ICE2PCS02GXUMA1 - CCM PFC Controller 65kHz PG-DSO-8 | Infineon
MPN: ICE2PCS02GXUMA1 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $1.42 | $1.42 |
| 10 | $1.27 | $12.70 |
| 100 | $1.05 | $105.00 |
| 500 | $0.92 | $460.00 |
| 1,000 | $0.81 | $810.00 |
| 2,500 | $0.74 | $1,850.00 |
Drop-in alternatives for ICE2PCS02GXUMA1 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
ICE2PCS01GXUMA1
β Drop-Inβ In Stock
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View Datasheet βICE3AS03LJGXUMA1
β Drop-Inβ In Stock
$0.96 / Unit
View Datasheet βICE2PCS02G
β Drop-Inπ Reference alternative (not in catalog)
ICE2PCS02GXUMA1 Maximum Ratings & Electrical Characteristics
| Product Type | PFC Controller IC |
| Topology / Mode | Continuous Conduction Mode (CCM), Boost PFC |
| Switching Frequency (typical) | 65 kHz |
| Switching Frequency Range | Up to 250 kHz (programmable) |
| Maximum Duty Cycle | 95% |
| Internal Reference Voltage | 3 V (trimmed) |
| Supply Current (max) | 13 mA (per Infineon ICE2PCS02G product page) |
| Quiescent Current (startup) | 0.3 mA (per DigiKey listing) / 0.45 mA (per Arrow listing) |
| Control Method | Average Current Mode |
| Error Amplifier | Transconductance (OTA) for voltage loop |
| Protection Features | UVLO, Open-Loop Detection, Output Over-Voltage Protection |
| Package | PG-DSO-8 (8-pin DSO with thermal pad) |
| Operating Temperature Range | -40 C to +125 C |
| Technology | BiCMOS |
| RoHS Status | Compliant |
| Mounting Type | Surface Mount |
| Packaging | Tape & Reel (suffix XUMA1 = 2,500 pcs) |
ICE2PCS02GXUMA1 Pin Configuration
| Pin 1 | VCC β Supply voltage input (typ. 15-18V start-up threshold with internal UVLO) |
| Pin 2 | GND β Ground reference |
| Pin 3 | ISENSE β Current sense input from boost inductor shunt resistor |
| Pin 4 | RT β Switching frequency programming (external resistor to GND) |
| Pin 5 | VINS β Input voltage sense / brownout protection |
| Pin 6 | VFB β Output voltage feedback (divided-down bulk rail) |
| Pin 7 | COMP β Compensation node for voltage-loop OTA |
| Pin 8 | GATE β Gate driver output for external boost MOSFET |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
ICE2PCS02GXUMA1 is suitable for 6 applications: ATX PC Power Supply PFC Stage, Industrial SMPS Universal Mains Input, Server and Datacenter SMPS, Flat-Panel TV and Display Power Board, LED Driver Front-End Stage, Universal Laptop and Game Console Charger.
ATX PC Power Supply PFC Stage
The ICE2PCS02GXUMA1 is a natural fit for the PFC front-end of 80 PLUS-compliant ATX power supplies from 300 W to 1 kW. Its CCM average-current-mode control delivers PF > 0.95 and input current THD well below the IEC 61000-3-2 class-D limits across 90-264 VAC universal mains. At a 65 kHz typical switching frequency (programmable to 250 kHz via the RT pin resistor), the boost inductor and EMI filter can be sized for compact ATX enclosures. The 95% maximum duty cycle ensures the 400 VDC bulk rail stays regulated even at low-line brownout. Pair with an Infineon ICE2HS01G half-bridge controller for the downstream LLC stage to build a complete 80 PLUS Gold platform.
Recommended
Industrial SMPS Universal Mains Input
In industrial SMPS modules operating from 90-264 VAC universal mains, the ICE2PCS02GXUMA1 provides robust PFC performance with its -40 C to +125 C operating range and BiCMOS process tolerance to electrical noise. The average-current-mode control rejects line-frequency disturbances that would otherwise disturb a peak-current-mode loop, giving stable 400 VDC output even with heavily distorted industrial mains. Built-in open-loop detection and output over-voltage protection prevent catastrophic failure if the feedback path is broken during maintenance. The PG-DSO-8 exposed pad enables direct PCB heatsinking without an external heatsink.
Recommended
Server and Datacenter SMPS
For 1U/2U server and hyperconverged infrastructure power supplies, the ICE2PCS02GXUMA1 supports the high-efficiency PFC front-end required for 80 PLUS Titanium and 80 PLUS Platinum ratings. Its CCM topology delivers lower peak currents and better thermal distribution than CRM (critical conduction mode) alternatives, which matters in densely packed 1U chassis with restricted airflow. The programmable switching frequency up to 250 kHz allows the boost inductor to shrink to fit tight server form factors, while the high 95% max duty cycle keeps bulk-cap ripple manageable at 240 VAC / full load.
Recommended
Flat-Panel TV and Display Power Board
The ICE2PCS02GXUMA1 is well suited to flat-panel TV and large-display monitor power boards that must meet ENERGY STAR standby and IEC 61000-3-2 harmonic limits. Its 8-pin PG-DSO package fits the slim TV chassis profile, and the trimmed 3V reference delivers tight bulk-rail regulation under varying LED-backlight loads. The internal soft-start limits inrush current at TV power-on, preventing nuisance tripping of household breakers. Combined with a downstream QR or flyback controller, the ICE2PCS02GXUMA1 enables a low-BOM PFC stage that does not require auxiliary windings on the boost inductor for sensing.
Recommended
LED Driver Front-End Stage
High-bay and street-lighting LED drivers benefit from the ICE2PCS02GXUMA1's CCM PFC front-end to comply with harmonic current limits and improve driver efficiency. The average-current-mode control maintains near-unity PF regardless of LED string voltage variations, while the programmable switching frequency up to 250 kHz enables small magnetics for slim outdoor luminaire housings. The -40 C to +125 C operating range covers harsh outdoor lighting environments including cold-start at -30 C. The exposed thermal pad on PG-DSO-8 simplifies PCB layout in IP67 sealed luminaires.
Recommended
Universal Laptop and Game Console Charger
For 90 W to 150 W universal-input laptop chargers and game console power bricks, the ICE2PCS02GXUMA1 provides a compact CCM PFC stage that pairs naturally with an Infineon CoolSET flyback. The 65 kHz typical / 250 kHz maximum switching range lets designers shrink the boost inductor to fit thin charger housings, and the integrated protection features (UVLO, open-loop detection, output OVP) reduce external component count. Compared to CRM PFC controllers, the ICE2PCS02GXUMA1 keeps EMI filter size smaller at higher power levels, which is critical for chargers that must pass EN 55022 Class B conducted emissions.
Recommended
Recommended Products Summary
Engineering reference data for ICE2PCS02GXUMA1 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | ICE2PCS01GXUMA1 | ICE3AS03LJGXUMA1 | ICE2PCS02G |
|---|---|---|---|---|
| Brand | Infineon Technologies | Infineon Technologies | Infineon Technologies | Infineon Technologies |
| Package | PG-DSO-8 | PG-DSO-8 (same) | PG-DSO-8 (same) | PG-DSO-8 (same) |
| Topology | CCM Boost PFC (external MOSFET) | CCM Boost PFC (external MOSFET) | Integrated PFC + Flyback CoolSET | CCM Boost PFC (external MOSFET) |
| Switching Frequency (typ) | 65 kHz | [DATA_NEEDED] | [DATA_NEEDED] | 65 kHz |
| Max Duty Cycle | 95% | 95% | [DATA_NEEDED] | 95% |
| Internal Reference | 3 V (trimmed) | 3 V (trimmed) | [DATA_NEEDED] | 3 V (trimmed) |
| Max VCC Supply Current | 13 mA | 13 mA | [DATA_NEEDED] | 13 mA |
| Power Target | 100 W - 1 kW (dedicated PFC stage) | 100 W - 1 kW (dedicated PFC stage) | <100 W (integrated PFC + flyback) | 100 W - 1 kW (dedicated PFC stage) |
| Technology | BiCMOS | BiCMOS | BiCMOS | BiCMOS |
Key Differentiators
- Trimmed 3V internal reference (vs ICE1PCS01/02 (1st generation))
- BiCMOS process technology (vs Legacy bipolar PFC controllers)
- Programmable frequency up to 250 kHz (vs ICE2PCS01GXUMA1)
Design Notes
The ICE2PCS02GXUMA1 VCC rail must be sourced from an auxiliary winding on the boost inductor or from an external startup regulator. Bootstrap the VCC with at least 10 uF of bulk capacitance plus 100 nF of high-frequency decoupling placed within 5 mm of the VCC pin. The internal UVLO releases operation at ~12 V and re-locks below ~10 V, so the auxiliary winding must regulate above 12 V under all line/load conditions. Below this, the IC may oscillate in start-up, causing audible buzz and risking the boost MOSFET.
Although the ICE2PCS02GXUMA1 dissipates only ~250 mW under normal operation, the PG-DSO-8 exposed pad must be soldered to a ground copper pour of at least 50 mm^2 to keep junction temperature below 110 C at 85 C ambient. Estimated: at 250 mW dissipation and JEDEC EIA/JESD51 4-layer board, theta_JA is ~80 C/W giving 20 C rise - well within budget. Avoid placing heat-generating components (boost diode, MOSFET) directly above the controller's exposed pad, or the pad will conduct heat from both directions and the controller may enter thermal shutdown at high ambient.
Keep the ISENSE current-sense loop area minimal: route the sense resistor ground return directly back to the controller GND pin rather than sharing the power ground path. The current-sense resistor should be a low-inductance SMD type (e.g., 2512 size, 1% tolerance) placed within 10 mm of the ISENSE pin. Place the RT frequency-setting resistor close to the RT pin with its ground return directly to pin 2 GND. Estimated noise pickup above 50 MHz on ISENSE can cause duty cycle jitter; add 100 pF of ceramic filter capacitance if observed.
Do NOT tie VFB directly to the bulk rail: the voltage divider impedance must be in the 1-5 Mohm range to keep the controller's quiescent draw from loading the feedback network. A common mistake is using a 100 kohm divider, which biases the controller's internal current source and shifts the regulation point. Also, the COMP pin compensation network (typically type-II: 100 nF in series with 10 kohm in parallel with 4.7 nF) must match the boost converter's right-half-plane zero - use the Infineon design tool spreadsheet to compute component values for your specific L and C values.
Compliance Information
RoHS and REACH compliant per Infineon product page; AEC-Q100 not applicable (this is an AC-DC PFC controller, not an automotive-qualified part). Halogen-free per Infineon Green Product qualification.