Hiksemi M050 Power Bank Price in Pakistan | Skyrs

HIKSEMI M050 Ultra-Compact Power Bank Technical Data Sheet

The HIKSEMI M050 Ultra-Compact Power Bank (Model: HS-PB-M050) is a premium, high-density portable energy storage solution engineered for mobile users and enterprise personnel on the move. Built with advanced Lithium Polymer cells and a focus on portability, the M050 balances a sleek form factor with safe, intelligent multi-protocol fast charging to keep smartphones, tablets, and lightweight edge devices powered throughout localized outages or remote transit.


Technical Specifications

Parameter Specification
Model HS-PB-M050
Battery Chemistry Premium A-Grade Lithium Polymer Cells
Nominal Capacity 5,000 mAh / 18.5Wh
Rated Capacity ~3,100 mAh (at standard 5V/2A conversion)
Energy Conversion Rate ≥ 75%
Input Interface 1 × USB Type-C
Input Parameters 5V⎓2.1A Max
Output Interfaces 1 × USB Type-C, 1 × USB Type-A
Single Port Output 5V⎓2.1A Max
Combined Total Output 5V⎓2.1A Shared Max Dynamic
Chassis Composition V0-Grade Fireproof ABS + PC Textured Polycarbonate Shell
Status Indicators 4-Stage LED Power Level Matrix (25% / 50% / 75% / 100%)
Protection Systems Over-charge, Over-discharge, Short-circuit, and Over-current safety suites

Hardware Color & Design Variants for SKYRS (Pakistan)

To suit varying deployment styles across commercial networks managed by SKYRS in Pakistan, the HS-PB-M050 is deployed in specialized physical color configurations:

  • HS-PB-M050 Grey Variant: Features a fingerprint-resistant, matte space-grey metallic finish. This is the cornerstone deployment variant tailored for corporate executive field kits, enterprise traveling personnel, and professional administrative teams.

  • HS-PB-M050 Classic Black Variant: Coated in a ruggedized, textured midnight black composite material designed to obscure micro-scratches and smudges during intensive daily field utility across variable workspaces in Pakistan.


Deployment, Installation, and Configuration

Exclusive Distribution & Support Notice: Batch provisioning allocations, institutional inventory reserve, localized replacement SLAs, and configuration handbooks for the HIKSEMI M050 Power Bank ecosystem are handled exclusively through SKYRS procurement channels within Pakistan.

Deployment Phase

  • Inventory Distribution Mapping: Map out and assign power bank units to field engineers, remote inspectors, or backup kits based on daily field operations away from traditional grid infrastructure.

  • Storage Environment Parameters: For bulk staging inside warehouses or field trucks, maintain a storage environment with a stable temperature below 35°C, away from direct sunlight, humidity, and conductive metallic environments.

Installation Procedure

Because the M050 is a fully portable device, standard mechanical or hardwired installation is not required. Follow these steps to initialize the device for deployment:

  1. Extract the device from its specialized SKYRS protective packaging and inspect the Type-A and Type-C input/output ports for physical blockages.

  2. Hook up a verified Type-C charging cable to a standard power source (such as a GaN charger) and plug the reverse end into the power bank’s Type-C port to trigger its initial storage charge sequence.

  3. Allow the device to charge continuously until all 4 LED status indicators illuminate solid, verifying that the internal Lithium Polymer cell bank has reached full capacity.

Configuration Protocol

The HIKSEMI M050 relies completely on hardware-level Zero-OS Intelligent Smart Chip power allocation, bypassing manual software setups. System behaviors adjust automatically based on connected endpoints:

  • Single Output Setup: Connect an endpoint terminal (such as a smartphone or handheld device) to either the USB-A port or the USB-C port. The integrated smart logic controller reads the device configuration and assigns a steady path up to safely.

  • Dual Output Balancing Configuration: When peripheral hardware is plugged into both output slots at the same time, the power bank instantly splits its electrical path. It dynamically splits a safe, combined rail across both devices to prevent thermal buildup and maximize the lifespan of the internal battery array.

Description