ILD205T Optoisolators - Transistor, Photovoltaic Output by Vishay
ILD205T is a Optoisolators - Transistor, Photovoltaic Output from Vishay in SOP8 packaging. It is commonly reviewed for OPTOISO 4KV 2CH TRANS 8SOIC. This page lists current TrustCompo stock, tier pricing, package data, datasheet access, compliance attributes, Hong Kong warehouse shipping options, payment confirmation, and RFQ options for buyers verifying this exact ordering code.
Review TrustCompo quality credentials, traceability support, anti-counterfeit handling, and inspection controls before sending an RFQ.
4 certifications
ISO 9001
Quality management processes for more consistent sourcing and handling.
AS9120B
Aerospace-focused distribution controls for traceability and reliability.
ISO 14001
Environmental management discipline across warehouse and operating workflows.
ESD Control
Electrostatic handling standards to help protect sensitive components.
RFQ checklist
Order process
Confirm the core buying details for ILD205T before RFQ, PO release, and shipment planning.
1
Confirm MPN
Use the exact part number, manufacturer, package, and approval constraints in the RFQ.
2
Check stock and price
Verify live availability, MOQ, lead time, final unit price, and tax terms before PO release.
3
Align documents
Confirm datasheet, CoC, traceability, lifecycle notes, and inspection scope when required.
4
Arrange shipment
Release the PO and align DHL, FedEx, UPS, or buyer forwarder shipment from Hong Kong.
Before PO release
Part confirmation
Exact MPN confirmed: ILD205T
Package to verify: SOP8
Commercial confirmation
Live stock and lead time confirmed by RFQ
Final price and tax terms confirmed before PO release
Fulfillment & documents
Ship-from location: Hong Kong warehouse
Shipping method: DHL, FedEx, UPS, or buyer forwarder account
Technical parameters
Parameters
Compare grouped ILD205T parameters from Vishay, including package, series, key attributes, and technical values used for engineering and sourcing review.
Export Classifications & Environmental
SVHC Exceeds Threshold
8
Export Classifications & Environmental
HTS
Tape & Reel (TR)
Product Attribute
Minimum Operating Temperature
-55°C
Product Attribute
Factory Lead Time
6 Weeks
Product Attribute
Published
2014
Product Attribute
Package / Case
8-SOIC (0.154, 3.90mm Width)
ILD205T Export Classifications & Environmental
Parameter
Value
SVHC Exceeds Threshold
Indicates whether the concentration of Substances of Very High Concern in the component exceeds the regulatory threshold set by REACH. This is a critical compliance flag for EU market access. Buyers must verify this status to ensure legal compliance and avoid supply chain disruptions. Check the latest REACH updates for threshold changes.
8
HTS
Harmonized Tariff Schedule code used for customs classification and duty calculation when importing or exporting electronic components. Accurate HTS codes are essential for compliance and cost estimation. Buyers and logistics teams must verify the correct code for the specific component to avoid delays or penalties.
Tape & Reel (TR)
ILD205T Product Attribute
Parameter
Value
Minimum Operating Temperature
Specifies the lowest ambient temperature at which the component is guaranteed to function within its electrical and mechanical specifications. Verify this limit against the datasheet for your application's thermal environment, especially for automotive or industrial designs.
-55°C
Factory Lead Time
Indicates the typical duration from order confirmation to shipment from the manufacturer's facility. This helps you plan production schedules and inventory. Verify current lead times with your distributor or supplier, as they may vary based on order quantity, product availability, and market conditions.
6 Weeks
Published
Published indicates the date when the product data was released or updated in the catalog. It helps buyers assess the freshness of the information and whether the component is current or possibly obsolete. Check the datasheet for the latest revisions.
2014
Package / Case
Physical package or case type of the component, defining its dimensions, mounting style, and thermal characteristics. Common types include SMD, through-hole, BGA, and QFN. Choose the package that fits your PCB layout and assembly process. Verify the exact package code in the datasheet for footprint compatibility.
8-SOIC (0.154, 3.90mm Width)
Manufacturer
Identifies the company that designed and produced the component. Buyers often filter by manufacturer to ensure brand reliability, quality standards, and supply chain consistency. Verify the manufacturer against the datasheet and official packaging to avoid counterfeit parts.
Vishay
Power Dissipation
Maximum power the component can safely dissipate as heat without exceeding its thermal limits. Compare this rating with your application's expected power loss to ensure reliable operation. Always verify against the datasheet's derating curves and ambient temperature conditions.
350mW
Max Operating Temperature
Specifies the highest ambient temperature at which the component reliably functions. Compare this limit with your application's thermal environment to ensure safe operation. Always verify against the datasheet's derating curves and test conditions, as exceeding this value may cause performance degradation or permanent damage.
100°C
Categories
Lists the product categories or classifications assigned to this component, such as connectors, capacitors, or modules. This helps in filtering and comparing similar parts. Review the categories to ensure the component fits your application and to find alternative parts in the same class.
Isolators
Radiation Hardening
Indicates if the component is designed to withstand ionizing radiation in space, nuclear, or high-energy physics applications. Compare radiation-tolerant vs. radiation-hardened parts for mission-critical designs. Verify the total ionizing dose (TID) and single-event effect (SEE) ratings in the datasheet.
No
Max Power Dissipation
Maximum power the component can safely dissipate as heat without damage. Exceeding this may cause failure. Check datasheet for thermal resistance and derating curves under your operating conditions.
300mW
Forward Voltage (Vf) (Typ)
Typical voltage drop across the device when it conducts in the forward direction. Compare this value to ensure your circuit's power dissipation and efficiency meet design targets. Always verify against the datasheet for your specific operating current and temperature.
1.2V
Input Current
Defines the current drawn at the input terminal under normal operating conditions. Essential for power supply design and thermal management. Check this value against your system's power budget and ensure the input source can deliver it without voltage drop.
10mA
Height
Physical height of the component, measured from the mounting surface to the topmost point. This dimension is critical for clearance in compact assemblies and for ensuring proper fit within enclosures. Always verify against the datasheet for tolerance and mounting considerations.
3.5mm
Cable Length
Overall length of the cable assembly from end to end, including connectors if present. This is critical for routing and installation in your system. Ensure the length matches your application requirements to avoid excess slack or tension that could damage the cable or connections.
Lead Free
AEC Qualified
Indicates qualification to Automotive Electronics Council standards, ensuring reliability for automotive applications. Essential for designs requiring high temperature, vibration, and long-term durability. Confirm the specific AEC-Q document (e.g., AEC-Q100) in the datasheet.
Surface Mount
Current Transfer Ratio
Compare the output current relative to the input current in optocouplers and current sensors. This ratio indicates signal transfer efficiency and isolation performance. Verify it against the datasheet for your operating point, as it varies with temperature and forward current.
Active
Stroke
Stroke indicates the maximum linear travel distance of a moving part, such as a solenoid plunger or actuator shaft. Engineers compare stroke to ensure the component can achieve the required mechanical displacement in their application. Verify the stroke specification against the datasheet to confirm it meets your system's travel requirements.
Surface Mount
PCB Changed
This attribute indicates whether the printed circuit board design has been modified from the original version. Buyers should verify this when evaluating product revisions or compatibility with existing designs. Always check the latest datasheet or PCN for details.
1 (Unlimited)
Max Input Current
Specifies the highest continuous current the input pin can safely handle without damage or performance degradation. Compare this limit with your circuit's expected input current to ensure reliable operation. Always verify against the datasheet's absolute maximum ratings for your specific operating conditions.
30mA
Collector Emitter Saturation Voltage
Voltage drop across collector-emitter when the device is fully on. Determines conduction losses and efficiency. Lower saturation voltage means less power dissipation. Verify against datasheet for collector current and temperature.
400mV
Collector Emitter Breakdown Voltage
Specifies the maximum voltage that can be applied between collector and emitter without causing breakdown. Critical for power transistors and switching circuits. Verify against datasheet to ensure safe operating margin under worst-case conditions.
70V
Collector Emitter Voltage (VCEO)
Maximum allowable voltage between collector and emitter with the base terminal open. Exceeding this rating can cause breakdown or permanent damage. Verify against the datasheet for safe operating conditions in your circuit design.
70V
Ambient Temperature Range High
Defines the upper limit of ambient temperature for reliable operation without thermal damage or performance degradation. Ensure your system's cooling keeps the component below this threshold. Check the datasheet for derating curves and thermal resistance values.
100°C
Output Voltage
Specifies the regulated voltage level available at the output pin under specified load and input conditions. Compare this value with your circuit requirements and verify against the datasheet's tolerance and temperature derating.
70V
Sub-Categories
Indicates the specific product subcategories or classifications within the broader component family. Helps narrow down search results and identify the exact type of component needed for your design. Review the subcategory to ensure compatibility with your application.
Optoisolators - Transistor, Photovoltaic Output
Output Current 1
Specifies the maximum continuous current available at the first output of a power supply or converter. Compare this value with your load requirements to ensure sufficient headroom. Verify against the datasheet's derating curves and operating conditions.
2
Voltage - Output (Max)
Specifies the highest output voltage the component can provide under specified conditions. Compare this value with your circuit requirements to ensure compatibility. Always verify against the datasheet for exact limits and tolerances.
70V
Max Output Voltage
Specifies the highest voltage the device can deliver at its output under specified conditions. Compare this limit with your application's supply and load requirements to ensure safe operation and avoid overvoltage damage.
70V
Vce Saturation (Max)
The maximum collector-emitter voltage drop when the transistor is fully saturated. This parameter indicates power loss and efficiency in switching applications. Lower values are preferred for high-current circuits. Always check this against the datasheet for your operating conditions.
400mV
Output Type
Specifies the electrical form of the output signal, such as digital, analog, or open collector. This determines how the component interfaces with your circuit. Verify the output type against your system requirements and the datasheet to ensure proper signal compatibility and avoid logic level mismatches.
Transistor
Maximum Power Dissipation
Indicates the highest power the component can safely dissipate as heat without exceeding its thermal limits. Compare this value with your circuit's expected power loss to ensure reliable operation. Always verify against the datasheet's derating curves for elevated ambient temperatures.
-55°C~100°C
Receiver Hysteresis
This attribute specifies the voltage difference between the input thresholds of a receiver, ensuring noise immunity and stable switching. Engineers compare this value to match signal integrity requirements and to prevent false triggering in noisy environments. Always verify against the datasheet for the specific operating conditions.
Unknown
Current Transfer Ratio (Max)
Maximum ratio of output collector current to input LED current for an optocoupler. This upper limit helps you avoid saturation or excessive output drive. Always compare with the datasheet to ensure your circuit operates within the intended gain range.
80% @ 10mA
Current Transfer Ratio (Min)
Minimum ratio of output collector current to input LED current for an optocoupler. This parameter indicates the lowest gain you can expect from the device. Verify it against the datasheet to ensure sufficient signal transfer in your circuit design.
40% @ 10mA
Voltage - Rated DC
Specifies the maximum DC voltage the component can safely handle under rated conditions. Engineers compare this to the circuit's operating voltage to ensure adequate margin. Always verify against the datasheet's derating curves for temperature and reliability.
1.2V
Applications
Specify the typical end-use scenarios for this electronic component, such as consumer electronics, automotive, industrial, or telecommunications. This helps engineers quickly assess suitability for their design. Verify against the datasheet's application section.
8-SOIC
Voltage - Isolation
Specifies the maximum voltage that can be applied between isolated circuits without breakdown. Critical for safety in power supplies, optocouplers, and isolated converters. Verify against datasheet for compliance with required insulation ratings.
4000Vrms
Rise / Fall Time (Typ)
Typical rise and fall time of the output signal, indicating how quickly the device transitions between logic levels. These values affect signal integrity and switching losses. Compare them with your application's required slew rate and check the datasheet for test conditions.
3μs 4.7μs
Turn On / Turn Off Time (Typ)
Typical time required for the device to switch from off to on and from on to off. This dynamic characteristic affects switching speed and power dissipation. Check the datasheet for test conditions, as actual times may vary with load and drive.
6μs, 5μs
Manufacturer'S Part No.
The unique part number assigned by the original component manufacturer. Use this to cross-reference datasheets, verify specifications, and ensure the exact component matches your design requirements. Always confirm the number against the manufacturer's official documentation.
ILD205T
ILD205T Package Parameter
Parameter
Value
Mounting
Defines the physical mounting method for the component, such as surface mount, through-hole, or chassis mount. This determines PCB layout, assembly process, and mechanical stability. Buyers must match mounting type to their manufacturing capabilities and application environment. Check the datasheet for recommended footprint and soldering profile.
ROHS3 Compliant
ILD205T Product Parameter
Parameter
Value
Turn-Off Delay Time
Measures the time from when the turn-off command is applied to when the device actually begins to switch off. This delay affects switching losses and timing in power circuits. Engineers compare this parameter to ensure proper synchronization and to minimize power dissipation during high-frequency operation.
5 ns
Number Of Elements
Indicates how many independent functional sections are integrated into a single component package. This matters when comparing multi-channel devices or resistor networks. Always verify the exact element count against the datasheet to ensure it matches your circuit design requirements.
2
Reverse Breakdown Voltage
Voltage at which the diode begins to conduct in reverse bias, leading to breakdown. Critical for selecting diodes in rectifier and protection circuits. Ensure this voltage exceeds your maximum reverse voltage with margin. Check datasheet for tolerance and temperature effects.
6V
Forward Voltage
Forward voltage is the voltage drop across a diode or LED when it conducts current in the forward direction. It affects power dissipation and efficiency. Compare this value with your circuit's supply voltage and check the datasheet for the specified test current.
1.2V
Turn On Delay Time
Time from when the input signal crosses its threshold until the output begins to turn on. This parameter affects switching speed and power dissipation in high-frequency circuits. Verify it against the datasheet for your specific load and drive conditions.
6 ns
DC Forward Current (If) Max
Maximum continuous direct current that can flow through the device in the forward direction without damage. Critical for LEDs, diodes, and optocouplers to prevent overheating and ensure reliable operation. Always check the datasheet for derating curves and ambient temperature limits.
30mA
Input Type
Specifies the configuration of the input signal path, such as single-ended or differential. This affects noise immunity and interface compatibility. Verify the input type against your signal source and the datasheet to ensure proper connection and performance.
DC
Forward Current
Specifies the maximum continuous forward current the component can handle without damage. Compare this rating with your circuit's operating current to ensure reliable performance. Always verify against the datasheet for derating curves and temperature conditions.
30mA
Configuration
Specifies the internal circuit topology or arrangement of the component, such as single, dual, or bridge configuration. This attribute helps engineers select the right part for their circuit design. Always verify the exact configuration against the datasheet to ensure compatibility with your application.
Tin
Datasheet preview
Datasheet PDF viewer
Preview the ILD205T datasheet from Vishay to check package, electrical characteristics, application notes, and document evidence before RFQ.
No public product notice document is currently displayed for ILD205T. Confirm PCN, PDN, EOL, date code, and lifecycle status during RFQ before production purchase.
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Targeted answers for buyers verifying the exact ILD205T ordering code, packaging, stock, datasheet, and replacement path.
What does ILD205T mean?
ILD205T is the exact ordering code listed for a Optoisolators - Transistor, Photovoltaic Output component from Vishay. The current package reference is SOP8, with listed context including OPTOISO 4KV 2CH TRANS 8SOIC. Buyers should use the full code when requesting stock, price, datasheet, or compliance confirmation.
How should buyers verify the ILD205T ordering code?
Treat ILD205T as the full ordering code during RFQ and engineering review. Confirm the listed SOP8 package, manufacturer documentation from Vishay, datasheet ordering table, reel or packing details, and any customer approval constraints before substitution or PO release.
What package is ILD205T supplied in?
ILD205T is currently listed with package reference SOP8 from Vishay. Buyers should confirm the manufacturer package drawing, footprint, pinout, tape-and-reel details, and receiving requirements before approval.
Is ILD205T currently available?
ILD205T is currently marked with stock availability on this page. Before ordering, confirm the package (SOP8), listed stock (25262), available quantity (25262), required quantity, lead time, final price, compliance needs, and exact ordering code match through RFQ.
Where can I compare ILD205T alternatives?
A mapped alternative list is not currently published for ILD205T. Send an RFQ with the target quantity, package constraints, and approval requirements so TrustCompo can help review credible replacement options.