2014 - Not Available
Abstract: No abstract text available
Text: Suggested Layout, Tolerance to be within ±.002 Device Marking Pin 1 Index MCL 31 Outline , Digital Step Attenuator 50W DC-2400 MHz 31 dB, 1 dB Step 5 Bit, Parallel Control Interface , ⢠Excellent return loss, 20 dB Typ ⢠Small size 4.0 x 4.0 mm DAT- 31 -PN+ CASE STYLE: DG983 , site for RoHS Compliance methodologies and qualifications General Description The DAT- 31 -PN+ is a 50W RF digital step attenuator that offers an attenuation range up to 31 dB in 1.0 dB steps. The
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DC-2400
DAT-31-PN+
DG983-1
100pF
100nF
SC-70
TB-340
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2014 - Not Available
Abstract: No abstract text available
Text: , Tolerance to be within ±.002 Device Marking Pin 1 Index MCL 31 Outline Dimensions (inch ) mm , Digital Step Attenuator 50W DC-2400 MHz 31 dB, 1 dB Step 5 Bit, Serial Control Interface , ⢠Excellent return loss, 20 dB Typ ⢠Small size 4.0 x 4.0 mm DAT- 31 -SN+ CASE STYLE: DG983 , site for RoHS Compliance methodologies and qualifications General Description The DAT- 31 -SN+ is a 50W RF digital step attenuator that offers an attenuation range up to 31 dB in 1.0 dB steps. The
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DC-2400
DAT-31-SN+
DG983-1
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2012 - MCL 31
Abstract: mcl31
Text: within ±.002 Device Marking Pin 1 Index MCL 31 Outline Dimensions (inch mm ) A B .157 , Digital Step Attenuator 31 dB, 1 dB Step 5 Bit, Serial Control Interface, Dual Supply Voltage , loops 50W DC-2400 MHz DAT- 31 -SN+ DAT- 31 -SN CASE STYLE: DG983-1 PRICE: $3.55 ea. QTY. (10-24) + , . See our web site for RoHS Compliance methodologies and qualifications. General Description The DAT- 31 -SN is a 50W RF digital step attenuator that offers an attenuation range up to 31 dB in 1.0 dB steps. The
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DC-2400
DAT-31-SN+
DAT-31-SN
DG983-1
MCL 31
mcl31
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Not Available
Abstract: No abstract text available
Text: vâ 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 3» Zfr , A1 W81C280 Ãtyinbond x iiliV E le ctro n ics Corp. 3.1 Pin Description, continued 40 , DESCRIPTION TYPE Keyboard scan output Reset signal P30 / EEPROM CLK ( IE.6=1, IP. 3=1 ,see 5.3) Pull high when RESET falling 11 P31(TT1) / SDA I/O P31 / EEPROM DATA ( IE.6=1, IP. 3=1 ,see 5.3 , . 3.1 Pin Description, continued 40 DIP PIN# NAME TYPE 31 VDD3 OUTPUT 3.3V input
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OCR Scan
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W81C280
W81C280
W78C52.
256-byte
16-bit
5E35M
00d0fl31
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2002 - U8 100E
Abstract: BGA2002 ECHO schematic diagrams GS8170DD36C-300 GS8170DD36C-333
Text: by asynchronous SRAMs and simplifies input signal timing. In Rev: 1.00e 6/2002 1/ 31 Bottom , DQb DQb B NC NC MCL NC A W A MCL NC DQb DQb C NC NC NC MCL NC (144M) E1 NC NC MCL DQb DQb D NC NC VSS NC NC MCL NC NC VSS DQb DQb E NC DQc VDDQ VDDI VDD VDD VDD VDDI , VDD VDDQ VDDQ NC NC K CQ2 CQ2 CK NC VSS MCL VSS NC NC CQ1
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GS8170DD18/36C-333/300/250
209-Bump
209-bump,
209-Pin
GS8170DD18C-333I
GS8170DD18C-300I
GS8170DD18C-250I
U8 100E
BGA2002
ECHO schematic diagrams
GS8170DD36C-300
GS8170DD36C-333
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8051 ps2 keyboard circuit
Abstract: ps2 keyboard interface scan USB KEYBOARD CONTROLLER 8051 keyboard ps2 circuit 8051 microcontroller interface with ps2 keyboard 26 pin keyboard to usb W81C280 TDJ2 pc keyboard CIRCUIT wire diagram KBS01
Text: 1997 Revision A1 W81C280 rinbortd Electronics Corp. 3.1 Pin Description, continued 40 DIP PIN , output Reset signal P30 / EEPROM CLK ( IE.6=1, IP. 3=1 ,see 5.3) Pull high when RESET falling 11 P31(TT1) / SDA I/O P31 / EEPROM DATA ( IE.6=1, IP. 3=1 ,see 5.3) Pull high when RESET falling 12 13 , W81C280 ÌMnbond Electronic» Corp. 3.1 Pin Description, continued 40 DIP PIN# 31 32 33 34 35 36 37 38 , signal is the data (P30/MDA) and the other is the clock (P31/ MCL ). The clock is always generated by the
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W81C280
W81C280
W78C52.
256-byte
16-bit
8051 ps2 keyboard circuit
ps2 keyboard interface scan
USB KEYBOARD CONTROLLER
8051 keyboard ps2 circuit
8051 microcontroller interface with ps2 keyboard
26 pin keyboard to usb
TDJ2
pc keyboard CIRCUIT wire diagram
KBS01
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2007 - MCL 03
Abstract: UL Standard 198G BUSS SR-5 T3.15A 250V MCL 31 buss 2A LR700489 MCL RMS-1
Text: CLASS "MISC" MIDGET FUSES FAST-ACTING Catalog No. MCL (.1 - 50A) 600 Volts AC or Less Fast-Acting AMPERE RATINGS MCL 600V 0.75 3.5 9 1 4 10 1.5 5 12 2 6 15 2.5 7 20 3 8 25 DIMENSIONS Ferrule (in , DIMENSIONS Ferrule (in) 13/32 Length (in) 1-3/8 Amps .1 - 50 MCL SPECIFICATIONS Fast-Acting Voltage Rating: Ampere Rating: MCL - 600VAC .1 - 50 Amps MOL SPECIFICATIONS Fast-Acting Voltage Rating: Ampere , , electronic equipment protection. RECOMMENDED FUSEBLOCKS: Refer to page 142 in this catalog. EDISON MCL CROSS
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4/10A
MCL 03
UL Standard 198G
BUSS SR-5 T3.15A 250V
MCL 31
buss 2A
LR700489
MCL RMS-1
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1997 - Not Available
Abstract: No abstract text available
Text: VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC (72M) A A 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A A1 A0 7 A A NC (x18) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC , (72M) A A 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A A1 A0 7 A A NC (x18) NC , VDD VSS VDD VSS VDD NC NC (72M) A A 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A , 1x1Lp, LVCMOS, rev 1.0 5 / 30 July 19, 2002 SONY® RAM Symbol VDD VDDQ VSS TCK TMS TDI TDO MCL
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CXK79M72C161GB
CXK79M36C161GB
CXK79M18C161GB
256Kb
512Kb
CXK79M72C161GB
-10uA
-20uA
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1997 - Not Available
Abstract: No abstract text available
Text: 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A A1 A0 7 A A NC (x18) NC VDD VSS , (144M) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC (72M) A A 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A A1 A0 7 A A NC (x18) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS , 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCL MCL MCH MCH MCH MCL VDD MCL A A1 A0 7 A A A (x18) NC VDD VSS , / 30 July 19, 2002 SONY® RAM Symbol VDD VDDQ VREF VSS TCK TMS TDI TDO MCL MCH NC Input Input
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CXK79M72C160GB
CXK79M36C160GB
CXK79M18C160GB
256Kb
512Kb
CXK79M72C160GB
-10uA
-20uA
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1997 - 2U 73 diode
Abstract: CXK79M18C165GB CXK79M36C165GB CXK79M36C165GB-33 CXK79M36C165GB-4 CXK79M72C165GB CXK79M72C165GB-33 CXK79M72C165GB-4 CXK79M72C165GB-5
Text: DQb D DQg DQg VSS NC NC MCL NC NC VSS DQb DQb E DQg DQc , CQ2 CK NC VSS MCL VSS NC NC CQ1 CQ1 L DQh DQh VDDQ VDDQ VDD MCH VDD VDDQ VDDQ DQa DQa M DQh DQh VSS VSS VSS MCL VSS , DQa DQa P DQh DQh VSS VSS VSS MCL VSS VSS VSS DQa DQa R , VSS NC NC MCL NC NC VSS DQe DQe U DQd DQd NC A NC (72M
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CXK79M72C165GB
CXK79M36C165GB
CXK79M18C165GB
256Kb
512Kb
-10uA
-20uA
2U 73 diode
CXK79M18C165GB
CXK79M36C165GB
CXK79M36C165GB-33
CXK79M36C165GB-4
CXK79M72C165GB
CXK79M72C165GB-33
CXK79M72C165GB-4
CXK79M72C165GB-5
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1997 - CXK79M18C164GB
Abstract: CXK79M36C164GB CXK79M36C164GB-33 CXK79M36C164GB-4 CXK79M72C164GB CXK79M72C164GB-33 CXK79M72C164GB-4 CXK79M72C164GB-5
Text: DQb D DQg DQg VSS VREF NC MCL NC VREF VSS DQb DQb E DQg , CQ2 CQ2 CK CK VSS MCL VSS NC NC CQ1 CQ1 L DQh DQh VDDQ VDDQ VDD MCH VDD VDDQ VDDQ DQa DQa M DQh DQh VSS VSS VSS MCL , VDDQ DQa DQa P DQh DQh VSS VSS VSS MCL VSS VSS VSS DQa DQa , DQd VSS VREF NC MCL NC VREF VSS DQe DQe U DQd DQd NC A NC
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CXK79M72C164GB
CXK79M36C164GB
CXK79M18C164GB
256Kb
512Kb
-10uA
-20uA
CXK79M18C164GB
CXK79M36C164GB
CXK79M36C164GB-33
CXK79M36C164GB-4
CXK79M72C164GB
CXK79M72C164GB-33
CXK79M72C164GB-4
CXK79M72C164GB-5
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1997 - Not Available
Abstract: No abstract text available
Text: DQ DQ DQ DQ CQ2 NC NC NC NC NC DQ DQ DQ DQ 3 A MCL (2) NC VSS VDDQ VSS VDDQ VSS VDDQ CK VDDQ VSS VDDQ VSS VDDQ VSS NC A TMS 4 E2 NC MCL (2) VREF VDDQ VSS VDDQ VSS VDDQ CK VDDQ VSS VDDQ VSS VDDQ , 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCH MCL MCL MCH MCH MCL VDD MCL A A1 MCL (1) 7 A A NC (x18) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC (36M) A A 8 E3 MCL (2) NC VREF VDDQ VSS VDDQ VSS VDDQ NC VDDQ VSS VDDQ VSS VDDQ VREF A A TDO 9 A NC MCL (2) VSS VDDQ VSS VDDQ VSS VDDQ NC VDDQ VSS VDDQ
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CXK79M36C162GB
CXK79M18C162GB
512Kb
CXK79M36C162GB
-10uA
-20uA
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1997 - Not Available
Abstract: No abstract text available
Text: NC NC DQ DQ DQ DQ 3 A MCL (2) NC VSS VDDQ VSS VDDQ VSS VDDQ CK VDDQ VSS VDDQ VSS VDDQ VSS NC A TMS 4 E2 NC MCL (2) NC VDDQ VSS VDDQ VSS VDDQ NC VDDQ VSS VDDQ VSS VDDQ NC A A TDI 5 A A (x36) NC (144M) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC (72M) A A 6 ADV W E1 MCL VDD ZQ EP2 EP3 MCH MCL MCL MCH MCH MCL VDD MCL A A1 MCL (1) 7 A A NC (x18) NC VDD VSS VDD VSS VDD VSS VDD VSS VDD VSS VDD NC NC (36M) A A 8 E3 MCL (2) NC NC VDDQ VSS VDDQ VSS VDDQ NC VDDQ VSS VDDQ VSS VDDQ NC A A
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CXK79M36C163GB
CXK79M18C163GB
512Kb
CXK79M36C163GB
-10uA
-20uA
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1997 - CXK79M36C163GB
Abstract: CXK79M36C163GB-33 CXK79M36C163GB-4 CXK79M36C163GB-5
Text: 1T 30 DQ 10A 65 DQ 2U 31 MCL 9C 66 DQ 1U 32 MCL 8B 67 , NC A E2 A ADV A E3 A DQ DQ B NC NC MCL (2) NC A (x36) W A MCL (2) NC DQ DQ C NC NC NC MCL (2) NC (144M) E1 NC NC MCL (2) DQ DQ D NC NC VSS NC NC MCL NC NC VSS DQ DQ , CQ2 CQ2 CK NC VSS MCL VSS NC NC CQ1 CQ1 L NC NC VDDQ VDDQ
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CXK79M36C163GB
512Kb
CXK79M36C163GB
CXK79M36C163GB-33
CXK79M36C163GB-4
CXK79M36C163GB-5
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NN12
Abstract: P35-0702R
Text: control lines in accordance with the truth table below. The die is fabricated using MCL 's 0.5µm gate , 23 - dBm 0/-8V Control; 50MHz 24 25 - dBm 0/-8V Control; 2GHz 30 31 , subsidiary of Marconi plc MCL reserves the right to update or change this specification without notice , MCL reserves the right to update or change this specification without notice 463/SM/00022/200 Iss 1 , of Marconi Caswell Limited which is a wholly owned subsidiary of Marconi plc MCL reserves the
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P35-0702R
P35-0702R
463/SM/00022/200
NN12
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2002 - a7w29
Abstract: CXK79M36C163GB-33 CXK79M36C163GB-4 CXK79M36C163GB-5 CXK79M18C163GB CXK79M18C163GB-33 CXK79M18C163GB-4 CXK79M18C163GB-5 CXK79M36C163GB
Text: 11A 65 DQd 2U 31 MCL 9C 66 DQd 1U 32 MCL 8B 67 DQd 2V , A DQ DQ B NC NC MCL (2) NC A (x36) W A MCL (2) NC DQ DQ C NC NC NC MCL (2) NC (144M) E1 NC (x18) NC MCL (2) DQ DQ D NC NC VSS NC NC MCL NC NC V SS DQ DQ E NC DQ VDDQ VDDQ , MCL V SS NC NC CQ CQ L NC NC VDDQ VDDQ VDD M2 VDD VDDQ
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CXK79M36C163GB
CXK79M18C163GB
512Kb
CXK79M36C163GB
IDD-33
IDD-44
a7w29
CXK79M36C163GB-33
CXK79M36C163GB-4
CXK79M36C163GB-5
CXK79M18C163GB
CXK79M18C163GB-33
CXK79M18C163GB-4
CXK79M18C163GB-5
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2002 - CXK79M18C165GB
Abstract: CXK79M36C165GB CXK79M36C165GB-33 CXK79M36C165GB-4 CXK79M72C165GB CXK79M72C165GB-33 CXK79M72C165GB-4 CXK79M72C165GB-5
Text: DQb DQb D DQg DQg VSS NC NC MCL NC NC V SS DQb DQb E DQg , DQf DQf K CQ CQ CK NC V SS MCL V SS NC NC CQ CQ L DQh , VDD VDDQ VDDQ DQa DQa P DQh DQh VSS VSS V SS MCL V SS V SS V , DQe T DQd DQd VSS NC NC MCL NC NC V SS DQe DQe U DQd DQd , MCL NC NC V SS DQb DQb E NC DQc VDDQ VDDQ VDD VDD VDD VDDQ
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CXK79M72C165GB
CXK79M36C165GB
CXK79M18C165GB
256Kb
512Kb
IDD-33
IDD-44
CXK79M18C165GB
CXK79M36C165GB
CXK79M36C165GB-33
CXK79M36C165GB-4
CXK79M72C165GB
CXK79M72C165GB-33
CXK79M72C165GB-4
CXK79M72C165GB-5
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MCL 29
Abstract: NN12 P35-4211-0 P35-4211-1
Text: in accordance with the truth table below. This die is fabricated using MCL 's 0.5µm gate length , 0/-8V Control; 1GHz 30 31 - dBm 50% Control to 10%90%RF - 3 8 ns , which is a wholly owned subsidiary of Marconi plc MCL reserves the right to update or change this , MCL reserves the right to update or change this specification without notice 462/SM/00029/200 Iss 2 , MCL reserves the right to update or change this specification without notice 462/SM/00029/200 Iss 2
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P35-4211-0
P35-4211-0
462/SM/00029/200
MCL 29
NN12
P35-4211-1
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2002 - A7W17
Abstract: CXK79M18C161GB CXK79M36C161GB CXK79M36C161GB-33 CXK79M36C161GB-4 CXK79M72C161GB CXK79M72C161GB-4 CXK79M72C161GB-5 1K x 8 static ram IDD24
Text: DQg DQg VSS NC NC MCL NC NC V SS DQb DQb E DQg DQc VDDQ , CQ CK NC V SS MCL V SS NC NC CQ CQ L DQh DQh VDDQ VDDQ , DQa DQa P DQh DQh VSS VSS V SS MCL V SS V SS V SS DQa DQa R , VSS NC NC MCL NC NC V SS DQe DQe U DQd DQd NC A NC (72M , ) E1 NC (x18) NC BWa DQb DQb D NC NC VSS NC NC MCL NC NC
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CXK79M72C161GB
CXK79M36C161GB
CXK79M18C161GB
256Kb
512Kb
IDD-33
IDD-44
A7W17
CXK79M18C161GB
CXK79M36C161GB
CXK79M36C161GB-33
CXK79M36C161GB-4
CXK79M72C161GB
CXK79M72C161GB-4
CXK79M72C161GB-5
1K x 8 static ram
IDD24
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W82C620
Abstract: W81C180 100S 80C51 V33D
Text: GND12 D1P D1M VSS MDA MCL NINT 32 30 5 25 10 20 15 16 17 PIN DESCRIPTION , I/OD Enabled when valid data is received or a port changed occurred.(open drain) 18 MCL , 30 D4M UI/O USB downstream port4, negative connection 31 D4P UI/O USB downstream , initiates the communication with a start condition (MDA from 1 change to 0 while MCL =1) and the W81C180's address. The uC ends the transmission with a stop condition (MDA from 0 change to 1 while MCL =1). Data is
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W81C180
W81C180
12Mhz)
GND12
GND34
80C51
W82C620
100S
80C51
V33D
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2002 - CXK79M18C162GB
Abstract: CXK79M18C162GB-33 CXK79M18C162GB-4 CXK79M18C162GB-5 CXK79M36C162GB CXK79M36C162GB-33 CXK79M36C162GB-4 CXK79M36C162GB-5 AA119
Text: DQd 1T 30 DQb 11A 65 DQd 2U 31 MCL 9C 66 DQd 1U 32 MCL , A E3 A DQ DQ B NC NC MCL (2) NC A (x36) W A MCL (2) NC DQ DQ C NC NC NC MCL (2) NC (144M) E1 NC (x18) NC MCL (2) DQ DQ D NC NC VSS VREF NC MCL NC VREF V SS DQ DQ E NC DQ , V SS MCL V SS NC NC CQ CQ L NC NC VDDQ VDDQ VDD M2 VDD
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CXK79M36C162GB
CXK79M18C162GB
512Kb
CXK79M36C162GB
IDD-33
IDD-44
CXK79M18C162GB
CXK79M18C162GB-33
CXK79M18C162GB-4
CXK79M18C162GB-5
CXK79M36C162GB-33
CXK79M36C162GB-4
CXK79M36C162GB-5
AA119
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2002 - CXK79M72C164GB-33
Abstract: CXK79M18C164GB CXK79M36C164GB CXK79M36C164GB-33 CXK79M36C164GB-4 CXK79M72C164GB CXK79M72C164GB-4 CXK79M72C164GB-5
Text: BWa DQb DQb D DQg DQg VSS VREF NC MCL NC VREF V SS DQb DQb , VDDQ DQf DQf K CQ CQ CK CK V SS MCL V SS NC NC CQ CQ L , MCH VDD VDDQ VDDQ DQa DQa P DQh DQh VSS VSS V SS MCL V SS V , DQa DQe T DQd DQd VSS VREF NC MCL NC VREF V SS DQe DQe U , VREF NC MCL NC VREF V SS DQb DQb E NC DQc VDDQ VDDQ VDD VDD
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CXK79M72C164GB
CXK79M36C164GB
CXK79M18C164GB
256Kb
512Kb
IDD-33
IDD-44
CXK79M72C164GB-33
CXK79M18C164GB
CXK79M36C164GB
CXK79M36C164GB-33
CXK79M36C164GB-4
CXK79M72C164GB
CXK79M72C164GB-4
CXK79M72C164GB-5
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2002 - A7W17
Abstract: CXK79M18C160GB CXK79M36C160GB CXK79M36C160GB-33 CXK79M36C160GB-4 CXK79M72C160GB CXK79M72C160GB-33 CXK79M72C160GB-4 CXK79M72C160GB-5 2a 105
Text: DQg DQg VSS VREF NC MCL NC VREF V SS DQb DQb E DQg DQc VDDQ , CQ CK CK V SS MCL V SS NC NC CQ CQ L DQh DQh VDDQ VDDQ , DQa DQa P DQh DQh VSS VSS V SS MCL V SS V SS V SS DQa DQa R , VSS VREF NC MCL NC VREF V SS DQe DQe U DQd DQd NC A NC (72M , ) E1 NC (x18) NC BWa DQb DQb D NC NC VSS VREF NC MCL NC VREF
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CXK79M72C160GB
CXK79M36C160GB
CXK79M18C160GB
256Kb
512Kb
IDD-33
IDD-44
A7W17
CXK79M18C160GB
CXK79M36C160GB
CXK79M36C160GB-33
CXK79M36C160GB-4
CXK79M72C160GB
CXK79M72C160GB-33
CXK79M72C160GB-4
CXK79M72C160GB-5
2a 105
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1997 - CXK79M72C165GB-4
Abstract: CXK79M36C165GB CXK79M36C165GB-3 CXK79M36C165GB-33 CXK79M72C165GB CXK79M72C165GB-3 CXK79M72C165GB-33
Text: Be Ba DQb DQb D DQg DQg VSS NC NC MCL NC NC VSS DQb DQb , DQf DQf K CQ2 CQ2 CK NC VSS MCL VSS NC NC CQ1 CQ1 L DQh , VSS VSS MCL VSS VSS VSS DQa DQa N DQh DQh VDDQ VDDQ VDD MCH VDD VDDQ VDDQ DQa DQa P DQh DQh VSS VSS VSS MCL VSS VSS VSS , DQd DQd VSS NC NC MCL NC NC VSS DQe DQe U DQd DQd NC A
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CXK79M72C165GB
CXK79M36C165GB
256Kb
512Kb
CXK79M72C165GB
IDD2-33
250mA
280mA
CXK79M72C165GB-4
CXK79M36C165GB
CXK79M36C165GB-3
CXK79M36C165GB-33
CXK79M72C165GB-3
CXK79M72C165GB-33
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1997 - CXK79M36C161GB
Abstract: CXK79M36C161GB-33 CXK79M36C161GB-4 CXK79M36C161GB-5 CXK79M72C161GB CXK79M72C161GB-4 CXK79M72C161GB-5 diode 2U 6A
Text: MCL NC NC VSS DQb DQb E DQg DQc VDDQ VDDQ VDD VDD VDD VDDQ , VDD MCL VDD VDDQ VDDQ DQf DQf K CQ2 CQ2 CK NC VSS MCL VSS , VSS VSS MCL VSS VSS VSS DQa DQa R DQd DQh VDDQ VDDQ VDD VDD VDD VDDQ VDDQ DQa DQe T DQd DQd VSS NC NC MCL NC NC VSS , NC NC MCL NC NC VSS DQb DQb E NC DQc VDDQ VDDQ VDD VDD
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CXK79M72C161GB
CXK79M36C161GB
256Kb
512Kb
CXK79M72C161GB
CXK79M36C161GB
CXK79M36C161GB-33
CXK79M36C161GB-4
CXK79M36C161GB-5
CXK79M72C161GB-4
CXK79M72C161GB-5
diode 2U 6A
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