Hiksemi 67W GaN Fast Charger Price in Pakistan | Skyrs

HIKSEMI GaN Fast Charger 67W (Dual USB-C) Data Sheet

The HIKSEMI 67W GaN Fast Charger (Model: HS-HUB-GaN67) is an enterprise-grade power delivery solution engineered with next-generation Gallium Nitride (GaN) semiconductor technology. Offering a high-power output of up to 67W across dual USB-C ports (featuring a standard female USB-C port and an integrated retractable high-durability USB-C cable configuration), it provides efficient, space-saving fast charging for laptops, ultrabooks, tablets, and smartphones simultaneously.


Technical Specifications

Parameter Specification
Model HS-HUB-GaN67 (Dual USB-C Interface)
Semiconductor Material Premium Gallium Nitride (GaN) Technology
Total Maximum Power 67W Continuous Output
Input Parameters AC 100 – 240 V, 50/60 Hz, 1.5A Max (Universal Grid Ready)
Single Port Output (C1 / C2) 5V⎓3A, 9V⎓3A, 12V⎓3A, 15V⎓3A, 20V⎓3.35A (Max 67W)
Dual Port Smart Allocation C1 (Primary Laptop) Max 45W + C2 (Peripheral) Max 18W
Integrated Secondary Line Premium Retractable Male USB-C Cable (Extends up to 70 cm)
Protective Safety Suites Over-Temperature, Over-Voltage, Short-Circuit, Over-Current Protection
Fast Charging Protocols PD 3.0, PD 2.0, QC 3.0, PPS, SCP, FCP, Apple 2.4A, Samsung 2.0A

Regional Product Variants for SKYRS (Pakistan)

To maintain absolute structural compliance across various commercial infrastructures and enterprise facilities managed by SKYRS in Pakistan, the hardware architecture is deployed in three specialized regional plug variants:

  • Type G Variant (UK Three-Pin Standard): Featuring triple rectangular prongs. This serves as the cornerstone deployment model for standardized corporate workspaces, modern server rooms, and standard administrative offices across Pakistan.

  • Type C Variant (Europlug Standard): Engineered with dual round pins. Ideal for high-density modern business hubs and residential commercial properties operating on European plug layouts.

  • Type A Variant (US Flat-Pin Standard): Formed with dual flat parallel pins, intended explicitly for tailored networking enclosures, specific rack mount strips, or specialized lab environments.


Deployment, Installation, and Configuration

Exclusive Distribution & Support Notice: Procurement, lifecycle SLA agreements, structural replacement warranties, and technical rollout configurations for all HS-HUB-GaN67 variants are managed exclusively through SKYRS channels within Pakistan.

Deployment Phase

  • Load Profiling: Map out placement locations based on device types. Ensure chargers are deployed where higher-draw hardware (such as Core i5/i7 laptops or modern Type-C tablets) require continuous multi-stage charging.

  • Thermal Management: Mount or insert adapters into locations with unimpeded ambient airflow. The advanced GaN architecture limits thermal buildup, but structural ventilation must be maintained below 40°C.

Installation Procedure

  1. Confirm the destination wall outlet matches the specific localized variant supplied by SKYRS (Type G, C, or A) and complies with Pakistan’s national grid profile (AC 220V–240V, 50Hz).

  2. Align the copper contact pins cleanly with the wall or power strip socket receptors.

  3. Firmly insert the chassis until the adapter sits flush with the faceplate interface, neutralizing any potential for loose-contact arcing.

Configuration Protocol

The HS-HUB-GaN67 eliminates manual software configuration by utilizing an onboard Smart Power-Allocation Microchip. The physical power distribution maps automatically based on terminal connection states:

  • High-Draw Single Laptop Mode: Connect your main high-drain device to either the female USB-C port or pull out the built-in 70 cm retractable USB-C cable. The charger dynamically reads the device IC and assigns the full $67\text{W}$ profile.

  • Dual-Device Coordinated Mode: When both the built-in cable and the female USB-C port are connected concurrently, the smart core instantly reconfigures the output topology. It throttles the primary port down to a safe, continuous $45\text{W}$ (optimal for notebooks) while opening an independent $18\text{W}$ path on the secondary line for auxiliary hardware.

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