELead spacing: E = 7.5 mm, D = 10.0 mm
222Capacitance code: 222 = 2,200 pF
MCapacitance tolerance: M ±20%, K ±10%
A0Lead length or taped seating-height code, depending on lead form and packing
BPackaging: B = bulk, T = tape
2Environmental code: 2 = RoHS + halogen-free, 0 = RoHS
HMarking and approval voltage code: H = X1 440 VAC / Y2 300 VAC
QAutomotive product code
NInternal management code
0Internal management code