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| Part Number: | HCPL-0600-000E |
|---|---|
| Manufacturer/Brand: | Avago Technologies (Broadcom) |
| Part of Description: | OPTOISO 3.75KV OPN COLLECTOR 8SO |
| Datasheets: |
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| RoHs Status: | ROHS3 Compliant |
| Payment: | PayPal / Credit Card / T/T |
| Shipment Way: | DHL / Fedex / TNT / UPS / EMS |
| Share: |
Ship From: Hong Kong
| Quantity | Unit Price |
|---|---|
| 1+ | $0.9529 |
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| Product Attribute | Attribute Value |
|---|---|
| Voltage - Supply | 4.5V ~ 5.5V |
| Voltage - Isolation | 3750Vrms |
| Voltage - Forward (Vf) (Typ) | 1.5V |
| Supplier Device Package | 8-SO Tall |
| Series | - |
| Rise / Fall Time (Typ) | 24ns, 10ns |
| Propagation Delay tpLH / tpHL (Max) | 100ns, 100ns |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Package | Tube |
| Output Type | Open Collector, Schottky Clamped |
| Product Attribute | Attribute Value |
|---|---|
| Operating Temperature | -40°C ~ 85°C |
| Number of Channels | 1 |
| Mounting Type | Surface Mount |
| Inputs - Side 1/Side 2 | 1/0 |
| Input Type | DC |
| Data Rate | 10MBd |
| Current - Output / Channel | 50 mA |
| Current - DC Forward (If) (Max) | 20mA |
| Common Mode Transient Immunity (Min) | 5kV/µs |
| Base Product Number | HCPL-0600 |




The Broadcom HCPL-0600-000E is a high-performance, logic-output optoisolator designed for demanding industrial environments and high-speed digital logic isolation tasks. Engineered for robust signal isolation, the device combines a gallium arsenide phosphide (GaAsP) LED with a high-gain integrated photodetector, delivering both DC and AC isolation in a compact 8-pin Small Outline (SOIC-8) package. The HCPL-0600-000E features an open-collector Schottky-clamped output and supports data rates up to 10 MBd, making it suitable for high-speed logic interfaces, microprocessor system isolation, and communication between isolated domains in complex electronic equipment.
A standout attribute of the HCPL-0600-000E is its minimum common mode rejection (CMR) rating, specified at 15 kV/μs at a common mode voltage of 1 kV. The device’s internal shield architecture ensures resilience against high-voltage transients, an essential characteristic for systems operating in high-noise or ground loop-prone environments. TTL and LSTTL compatibility is supported, with the optoisolator requiring a low input current (5 mA typical), aiding design flexibility for low-power applications. The device additionally incorporates an enable input for output strobing, which is particularly useful in single-channel data isolation or selective gating applications.
Broadcom ensures the HCPL-0600-000E parameters are guaranteed across a wide industrial temperature range (-40°C to +85°C), allowing reliability in systems exposed to temperature extremes. The device meets key international safety certifications, including UL1577 (3750 Vrms isolation for 1 minute) and IEC/EN/DIN EN 60747-5-5 standards, underscoring its suitability for equipment where personnel and circuit safety are paramount.
From an engineering perspective, the HCPL-0600-000E offers strong electrical performance, with propagation delays optimized for logic operations. Typical data rates reach 10 MBd, supporting fast digital communication in isolated bus systems. The open-collector output is Schottky-clamped to minimize saturation voltage and propagation delay, enhancing speed and logic fidelity. Designers are advised to connect a 0.1-μF bypass capacitor as close as possible to pins 5 and 8, reducing power supply noise and maximizing transient rejection.
Switching performance metrics such as propagation delay (tPLH/tPHL), pulse-width distortion (PWD), and propagation delay skew (tPSK) are tightly controlled, ensuring that signal integrity is maintained across wide temperature and supply ranges. Such timing precision is vital in parallel data systems, where inter-channel synchronization impacts overall system accuracy and throughput.
The HCPL-0600-000E is supplied in an SOIC-8 "tall" package, supporting high-density PCB layouts and surface-mount assembly. Package coplanarity, mold flash, and lead protrusion comply with tight tolerances, facilitating automated production and reflow soldering to JEDEC J-STD-020 standards. For optimal CMR and thermal performance, proper placement of the bypass capacitor and adherence to Broadcom’s recommended PCB layout guidelines are essential. The package is suitable for standard pick-and-place assembly, and its dimensions are engineered to accommodate both single-board and modular designs.
Safety and insulation are central to the HCPL-0600-000E’s design. Under UL1577, each optoisolator is proof tested at voltages significantly above operational levels, providing assurance that circuit isolation withstands momentary overvoltage conditions. The device’s insulation rating per IEC/EN/DIN EN 60747-5-5 delivers continuous and transient withstand voltages tailored to industrial environments, with safety-related specifications such as the input-output momentary withstand voltage clearly defined. The surface mount version meets Class A under CECC 00802, ensuring compliance with stringent European standards.
The HCPL-0600-000E is engineered for roles where high-speed logic and robust isolation converge. It finds utility as an isolated line receiver, microprocessor interface, digital isolation in A/D and D/A converters, and input/output isolation for instrumentation. Critical engineering scenarios include:
Ground loop elimination in distributed control systems and measurement equipment
Power transistor isolation in motor drives and switching power supplies
Replacement of pulse transformers in high-speed communication links
Isolation of digital logic systems in environments with high common mode noise
Engineers should consider the device in designs requiring uninterrupted logic signal transfer with stringent electrical isolation, especially in factory automation, instrumentation, and embedded computing.
Propagation delay and its associated parameters are key indicators of logic isolation quality. The HCPL-0600-000E guarantees propagation delay and pulse-width distortion specifications, ensuring signal timing is maintained even in parallel data transmission systems. Delay skew between optoisolators—an important aspect for multi-channel operation—is specified to minimize timing uncertainty and maximize parallel throughput. Detailed timing diagrams and test circuits provided in Broadcom documentation further support design validation and system-level simulation.
For product selection engineers and procurement specialists, a comparison with alternative models is essential for sourcing flexibility and design optimization. Within Broadcom’s high-speed, high-CMR optoisolator portfolio, potential equivalents or replacements for HCPL-0600-000E include:
HCPL-0601: Offers similar speed and isolation ratings, with minor differences in enable circuitry.
HCPL-0611 / HCPL-0661: Enhanced CMR or other packaging options for environments requiring higher voltage ratings or wider bodies.
HCPL-0630 / HCPL-0631: Supporting dual-channel isolation for parallel data streams.
HCPL-2601, HCPL-2611: DIP package alternatives with comparable electrical performance and safety certifications.
6N137: JEDEC-registered variant for designs following legacy or standardized footprints.
HCNW137, HCNW2601, HCNW2611: Widebody packages for maximum insulation clearance.
Selecting among these models should consider system voltage requirements, pin compatibility, physical footprint, and safety standard mandates.
: Selection Considerations for HCPL-0600-000E
The Broadcom HCPL-0600-000E stands as a reliable, high-speed optoisolation solution tailored for modern industrial and computing applications demanding robust signal integrity and electrical safety. Its combination of high CMR, fast switching, low input current, and proven insulation makes it a preferred choice for engineers addressing ground loop, transient immunity, and system isolation challenges. When evaluating the HCPL-0600-000E, match electrical and package specifications to system requirements, consider regulatory obligations, and compare with equivalent Broadcom offerings to ensure optimal performance and sourcing resilience.
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