Ovenless Burn-In & HTOL solution

AUTONOMOUS CONTROL OF THE DUT HEATER TO MINIMIZE ENERGY CONSUMPTION

The Microtest Ovenless Burn-In is a powerful and innovative solution for Burn-in, that allows the maximum flexibility to match your needs.

Reasons Why

The only ovenless Burn-In solution on the market
A much greener solution compared to traditional ovens
Noticeable ESG impact when implemented – power, footprint, cooling
Faster thermal ramp up and cool down, with better per - DUT temperature control
Fully automated, SECS GEM and factory 4.0 compliant

Product Presentation

The Ovenless Burn‑In & HTOL Solution from Microtest offers a groundbreaking, eco-friendly alternative to traditional burn-in ovens. Designed for high-density device testing, it delivers per‑DUT independent thermal control without ovens, dramatically reducing energy usage, cooling requirements, and facility footprint.
This rack-based platform includes a Burn-In System (BIS) and racks with 24 internal slots, each slot accommodating up to 120 devices—enabling fully automated, large-scale burn-in and HTOL cycles. The system achieves faster temperature ramp-up/cool-down and precise thermal regulation at the DUT level—significantly improving test efficiency and uniformity.
Its green credentials are impressive, with lower power consumption and a reduced carbon footprint, aligning with ESG and Industry 4.0 initiatives.
Measuring approximately 2000 mm (H) × 1200 mm (W) × 1300 mm (D), this solution is SECS‑GEM compliant and cleanroom-ready, easily integrating into existing production lines. Its versatile application spans across sectors—from automotive, medical, MEMS and consumer electronics to aerospace, defence, industrial, and power semiconductors.
In summary, the Ovenless Burn‑In & HTOL Solution combines cutting-edge thermal management, sustainable operation, and high-throughput automation—providing manufacturers with a smarter, cleaner, and more efficient platform for reliability testing of semiconductor devices.

FEATURES/CONFIGURATIONS

60 sites double Vcore

80 sites single Vcore

120 sites single Vcore

Number of test sites
1440
1920
2880

Dimensions

D⨯W⨯H
1300 mm ⨯ 1200 mm ⨯ 2000 mm
1300 mm ⨯ 1200 mm ⨯ 2000 mm
1300 mm ⨯ 1200 mm ⨯ 2000 mm

Analog/Power

VCORE1 SUPPLY
2x site (fully independent)
@0.6-3.6V
1x site (fully independent)
@0.6-3.6V
1x site (fully independent)
@0.6-3.6V
VCORE2 SUPPLY
2x site (each channel shared on 5 sites)
@0.6-3.6V
1x site (each channel shared on 5 sites)
@0.6-5.0V
1x site (each channel shared on 5 sites)
@0.6-3.6V
VIO SUPPLY
1x site (each channel shared on 10 sites)
@1.65 – 5.5 V
1x site (each channel shared on 10 sites)
@1.65 – 5.5V
1x site (each channel shared on 10 sites)
@1.65 – 5.5V

Digital

Independent Digital Channels
10x site (4 DRIVERS, 2 RECEIVERS, 4 BIDIRECTIONALS)
5x site (2 DRIVERS, 1 RECEIVER, 2 BIDIRECTIONALS)
5x site (2 DRIVERS, 1 RECEIVER, 2 BIDIRECTIONALS)
Shared Digital Channels
15 DRIVERS x site (each channel shared on 5 site)
15 DRIVERS x site (each channel shared on 5 site)
15 DRIVERS x site (each channel shared on 5 site)

Measurements Instruments

Diode Measure
60
80
120
Heater Controls
60
80
120
Heater Resistance Measure
60
80
120
Voltage Measure
60
80
120

Burn In Datasheet

Applications

More info

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