CY62167G30-45BVXI
IC SRAM 16MBIT PARALLEL 48VFBGA
Quick Answer: The CY62167G30-45BVXI from Infineon Technologies is an asynchronous SRAM memory IC intended for systems that require volatile data storage with a parallel interface.
- Manufacturer
- Infineon Technologies
- Product Category
- Memory ICs
- Package
- 48-VFBGA
- Stock
- 4,800 pcs
- Availability
- Current quantity subject to confirmation.
Product Attributes
| Manufacturer | Infineon Technologies |
|---|---|
| Product Category | Memory ICs |
| Access Time | 45 ns |
| Memory Format | SRAM |
| Memory Interface | Parallel |
| Memory Organization | 2M x 8, 1M x 16 |
| Memory Size | 16Mbit |
| Memory Type | Volatile |
| Mounting Type | Surface Mount |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Package | Tray |
| Product status | Active |
| Series | MoBL® |
| Supplier Device Package | 48-VFBGA (6x8) |
| Technology | SRAM - Asynchronous |
| Voltage - Supply | 2.2V ~ 3.6V |
| Write Cycle Time - Word, Page | 45ns |
| Datasheet | View Datasheet PDF |
Procurement Snapshot
Key supply and purchasing information for CY62167G30-45BVXI.
Why Source from Antrex Electronics?
Independent distribution support for verified sourcing, inspection and international procurement requirements.
Independent Distribution Support
Shortage, obsolete and hard-to-find component sourcing for production and procurement requirements.
Traceability Review
Label, lot, date code and available supply-chain documentation can be reviewed before order confirmation.
Inspection & Testing
Visual inspection, X-ray and third-party testing support can be arranged when required.
Global Procurement Support
Support for OEM, EMS, distributors and international sourcing requirements across individual parts and BOM projects.
Credentials & Verification Support
Quality controls, traceability review and inspection support for electronic component sourcing.
Detailed Description for CY62167G30-45BVXI
Product Overview
The CY62167G30-45BVXI from Infineon Technologies is an asynchronous SRAM memory IC intended for systems that require volatile data storage with a parallel interface. It provides 16 Mbit of SRAM organized as 2M x 8 or 1M x 16, allowing designers to align the memory width with the host bus architecture. The device specifies a 45 ns access time and a 45 ns word or page write cycle time, which can be used to evaluate timing margins in memory subsystems. It operates from a 2.2 V to 3.6 V supply and has an operating temperature range of -40°C to 85°C (TA). The part is supplied in a 48-VFBGA (6x8) package and is intended for surface-mount assembly. As an asynchronous SRAM, it is suited to applications where the host controls read and write operations through the parallel interface rather than relying on a serial memory interface.
Key Features
- 16 Mbit volatile SRAM with a parallel interface
- Memory organization: 2M x 8 or 1M x 16
- 45 ns access time and 45 ns word/page write cycle time
- 2.2 V to 3.6 V supply voltage range
- -40°C to 85°C operating temperature range (TA)
- 48-VFBGA (6x8) surface-mount package
- MOBL™ series asynchronous SRAM
Applications
- Embedded controllers requiring volatile local storage for working variables, lookup tables, or runtime data
- Data acquisition subsystems that need temporary buffering of sampled values before host processing
- Parallel memory expansion for microprocessors or controllers that interface with asynchronous SRAM timing
Design & Procurement Notes
Design teams should confirm that the host bus voltage remains within the 2.2 V to 3.6 V supply range and that the memory controller can meet the 45 ns access and write-cycle timing. The memory organization, given as 2M x 8 or 1M x 16, affects address mapping, data bus width, and PCB routing, so the host interface should match the memory width. The 48-VFBGA (6x8) surface-mount package requires appropriate land pattern and reflow process compatibility, and the -40°C to 85°C operating temperature range should be considered during thermal design. Because the device is an asynchronous SRAM, system timing should be based on parallel read and write control signals rather than serial memory protocols.
Explore More Sourcing Options
Continue sourcing by manufacturer, product category or procurement requirement.