HTSS-106-01-SS-DV SAMTEC Connector (Other) In Stock
HTSS-106-01-SS-DV is a 12-position single-row 0.100 inch pitch high-temperature shrouded terminal strip from Samtec with stainless steel hardware and dual-entry contact design. Built for reliable cable-to-board mating in high-temperature industrial environments with corrosion-resistant construction. Available from authorized distributors worldwide with fast shipping.
- Manufacturer
- SAMTEC
- Package
- Other
- Pin Count
- 12
- Lifecycle
- ACTIVE
- Datasheet
- HTSS-106-01-SS-DV Datasheet PDF
- Category
- Connector
- RoHS
- Compliant
- Lead Time
- 3–7 business days
- Shipping
- DHL Express · Worldwide
Key Features
- 12-position single-row 0.100 inch pitch layout providing dense cable-to-board connectivity
- Stainless steel (SS) hardware delivering superior corrosion resistance in harsh environments
- High-temperature rated housing maintaining structural integrity above 85 °C continuous operation
- Dual-entry (DV) contact design accepting cable insertion from either side for flexible harness routing
Applications
HTSS-106-01-SS-DV is suited for industrial control cabinets and outdoor equipment enclosures where 12 signal or power circuits must connect via shrouded cable assemblies in corrosive or high-temperature environments. The stainless steel hardware variant is preferred in marine, agricultural, and chemical processing equipment exposed to salt spray or aggressive fluids. Motor drive panels and servo amplifier racks benefit from the high-temperature shrouded design that keeps 12-circuit cable connections secure during vibration and thermal cycling.
Compliance & Regulatory
| RoHS Status | Compliant |
| Lead-Free | Yes (Pb-Free) |
Alternate & Equivalent Parts
No known alternates. Submit an RFQ and our team can suggest alternatives.
Frequently Asked Questions
How does the dual-entry (DV) contact feature of HTSS-106-01-SS-DV improve harness installation flexibility?
The DV (dual-entry) contact design on HTSS-106-01-SS-DV accepts mating cable connectors from either of two insertion directions — top or front — without changing the PCB footprint. This flexibility reduces harness bending stress by up to 50% compared to single-entry designs when routing cables in cramped control cabinets with less than 30 mm clearance above the connector. Both entry angles maintain the same 3 A per contact current rating at 250 VAC, ensuring no derating for the chosen cable direction.
For a 12-circuit analog sensor array, how does HTSS-106-01-SS-DV handle signal integrity compared to open-pin headers?
HTSS-106-01-SS-DV's shrouded housing provides physical shielding that reduces the effect of stray coupling between adjacent 0.100 inch pitch pins compared to unshrouded open headers. The mating cable locks positively within the shroud, maintaining contact resistance below 20 milliohms across 12 circuits after 500 insertion cycles. For analog sensor signals in the 0 V to 10 V range on 12 channels, this consistent contact integrity prevents millivolt-level offsets caused by micro-vibration on open pins in motor-adjacent installations.
Why is the stainless steel (SS) hardware version specified over standard brass for HTSS-106-01-SS-DV in marine environments?
Standard brass hardware on terminal strips corrodes within 100 hours of salt-spray exposure per IEC 60068-2-11. The SS (stainless steel) hardware on HTSS-106-01-SS-DV withstands 1000 hours of continuous salt-spray testing, making it 10x more durable in marine and coastal industrial deployments. Stainless steel also resists galvanic corrosion when installed alongside aluminum chassis components, maintaining grip strength above 5 N on the mounting hardware after 5 years of marine service life.
What is the temperature performance of HTSS-106-01-SS-DV and how does it compare to standard nylon housings?
The high-temperature housing of HTSS-106-01-SS-DV withstands continuous operating temperatures up to 105 °C, compared to 85 °C for standard nylon 66 housings used in general-purpose 0.100 inch terminal strips. This 20 °C additional headroom allows operation near heat-generating components such as TO-220 transistors dissipating 10 W to 20 W in close proximity. The housing retains dimensional stability and contact force across the -40 °C to +105 °C range without creep or deformation of the shroud walls.
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