MAXIM DS28C22Q+T
| Manufacturer | |
| MPN | DS28C22Q+T |
| LCSC Part # | C17359461 |
| Packaging | TDFN-8(2x3) |
| Customer # | |
| Key Attributes | TDFN-8(2x3) Specialized ICs RoHS |
| Datasheet | MAXIM DS28C22Q+T |
| RoHS Compliance | 1 documents available |
Products Specifications
| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Specialized ICs | |
| Manufacturer | MAXIM | |
| Packaging | TDFN-8(2x3) |
| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Specialized ICs | |
| Manufacturer | MAXIM |
| Type | Description | |
|---|---|---|
| Packaging | TDFN-8(2x3) |
Introduction
DeepCoverM embedded security solutions cloak sensi tive data under multiple layers of advanced physical security to provide the most secure key storage possible. The DeepCover Secure Memory (DS28C22) combines crypto-strong, bidirectional, secure challenge-andresponse authentication and small message encryption functionality with an implementation based on the FIPS 180-specified Secure Hash Algorithm (SHA-256). A 3Kb user-programmable EEPROM array provides nonvola tile storage for application data and additional protected memory holds a read-protected secret for SHA-256 oper ations and settings for user memory control. Each device has its own guaranteed unique and unalterable 64-bit ROM identification number (ROM ID) that is factory pro grammed into the chip. This unique ROM ID is used as a fundamental input parameter for cryptographic operations and also serves as an electronic serial number within the application. A bidirectional security model enables twoway authentication and encryption between a host system and slave-embedded DS28C22. Slave-to-host authenti cation is used by a host system to securely validate that an attached or embedded DS28C22 is authentic. Hostto-slave authentication is used to protect DS28C22 user memory from being modified by a nonauthentic host. The SHA-256 message authentication code (MAC), which the DS28C22 generates, is computed from data in the user memory, an on-chip secret, a host random challenge, and the 64-bit ROM ID. The device also facilitates encrypted read and write between host and slave using a one time pad computed by the SHA-256 engine. When not in use, the DS28C22 can be put in sleep mode where power consumption is minimal.
Features
- Symmetric Key-Based Bidirectional Secure Authentication and Encryption Model Based on SHA-256
- Dedicated Hardware-Accelerated SHA Engine for Generating SHA-256 MACs
- Strong Authentication with a 256-Bit, UserProgrammable Secret, and Input Challenge
- 3072 Bits of User EEPROM Partitioned Into 12 Pages of 256 Bits
- User-Programmable and Irreversible EEPROM Protection Modes Including Authentication, Write and Read Protect, Encryption, and OTP/EPROM Emulation
- Supports 100kHz and 400kHz I2C Communication Speeds
- Supports Power-Saving Sleep Mode at 0.5μA (typ)
- Operating Range: 3.3V ±10%, -40°C to +85°C
- 8-Pin TDFN Package
Applications
- Authentication of Network-Attached Appliances
- System Intellectual Property Protection
- Secure Feature Setting for Configurable Systems
- Key Generation and Secure Exchange for Crypto graphic Systems
| Qty | Unit Price | Total Amount |
|---|---|---|
| 1+ | $ 4.6617 | $ 4.66 |
| 10+ | $ 4.5577 | $ 45.58 |
| 30+ | $ 4.4889 | $ 134.67 |
| 100+ | $ 4.4185 | $ 441.85 |
Standard Packaging2500/Full Reel | ||
Products Specifications
| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Specialized ICs | |
| Manufacturer | MAXIM | |
| Packaging | TDFN-8(2x3) |
| Type | Description | |
|---|---|---|
| Category | Integrated Circuits (ICs)/Specialized ICs | |
| Manufacturer | MAXIM |
| Type | Description | |
|---|---|---|
| Packaging | TDFN-8(2x3) |
Introduction
DeepCoverM embedded security solutions cloak sensi tive data under multiple layers of advanced physical security to provide the most secure key storage possible. The DeepCover Secure Memory (DS28C22) combines crypto-strong, bidirectional, secure challenge-andresponse authentication and small message encryption functionality with an implementation based on the FIPS 180-specified Secure Hash Algorithm (SHA-256). A 3Kb user-programmable EEPROM array provides nonvola tile storage for application data and additional protected memory holds a read-protected secret for SHA-256 oper ations and settings for user memory control. Each device has its own guaranteed unique and unalterable 64-bit ROM identification number (ROM ID) that is factory pro grammed into the chip. This unique ROM ID is used as a fundamental input parameter for cryptographic operations and also serves as an electronic serial number within the application. A bidirectional security model enables twoway authentication and encryption between a host system and slave-embedded DS28C22. Slave-to-host authenti cation is used by a host system to securely validate that an attached or embedded DS28C22 is authentic. Hostto-slave authentication is used to protect DS28C22 user memory from being modified by a nonauthentic host. The SHA-256 message authentication code (MAC), which the DS28C22 generates, is computed from data in the user memory, an on-chip secret, a host random challenge, and the 64-bit ROM ID. The device also facilitates encrypted read and write between host and slave using a one time pad computed by the SHA-256 engine. When not in use, the DS28C22 can be put in sleep mode where power consumption is minimal.
Features
- Symmetric Key-Based Bidirectional Secure Authentication and Encryption Model Based on SHA-256
- Dedicated Hardware-Accelerated SHA Engine for Generating SHA-256 MACs
- Strong Authentication with a 256-Bit, UserProgrammable Secret, and Input Challenge
- 3072 Bits of User EEPROM Partitioned Into 12 Pages of 256 Bits
- User-Programmable and Irreversible EEPROM Protection Modes Including Authentication, Write and Read Protect, Encryption, and OTP/EPROM Emulation
- Supports 100kHz and 400kHz I2C Communication Speeds
- Supports Power-Saving Sleep Mode at 0.5μA (typ)
- Operating Range: 3.3V ±10%, -40°C to +85°C
- 8-Pin TDFN Package
Applications
- Authentication of Network-Attached Appliances
- System Intellectual Property Protection
- Secure Feature Setting for Configurable Systems
- Key Generation and Secure Exchange for Crypto graphic Systems
Compliance & Export Codes
| Type | Details |
|---|---|
| RoHS | ROHS3 Compliant |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |
| Type | Details |
|---|---|
| RoHS | ROHS3 Compliant |
| ECCN | EAR99 |
| CNHTS | 8542399000 |
| USHTS | 8542390001 |
| TARIC | 8542399000 |
| Type | Details |
|---|---|
| CAHTS | 8542390000 |
| BRHTS | 85423999 |
| INHTS | 85423900 |
| MXHTS | 8542.39.99 |



