PC81716NIP0F >
PC81716NIP0F
Sharp Microelectronics
OPTOISOLATOR 5KV TRANS 4SMD
20383 Pcs New Original In Stock
Optoisolator Transistor Output 5000Vrms 1 Channel 4-Mini-Flat
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PC81716NIP0F Sharp Microelectronics
5.0 / 5.0 - (303 Ratings)

PC81716NIP0F

Product Overview

7928183

DiGi Electronics Part Number

PC81716NIP0F-DG
PC81716NIP0F

Description

OPTOISOLATOR 5KV TRANS 4SMD

Inventory

20383 Pcs New Original In Stock
Optoisolator Transistor Output 5000Vrms 1 Channel 4-Mini-Flat
Quantity
Minimum 1

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PC81716NIP0F Technical Specifications

Category Optoisolators, Transistor, Photovoltaic Output Optoisolators

Manufacturer Sharp Microelectronics

Packaging -

Series -

Product Status Obsolete

Number of Channels 1

Voltage - Isolation 5000Vrms

Current Transfer Ratio (Min) 160% @ 500µA

Current Transfer Ratio (Max) 500% @ 500µA

Turn On / Turn Off Time (Typ) -

Rise / Fall Time (Typ) 4µs, 3µs

Input Type DC

Output Type Transistor

Voltage - Output (Max) 80V

Current - Output / Channel 50mA

Voltage - Forward (Vf) (Typ) 1.2V

Current - DC Forward (If) (Max) 10 mA

Vce Saturation (Max) 200mV

Operating Temperature -30°C ~ 100°C

Mounting Type Surface Mount

Package / Case 4-SMD, Gull Wing

Supplier Device Package 4-Mini-Flat

Datasheet & Documents

HTML Datasheet

PC81716NIP0F-DG

Environmental & Export Classification

Moisture Sensitivity Level (MSL) 1 (Unlimited)
ECCN EAR99
HTSUS 8541.49.8000

Additional Information

Other Names
425-2538-6
425-2538-1
425-2538-2
Standard Package
2,000

Alternative Parts

PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
HCPL-817-300E
Broadcom Limited
1285
HCPL-817-300E-DG
0.0019
Similar
HCPL-817-500E
Broadcom Limited
12534
HCPL-817-500E-DG
0.0116
Similar
HCPL-817-30CE
Broadcom Limited
2120
HCPL-817-30CE-DG
0.0012
Similar
HCPL-817-30LE
Broadcom Limited
919
HCPL-817-30LE-DG
0.1312
Similar
HCPL-817-30BE
Broadcom Limited
10127
HCPL-817-30BE-DG
0.1312
Similar

Reviews

5.0/5.0-(Show up to 5 Ratings)
바***책
December 02, 2025
5.0
제품의 다양성 덕분에 업무에 많은 도움을 받고 있습니다.
Horiz***eeker
December 02, 2025
5.0
DiGi Electronics consistently delivers with impressive speed, ensuring I receive my orders promptly every time.
Autu***reeze
December 02, 2025
5.0
Their delivery times are reliably short, which improves our overall operational efficiency.
Fr***low
December 02, 2025
5.0
The site loading speed is impressive, allowing me to browse without any delays.
Brig***iver
December 02, 2025
5.0
Shipment arrived promptly, and the packaging was both secure and eco-friendly.
Happ***ails
December 02, 2025
5.0
DiGi Electronics delivers on speed and support, ensuring my satisfaction.
Dre***ise
December 02, 2025
5.0
The delivery process was seamless; I received updates at every stage and the package arrived perfectly intact and on time.
Peacef***ourney
December 02, 2025
5.0
Their logistics team handled everything professionally, ensuring quick delivery.
Dus***aser
December 02, 2025
5.0
Their inventory oversight ensures products are always available when needed.
Mist***adow
December 02, 2025
5.0
I appreciate their transparent pricing and the effort they put into ensuring quick delivery.
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Frequently Asked Questions (FAQ)

Can PC81716NIP0F be used as a drop-in replacement for HCPL-817-300E in a high-noise industrial control circuit, and what design-in risks should I consider?

While PC81716NIP0F and HCPL-817-300E are functionally similar optoisolators with 5000Vrms isolation and transistor outputs, direct drop-in replacement requires careful evaluation. Both parts share a 4-SMD gull wing footprint, but PC81716NIP0F is marked as obsolete, raising long-term supply risk. Electrically, PC81716NIP0F has a higher CTR (160% min @ 500µA) compared to HCPL-817-300E’s 100% min, which could affect feedback loop stability in power supplies. Designers should recalculate biasing and verify signal timing, particularly rise/fall times (4µs/3µs typ), to ensure compatibility. For new designs, consider sourcing alternatives or second-sourcing from Broadcom or Toshiba.

What are the reliability risks of using PC81716NIP0F in an automotive under-the-hood application with junction temperatures reaching 110°C?

PC81716NIP0F is rated for an operating temperature range of -30°C to 100°C, which makes it unsuitable for sustained operation at 110°C junction temperatures typical in under-the-hood automotive environments. Exceeding the max operating temperature risks accelerated LED degradation, reduced CTR over time, and potential thermal runaway. Even with derating input current, prolonged exposure above 100°C threatens long-term reliability. For such applications, consider AEC-Q101 qualified alternatives like the Toshiba TLP290-4 or Broadcom HCPL-817-500E, which offer better thermal performance and supply continuity.

How does the high CTR range (160–500%) of PC81716NIP0F affect signal linearity and switch timing in SMPS feedback circuits?

The wide CTR range of PC81716NIP0F (160–500% @ 500µA) introduces variability in feedback loop response across units and over temperature, impacting stability in SMPS designs. High CTR can reduce required input drive current but may cause overshoot or oscillation if not compensated in the control IC (e.g., TL431). To mitigate, design with sufficient loop gain margin and consider adding a CTR calibration step during production testing. Also, ensure the PC81716NIP0F operates in saturation for switching applications by maintaining If > 5mA and verifying Vce(sat) < 200mV under load to avoid erratic response.

Is PC81716NIP0F suitable for bidirectional signal isolation in a microcontroller GPIO interface, and what output stage limitations should I be aware of?

PC81716NIP0F is not suitable for bidirectional signal isolation as it features a unidirectional transistor output (NPN) with a maximum collector voltage of 80V and current of 50mA per channel. In GPIO isolation, it can only drive signals in one direction — from input LED to output transistor. For bidirectional level shifting or I2C-style interfaces, consider digital isolators like the Si8602 or dedicated bidirectional optos such as the Toshiba TLP2362. Additionally, the 4µs rise time limits PC81716NIP0F to low-frequency signals (<100kHz), making it unsuitable for high-speed data links.

What are the PCB layout and thermal considerations when using PC81716NIP0F in a densely packed SMD power supply design?

When integrating PC81716NIP0F in dense SMD layouts, maintain creepage and clearance distances per 5000Vrms isolation (typically ≥7.6mm per IEC 60950). Use a split ground plane to avoid leakage currents across the isolation barrier. Since PC81716NIP0F has no specified turn-on/off time, avoid high-frequency switching near 20kHz where CTR variation could cause jitter. Thermally, the 4-Mini-Flat package has limited heat dissipation; keep ambient below 85°C to prevent derating issues. Avoid placing near heat sources like transformers or MOSFETs, and ensure proper reflow profiles (MSL 1) to prevent delamination during assembly.

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