Contacting the smallest geometries
Ideal for high-volume production & more

The SPEA 4080 sets new standards in the flying probe sector.
It offers outstanding testing capabilities and a throughput comparable to a needle bed tester.

Highlights

  1. 180 contacts/sec.
  2. Min. Pad size: 50 μm
  3. 8 multi-tool flying probe test heads
  4. Contacting on both sides
  5. Highest error coverage
  6. Innovatives Fahrgestell aus Granit
  7. Compact footprint: 2.2 sqm (23.14 ft2)
  8. App-based system software
  9. Manual loading + inline integration in one system

180 contacts/sec.

Unique drive technology with linear motors and optical encoders on all axes (X, Y and Z) guarantees maximum acceleration and extremely precise contacting. The closed-loop technology guarantees unrivaled repeat accuracy over an infinite number of travels.

Min. Pad size: 30 µm

The extremely precise contacting accuracy is achieved by linear optical encoders on all axes. The SPEA 4080 contacts 50μm pads at maximum speed and with absolute precision, without leaving any traces – unique in the flying probe sector.
The programmable pressure force and soft landing function ensure that even the most sensitive electronic components (ultra fine pitch, sticky boards during product start-up, flex assemblies) are contacted precisely and quickly without risk of damage.

Highest error coverage

The SPEA 4080 offers the complete range of test options with maximum measuring accuracy. The shorter the distance between the needle and the measuring instrument, the faster and more accurate the measurement performed. Therefore, in SPEA Flying Probe systems, the measuring and stimulation instruments are positioned as a test head directly on the needles – the “flying tester concept”. That’s why SPEA testers are the fastest and the most accurate.

Innovative granite chassis

An innovative granite chassis combined with state-of-the-art linear motor technology provides unprecedented contacting precision with extremely fast test speed at low vibration and highest thermal stability.
Compared to conventional iron or steel, natural granite offers the best damping properties and thermal stability, minimizing vibration and deformation effects that would affect accuracy and reliability over time.

Compact footprint: 2,2 m² (23,14 ft2)

The footprint of the SPEA 4080 is very compact: it only requires 2.2 square meters including the inline feed.

Can replace needle bed tester

Due to its speed and the associated high productivity, the SPEA 4080 can easily be used where previously only needle bed testers were used, for example in high-volume series production.

High precision measurements

  • High-precision measurement performance and accuracy (0.1pF)
  • Signal integrity
  • No impairment of the measurement results or interference
  • Immediate signal acquisition
  • Unique repeatability

Up to 28 Top & Bottom Flying Test Tools

The eight axes of the SPEA 4080 (4 top + 4 bottom) allow the installation of up to 28 flying tools in total: In addition to the probes with which all electrical tests are performed, a variety of other tools are available to extend the test performance of the SPEA 4080.

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Powerful and compact.
Full test coverage for 5G components.

The world’s most compact 8-fold flying probe tester

The SPEA 4085 is the most powerful and at the same time most compact 8-fold flying probe tester on the market. Its peak throughput of over 800,000 tested assemblies per year makes it ideal for high-volume series production. Highest positioning and repeat accuracy of 20 and 5 μm respectively guarantee reliable testing of assemblies with the highest packing density, micro pads smaller than 50 µm and 01005 SMD – typical for the latest generation of electronics such as smartphones, tablets, laptops, routers, wearables and sensors. But 008004 components are also reliably contacted and tested. The SPEA 4085 achieves all this with a footprint of just 1.29 square meters.

Full test coverage for 5G components

The wide range of test procedures available on the SPEA 4085 includes the RF test – also for 5G devices – and an optical test using high-resolution cameras with liquid lenses. But the standard in-circuit test, short-circuit test, open pin scan, power-on test, function test, boundary scan, flash programming, thermal inspection and LED test for color location and saturation are also part of the test program. This ensures complete test coverage and the identification of any component defects.

Highlights

  1. Compact design
  2. Modern test technology on 1.29 square meters
  3. HF test for 5G technologies
  4. Testing of high-frequency components on printed circuit boards
  5. Unprecedented throughput
  6. More than 800,000 assemblies tested per year
  7. Ultra precise contacting
  8. Guaranteed even on 008004 components
  9. Soft-touch technology
  10. Damage caused by contacting is excluded

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Test the largest boards
Multifunctional contacting on both sides

 

Two-sided multi-mode test: optimal accessibility & parallel tests

The SPEA 4060 combines the advantages of a double-sided flying probe system with the option of using additional tools such as fixed probes, pressure and support tools, multi-probe unit and more.

FLYING-PROBE TEST on both sides.
Four freely movable test heads on the top and two on the bottom allow the SPEA 4060 to test the assembly from the top and bottom at the same time. This increases test coverage and throughput.

  • Shortened test time
  • Increased fault coverage
  • A single test program for both sides of the board

Test even the largest boards

LARGE TEST AREA: The large test area allows the SPEA 4060 S2 to test boards up to 1524 x 610mm (60 × 24″) in size
BACKPLANES: The SPEA 4060 S2 easily tests backplanes with a wide variety of connectors
HIGH COMPONENTS: The SPEA 4060 S2 also tests PCBs with transformers, heat sinks, connectors, front panels, polarized capacitors and other components with a height of up to 110 mm

High precision measurements

  • High-precision measurement performance and accuracy (0.1pF)
  • Signal integrity
  • No impairment of the measurement results or interference
  • Immediate signal acquisition

Fast and precise testing of even the smallest components

  • ULTRA HIGH-SPEED AXLES
  • High-performance linear motors
  • PRECISE contacting of micro-pads
  • ULTRA-FAST SOFT-TOUCH TECHNOLOGY

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High productivity with maximum accuracy
Ideal for medium-volume production

Highlights

  1. High throughput
  2. High precision measurements
  3. Precise contacting of Micro-SMD
  4. No adapter costs
  5. Intuitive programming
  6. Highest error coverage
  7. Reduction of field returns

Multi-mode contacting

With the SPEA 4050, the 4 flying test heads on the top can be combined with additional test tools on the bottom. This increases test depth and throughput.
Each of the test probes can be used for an in-circuit test, a power-on test, as an analog sink/source, as a digital driver/sensor, for flashing via on-board programming, boundary scan and can be used as a prescaler.
The four needles from the top can be used for a standard flying probe test, while the lower platform can be used to accommodate additional fixed probes and adapters, various power supplies, digital I/O signals and support fingers. The 4 test needles from above can also be equipped with additional test tools.

Precise contacting of Micro-SMD

The miniaturization of components continues to advance – SPEA flying probe testers are equipped for this.
High-performance linear motors on all axes (X, Y, Z)
Precise contacting of Micro-SMD (008004)
Reliable testing of flexible/thin assemblies
Sticky boards for product start-up
Unique repeatability even with the smallest components over a long period of time
Ultra-Fast Soft-Touch technology: no damage caused by contacting, no stress and strain on the assembly and components

High precision measurements

  • High-precision measurement performance and accuracy (0.1pF)
  • Signal integrity
  • No impairment of the measurement results or interference
  • Immediate signal acquisition

High test speed

  • High-performance linear motors on all axes (X, Y, Z)
  • Maximum speed for all movements
  • Maintenance-free: No impairment of accuracy due to wear and tear
  • Extreme long-term stability and durability

Learn more >

Top performance at an unbeatable price.
Ideal for prototypes, NPI, small series,… & more

Highlights

  1. High precision measurements
  2. Precise contacting of Micro-SMD
  3. No adapter costs
  4. Intuitive programming
  5. Highest error coverage
  6. Reduction of field returns

Multi-mode contacting

With the SPEA 4050, the 4 flying test heads on the top can be combined with additional test tools on the bottom. This increases test depth and throughput.
Each of the test probes can be used for an in-circuit test, a power-on test, as an analog sink/source, as a digital driver/sensor, for flashing via on-board programming, boundary scan and can be used as a prescaler.
The four needles from the top can be used for a standard flying probe test, while the lower platform can be used to accommodate additional fixed probes and adapters, various power supplies, digital I/O signals and support fingers. The 4 test needles from above can also be equipped with additional test tools.

Precise contacting of Micro-SMD

The miniaturization of components continues to advance – SPEA flying probe testers are equipped for this.
High-performance linear motors on all axes (X, Y, Z)
Precise contacting of Micro-SMD (008004)
Reliable testing of flexible/thin assemblies
Sticky boards for product start-up
Unique repeatability even with the smallest components over a long period of time
Ultra-Fast Soft-Touch technology: No damage from contacting, no stress and strain on the assembly and components

High precision measurements

  • High-precision measurement performance and accuracy (0.1pF)
  • Signal integrity
  • No impairment of the measurement results or interference
  • Immediate signal acquisition

High test speed

  • High-performance linear motors on all axes (X, Y, Z)
  • Maximum speed for all movements
  • Maintenance-free: No impairment of accuracy due to wear and tear
  • Extreme long-term stability and durability

Learn more >