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BR24G1MFJ-3AGTE2

hot BR24G1MFJ-3AGTE2

BR24G1MFJ-3AGTE2

For Reference Only

Part Number BR24G1MFJ-3AGTE2
Manufacturer Rohm Semiconductor
Description IC EEPROM 1MBIT 1MHZ 8SOP
Datasheet BR24G1MFJ-3AGTE2 Datasheet
Package 8-SOIC (0.154", 3.90mm Width)
In Stock 514 piece(s)
Unit Price $ 1.6636 *
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BR24G1MFJ-3AGTE2

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BR24G1MFJ-3AGTE2 Specifications

ManufacturerRohm Semiconductor
CategoryIntegrated Circuits (ICs) - Memory
Datasheet BR24G1MFJ-3AGTE2 Datasheet
Package8-SOIC (0.154", 3.90mm Width)
Series-
Memory TypeNon-Volatile
Memory FormatEEPROM
TechnologyEEPROM
Memory Size1Mb (128K x 8)
Clock Frequency1MHz
Write Cycle Time - Word, Page5ms
Memory InterfaceI2C
Voltage - Supply1.7 V ~ 5.5 V
Operating Temperature-40°C ~ 85°C (TA)
Mounting TypeSurface Mount
Package / Case8-SOIC (0.154", 3.90mm Width)
Supplier Device Package8-SOP-J

BR24G1MFJ-3AGTE2 Datasheet

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○ Product structure:Silicon monolithic integrated circuit ○This product has no designed protection against radioactive rays . 1/36 TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・14・001 www.rohm.com Serial EEPROM Series Standard EEPROM I2C BUS EEPROM (2-Wire) BR24Gxxx-3A (128K 256K 1M) General Description BR24Gxxx-3A is a serial EEPROM of I2C BUS Interface Method Features  All controls available by 2 ports of serial clock(SCL) and serial data(SDA)  Other devices than EEPROM can be connected to the same port, saving microcontroller port  1.7V to 5.5V Single Power Source Operation most suitable for battery use  1.7V to 5.5V wide limit of operating voltage, possible 1MHz operation  Page Write Mode useful for initial value write at factory shipment  Self-timed Programming Cycle  Low Current Consumption  Prevention of Write Mistake  Write (Write Protect) Function added  Prevention of Write Mistake at Low Voltage  More than 1 million write cycles  More than 40 years data retention  Noise filter built in SCL / SDA terminal  Initial delivery state FFh Page Write Number of Pages 64Byte 256Byte Product Number BR24G128-3A BR24G256-3A BR24G1M-3A BR24G128-3A Capacity Bit Format Type Power Source Voltage Package 128kbit 16k×8 BR24G128-3A 1.7V to 5.5V DIP-T8 BR24G128F-3A SOP8 BR24G128FJ-3A SOP-J8 BR24G128FV-3A SSOP-B8 BR24G128FVT-3A TSSOP-B8 BR24G128FVJ-3A TSSOP-B8J BR24G128FVM-3A MSOP8 BR24G128NUX-3A VSON008X2030 Packages W(Typ) x D(Typ)x H(Max) Figure 1. MSOP8 2.90mm x 4.00mm x 0.90mm SOP-J8 4.90mm x 6.00mm x 1.65mm SOP8 5.00mm x 6.20mm x 1.71mm DIP-T8 9.30mm x 6.50mm x 7.10mm SSOP-B8 3.00mm x 6.40mm x 1.35mm TSSOP-B8 3.00mm x 6.40mm x 1.20mm TSSOP-B8J 3.00mm x 4.90mm x 1.10mm VSON008X2030 2.00mm x 3.00mm x 0.60mm Datasheet

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. 2/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com BR24G256-3A Capacity Bit Format Type Power Source Voltage Package 256kbit 32k×8 BR24G256-3A 1.7V to 5.5V DIP-T8 BR24G256F-3A SOP8 BR24G256FJ-3A SOP-J8 BR24G256FV-3A SSOP-B8 BR24G256FVT-3A TSSOP-B8 BR24G1M-3A Capacity Bit Format Type Power Source Voltage Package 1Mbit 128k×8 BR24G1M-3A 1.7V to 5.5V DIP-T8 BR24G1MF-3A SOP8 BR24G1MFJ-3A SOP-J8

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. 3/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Absolute Maximum Ratings (Ta=25°C) Parameter Symbol Rating Unit Remark Supply Voltage Vcc -0.3 to +6.5 V Power Dissipation Pd 0.45 (SOP8) W Derate by 4.5mW/°C when operating above Ta=25°C 0.45 (SOP-J8) Derate by 4.5mW/°C when operating above Ta=25°C 0.30 (SSOP-B8) Derate by 3.0mW/°C when operating above Ta=25°C 0.33 (TSSOP-B8) Derate by 3.3mW/°C when operating above Ta=25°C 0.31 (TSSOP-B8J) Derate by 3.1mW/°C when operating above Ta=25°C 0.31 (MSOP8) Derate by 3.1mW/°C when operating above Ta=25°C 0.30 (VSON008X2030) Derate by 3.0mW/°C when operating above Ta=25°C 0.80 (DIP-T8) Derate by 8.0mW/°C when operating above Ta=25°C Storage Temperature Tstg -65 to +150 °C Operating Temperature Topr -40 to +85 °C Input Voltage / Output Voltage ‐ -0.3 to Vcc+1.0 V The Max value of Input Voltage/Output Voltage is not over 6.5V. When the pulse width is 50ns or less, the Min value Input Voltage/Output Voltage is not lower than -1.0V. Junction Temperature Tjmax 150 °C Junction temperature at the storage condition Electrostatic discharge voltage (human body model) VESD -4000 to +4000 V Memory Cell Characteristics (Ta=25°C, Vcc=1.7V to 5.5V) Parameter Limit Unit Min Typ Max Write Cycles (1) 1,000,000 - - Times Data Retention (1) 40 - - Years (1) Not 100% TESTED Recommended Operating Ratings Parameter Symbol Rating Unit Power Source Voltage Vcc 1.7 to 5.5 V Input Voltage VIN 0 to Vcc DC Characteristics (Unless otherwise specified, Ta=-40°C to +85°C, Vcc =1.7V to 5.5V) Parameter Symbol Limit Unit Conditions Min Typ Max Input High Voltage 1 VIH1 0.7Vcc - Vcc+1.0 V Input Low Voltage 1 VIL1 -0.3(2) - +0.3Vcc V Output Low Voltage 1 VOL1 - - 0.4 V IOL=3.0mA, 2.5V≦Vcc≦5.5V (SDA) Output Low Voltage 2 VOL2 - - 0.2 V IOL=0.7mA, 1.7V≦Vcc<2.5V (SDA) Input Leakage Current ILI -1 - +1 μA VIN=0 to Vcc Output Leakage Current ILO -1 - +1 μA VOUT=0 to Vcc (SDA) Supply Current (Write) ICC1 - - 2.5 mA VCC=5.5V, fSCL=1MHz, tWR=5ms, Byte write, Page write BR24G128/256-3A - - 4.5 VCC=5.5V, fSCL=1MHz, tWR=5ms, Byte write, Page write BR24G1M-3A Supply Current (Read) ICC2 - - 2.0 mA VCC=5.5V, fSCL=1MHz Random read, current read, sequential read Standby Current ISB - - 2.0 μA VCC=5.5V, SDA・SCL=Vcc A0, A1, A2=GND, WP=GND BR24G128/256-3A - - 3.0 VCC=5.5V, SDA・SCL=Vcc A0, A1, A2=GND, WP=GND BR24G1M-3A (2) When the pulse width is 50ns or less, it is -1.0V.

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. 4/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com AC Characteristics (Unless otherwise specified, Ta=-40°C to +85°C, Vcc=1.7V to 5.5V) Parameter Symbol Limit Unit Min Typ Max Clock Frequency fSCL - - 1000 kHz Data Clock “HIGH“ Period tHIGH 0.30 - - µs Data Clock “LOW“ Period tLOW 0.5 - - µs SDA, SCL (INPUT) Rise Time (1) tR - - 0.12 µs SDA, SCL (INPUT) Fall Time (1) tF1 - - 0.12 µs SDA (OUTPUT) Fall Time (1) tF2 - - 0.12 µs Start Condition Hold Time tHD:STA 0.25 - - µs Start Condition Setup Time tSU:STA 0.20 - - µs Input Data Hold Time tHD:DAT 0 - - ns Input Data Setup Time tSU:DAT 50 - - ns Output Data Delay Time tPD 0.05 - 0.45 µs Output Data Dold Time tDH 0.05 - - µs Stop Condition Setup Time tSU:STO 0.25 - - µs Bus Free Time tBUF 0.5 - - µs Write Cycle Time tWR - - 5 ms Noise Spike Width (SDA, SCL) tI - - 0.05 µs WP Hold Time tHD:WP 1.0 - - µs WP Setup Time tSU:WP 0.1 - - µs WP High Period tHIGH:WP 1.0 - - µs (1) Not 100% tested AC Characteristics Condition Parameter Symbol Conditions Unit Load Capacitance CL 100 pF SDA, SCL (INPUT) Rise Time tR 20 ns SDA, SCL (INPUT) Fall Time tF1 20 ns Input Data Level VIL1/VIH1 0.2VCC/0.8Vcc V Input/Output Data Timing Reference Level - 0.3VCC/0.7Vcc V

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. 5/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Serial Input / Output Timing Figure 2-(e). WP Timing at Write Cancel Figure 2-(d). WP Timing at Write Execution Figure 2-(c). Write Cycle Timing Figure 2-(b). Start-Stop Bit Timing Figure 2-(a). Serial Input / Output Timing ○Input read at the rise edge of SCL ○Data output in sync with the fall of SCL SCL SDA (入力) SDA (出力) tR tF1 tHIGH tSU:DAT tLOW tHD:DAT tDHtPDtBUF tHD:STA 70% 30% 70% 70% 30% 70% 70% 30% 30% 70% 70% 30% 70% 70% 70% 70% 30% 30%30% 30% tF2 70% 70% tSU:STA tHD:STA START CONDITION tSU:STO STOP CONDITION 30%30% 70% 70% D0 ACK tWRwrite data (n-th address) START CONDITIONSTOP CONDITION 70%70% DATA(1) D0 ACKD1 DATA(n) ACK tWR 30% 70% STOP CONDITION tHD:WPtSU:WP 30% 70% DATA(1) D0D1 ACK DATA(n) ACK tHIGH:WP 70% 70% tWR 70% (INPUT) (OUTPUT)

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. 6/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Block Diagram Figure 3. Block Diagram Pin Configuration (TOP VIEW) Pin Descriptions Terminal Name Input/ Output Descriptions BR24G128/256-3A BR24G1M-3A A0 Input Slave address setting(2) Don’t use(1) A1 Input Slave address setting(2) A2 Input Slave address setting(2) GND - Reference voltage of all input / output, 0V SDA Input/ Output Serial data input serial data output SCL Input Serial clock input WP Input Write protect terminal VCC - Connect the power source. (1) Pins not used as device address may be set to any of ‘H’, 'L', and 'Hi-Z'. (2) A0, A1 and A2 are not allowed to use as open 1 1 1 2 1 3 1 4 1 1 6 1 5 BR24G128-3A BR24G256-3A BR24G1M-3A A0 1 7 A1 A2 GND VCC WP SCL 8 SDA 8 7 6 5 4 3 2 1 SDA SCL WP VCC GND A2 A1 A0 Address Decoder Word Address Register Data Register Control Circuit High Voltage Generating Circuit Power Source Voltage Detection 8bit ACK START STOP (1) (2) A0= Don't use : BR24G1M-3A (1) 14bit: BR24G128-3A 15bit: BR24G256-3A 17bit: BR24G1M-3A 128Kbit, 256Kbit, 1Mbit EEPROM Array (2) 14biit 15biit 17biit

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. 7/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Typical Performance Curves Figure 4. Input High Voltage1 vs Supply Voltage (A0, A1, A2, SCL, SDA, WP) Figure 5. Input Low Voltage1 vs Supply Voltage (A0, A1, A2, SCL, SDA, WP) Figure 6. Output Low Voltage1 vs Output Low Current (Vcc=2.5V) Figure 7. Output Low Voltage2 vs Output Low Current (Vcc=1.7V) 0 1 2 3 4 5 6 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) In pu t L ow V ol ta ge 1 : V IL 1( V ) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC 0 1 2 3 4 5 6 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) In pu t H ig h Vo lta ge 1 : V IH 1(V ) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC 0 0.2 0.4 0.6 0.8 1 0 1 2 3 4 5 6 Output Low Current : IOL(mA) O ut pu t L ow V ol ta ge 2 : V O L2 (V ) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃ 0 0.2 0.4 0.6 0.8 1 0 1 2 3 4 5 6 Output Low Current : IOL(mA) O ut pu t L ow V ol ta ge 1 : V O L1 (V ) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC

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. 8/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Typical Performance Curves‐continued Figure 8. Input Leakage Current vs Supply Voltage (A0, A1, A2, SCL, WP) Figure 9. Output Leakage Current vs Supply Voltage (SDA) Figure 10. Supply Current (Write) vs Supply Voltage (fSCL=1MHz BR24G128/256-3A) Figure 11. Supply Current (Write) vs Supply Voltage (fSCL=1MHz BR24G1M-3A) 0 0.2 0.4 0.6 0.8 1 1.2 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) In pu t L ea ka ge C ur re nt : I L I ( µA ) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC 0 0.2 0.4 0.6 0.8 1 1.2 0 1 2 3 4 5 6 Supply Voltage: Vcc(V) O ut pu t L ea ka ge C ur re nt : I LO (µ A ) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC 0 1 2 3 4 5 6 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) S up pl y C ur re nt (W rit e) : Ic c1 (m A ) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃ 0 0.5 1 1.5 2 2.5 3 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) Su pp ly C ur re nt (W rit e) : Ic c1 (m A) Ta=-40℃ Ta= 25℃ Ta= 85℃ SPEC

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. 9/36 BR24Gxxx-3A (128K 256K 1M) TSZ02201-0R2R0G100020-1-2 18.Jun.2015 Rev.006 © 2014 ROHM Co., Ltd. All rights reserved. TSZ22111・15・001 www.rohm.com Typical Performance Curves‐continued Figure 12. Supply Current (Read) vs Supply Voltage (fscl=1MHz) Figure 13. Standby Current vs Supply Voltage (BR24G128/256-3A) Figure 15. Clock Frequency vs Supply Voltage Figure 14. Standby Current vs Supply Voltage (BR24G1M-3A) 0.1 1 10 100 1000 10000 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) C lo ck F re qu en cy : fs cl (k H z) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃ 0 0.5 1 1.5 2 2.5 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) St an db y C ur re nt : I S B (µ A) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃ 0 0.5 1 1.5 2 2.5 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) S up pl y C ur re nt (R ea d) : I C C 2( m A ) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃ 0 0.5 1 1.5 2 2.5 3 3.5 0 1 2 3 4 5 6 Supply Voltage : Vcc(V) S ta nd by C ur re nt : I S B (µ A ) SPEC Ta=-40℃ Ta= 25℃ Ta= 85℃

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January 29, 2020

Rec today in good order & condition . Thanks for speedy delivery.Regards.

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January 27, 2020

Excellent website experience for search any product I want, problem solvers. You guys I can trust and reply on.

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December 22, 2019

happy with the IC and received with perfect packaging, good comunication with seller thanks.

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December 2, 2019

Fantastic quality products with fair and prompt shipping. Would save much time crossing all the features. Thank you for all your effort.

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November 26, 2019

The items I want are often in stock and available in small quantities.

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November 25, 2019

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November 17, 2019

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October 19, 2019

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October 11, 2019

Fast delivery, good quality, 100% satisfacted

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October 5, 2019

I always enjoy shopping with Heisener, never disappoint me, most dependable, and no long waiting for deliveries.

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