01 / Supply
DC16V-36VCheck the available control-system supply before discussing output performance.
TYQ-2-6 industrial pulse planning
For combustion-control engineers and procurement teams, the TYQ-2-6 connects a DC16V-36V supply to 2J stored energy, output up to 2500V and a steady 6 pulses per second. Use this igniter page to check the electrical chain, then review the wider spark igniter family against the equipment boundary.
Use the product view alongside the specification chain to keep the electrical discussion tied to the actual TYQ-2-6 unit.
Pulse specification
The most useful first check is not a single headline number. It is the relationship between supply, stored energy, output and timing.
| Product | TYQ-2-6 Igniter Stores 2J for high-energy pulses |
|---|---|
| Input voltage | DC16V to DC36V |
| Current draw | Less than 2A when powered at DC24V |
| Stored energy | 2J |
| Output voltage | Up to 2500V |
| Pulse rate | 6 pulses per second |
| Output channel | Single output channel |
| Operating temperature | -55°C to 85°C |
| Quality standard | Q/TYQ 01-2021 |
Pulse chain
Read the TYQ-2-6 from the power supply toward the ignition event. Each step answers a different engineering question.
01 / Supply
DC16V-36VCheck the available control-system supply before discussing output performance.
02 / Storage
2JUse stored energy to frame the pulse requirement rather than treating voltage as the only specification.
03 / Output
Up to 2500VConfirm the required ignition-side output and the insulation boundary of the wider assembly.
04 / Timing
6 / secondCompare the listed pulse rate with the controller sequence and the combustion process.
Integration checkpoints
The TYQ-2-6 is one component in a combustion-control setup. Use these checkpoints to keep the product choice tied to the controller, ignition assembly and working environment.
Confirm that the available DC supply stays within DC16V to DC36V and review current capacity at the intended operating point.
Match the listed 6 pulses per second with the ignition sequence, burner cycle and control logic.
Confirm the single output channel, cable path, electrode arrangement and insulation requirements with the system designer.
Compare the stated -55°C to 85°C operating range with the equipment enclosure and plant conditions.
Related product family
These neighboring TENGYAN products show how stored energy, pulse rate and ignition method can change the selection conversation.
1J stored energy, output up to 2500V and a listed 16 sparks per second.
View TYQ-1-16-2 details
2J stored energy, output voltage at 2500V and a listed 25Hz spark frequency.
View TYQ-2-25-2 details
AC220V input, 10KV output and 20KHz operation for a different ignition architecture.
View TYDQ-2 detailsTechnical reading
These TENGYAN articles sharpen the next conversation around numbers, terminology and equipment context.
Read the numbers
Separate input supply, stored energy, output voltage and pulse rate before deciding whether a specification is comparable.
Open the specification articleUse precise terms
Keep product category, ignition component and design intent separate when a technical document describes the control system.
Open the terminology articleCheck the context
Place the igniter inside the wider combustion-control system instead of treating the component as a standalone promise.
Open the application articlePrepare the inquiry
A useful first inquiry lets the technical conversation start with the operating point, not a product name alone.
Before quotation
The product information identifies a 2J stored-energy design with output up to 2500V and a steady pulse rate of 6 pulses per second. Confirm the complete system requirement before selecting the final configuration.
The stated input voltage range is DC16V to DC36V. The listed current draw is less than 2A when powered at DC24V.
The TYQ-2-6 stores 2J for high-energy pulses. That figure should be read together with the input supply, output requirement and pulse rate of the complete ignition system.
The standard product information lists a steady rate of 6 pulses per second. Ask about the required pulse pattern if the application calls for a different timing profile.
The product is presented for industrial combustion systems, fuel ignition control, boilers, furnaces and combustion-control validation. Final fit depends on the controller, ignition assembly and operating environment.
Include the input supply, required pulse rate, output expectation, output-channel needs, equipment type, ambient temperature and any available controller or ignition-assembly information.