SinL Pro Series · SiC Platform

SinL Pro Power Quality AHF/SVG

AHF and SVG modules built on a SiC platform. Higher density, smaller footprint, and faster 5 ms response — in the same chassis our competitors deliver IGBT solutions in. AHF 30-200 A and SVG 20-150 kVar, single cabinet up to 12 modules.
High performance
Low loss
Diverse functionalities

Configure your SKU

Pick function, voltage, capacity, and form — selector finds the matching part number

SKU: SinL-AHF-50A-400V-Rack
Function
Voltage
Capacity
Form Factor
Found: SinL-AHF-50A-400V-Rack · 440 × 425 × 88 mm · 14 kg
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No stock SKU found for this combination. Closest match: .
Core capabilities

Four advantages built into the platform.

Every SinL Pro module — from 30A AHF to 200A AHF, from 20kVar SVG to 150kVar SVG — inherits these four traits.

Flexible application.

Multiple compensation modes — harmonics, reactive power, three-phase unbalance, neutral line management. Priority and distribution ratio adjustable per project.

Safe and reliable.

Comprehensive software and hardware protection. Stable continuous operation in harsh industrial power grid environments. EN 62477-1 and EN 61439-1 certified.

Strong applicability.

Adapts to grids with THDu up to 16%. Supports fine compensation of small currents typical in modern data center and EV charging loads. SiC platform delivers consistent performance where IGBT struggles.

Efficient and stable.

Wide filtering range covering 2nd to 50th harmonic order. Filtering rate ≥ 95% at rated load. Output current distortion rate THDi ≤ 5%.

Specifications

Core technical specifications.

Organized the way engineers actually read datasheets — input first, output next, grid compliance, protection, physical, environment, and certification last.

Electrical specifications
Wire system
3-phase 3-wire / 3-phase 4-wire
Frequency
50 / 60 Hz (-10% ~ +10%)
Circuit topology
3-level topology
Response time
≤ 5 ms · half of conventional IGBT response
AHF Function (when configured as AHF)
Harmonic compensation range
2nd to 50th harmonic order
Harmonic reduction rate
Better than 95% at rated load
THDi after filter
≤ 5%
Filter modes
Harmonic · reactive · unbalance · neutral-line
SVG Function (when configured as SVG)
Reactive power modes
Reactive · harmonic · three-phase unbalance
Target power factor range
-1 to +1 (full range)
Reactive compensation rate
≥ 99%
Priority adjustable
Yes — priority and distribution ratio configurable
Physical specifications
IP rating
IP20
Cooling
Smart forced-air cooling
Environmental specifications
Operating temperature
-25 to 55°C (derate above 45°C)
Humidity
5% – 95% RH non-condensing
Altitude
≤ 1500 m (derate above 1500 m)
Communication and control
Communication ports
RS485
CT configuration
Closed or open loop (open loop recommended for parallel)
Certifications and compliance
Safety
EN 62477-1 (2012) · EN 61439-1 (2011)
EMC
EN/IEC 61000-6-4, Class A
Markings
CE · CQC
Cabinet configuration

Up to 12 modules per cabinet.

For projects requiring multiple modules, the SinL Cabinet integrates them in a single 800 × 1000 × 2200 mm enclosure. Mix AHF and SVG modules as needed.

SinL Cabinet — 12-module integrated

Modules per cabinet
up to 12
Max AHF capacity
2,400 A @ 400 V
Max SVG capacity
1.2 MVar @ 400 V
Mix AHF + SVG
yes
Dimensions
1000 × 1000 × 2200 mm

Factory-integrated enclosure with shared cooling, common DC bus, and unified HMI. Modules are field-replaceable from the front (no rear access required). Multiple cabinets parallel for utility-scale capacity. Compatible with mainstream intelligent capacitor switching gear via SVGC integration.

Engineer FAQ

Questions engineers actually ask.

From procurement shortlists to commissioning — the ten questions we hear most often during technical due diligence.

SinL is built on silicon carbide (SiC) semiconductors; SinE uses IGBT. The functional capabilities are identical — both deliver AHF and SVG with the same harmonic compensation range, filter rates, and parallel operation behavior. The differences are physical:

SinL fits more capacity per cubic meter (higher power density). SinL has faster response (≤ 5 ms vs ≤ 10 ms). SinL handles harsher thermal conditions due to SiC characteristics. SinL is positioned as our premium tier; SinE is our standard tier.

Choose SinL for space-constrained retrofits, data centers, and premium industrial deployments. Choose SinE for cost-sensitive large-volume deployments where conventional power density suffices.

Yes. The SinL platform supports parallel operation of up to 20 modules per cabinet, and module function (AHF vs SVG) is firmware-selectable. For mixed deployments — for example, a 600A AHF + 300kVar SVG hybrid compensation — you can stack 4 × 150A AHF modules and 4 × 75kVar SVG modules in a single SinL cabinet.

Reach out to engineering for the recommended cabinet topology for your specific load profile.

SinL Pro modules are available in 200V, 400V and 480V configurations. For higher voltages ( 690V, 800V) — typical in heavy industrial and utility-scale applications — please refer to our SinE Standard Series, which covers the full 200V-800V range.

The SinL Cabinet supports up to 12 modules per cabinet. With 200A AHF modules at 400V, this delivers 2,400A AHF capacity in a single cabinet footprint of 800 × 1000 × 2200 mm. With 150kVar SVG modules, a single cabinet delivers 1.8 MVar reactive compensation.

Multiple cabinets can be paralleled to reach utility-scale capacity.

SinL Pro responds in ≤ 5 ms — half the response time of conventional IGBT solutions. This matters in two scenarios:

First, modern data centers and IT loads have rapid harmonic shifts that slower compensators cannot track, leaving residual distortion. Second, EV charging stations create transient harmonic spikes when multiple chargers turn on simultaneously. Sub-5ms response prevents visible distortion at the point of common coupling.

Yes. The SVG firmware in SinL supports control of mainstream intelligent capacitor switching gear. This enables hybrid compensation schemes (SVGC) where the SinL SVG handles fast, fine-grained reactive demand and existing capacitor banks handle bulk static reactive demand — combining the cost advantages of capacitors with the precision of SVG.

See our Industrial Power Quality solution page for the SVGC hybrid compensation reference architecture.

SinL operates at full rated power up to 1500 m altitude. Above 1500 m, derating applies per IEC standard practice. For projects above 3000 m (e.g. mining sites in Andes or Tibet), our engineering team provides custom derating analysis and recommends cabinet/cooling adjustments.

Application Cases

Related Case Studies​

Explore our real-world case studies to see how our energy Storage solutions empower global industries.

Power Quality Solution for Lithium Battery Material Factory in Zhejiang

In Tongxiang, Zhejiang Province, a leading lithium battery material manufacturer faced critical power quality challenges caused by complex industrial loads. The facility’s main equipment — including frequency converters and heating systems — generated excessive harmonic distortion and suffered from a low power factor, leading to reduced energy efficiency and instability

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Power Factor Optimization with enjoypowers SVG in Şanlıurfa, Turkey (33kV)

Project Snapshot Location: Şanlıurfa, Turkey (near Syria border) Grid Level: 33kV high-voltage system Main Loads: Lighting and ventilation fans Challenge: Low power factor causing penalties and losses Solution Capacity: 2 × 100kvar enjoypowers SVG (total 200kvar) Compensation Topology: Low-voltage 400V SVG correcting a 33kV system Why enjoypowers SVG for Lighting

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Send your harmonic measurements, target THDi, and panel space constraints. We’ll return a sized SinL configuration with full bill of materials.