Cypress CY7C1336H manual Ordering Information, Package Diagram, Pin Tqfp 14 x 20 x 1.4 mm

Page 14

 

 

 

 

 

PRELIMINARY

CY7C1336H

 

 

 

 

 

 

 

 

 

 

Ordering Information

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Speed

Ordering Code

Package

Package Type

 

Operating

 

(MHz)

Diagram

 

Range

 

133

CY7C1336H-133AXC

51-85050

100-pin Thin Quad Flat Pack (14 x 20 x 1.4 mm) Lead-Free

Commercial

 

 

CY7C1336H-133AXI

51-85050

100-pin Thin Quad Flat Pack (14 x 20 x 1.4 mm) Lead-Free

Industrial

 

100

CY7C1336H-100AXC

51-85050

100-pin Thin Quad Flat Pack (14 x 20 x 1.4 mm) Lead-Free

Commercial

 

 

CY7C1336H-100AXI

51-85050

100-pin Thin Quad Flat Pack (14 x 20 x 1.4 mm) Lead-Free

Industrial

 

 

 

 

 

 

 

 

 

 

Please contact your local Cypress sales representative for availability of these parts.

Package Diagram

100-pin TQFP (14 x 20 x 1.4 mm) (51-85050)

16.00±0.20

14.00±0.10

100

1

1.40±0.05

81

80

22.00±0.20

20.00±0.10

30

31

0.30±0.08

0.65

12° ±1°

TYP.

(8X)

51

50

SEE DETAIL

A

0.20 MAX.

1.60 MAX.

R 0.08 MIN. 0.20 MAX.

0.25

0° MIN.

SEATING PLANE

STAND-OFF

0.05 MIN.NOTE:

0.15 MAX.

0.10

GAUGE PLANE

-7°

0.60±0.15

1.00 REF.

R 0.08 MIN. 0.20 MAX.

0.20 MIN.

DETAIL A

1.JEDEC STD REF MS-026

2.BODY LENGTH DIMENSION DOES NOT INCLUDE MOLD PROTRUSION/END FLASH MOLD PROTRUSION/END FLASH SHALL NOT EXCEED 0.0098 in (0.25 mm) PER SIDE BODY LENGTH DIMENSIONS ARE MAX PLASTIC BODY SIZE INCLUDING MOLD MISMATCH

3.DIMENSIONS IN MILLIMETERS

51-85050-*B

Pentium is a registered trademark, and i486 is a trademark, of Intel Corporation. All product and company names mentioned in this document may be the trademarks of their respective holders.

Document #: 001-00210 Rev. *A

Page 14 of 15

© Cypress Semiconductor Corporation, 2006. The information contained herein is subject to change without notice. Cypress Semiconductor Corporation assumes no responsibility for the use of any circuitry other than circuitry embodied in a Cypress product. Nor does it convey or imply any license under patent or other rights. Cypress products are not warranted nor intended to be used for medical, life support, life saving, critical control or safety applications, unless pursuant to an express written agreement with Cypress. Furthermore, Cypress does not authorize its products for use as critical components in life-support systems where a malfunction or failure may reasonably be expected to result in significant injury to the user. The inclusion of Cypress products in life-support systems application implies that the manufacturer assumes all risk of such use and in doing so indemnifies Cypress against all charges.

[+] Feedback

Image 14
Contents Functional Description1 FeaturesLogic Block Diagram Cypress Semiconductor Corporation15CY7C1336H Pin ConfigurationSelection Guide 133 MHz 100 MHz UnitPin Definitions Functional Overview Interleaved Burst Address Table Mode = Floating or VDDLinear Burst Address Table Mode = GND Address ZZ Mode Electrical CharacteristicsParameter Description Test Conditions Min Max Unit Cycle Description UsedBWE Truth Table for Read/Write 2Function Ambient Maximum RatingsOperating Range RangeAC Test Loads and Waveforms Capacitance9Thermal Resistance9 Parameter Description Test Conditions Tqfp UnitSwitching Characteristics Over the Operating Range 10 Timing Diagrams Read Cycle Timing16Adsc Write Cycle Timing16CLK ADVAddress Read/Write Timing16, 18Adsp Adsc Burst ReadZZ Mode Timing20 Pin Tqfp 14 x 20 x 1.4 mm Package DiagramOrdering Information REV ECN no Issue Date Orig. Description of ChangeDocument History

CY7C1336H specifications

The Cypress CY7C1336H is a high-performance static random-access memory (SRAM) device that has gained recognition for its outstanding speed and reliability. This component is widely used in various high-performance applications including networking, telecommunications, and industrial control systems, where fast data storage and retrieval are critical.

One of the main features of the CY7C1336H is its high-speed operation, offering access times of as low as 10 nanoseconds. This makes it ideal for applications that require quick response times and efficient processing. The device operates with a supply voltage of 2.5V, which not only helps in reducing power consumption but also enables its use in newer low-voltage systems.

The CY7C1336H boasts a capacity of 1 megabit, organized in a configuration of 128K words by 8 bits. This allows it to store a significant amount of data while maintaining a compact footprint. In addition to its size, the device supports a burst mode, which enhances its efficiency in handling data transfer operations. This feature is particularly useful in applications requiring continuous data streaming, such as video processing or high-speed networking.

The memory technology employed in the CY7C1336H is known for its robustness and durability. Unlike DRAM, SRAM does not require periodic refreshing, which simplifies system design and improves overall performance. The device also features fast output enable and chip enable options, providing greater flexibility in controlling memory access and improving overall system response time.

In terms of packaging, the CY7C1336H is available in various forms including 32-pin SOJ and 44-pin TSOP packages, catering to diverse design requirements. Its compact packaging and low thermal characteristics make it suitable for space-constrained applications.

Another noteworthy characteristic of this SRAM is its inherent data integrity and reliability. With features such as on-chip parity generation and error checking capabilities, the CY7C1336H ensures that the data stored remains accurate and consistent over time.

Overall, the Cypress CY7C1336H delivers a blend of high speed, low power consumption, and reliability, making it an excellent choice for designers looking to implement high-performance memory solutions in their applications. Its combination of lasting performance and advanced features secures its place in both current and future electronic designs.