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Homecare Homebase

Empowering Exceptional Care / Empowering care across the patient journey

Homecare Homebase offers EHR software, home care scheduling, and healthcare revenue cycle management solutions.
EHR software
home care scheduling software
healthcare revenue cycle management
back office software
homecare software
EHR system
EMR system
home health software
hospice software
personal care software
private duty home care software
agency management system
health system management
electronic health records system
agency management software
healthcare compliance software
  • 4849 Greenville Ave
    Suite 400, Dallas, Texas 75206, UNITED STATES
  • Today
    Closed
  • No Chat Option Found

About

Homecare Homebase is the industry-leading provider of EHR software, delivering advanced solutions for home-based care. Established in 1999 by seasoned industry experts, our platform has evolved to address the dynamic needs of home health and hospice care professionals. As the #1 software choice among the top home health and hospice agencies nationwide, we offer a powerful, comprehensive suite of services that includes home care scheduling software, healthcare revenue cycle management, and back office software, all designed to streamline agency processes and enhance patient care.

Homecare Homebase’s mobile home health software solution revolutionizes workflow, scheduling, and routing while ensuring defensible documentation and easy compliance. Designed for real-time access with or without wifi, our platform facilitates optimized patient visits, reduces billing errors, and improves overall clinical guidance, leading to higher satisfaction rates and increased agency productivity and profitability.

Serving the country’s top home health and hospice agencies, Homecare Homebase empowers providers to efficiently manage referrals, scheduling, visit documentation, workflow, compliance, medications, and billing. Our robust software and comprehensive data reporting are paving the way for agencies to navigate complex pay-for-performance models and PDGM challenges.