AT49BV1604-11UI Atmel, AT49BV1604-11UI Datasheet

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AT49BV1604-11UI

Manufacturer Part Number
AT49BV1604-11UI
Description
IC FLASH 16MBIT 110NS 48UBGA
Manufacturer
Atmel
Datasheet

Specifications of AT49BV1604-11UI

Format - Memory
FLASH
Memory Type
FLASH
Memory Size
16M (2M x 8 or 1M x 16)
Speed
110ns
Interface
Parallel
Voltage - Supply
2.7 V ~ 3.3 V
Operating Temperature
-40°C ~ 85°C
Package / Case
48-µBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AT49BV1604-11UI
Manufacturer:
Atmel
Quantity:
10 000
Features
Description
The AT49BV16X4(T) is a 2.7- to 3.3-volt 16-megabit Flash memory organized as
1,048,576 words of 16 bits each or 2,097,152 bytes of 8 bits each. The x16 data
appears on I/O0 - I/O15; the x8 data appears on I/O0 - I/O7. The memory is divided
into 40 sectors for erase operations. The device is offered in 48-lead TSOP and
48-ball µBGA packages. The device has CE and OE control signals to avoid any bus
Pin Configurations
Pin Name
A0 - A19
CE
OE
WE
RESET
RDY/BUSY
VPP
I/O0 - I/O14
I/O15 (A-1)
BYTE
NC
VCCQ
DC
2.7V to 3.3V Read/Write
Access Time – 90 ns
Sector Erase Architecture
Fast Word Program Time – 20 µs
Fast Sector Erase Time – 200 ms
Dual-plane Organization, Permitting Concurrent Read while Program/Erase
Erase Suspend Capability
Low-power Operation
Data Polling, Toggle Bit, Ready/Busy for End of Program Detection
Optional VPP Pin for Fast Programming
RESET Input for Device Initialization
Sector Program Unlock Command
TSOP, CBGA and µBGA Package Options
Top or Bottom Boot Block Configuration Available
– Thirty 32K Word (64K Byte) Sectors with Individual Write Lockout
– Eight 4K Word (8K Byte) Sectors with Individual Write Lockout
– Two 16K Word (32K Byte) Sectors with Individual Write Lockout
– Supports Reading/Programming Data from Any Sector by Suspending Erase of
– 25 mA Active
– 10 µA Standby
Any Different Sector
Memory Plane A: Eight 4K Word, Two 16K Word and Six 32K Word Sectors
Memory Plane B: Twenty-four 32K Word Sectors
Function
Addresses
Chip Enable
Output Enable
Write Enable
Reset
READY/BUSY Output
Optional Power Supply for Faster
Program/Erase Operations
Data Inputs/Outputs
I/O15 (Data Input/Output, Word Mode)
A-1 (LSB Address Input, Byte Mode)
Selects Byte or Word Mode
No Connect
Output Power Supply
Don’t Connect
(continued)
16-megabit
(1M x 16/2M x 8)
3-volt Only
Flash Memory
AT49BV1604
AT49BV1604T
AT49BV1614
AT49BV1614T
Not Recommended
for New Design
Contact Atmel to discuss
the latest design in trends
and options
Rev. 0925K–09/00
1

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AT49BV1604-11UI Summary of contents

Page 1

... Selects Byte or Word Mode NC No Connect VCCQ Output Power Supply DC Don’t Connect 16-megabit (1M x 16/ 3-volt Only Flash Memory AT49BV1604 AT49BV1604T AT49BV1614 AT49BV1614T Not Recommended for New Design Contact Atmel to discuss (continued) the latest design in trends and options Rev. 0925K–09/00 1 ...

Page 2

... The device is segmented into two memory planes. Reads from memory plane B may be performed even while AT49BV1604(T)/1614(T) 2 AT49BV1604(T) µBGA Top View (Ball Down A13 ...

Page 3

... Device Operation READ: The AT49BV16X4(T) is accessed like an EPROM. When CE and OE are low and WE is high, the data stored at the memory location determined by the address pins are asserted on the outputs. The outputs are put in the high- impedance state whenever high. This dual-line control gives designers flexibility in preventing bus contention ...

Page 4

... BYTE/WORD PROGRAMMING: Once a memory block is erased programmed (to a logical “0” byte-by-byte word-by-word basis. Programming is accomplished AT49BV1604(T)/1614(T) 4 via the internal device command register and is a four-bus cycle operation. The device will automatically generate the required internal program pulses. ...

Page 5

... The command sequence for a chip erase suspend and a sector erase suspend are the same. PRODUCT IDENTIFICATION: The product identification mode identifies the device and manufacturer as Atmel. It may be accessed by hardware or software operation. The hardware operation mode can be used by an external pro- grammer to identify the correct programming algorithm for the Atmel product. For details, see “ ...

Page 6

... Temperature under Bias ................................ -55°C to +125°C Storage Temperature ..................................... -65°C to +150°C All Input Voltages (including NC Pins) with Respect to Ground ...................................-0.6V to +6.25V All Output Voltages with Respect to Ground .............................-0. Voltage on OE with Respect to Ground ...................................-0.6V to +13.5V AT49BV1604(T)/1614(T) 6 (1) 2nd Bus 3rd Bus Cycle Cycle Cycle Data ...

Page 7

... AT49BV1604/1614 – Sector Address Table Plane Sector Size (Bytes/Words) A SA0 A SA1 A SA2 A SA3 A SA4 A SA5 A SA6 A SA7 A SA8 A SA9 A SA10 A SA11 A SA12 A SA13 A SA14 A SA15 B SA16 B SA17 B SA18 B SA19 B SA20 B SA21 B SA22 B SA23 B SA24 B SA25 B SA26 B SA27 B SA28 B SA29 B SA30 B SA31 ...

Page 8

... AT49BV1604T/1614T – Sector Address Table Plane Sector Size (Bytes/Words) B SA0 64K/32K B SA1 64K/32K B SA2 64K/32K B SA3 64K/32K B SA4 64K/32K B SA5 64K/32K B SA6 64K/32K B SA7 64K/32K B SA8 64K/32K B SA9 64K/32K B SA10 64K/32K B SA11 64K/32K B SA12 64K/32K B SA13 64K/32K B SA14 64K/32K B SA15 64K/32K ...

Page 9

... AT49BV16X4(T)-11 -40°C - 85°C 2. A19 = ( A19 = A19 = A19 = Min 2.0 < 2. 0.2 [AT49BV1604(T)] CCQ ≥ 2.6V 2.4 [AT49BV1604(T)] 2.4 (AT49BV1614) I/O D OUT D IN High-Z High-Z High-Z (4) Manufacturer Code (4) Device Code (4) Manufacturer Code (4) Device Code Max Units 10 µA 10 µA 10 µ ...

Page 10

... This parameter is characterized and is not 100% tested. Input Test Waveforms and Measurement Level < Pin Capacitance ( MHz 25°C Symbol Typ OUT Note: 1. This parameter is characterized and is not 100% tested. AT49BV1604(T)/1614(T) 10 AT49LV16X4(T)-90 Min ADDRESS ADDRESS VALID CE tCE tOE OE tACC tRO RESET HIGH Z OUTPUT OUTPUT VALID - t ...

Page 11

AC Byte/Word Load Characteristics Symbol Parameter Address, OE Setup Time AS OES t Address Hold Time AH t Chip Select Setup Time CS t Chip Select Hold Time CH t Write Pulse Width (WE or CE) WP ...

Page 12

... For chip erase, the address should be 5555. For sector erase, the address depends on what sector erased. (See note 3 under Command Definitions.) 3. For chip erase, the data should be 10H, and for sector erase, the data should be 30H. 4. The t time between the 5th and 6th bus cycle should be a minimum of 150 ns. WPH AT49BV1604(T)/1614(T) 12 PROGRAM CYCLE ...

Page 13

Data Polling Characteristics Symbol Parameter t Data Hold Time Hold Time OEH ( Output Delay OE t Write Recovery Time WR Notes: 1. These parameters are characterized and not 100% tested. 2. See t ...

Page 14

... The device returns to standard operation mode. 5. Manufacturer Code: 1FH(x8); 001FH(x16) Device Code: C0H (x8)-AT49BV16X4; 00C0H (x16)-AT49BV16X4; C2H (x8)-AT49BV16X4T; 00C2H (x16)-AT49BV16X4T. 6. Either one of the Product ID Exit commands can be used. AT49BV1604(T)/1614(T) 14 (1) Sector Lockout Enable Algorithm (1)(6) LOAD DATA F0 TO ANY ADDRESS ...

Page 15

Status Bit Table Read Address In Plane A While Programming in Plane A Programming in Plane B Erasing in Plane A Erasing in Plane B Erase Suspended & Read Erasing Sector Erase Suspended & Read Non-erasing Sector Erase Suspended & ...

Page 16

... Plastic Chip-size Ball Grid Array Package (CBGA) 48T 48-lead, Thin Small Outline Package (TSOP) 48U 48-ball, Micro Ball Grid Array Package (µBGA) AT49BV1604(T)/1614(T) 16 Ordering Code Package AT49LV1614-90TC 48T AT49BV1604-11UI 48U AT49BV1614-11CI 48C2 AT49BV1614-11TI 48T AT49LV1614T-90TC 48T AT49BV1604T-11UI 48U AT49BV1614T-11CI ...

Page 17

Packaging Information 48C2, 48-ball, Plastic Chip-size Ball Grid Array Package (CBGA) Dimensions in Millimeters and (Inches)* 8.2 (0.322) 7.8 (0.307) 10.2 (0.401) 9.8 (0.386) 2.12 (0.083) 4.0 (0.157) 1.86 (0.073 ...

Page 18

... No licenses to patents or other intellectual prop- erty of Atmel are granted by the Company in connection with the sale of Atmel products, expressly or by implication. Atmel’s products are not authorized for use as critical components in life suppor t devices or systems. ...

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