IS45S16160L-6BLA1
| Part Description |
AUTOMOTIVE (-40 TO +85C), 256M, |
|---|---|
| Quantity | 361 Available (as of May 5, 2026) |
| Product Category | Memory |
|---|---|
| Manufacturer | Integrated Silicon Solution Inc |
| Manufacturing Status | Active |
| Manufacturer Standard Lead Time | 12 Weeks |
| Datasheet |
Specifications & Environmental
| Device Package | 54-TFBGA (8x8) | Memory Format | DRAM | Technology | SDRAM | ||
|---|---|---|---|---|---|---|---|
| Memory Size | 256 Mbit | Access Time | 5.4 ns | Grade | Automotive | ||
| Clock Frequency | 166 MHz | Voltage | 3V ~ 3.6V | Memory Type | Volatile | ||
| Operating Temperature | -40°C ~ 85°C (TA) | Write Cycle Time Word Page | N/A | Packaging | 54-TFBGA | ||
| Mounting Method | Volatile | Memory Interface | LVTTL | Memory Organization | 16M x 16 | ||
| Moisture Sensitivity Level | N/A | RoHS Compliance | N/A | REACH Compliance | REACH Unknown | ||
| Qualification | AEC-Q100 | ECCN | N/A | HTS Code | N/A |
Overview of IS45S16160L-6BLA1 – AUTOMOTIVE (-40 TO +85C), 256M
The IS45S16160L-6BLA1 is a 256 Mbit volatile SDRAM device organized as 16M × 16. It implements standard DRAM architecture with an LVTTL memory interface and is offered in a 54-TFBGA (8×8) package.
Designed for automotive-grade designs, the device supports a clock frequency of 166 MHz, a 5.4 ns access time, a 3.0–3.6 V supply range, and an operating ambient temperature range of −40 °C to +85 °C. It is AEC‑Q100 qualified for automotive applications.
Key Features
- Memory Type & Organization 256 Mbit SDRAM organized as 16M × 16, provided as volatile DRAM for system memory storage.
- Performance Supports a clock frequency of 166 MHz with a specified access time of 5.4 ns to meet medium‑performance memory requirements.
- Interface LVTTL memory interface for standard digital signal compatibility.
- Power Operates from a 3.0 V to 3.6 V supply range to match common 3 V system rails.
- Automotive Qualification & Grade AEC‑Q100 qualified and specified with an operating ambient temperature range of −40 °C to +85 °C for automotive-grade deployments.
- Package & Mounting Supplied in a 54‑TFBGA (8×8) package for compact board-level integration and surface‑mount assembly.
Typical Applications
- Automotive electronics Use in vehicle systems that require AEC‑Q100 qualified SDRAM components and an ambient operating range of −40 °C to +85 °C.
- Embedded systems Memory subsystem for embedded controllers or processors that accept a 16-bit SDRAM interface and LVTTL signaling.
- Telematics and infotainment processors Auxiliary or main memory where a 256 Mbit SDRAM with 166 MHz clocking and 5.4 ns access time is appropriate.
Unique Advantages
- AEC‑Q100 qualification: Enables deployment in automotive-grade designs by meeting automotive qualification requirements listed in the product data.
- Automotive temperature range: Specified −40 °C to +85 °C operation supports a wide range of in-vehicle ambient conditions.
- Compact BGA footprint: 54‑TFBGA (8×8) package provides a small board area for space-constrained designs.
- Standard LVTTL interface: Simplifies integration with systems that use LVTTL signaling for memory interfaces.
- Validated performance metrics: 166 MHz clock frequency and 5.4 ns access time provide defined timing characteristics for system design and timing analysis.
- Wide supply tolerance: 3.0 V to 3.6 V supply range accommodates typical 3 V system rails and tolerances.
Why Choose IS45S16160L-6BLA1?
The IS45S16160L-6BLA1 positions itself as a compact, automotive‑grade SDRAM option with explicit AEC‑Q100 qualification, defined timing performance, and a standard LVTTL interface. Its combination of 256 Mbit density, 16M × 16 organization, and a 54‑TFBGA package makes it suitable for designs that require a qualified DRAM with predictable electrical and timing characteristics.
This device is suited for engineers specifying memory for automotive and embedded systems that demand qualification traceability, a defined operating temperature window, and conventional 3 V supply compatibility. It provides a stable, verifiable memory building block for system memory designs where these specific attributes are required.
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