Unlockable chip list
Our unlock database covers 5000+ chip models. Published below are 126 of them across 28 families, with typical turnaround. Not finding yours does not mean no: it means we have not published it yet.
Complete Unlockable Chip List for Authorized Firmware Recovery
Our unlockable chip list covers more than 40 microcontroller and memory IC families across 15 vendors. Each entry reflects lab-verified results — not theoretical claims. If your chip appears in the “High” success column, we can typically deliver a binary readout within 5–10 working days. If it falls in the “Evaluate” column, we need the physical device for a no-cost feasibility check before committing. This page is the fastest way to determine whether your authorized recovery project is viable before you ship a single sample.
How to Use This Unlockable Chip List

Find your chip vendor in the tables below, then locate the specific family or part number. Each row tells you three things: the protection mechanism the silicon uses, our current success category (High / Moderate / Evaluate / Not Feasible), and the typical turnaround once we accept the job. “High” means ≥90 % historical success across multiple samples. “Moderate” sits between 60–89 %. “Evaluate” means results depend on the specific revision, fuse configuration, or batch — we need your device on our bench first.
All IC unlock work requires proof of ownership or written authorization. We operate under NDA and refuse jobs that lack legitimate documentation.
Microcontroller Families — Unlock Feasibility Table
| Vendor | Family / Series | Protection Type | Success Category | Typical Turnaround |
|---|---|---|---|---|
| STMicroelectronics | STM8S (all sub-variants) | ROP Level 1 / Level 2 | High (Level 1); Evaluate (Level 2) | 5–8 days |
| STMicroelectronics | STM8L series | ROP Level 1 / Level 2 | High (Level 1); Evaluate (Level 2) | 5–10 days |
| STMicroelectronics | STM32F0 / F1 / F2 / F3 | RDP Level 1 | High | 5–8 days |
| STMicroelectronics | STM32F4 / F7 / H7 | RDP Level 1; TrustZone (H7) | Moderate (F4); Evaluate (F7/H7) | 7–15 days |
| Microchip | PIC10 / PIC12 / PIC16 | CP / CPD fuse bits | High | 3–7 days |
| Microchip | PIC18 / PIC24 / dsPIC33 | Code-protect fuse, JTAG lock | High (PIC18); Moderate (PIC24/dsPIC) | 5–10 days |
| Microchip | PIC32MX / MZ | Code-protect + secure boot | Moderate | 8–12 days |
| Nuvoton | NUC131 / NUC029 / NUC100 | Flash lock bit | High | 5–8 days |
| Nuvoton | M451 / M480 / M2351 | Security lock + TrustZone (M2351) | Moderate (M451/M480); Not Feasible (M2351 TZ) | 7–12 days |
| NXP / Freescale | MK60 / MK64 / MK66 | Flash security byte (FSEC) | High | 5–10 days |
| NXP / Freescale | MKE02 / MKE04 | Flash security byte | High | 5–8 days |
| NXP | LPC1100 / LPC1300 / LPC1700 | CRP Level 1 / 2 / 3 | High (CRP1); Moderate (CRP2); Not Feasible (CRP3) | 5–12 days |
| Renesas | R5F (RL78 / RX family) | ID code protection | High (RL78); Moderate (RX) | 5–10 days |
| Renesas | SH7050 / SH7080 | ID code + on-chip key | Evaluate | 10–15 days |
| Atmel (Microchip) | ATmega48 / 88 / 168 / 328 | Lock bits (LB1/LB2/LB3) | High | 3–7 days |
| Atmel | ATxmega / SAMD21 | NVM lock / BOOTPROT | Moderate (ATxmega); Evaluate (SAMD21) | 7–12 days |
| Cypress | CY8C (PSoC 1 / 3 / 4 / 5) | Flash protection rows | High (PSoC 1); Moderate (PSoC 4); Evaluate (PSoC 5) | 5–12 days |
| Nordic | nRF52832 | APPROTECT (UICR) | Moderate | 7–12 days |
| Nordic | nRF52840 | APPROTECT + Secure APPROTECT | Evaluate | 10–15 days |
| Maxim | MAX32660 | SWD lock + flash protection | Moderate | 8–12 days |
| TI | MSP430F / MSP430G | JTAG fuse blow | High (G series); Moderate (F series) | 5–10 days |
| TI | CC2540 / CC2541 / CC2640 | Debug lock + flash protect | Moderate (CC254x); Evaluate (CC2640) | 7–15 days |
| STC | STC89 / STC12 / STC15 | Encryption download | High (STC89); Moderate (STC12/15) | 5–10 days |
| GigaDevice | GD32F103 / GD32F303 | SWD lock + OB protection | High | 5–8 days |
EEPROM and Serial Flash — Readout Feasibility
Memory-only ICs are generally easier to read than microcontrollers because they lack execute-in-place code protection. However, some devices use write-protect registers, OTP zones, or password-locked sectors that complicate extraction. The table below covers the serial EEPROM and SPI/NOR flash families we handle most often.
| Type | Part Family | Interface | Success Category | Notes |
|---|---|---|---|---|
| I²C EEPROM | 24C02 | I²C | High | Standard read; no security |
| I²C EEPROM | 24C64 | I²C | High | 64 Kbit; straightforward |
| I²C EEPROM | 24C256 | I²C | High | 256 Kbit; occasional write-protect pin lock |
| I²C EEPROM | AT24C512 | I²C | High | 512 Kbit; may need address pin config |
| SPI EEPROM | M95080 | SPI | High | 8 Kbit; block-protect bits clearable |
| Microwire EEPROM | 93C46 | Microwire | High | 1 Kbit; legacy automotive/industrial |
| Microwire EEPROM | 93C56 | Microwire | High | 2 Kbit; same protocol family |
| SPI NOR Flash | SST25VF series | SPI | High | Up to 32 Mbit; AAI write mode |
| SPI NOR Flash | W25Q32 / W25Q128 | SPI | High | Sector/block protect clearable via status register |
| SPI NOR Flash | MX25L series | SPI | High | OTP area may be locked; main array readable |
What Determines Whether a Chip Is Unlockable?
Three factors control feasibility more than anything else: the protection architecture, the silicon revision, and the physical condition of the die. Our engineers evaluate each one before committing to a job.
Protection Architecture
Single-level read-out protection (like STM8 ROP Level 1 or NXP CRP Level 1) is almost always recoverable using non-invasive or semi-invasive techniques. Multi-level schemes — STM32 RDP Level 2, NXP CRP Level 3, or hardware-rooted TrustZone — permanently disable debug interfaces and may require micro-probing or UV fault injection, which drops success rates below 50 % and raises cost significantly.
Silicon Revision
Vendors patch vulnerabilities between die revisions. An STM32F1 Rev Z may respond to a glitching vector that Rev Y has hardened against. We maintain a revision-specific database, but new revisions occasionally appear in the field before we can characterize them — hence the “Evaluate” category.
Physical Condition
Chips pulled from fire-damaged, water-damaged, or heavily corroded boards can still be candidates, but bond-wire integrity and passivation layer condition affect micro-probing yield. If the die is cracked, success drops to near zero. We photograph every device under a stereo microscope before starting invasive work.
Chips We Cannot Currently Unlock

Transparency matters. The following families are either not feasible with current techniques or carry success rates too low to justify quoting at a fixed price:
- STM32 with RDP Level 2 confirmed — debug port permanently disabled by fuse blow; requires die-level attack with no guaranteed outcome.
- NXP LPC with CRP Level 3 — mass-erase-only recovery; firmware cannot be read.
- Infineon AURIX TC2xx / TC3xx — HSM-based protection with hardware key store; no known non-destructive vector.
- Renesas RH850 with ICU-S — secure hardware module; not currently in our capability set.
- Any chip with active secure-boot chain and encrypted flash — even if the debug port is recovered, the binary is encrypted at rest and useless without the key.
If your part falls into this category, we will tell you during the free feasibility evaluation rather than accepting the job and failing silently.
Our Evaluation and Readout Process
- Intake: You submit the part number, package marking photo, and proof of ownership. We cross-reference our unlockable chip list and reply within one business day with a preliminary assessment.
- Feasibility check (if needed): For “Evaluate” parts, ship us 1–2 samples. We perform non-destructive probing at no charge and report back within 3–5 days.
- Readout: Once confirmed feasible, we extract the firmware binary (Intel HEX, Motorola S-record, or raw BIN — your choice). Typical turnaround: 5–15 working days depending on complexity.
- Verification: We program the extracted binary onto a blank device of the same part number and verify functional equivalence before delivery.
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Authorization and Legal Requirements
Every project requires a signed declaration of ownership or a letter of authorization from the IP holder. We will not proceed without this documentation. Our NDA covers all project data, extracted binaries, and communication records. For more detail on how we handle IP protection and compliance, see our trust and authorization policy.
Frequently Asked Questions
Is this unlockable chip list exhaustive?
No. We update it quarterly as we verify new families and silicon revisions. If your specific part number is not listed, submit a feasibility request with the full marking — our lab may already have data on it that has not yet been published. We add roughly 5–10 new confirmed part numbers per quarter.
What does “Evaluate” mean for my project timeline?
It means we need the physical device before we can commit to a success rate or fixed price. The evaluation itself takes 3–5 working days and is free of charge. If we determine the chip is not recoverable, we return your samples at our expense. Total project time for an Evaluate-category chip is typically 10–20 working days end to end.
Can you read a chip that has been desoldered or damaged?
Desoldered chips are fine — we work with bare ICs routinely. Damaged chips depend on the failure mode. Cracked dies are almost never recoverable. Corroded packages or lifted bond pads reduce success by roughly 30–40 %, but we have recovered firmware from flood-damaged industrial boards where the die itself was intact under the epoxy.
How do EEPROM reads differ from MCU firmware extraction?
EEPROMs like the 24C02 or 93C46 store data, not executable code, and typically lack code-protection fuses. Readout is usually a standard bus transaction — fast, inexpensive, and near 100 % successful. MCU extraction must bypass active protection circuits, which is why it costs more and takes longer.
Do you offer bulk pricing for production-volume readouts?
Yes. For batches of 10+ identical ICs, per-unit cost drops 20–40 % because setup and characterization are amortized. Contact us with your volume and part number for a custom quote.
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| Model | Family | Package | Status | Typical lead time |
|---|---|---|---|---|
| STM32F103C8T6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F103RCT6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F103VET6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F030C8T6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F051R8T6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F072CBT6 | STM32 F0/F1 | LQFP | unlockable | 3-5 working days |
| STM32F407VGT6 | STM32 F4 | LQFP/UFQFPN | unlockable | 5-7 working days |
| STM32F401CCU6 | STM32 F4 | LQFP/UFQFPN | unlockable | 5-7 working days |
| STM32F405RGT6 | STM32 F4 | LQFP/UFQFPN | unlockable | 5-7 working days |
| STM32F411CEU6 | STM32 F4 | LQFP/UFQFPN | unlockable | 5-7 working days |
| STM32F429ZIT6 | STM32 F4 | LQFP/UFQFPN | unlockable | 5-7 working days |
| STM32L051C8T6 | STM32 L/G | LQFP | unlockable | 5-8 working days |
| STM32L151C8T6 | STM32 L/G | LQFP | unlockable | 5-8 working days |
| STM32L476RGT6 | STM32 L/G | LQFP | unlockable | 5-8 working days |
| STM32G071RBT6 | STM32 L/G | LQFP | unlockable | 5-8 working days |
| STM32G474RET6 | STM32 L/G | LQFP | unlockable | 5-8 working days |
| STM8S003F3P6 | STM8 | TSSOP/LQFP | unlockable | 3-5 working days |
| STM8S105K4T6 | STM8 | TSSOP/LQFP | unlockable | 3-5 working days |
| STM8S207RBT6 | STM8 | TSSOP/LQFP | unlockable | 3-5 working days |
| STM8L151K4T6 | STM8 | TSSOP/LQFP | unlockable | 3-5 working days |
| PIC16F877A | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC16F628A | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC16F1937 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC12F508 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC12F675 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC18F4550 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC18F45K80 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC18F2550 | Microchip PIC | DIP/SOIC | unlockable | 3-5 working days |
| PIC24FJ64GA002 | PIC24/dsPIC | SOIC/TQFP | unlockable | 5-8 working days |
| PIC24EP256GP204 | PIC24/dsPIC | SOIC/TQFP | unlockable | 5-8 working days |
| DSPIC30F4011 | PIC24/dsPIC | SOIC/TQFP | unlockable | 5-8 working days |
| DSPIC33FJ128GP802 | PIC24/dsPIC | SOIC/TQFP | unlockable | 5-8 working days |
| ATMEGA8A | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA16A | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA32A | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA48PA | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA88PA | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA128A | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA328P | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATMEGA2560 | AVR ATmega | DIP/TQFP | unlockable | 3-5 working days |
| ATTINY13A | AVR ATtiny | DIP/SOIC | unlockable | 3-5 working days |
| ATTINY85 | AVR ATtiny | DIP/SOIC | unlockable | 3-5 working days |
| ATTINY2313 | AVR ATtiny | DIP/SOIC | unlockable | 3-5 working days |
| ATTINY861 | AVR ATtiny | DIP/SOIC | unlockable | 3-5 working days |
| AT89C51 | AT89 8051 | DIP/PLCC | unlockable | 3-5 working days |
| AT89C52 | AT89 8051 | DIP/PLCC | unlockable | 3-5 working days |
| AT89C2051 | AT89 8051 | DIP/PLCC | unlockable | 3-5 working days |
| AT89S52 | AT89 8051 | DIP/PLCC | unlockable | 3-5 working days |
| AT89C51RD2 | AT89 8051 | DIP/PLCC | unlockable | 3-5 working days |
| STC89C52RC | STC 8051 | DIP/LQFP | unlockable | 3-5 working days |
| STC12C5A60S2 | STC 8051 | DIP/LQFP | unlockable | 3-5 working days |
| STC15W4K56S4 | STC 8051 | DIP/LQFP | unlockable | 3-5 working days |
| STC8H8K64U | STC 8051 | DIP/LQFP | unlockable | 3-5 working days |
| STC15F2K60S2 | STC 8051 | DIP/LQFP | unlockable | 3-5 working days |
| C8051F340 | Silicon Labs | TQFP/QFN | unlockable | 5-8 working days |
| C8051F020 | Silicon Labs | TQFP/QFN | unlockable | 5-8 working days |
| C8051F410 | Silicon Labs | TQFP/QFN | unlockable | 5-8 working days |
| EFM8BB31F16G | Silicon Labs | TQFP/QFN | unlockable | 5-8 working days |
| N76E003AT20 | Nuvoton | TSSOP/LQFP | unlockable | 3-5 working days |
| NUC131LD2AE | Nuvoton | TSSOP/LQFP | unlockable | 3-5 working days |
| M0516LDN | Nuvoton | TSSOP/LQFP | unlockable | 3-5 working days |
| M051 | Nuvoton | TSSOP/LQFP | unlockable | 3-5 working days |
| NUC029FAE | Nuvoton | TSSOP/LQFP | unlockable | 3-5 working days |
| LPC1768FBD100 | NXP LPC | LQFP | unlockable | 6-10 working days |
| LPC2148FBD64 | NXP LPC | LQFP | unlockable | 6-10 working days |
| LPC11C14FBD48 | NXP LPC | LQFP | unlockable | 6-10 working days |
| LPC824M201 | NXP LPC | LQFP | unlockable | 6-10 working days |
| MK10DN512VLL10 | Kinetis / Freescale | LQFP | unlockable | 6-10 working days |
| MKL25Z128VLK4 | Kinetis / Freescale | LQFP | unlockable | 6-10 working days |
| MC9S12XS128 | Kinetis / Freescale | LQFP | unlockable | 6-10 working days |
| MC9S08AW32 | Kinetis / Freescale | LQFP | unlockable | 6-10 working days |
| R5F100LEA | Renesas | LQFP | unlockable | 7-12 working days |
| R5F21134 | Renesas | LQFP | unlockable | 7-12 working days |
| M30620FCAFP | Renesas | LQFP | unlockable | 7-12 working days |
| RL78G13 | Renesas | LQFP | unlockable | 7-12 working days |
| MSP430F149 | TI MSP430 | LQFP/TSSOP | unlockable | 3-5 working days |
| MSP430G2553 | TI MSP430 | LQFP/TSSOP | unlockable | 3-5 working days |
| MSP430F5529 | TI MSP430 | LQFP/TSSOP | unlockable | 3-5 working days |
| MSP430FR5969 | TI MSP430 | LQFP/TSSOP | unlockable | 3-5 working days |
| TMS320F28035 | TI C2000 | LQFP | review first | 7-12 working days |
| TMS320F28335 | TI C2000 | LQFP | review first | 7-12 working days |
| TMS320F280049 | TI C2000 | LQFP | review first | 7-12 working days |
| GD32F103C8T6 | GigaDevice GD32 | LQFP | unlockable | 3-5 working days |
| GD32F303RCT6 | GigaDevice GD32 | LQFP | unlockable | 3-5 working days |
| GD32E230C8T6 | GigaDevice GD32 | LQFP | unlockable | 3-5 working days |
| GD32F470ZGT6 | GigaDevice GD32 | LQFP | unlockable | 3-5 working days |
| CH32V307VCT6 | WCH CH32/CH5xx | LQFP/SOP | unlockable | 3-5 working days |
| CH32F103C8T6 | WCH CH32/CH5xx | LQFP/SOP | unlockable | 3-5 working days |
| CH552G | WCH CH32/CH5xx | LQFP/SOP | unlockable | 3-5 working days |
| CH340G | WCH CH32/CH5xx | LQFP/SOP | unlockable | 3-5 working days |
| HT66F318 | Holtek | SOP/DIP | unlockable | 3-5 working days |
| HT46R064B | Holtek | SOP/DIP | unlockable | 3-5 working days |
| HT48R30A-1 | Holtek | SOP/DIP | unlockable | 3-5 working days |
| XC866 | Infineon | LQFP/BGA | review first | 10-15 working days |
| XMC1100 | Infineon | LQFP/BGA | review first | 10-15 working days |
| TC1782 | Infineon | LQFP/BGA | review first | 10-15 working days |
| SAK-TC275 | Infineon | LQFP/BGA | review first | 10-15 working days |
| CY8C4245AXI | Cypress PSoC | TQFP | unlockable | 6-10 working days |
| CY7C68013A | Cypress PSoC | TQFP | unlockable | 6-10 working days |
| CY8C5868AXI | Cypress PSoC | TQFP | unlockable | 6-10 working days |
| MB90F546 | Fujitsu FM | LQFP | unlockable | 7-12 working days |
| MB95F204 | Fujitsu FM | LQFP | unlockable | 7-12 working days |
| MB91F467 | Fujitsu FM | LQFP | unlockable | 7-12 working days |
| S3F9454 | Samsung | SOP/BGA | review first | 10-15 working days |
| S3C2440 | Samsung | SOP/BGA | review first | 10-15 working days |
| S3F94C4 | Samsung | SOP/BGA | review first | 10-15 working days |
| AT24C02 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| AT24C256 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| 24LC64 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| 93C46 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| W25Q64 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| W25Q128 | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| SST25VF016B | EEPROM / Flash | SOIC/DIP | unlockable | 2-4 working days |
| EPM7128SLC84 | CPLD | PLCC/TQFP | review first | 10-20 working days |
| EPM240T100C5 | CPLD | PLCC/TQFP | review first | 10-20 working days |
| XC9536XL | CPLD | PLCC/TQFP | review first | 10-20 working days |
| XC2C64A | CPLD | PLCC/TQFP | review first | 10-20 working days |
| LC4032V | CPLD | PLCC/TQFP | review first | 10-20 working days |
| XC6SLX9 | FPGA | TQFP/BGA | review first | 10-20 working days |
| EP4CE6E22C8 | FPGA | TQFP/BGA | review first | 10-20 working days |
| EP2C5T144 | FPGA | TQFP/BGA | review first | 10-20 working days |
| STC8G1K08 | Other 8-bit MCU | DIP/SOP | unlockable | 3-5 working days |
| SN8P2711 | Other 8-bit MCU | DIP/SOP | unlockable | 3-5 working days |
| EM78P153 | Other 8-bit MCU | DIP/SOP | unlockable | 3-5 working days |
| MDT2005 | Other 8-bit MCU | DIP/SOP | unlockable | 3-5 working days |
| NY8A051 | Other 8-bit MCU | DIP/SOP | unlockable | 3-5 working days |
Chip not on the list?
The table only holds parts we have already published, a fraction of the 5000+ models in the database. Most unlisted markings are still workable, especially older 8-bit parts and anything in a DIP, SOP or QFP package. Send the marking and you get a yes or no with a price.
Ask about a specific chipSend the marking, get the answer today
Photograph the top of the chip. If the marking is worn we can often still identify it from the package and the board.
