PC3H7CDJ000F >
PC3H7CDJ000F
Sharp Microelectronics
OPTOISO 2.5KV TRANS 4-MINI-FLAT
1882 Pcs New Original In Stock
Optoisolator Transistor Output 2500Vrms 1 Channel 4-Mini-Flat
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PC3H7CDJ000F Sharp Microelectronics
5.0 / 5.0 - (42 Ratings)

PC3H7CDJ000F

Product Overview

7929904

DiGi Electronics Part Number

PC3H7CDJ000F-DG
PC3H7CDJ000F

Description

OPTOISO 2.5KV TRANS 4-MINI-FLAT

Inventory

1882 Pcs New Original In Stock
Optoisolator Transistor Output 2500Vrms 1 Channel 4-Mini-Flat
Quantity
Minimum 1

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PC3H7CDJ000F Technical Specifications

Category Optoisolators, Transistor, Photovoltaic Output Optoisolators

Manufacturer Sharp Microelectronics

Packaging -

Series -

Product Status Obsolete

Number of Channels 1

Voltage - Isolation 2500Vrms

Current Transfer Ratio (Min) 80% @ 1mA

Current Transfer Ratio (Max) 240% @ 1mA

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) 50 mA

Vce Saturation (Max) 200mV

Operating Temperature -30°C ~ 100°C

Mounting Type Surface Mount

Package / Case 4-SOIC (0.173", 4.40mm Width)

Supplier Device Package 4-Mini-Flat

Datasheet & Documents

HTML Datasheet

PC3H7CDJ000F-DG

Environmental & Export Classification

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

Additional Information

Other Names
PC3H7CDJ000F-DG
425-2585-6
425-2585-1
425-2585-2
Standard Package
3,000

Alternative Parts

PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
HMHA2801R2V
onsemi
42386
HMHA2801R2V-DG
0.1885
Similar
HMHA281R2V
onsemi
19194
HMHA281R2V-DG
0.1441
Similar
HMHA281
onsemi
15457
HMHA281-DG
0.0027
Similar
HMHA2801R2
onsemi
59095
HMHA2801R2-DG
0.0028
Similar
HMHA2801AR2
onsemi
80283
HMHA2801AR2-DG
0.1608
Similar

Reviews

5.0/5.0-(Show up to 5 Ratings)
달***자
December 02, 2025
5.0
배송과 애프터서비스 모두 훌륭한 회사입니다. 문제 해결이 빠르고 친절해서 신뢰할 수 있습니다.
Kurz***umer
December 02, 2025
5.0
Der Versand war erstaunlich schnell, Support stets hilfsbereit.
Lumin***Lagoon
December 02, 2025
5.0
The package was carefully sealed and protected to ensure safety.
Grate***Heart
December 02, 2025
5.0
Post-purchase support has exceeded my expectations, ensuring my satisfaction.
Dazz***reams
December 02, 2025
5.0
Their after-sales support makes me feel valued and cared for.
Drea***gGlow
December 02, 2025
5.0
Receiving my order swiftly, coupled with a product that lasts, makes DiGi my preferred brand.
Dr***Dew
December 02, 2025
5.0
Their pricing makes it easy for everyone to choose eco-friendly options.
Lus***goon
December 02, 2025
5.0
I appreciated the clean layout that makes browsing a seamless experience.
Wild***derer
December 02, 2025
5.0
The value I get from their products is truly worth it.
Sile***inds
December 02, 2025
5.0
I've never received damaged items, thanks to their excellent packaging.
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Frequently Asked Questions (FAQ)

Is the PC3H7CDJ000F still a viable choice for new designs given its obsolete status, and what are the risks of continuing to use it in production?

Using the PC3H7CDJ000F in new designs carries significant supply chain and long-term reliability risks due to its obsolete status. While 1,834 units may be available now, Sharp Microelectronics no longer supports volume production, making future restocking unlikely. Design teams should avoid new qualifications unless a last-time buy secures sufficient inventory for the product lifecycle. Instead, transition to recommended substitutes like the HMHA2801R2V or HMHA281R2V, which offer similar performance with active lifecycle support and better availability.

How does the PC3H7CDJ000F compare to the HMHA2801R2V in terms of CTR stability over temperature and lifetime, and can it be a drop-in replacement?

While both the PC3H7CDJ000F and HMHA2801R2V offer 2.5 kVrms isolation and similar package footprints (4-Mini-Flat), the HMHA2801R2V features improved CTR stability across the full operating range (-40°C to 110°C vs. -30°C to 100°C for the Sharp part). The PC3H7CDJ000F’s CTR can degrade faster under high-temperature bias stress, increasing the risk of undetected failure in safety-critical feedback loops. Although pin-compatible, verify output saturation voltage and rise/fall timing in your circuit—especially in high-speed digital isolation—before assuming drop-in compatibility.

What design considerations should I account for when replacing the PC3H7CDJ000F with the HMHA281 in an existing optoisolator feedback circuit?

When substituting the PC3H7CDJ000F with the HMHA281, pay close attention to forward current requirements and output saturation behavior. The HMHA281 typically requires a slightly higher forward current (If) to maintain equivalent current transfer ratio (CTR), which may necessitate adjusting the input resistor value. Additionally, ensure your load resistor on the output side accommodates the HMHA281’s Vce(sat) characteristics to avoid unintended saturation in analog feedback paths. Always validate transient response—especially turn-on delay—in closed-loop simulations or bench tests to prevent instability in power supply control loops.

Can the PC3H7CDJ000F safely handle continuous operation at 80V output voltage and 50mA collector current in an industrial environment?

Operating the PC3H7CDJ000F continuously at its absolute maximum ratings (80V, 50mA) significantly reduces reliability and lifespan due to increased power dissipation and thermal stress on the output transistor. In industrial environments with elevated ambient temperatures, junction temperatures may exceed safe limits even with minimal heatsinking. For sustained operation, derate the output current to ≤30mA and ensure adequate PCB copper area for thermal management. Consider using a higher-current optoisolator like the HMHA2801AR2 if your application demands near-maximal output drive under varying thermal conditions.

What are the key reliability risks of using the PC3H7CDJ000F in safety-critical isolation applications, and how can they be mitigated during redesign?

The primary reliability risks with the PC3H7CDJ000F in safety-critical roles stem from its obsolete status—lack of manufacturer support, potential counterfeit parts, and unverified long-term aging data. Its CTR degradation over time, especially under high-temperature and high-current stress, could lead to silent failures in isolation monitoring or feedback circuits. To mitigate risk, replace it with a certified, in-production alternative such as the HMHA2801R2V, which includes full qualification data and compliance documentation. If redesign isn’t immediate, implement periodic functional testing and consider redundant isolation channels in mission-critical systems.

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