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Solicitation Expired 2 notices 2 documents

Delphi ARPA-H-SOL-26-153

Solicitation ARPA-H-SOL-26-153 Copied Notice ID 3a20086e27694f6cb17e207a19012983 Copied HEALTH AND HUMAN SERVICES, DEPARTMENT OF — ADVANCED RESEARCH PROJECTS AGENCY FOR HEALTH (ARPA-H)
SAM.gov
Posted
Mar 10, 2026
Deadline
May 13, 2026
Set-aside
None
NAICS
N/A
PSC
AN13

Summary

AI-generated · Mar 11, 2026

Delphi Program aims to develop modular, chiplet-based biosensors for wearable or ingestible devices to continuously monitor deep biological markers such as hormones, cytokines, and drug levels. The approach targets dramatically lower cost, smaller size, lighter weight, and lower power, enabling reconfigurable biosensing capabilities and rapid development. Benefits include early disease detection, safe home recovery, and precision, closed-loop therapies, by reusing and remixing high-performance ASIC components across devices and leveraging heterogeneous integration.

Draft ISO presolicitation identifies three chiplet categories: (1) dry, hermetically sealed chiplets for ultra-low power management and secure medical-data communication from body-worn devices; (2) wet biosensor chiplets that directly interface with biology to measure low-concentration biomarkers over extended periods; and (3) fully encapsulated, biocompatible packaging that protects electronics while leaving the sensing interface exposed. New packaging strategies must protect delicate electronics, preserve sensor surface chemistry, and support long-term operation in biological environments. This is not an invitation for proposals, and questions about technical approaches will not receive feedback.

This is a DRAFT ISO. This is not an invitation for solution summaries or proposals. Any such response will be disregarded. ARPA-H will not comment nor provide feedback on questions related to proposal technical approaches. The Delphi Program vision is to empower all Americans to fully understand their own bodies with continuous monitoring of deep biological information hormones, cytokines, and drug levels. Leveraging chiplets, a new system architecture in microelectronics, will greatly decrease cost, reduce size, weight, and power (SWaP), and enable all developers to access cutting edge capabilities. By the end, Delphi will quickly and cheaply develop modular wearable or ingestible sensors for monitoring a broad range of biological markers. The benefits include 1) early detection to prevent disease progression, 2) continuous monitoring for safe home recovery, and 3) precision, closed-loop monitoring of therapies for superior outcomes. Delphi will improve the biosensor development ecosystem, enabling low-cost but high performance sensing by shifting to a chiplet-based architecture. With chiplets, components of what would typically be an Application Specific Integrated Circuit (ASIC) can be reused and remixed into new devices that share the same high performance. Yields and scaling tend to be easier, and the approach inherently enables heterogeneous integration, which is ideal due to the diverse material set often needed for biosensing. Delphi aims to leverage existing advances in chiplets to focus on the components specific to biosensing. First, dry, hermetically sealed chiplets must provide ultra-low power management, overcoming the limitations of current power-hungry standards and the constraints of low duty cycle operation and RF or internal power harvesting. Additionally, chiplets that ensure secure communication of medical data from these body-worn devices must be developed. Second, wet biosensor chiplets that directly interface with biology are needed. Delphi aims to extend the state of art from biophysical measurements or high-concentration metabolites to the continuous measurement of low concentration biochemical markers such as hormones and cytokines over extended periods. Third, these chiplets must be integrated into biocompatible packages that are fully encapsulated except at the sensing interface. Existing encapsulation methods either lack the selectivity and reliability required at the chiplet scale or depend on rigid, complex, non-modular solutions. New packaging strategies must protect delicate electronics, preserve sensor surface chemistry, and support durable, long-term operation in biological environments.

From Presolicitation posted on Mar 10, 2026

Solution Summary due date: Wednesday, April 8, 2026 at 5:00PM ET. A solution summary is required in order to submit a proposal. The Delphi Program vision is to empower all Americans to fully understand their own bodies with continuous monitoring of deep biological information hormones, cytokines, and drug levels. Leveraging chiplets, a new system architecture in microelectronics, will greatly decrease cost, reduce size, weight, and power (SWaP), and enable all developers to access cutting edge capabilities. By the end, Delphi will quickly and cheaply develop modular wearable or ingestible sensors for monitoring a broad range of biological markers. The benefits include 1) early detection to prevent disease progression, 2) continuous monitoring for safe home recovery, and 3) precision, closed-loop monitoring of therapies for superior outcomes. Delphi will improve the biosensor development ecosystem, enabling low-cost but high performance sensing by shifting to a chiplet-based architecture. With chiplets, components of what would typically be an Application Specific Integrated Circuit (ASIC) can be reused and remixed into new devices that share the same high performance. Yields and scaling tend to be easier, and the approach inherently enables heterogeneous integration, which is ideal due to the diverse material set often needed for biosensing. Delphi aims to leverage existing advances in chiplets to focus on the components specific to biosensing. First, dry, hermetically sealed chiplets must provide ultra-low power management, overcoming the limitations of current power-hungry standards and the constraints of low duty cycle operation and RF or internal power harvesting. Additionally, chiplets that ensure secure communication of medical data from these body-worn devices must be developed. Second, wet biosensor chiplets that directly interface with biology are needed. Delphi aims to extend the state of art from biophysical measurements or high-concentration metabolites to the continuous measurement of low concentration biochemical markers such as hormones and cytokines over extended periods. Third, these chiplets must be integrated into biocompatible packages that are fully encapsulated except at the sensing interface. Existing encapsulation methods either lack the selectivity and reliability required at the chiplet scale or depend on rigid, complex, non-modular solutions. New packaging strategies must protect delicate electronics, preserve sensor surface chemistry, and support durable, long-term operation in biological environments.

From Solicitation posted on Apr 01, 2026

Notice history

2
  1. Presolicitation Posted Mar 10, 2026
  2. Solicitation LATEST Posted Apr 01, 2026
    • Description: Description was updated
    • Notice Type: PresolicitationSolicitation
    • NAICS Codes: None541715

Details

Solicitation number ARPA-H-SOL-26-153
Notice ID 3a20086e27694f6cb17e207a19012983
Notice type Presolicitation
Product / Service (PSC) AN13
Place of performance Washington, District of Columbia
Archive date May 28, 2026

Award Information

Not yet awarded

Contacts

primary
DELPHI ISO

Email

Agency

HEALTH AND HUMAN SERVICES, DEPARTMENT OF
NATIONAL INSTITUTES OF HEALTH
ADVANCED RESEARCH PROJECTS AGENCY FOR HEALTH (ARPA-H)

Place of Performance

Washington, District of Columbia
USA

Dates

Posted Mar 10, 2026 4 months ago
Last Updated Aug 06, 2026 1 day ago
Due May 13, 2026 2 months ago