Description
Application Scenarios:
It is the middle of the night shift on a beverage canning line, and the filler valve bank has started dropping cans. Not every cycle — maybe one in four hundred — which is the worst kind of fault. The maintenance log shows nothing. The PLC program hasn’t changed. The line runs at speed, and a single mis-timed filler valve means foam, underfill, and rejected product that nobody can trace to a cause.The suspect is not the program and not the valve. It is the output module. This line was originally built with relay-based discrete outputs, and after several hundred million operations the mechanical contacts have entered the phase where they no longer behave deterministically — they bounce, they weld intermittently, they release a few milliseconds late. At line speed, a few milliseconds is a can. That is the pain point that relay output modules create and that no amount of programming can fix, because the failure is physical and it lives inside the module.Replacing that bank with a 170ADO35000 addresses it at the root. The 170ADO35000 switches with transistors, so there is no contact surface to wear, no bounce, and no progressive degradation across the service life — a solid-state output on its last day performs exactly as it did on its first. At 0.1 ms for both turn-on and turn-off, versus the 10–15 ms typical of an electromechanical relay, the 170ADO35000 is not merely faster but fast enough that its contribution to cycle timing becomes negligible. Two further things change on the maintenance side. Electronic short-circuit and overload protection on every output means a solenoid that has developed a shorted coil no longer takes out a fuse, a channel, or a production shift. And the 32 individual channel LEDs mean that when something downstream does fail, a technician finds it by looking at the module rather than by measuring thirty-two wires.This is the pattern across the industries the 170ADO35000 was designed for — material handling, packaging, simple machine control, infrastructure and energy. The value is rarely about raw capability. It is about removing the output layer as a source of unexplained intermittent behaviour, and making the remaining faults visible.
Parameter:
| Main Parameters | Value/Description |
|---|---|
| Product Model | 170ADO35000 (also written 170 ADO 350 00) |
| Manufacturer | Schneider Electric (formerly Modicon) |
| Product Category | Discrete output base DC, solid state — Modicon Momentum automation platform |
| Output Channels | 32 discrete outputs, arranged as 2 isolated groups of 16 — group segmentation lets you feed two separate supply domains from one module |
| Output Voltage | 24 VDC rated operational voltage; solid-state (transistor) sourcing switch |
| Current per Channel | ≤ 0.5 A continuous — sufficient for solenoid valves, relay coils, lamps, and small actuators without an interposing relay |
| Current Capacity | 8 A per group, 16 A per module total — the per-group limit is the one to design against, not the module total |
| Surge Current | 5 A for 1 ms — tolerates the inrush of inductive loads and lamp cold-start without nuisance tripping |
| ON-State Voltage Drop | < 0.5 V at 0.5 A — keeps dissipation and heat in the cabinet low across 32 channels |
| Leakage Current | < 1 mA at 24 VDC in the OFF state — low enough that it will not falsely hold in a sensitive relay coil |
| Protection | Electronic short-circuit and overload protection on all outputs; no per-channel fusing required |
| Response Time | 0.1 ms from state 0 to 1, and 0.1 ms from state 1 to 0 — supports switching up to 1 kHz |
| Isolation | 500 V AC between channels and bus — protects system electronics from field-side transients |
| Diagnostics | 32 LEDs, one per channel, for immediate visual status |
| Power | 6 W typical, 7.5 W maximum dissipation; 250 mA at 24 VDC bus consumption |
| EMC & Environment | 4 kV contact / 8 kV air ESD (IEC 801-2); 10 V/m radiated immunity, 80–1000 MHz (IEC 801-3); 0–60 °C operating, −40–85 °C storage, 95% RH non-condensing, ≤ 5000 m altitude |
| Mechanical & Mounting | 125 mm W × 141.5 mm H × 47.5 mm D, 0.21 kg; IP20 for control cabinet use; wall mount or Momentum base mount; removable terminal block |
| Certifications | CE, UL, CSA, FM Class 1 Division 2; TC protective (conformal) treatment; GTIN 3595861147676; country of origin France |
Technical Principles and Innovative Values:
Innovation Point 1: Solid state as an answer to wear, not just to speed. The most consequential thing about the 170ADO35000 is what it does not contain — no moving contacts. An electromechanical relay output has a mechanical life typically measured in the millions of operations, and its electrical life under inductive load is far shorter. Worse, it degrades gradually and invisibly: contact resistance rises, release time drifts, and the module starts producing intermittent faults that defy diagnosis. The transistor outputs of the 170ADO35000 have no wear mechanism in the same sense. Their failure mode tends to be definitive rather than progressive, which in a production environment is a far better bargain — a module that fails outright gets replaced, while a module that fails intermittently gets investigated for weeks.Innovation Point 2: Electronic protection that removes a whole class of panel components. Every output on the 170ADO35000 carries electronic short-circuit and overload protection. In conventional output design, each channel or each group requires external fusing, and every fuse is a component to specify, mount, label, stock, and — critically — to replace at two in the morning by someone who may or may not have the right rating to hand. The 170ADO35000 internalises that function: a shorted solenoid coil causes the output to protect itself, and the fault is indicated on the channel LED. Fewer components in the panel, fewer part numbers in the spare store, and a shorter path from fault to resolution.Innovation Point 3: Two-group architecture as a design tool. The 32 outputs of the 170ADO35000 are split into two groups of sixteen, each with its own power terminals (1L+ and 2L+). This is not an arbitrary internal arrangement — it is a genuine engineering affordance. One group can be supplied from a clean control supply driving safety-relevant or latchable loads, while the other is supplied from a separate domain that may be switched down independently during maintenance. It also allows the module’s 16 A total to be distributed sensibly rather than being treated as a single undifferentiated budget, and it means a fault on one supply domain does not necessarily disable all thirty-two channels.Innovation Point 4: 0.1 millisecond response as headroom, not a spec-sheet number. A response of 0.1 ms in both directions sounds like surplus capability for applications driving contactors and solenoid valves, and for any single output it is. The reason it matters is aggregate. In a high-speed machine where dozens of outputs are sequenced against encoder feedback, output latency that varies — as relay operate time does, with age and temperature — becomes a source of process variation that is extremely hard to trace. The 170ADO35000 delivers response that is fast and, more importantly, consistent, which is what makes a machine’s timing reproducible from the first shift to the ten-thousandth.Innovation Point 5: 500 V AC isolation between the field side and the bus. The 170ADO35000 sits at the boundary between a clean logic bus and a field wiring environment that may include long cable runs, inductive kick, and neighbouring VFDs or welders. The 500 V AC channel-to-bus isolation is what keeps a transient on the field side from propagating into the communication adapter and the rest of the I/O assembly. Combined with 4 kV contact / 8 kV air ESD withstand and 10 V/m radiated immunity per IEC 801-3, this is a module specified for real industrial electrical environments rather than laboratory ones.Innovation Point 6: Diagnostics designed for the person holding the torch. Thirty-two LEDs, one per channel, in a module 125 mm wide. This is an unglamorous feature and arguably the most valuable one. When a field device fails to actuate, the question is always whether the command was issued, whether the output switched, and whether the load is intact. The 170ADO35000 answers the middle question visually, at the module, without a laptop, a programming cable, or a multimeter. In practice this collapses troubleshooting from a process of elimination into a direct observation, and it is the reason maintenance teams consistently rate per-channel indication above features that look more impressive in a datasheet.Innovation Point 7: Conformal coating as a longevity measure. The 170ADO35000 carries Schneider’s TC protective treatment — a conformal coating over the assembly. In cabinets subject to humidity, condensation risk, airborne contaminants, or the mild corrosion that accumulates over years in food and beverage or water treatment environments, this coating is what allows a module designed for a 0–60 °C operating range to reach the twenty-plus year service life that Momentum installations routinely achieve.
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