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ASGTX-EVAL Abracon Corporation EVAL BOARD FOR ASGTX SERIES
CVCO55CC-0827-0840 Crystek Corporation Oscillator, 827MHz Min, 840MHz Max, 840MHz Nom,
ASGTX-D-51.840MHZ-1-T2 Abracon Corporation LVDS Output Clock Oscillator, 51.84MHz Nom, SMD, 6 PIN
ASGTX-P-51.840MHZ-2-T Abracon Corporation OSC VCTCXO 51.84MHZ LVPECL SMD
ASGTX-D-51.840MHZ-2-T2 Abracon Corporation LVDS Output Clock Oscillator, 51.84MHz Nom, SMD, 6 PIN
ASGTX-C-51.840MHZ-1 Abracon Corporation LVCMOS Output Clock Oscillator, 51.84MHz Nom, SMD, 6 PIN
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ASGTX-C-51.840MHZ-2-T Abracon Corporation Avnet - $28.49 $16.29
ASGTX-C-51.840MHZ-2-T Abracon Corporation Allied Electronics & Automation - $36.88 $35.03
ASGTX-C-51.840MHZ-2-T Abracon Corporation Sager - - -
ASGTX-C-51.840MHZ-2-T2 Abracon Corporation Avnet - $41.99 $38.39
ASGTX-C-51.840MHZ-2-T2 Abracon Corporation Allied Electronics & Automation - $54.17 $51.46
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ASGTX-C-51.840MHZ-2-T datasheet (2)

Part Manufacturer Description Type PDF
ASGTX-C-51.840MHZ-2-T Abracon Oscillators, Crystals and Oscillators, OSC VCTCXO 51.84 MHZ 3.3V SMD Original PDF
ASGTX-C-51.840MHZ-2-T2 Abracon Oscillators, Crystals and Oscillators, OSC VCTCXO 51.84 MHZ 3.3V SMD Original PDF

ASGTX-C-51.840MHZ-2-T Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2001 - ST 24C256

Abstract: m24c256 eeprom 24c64 93c46 rotated at24C02d eeprom Cross Reference AT24c32d AT24C21 atmel 93c56 93C66 national semiconductor
Text: , A1 and A2. These pins have no internal connection.) 128 24C00 T - t / p 128 24LC00 T - t / p 1K 24AA01 T - t / p AT24C01-10-pt-v T CAT24WC01-pt-v T 1K 24C01B T - t / p PCA8581-p 1K 24LC01B T - t / p PCA8581C-p 1K 24C01C T - t / p AT24C01A-10-pt-v T CAT24WC01-pt-v T PCA8581-p 1K 24LC014 T - t / p AT24C01A-10-pt-v T CAT24WC01-pt-v T PCA8581C-p 1K 24LC21 T - t / p AT24C21-10-pt-v T PCB2421C-p 1K 24LC21A T - t / p 1K 24LCS21 T - t / p 1K 24LCS21A T - t / p 2K 24AA02 T - t / p AT24C02d-10-pt-v T CAT24WC02-pt-v T 2K 24C02B T


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PDF OT-23 24C00 24LC00 24AA01 AT24C01-10-pt-v CAT24WC01-p1-80-2290-061 DS21621A DS21621A* ST 24C256 m24c256 eeprom 24c64 93c46 rotated at24C02d eeprom Cross Reference AT24c32d AT24C21 atmel 93c56 93C66 national semiconductor
PDSP2110

Abstract: No abstract text available
Text: (For Yellow Only) 1 0.209 (5.31) — 1 1 t t t i 11 i n I i r n FEATURES • Eight 0.200â , . -40°C to +100°C Maximum Solder Temperature 0.063” below seating plane, t <5 s e c , US C1 C2 C3 C4 C5 F¡r 0.030 (0.76) Typ. R2 t R3 R4 0.01 (0.254) R5 i , intensity is meaaured at Ta = T j = 25°C. No time is allowed for the device to warm up prior to measurement , /2/3/4 2 -1 2 4 Character Set ROM Page 1 (D7 = 0) D O 0 1 0 t A C S II D 1


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PDF PDSP2110 PDSP2111 PDSP2112 PDSP2113 PDSP2114 PDSP2110/1/2/3/4 PDSP2110
Not Available

Abstract: No abstract text available
Text: TOSHIBA TMP47C231A/931A C M O S 4-BIT M I C R O C O N T R O L L E R TMP47C231 AN T h e 4 7 C 2 3 1 A is t h e h i g h s p e e d a n d h i g h p e r f o r m a n c e 4 - b i t s i n g l e c h i p m i c r o c o m p u t e r b a s e d o n t h e T L C S - 4 7 C M O S s e r ie s , r e m o t e c o n t r o l s i g n a l p r e p r o c e s s o r , A /D c o n v e rte r i n p u t f o r AFC s ig n a l o r key in p u t , c o n v e r t e r (P ulse W i d t h M o d u l a t i o n ) o u t p u t , a n


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PDF TMP47C231A/931A TMP47C231
1996 - 1501-12

Abstract: ac 1501-12 V53C664H
Text: 6 4 A H PKG. SPEED ( t RAC ) DEVICE K (SOJ) Description Pkg. K BLANK (0°C to , , Operating 160 150 140 mA t RC = tRC (min.) 2.0 mA RAS,CAS at VIH other inputs VSS , , RAS-Only Refresh 50 55 60 160 150 140 mA t RC = tRC (min.) 2 VDD Supply Current , 50 Symbol Parameter 55 60 Min. Max. Min. Max. Min. Max. Unit Notes 32 t DVWL2 tDS Data-In Set-Up Time 0 - 0 - 0 - ns 14 33 t WL1DX tDH Data-In Hold Time


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PDF V53C664H V53C664H 16-bit 1501-12 ac 1501-12
1997 - TT 2170

Abstract: DH 40 74LVT16244 HB56UW1672E-6A HB56UW1672E-7A
Text: Test Conditions Operating current* , * 2 I CC1 - 2350 - 1990 mA t RC = min , 2350 - 1990 mA t RC = min Standby current* I CC5 - 100 - 100 mA , 1900 mA t RC = min EDO page mode current*1, * 3 I CC7 - 2170 - 1900 mA t HPC = min Input leakage current I LI ­10 10 ­10 10 µA 0 V Vin 4.6 , Max Min Max Unit Random read or write cycle time t RC 104 - 124 - ns


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PDF HB56UW1672E 16777216-word 72-bit ADE-203-683A 64-Mbit HM5164405ATT) 16-bit 74LVT16244) TT 2170 DH 40 74LVT16244 HB56UW1672E-6A HB56UW1672E-7A
1997 - HM51W16400BLS-6

Abstract: HM51W16400BLS-7 HM51W16400BLS-8 HM51W16400BS-6 HM51W16400BS-7 HM51W16400BS-8 HM51W16400BTS-6 HM51W16400BTS-7 Hitachi DSA0015
Text: I CC1 - 80 - 70 - 65 mA t RC = min Standby current I CC2 - 2 , Unit Test Conditions I CC3 - 80 - 70 - 65 mA t RC = min I CC5 - , 70 - 65 mA t RC = min Fast page mode current *1, *3 I CC7 - 70 - 60 - 50 mA t PC = min Battery backup current (Standby by with CBR refresh) (L-version , : tRC = 31.3 µs t RAS 0.3 µs Self refresh mode current (L-version) I CC11 - 200 -


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PDF HM51W16400B 304-Word ADE-203-368A mW/252 mW/234 HM51W16400BS/BLS HM51W16400BLS-6 HM51W16400BLS-7 HM51W16400BLS-8 HM51W16400BS-6 HM51W16400BS-7 HM51W16400BS-8 HM51W16400BTS-6 HM51W16400BTS-7 Hitachi DSA0015
1996 - HM514405C

Abstract: HM514405CS-6 HM514405CS-7 HM514405CS-8 HM514405CTT-6 HM514405CTT-7 HM514405CTT-8
Text: HM514405C Series Timing Waveforms*24 Read Cycle t RC t RAS RAS tT t RP t CRP t RSH t CAS t CSH t RCD CAS t RAD t ASR Address t RAL t CAH t RAH t ASC Row Column t RCHA t CAL t RCS t OHR t RCHR t RCHC t OFR t CAC t AA t OFF1 Dout Dout t RAC t OFF2 t DZC t OAC t CDD t WEZ High-Z Din t WDD t ODD t DZO t OEP 12 t RCH t RRH WE OE t RDD t OH HM514405C Series Early Write Cycle t RC t RAS RAS t


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PDF HM514405C 576-word ADE-203-259A 300-mil 26-pin HM514405CS-6 HM514405CS-7 HM514405CS-8 HM514405CTT-6 HM514405CTT-7 HM514405CTT-8
1997 - HM51W17800J-5

Abstract: HM51W17800J-6 HM51W17800J-7 HM51W17800LJ-5 HM51W17800S-5 HM51W17800S-6 HM51W17800S-7 Hitachi DSA0015
Text: conditions Operating current* * I CC1 - 110 - 100 - 90 mA t RC = min Standby , t RC = min Standby current* I CC5 - 5 5 5 mA RAS = VIH CAS = VIL Dout = enable CAS-before-RAS refresh current I CC6 - 110 - 100 - 90 mA t RC = min Fast page mode current*1, *3 I CC7 - 100 - 90 85 mA t PC = min Battery backup , interface Dout = High-Z CBR refresh: tRC = 62.5 µs t RAS 0.3 µs Self refresh mode current (L-version


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PDF HM51W17800 152-word ADE-203-664C 28-pin ns/60 HM51W17800J-5 HM51W17800J-6 HM51W17800J-7 HM51W17800LJ-5 HM51W17800S-5 HM51W17800S-6 HM51W17800S-7 Hitachi DSA0015
S M T209

Abstract: bird sound door bell t449 t418 T328 T125 liang ji T474 T431 t469 T456
Text: PIEZO B. LEVEL HOLD MODE FOR SPEAKER M 6 6 / M 67 2 BATTERY T 1 2V - 3.6V + " IO u F Vss 3 Vda Outpul 1 , NO. M66/ T -01S M66/ T -02 M66/ T -03 M66/ T -04 M66/ T -05B M66/ T -06 M66/ T -08 M 66/ T -11 M66/ T -17 M 66/ T -18 M 66/Ï-30 M 66/ T -31 M66/ T -32A M66/ T -33 M66/ T -34 M66/ T -35 M66/ T -36 M66/ T -37 M66/ T -39A M66/ T -41 M66/ T -42 M66/ T -44 M66/ T -45 M66/ T -46 M66/ T -48 M66/ T -49 M66/ T -50 M 66/ T -51 M66/ T -52 M66/ T -54 M66/ T -56 M66/ T -58 M 66/ T -61 M66/ T -65 M66/ T -68 M66/ T -7I M66/ T -72 M66/ T -73 M66/ T -79 M66/ T -80 M66/ T -81 M66/ T -83 M66/ T -84 M66


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PDF M66/T-01S M66/T-02 M66/T-03 M66/T-04 M67/T-01 M67/T-01S M67/T-47 M67/T-77 67/T-115 M67/T-204 S M T209 bird sound door bell t449 t418 T328 T125 liang ji T474 T431 t469 T456
2003 - HM51W17800J-6

Abstract: HM51W17800J-7 HM51W17800LS-6 HM51W17800LS-7 HM51W17800S-6 HM51W17800S-7 HM51W17800TT-6
Text: 100 - 90 mA t RC = min Standby current I CC2 - 2 - 2 mA TTL , High-Z I CC3 - 100 - 90 mA t RC = min Standby current* I CC5 - 5 , - 100 - 90 mA t RC = min Fast page mode current*1, * 3 I CC7 - 90 - 85 mA t PC = min Battery backup current (Standby with CBR refresh) (L-version) I CC10 - 400 - 400 µA CMOS interface Dout = High-Z CBR refresh: tRC = 62.5 µs t RAS 0.3


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PDF HM51W17800 ADE-203-664E 152-word 28-pin ns/70 mW/324 HM51W17800J-6 HM51W17800J-7 HM51W17800LS-6 HM51W17800LS-7 HM51W17800S-6 HM51W17800S-7 HM51W17800TT-6
Hitachi DSA00776

Abstract: HM5164165AJ-5 HM5164165AJ-6 HM5164165AJ-7 HM5164165ALJ-5 HM5164165ALJ-6
Text: Read cycle (Output disabled) Notes: 1. H: High (inactive) L: Low (active) D: H or L 2. t WCS 0 ns Early write cycle t WCS < 0 ns Delayed write cycle 3. Mode is determined by the OR function of the , Max Min Max Unit Test conditions I CC1 - TBD - 140 - 120 mA t RC = min , High-Z ICC3 - TBD - 140 - 120 mA t RC = min Standby current* I CC5 - , current ICC6 - TBD - 150 - 130 mA t RC = min EDO page mode current*1, * 3 I


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PDF HM5164165A HM5165165A 4194304-word 16-bit ADE-203-453 304-word 16-bit. Hitachi DSA00776 HM5164165AJ-5 HM5164165AJ-6 HM5164165AJ-7 HM5164165ALJ-5 HM5164165ALJ-6
115M1

Abstract: D3V-016M-1 D3V-016M-2 D3V-016-2 11G22 11G21 115M3 D3V-015M-1 6G51 ot 112
Text: roller lever 8. Special Code T : High temperature (200°C and 155°C) 9. Mounting Hole Size , D3V-111-3 5- T - D3V-111M-1 5- T - D3V-111M-2 5- T - D3V-111M-3 5- T - D3V-112-1 5- T - D3V-112-2 5- T - D3V-112-3 5- T - D3V-112M-1 5- T - D3V-112M-2 5- T - D3V-112M-3 5- T - D3V-113-1 5- T - D3V-113-2 5- T - D3V-113-3 5- T - M D3V-113M-1 5- T - D3V-113M-2 5- T - D3V-113M-3 5- T - Internal D3V-114-1 5- T - D3V-114-2 5- T - D3V-114-3 5- T - M D3V-114M-1 5- T - D3V-114M-2 5- T


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PDF EN61058-1 UL1054 D3V-116M-1 D3V-66M-1 D3V-11G6M-1 D3V-016M-1 115M1 D3V-016M-2 D3V-016-2 11G22 11G21 115M3 D3V-015M-1 6G51 ot 112
TE 555-4

Abstract: No abstract text available
Text: /l 0© © ® © © o u Q N CD Cl O C7 Q N T T T T —1 —i T CO T T T —1 —i T CO T T T —1 —l T T T T T —1 —l T T T T T —1 —i T CO T T T CD —1 CL O C7 Q N i T z ^ o 50 - A WW — © £7 O . 7 O J *»r © n “0 T T Tl T © LO —i T T T T T —1 n “0 T T T


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PDF SD-5554 WRI77EN TE 555-4
1997 - Hitachi DSA00164

Abstract: No abstract text available
Text: disabled) Notes: 1. H: High (inactive) L: Low (active) D: H or L 2. t WCS 0 ns Early write cycle t , 170 - 150 mA t RC = min I CC2 - 2 - 2 mA TTL interface RAS, UCAS , Unit Test conditions I CC3 - 170 - 150 mA t RC = min I CC5 - 5 , t RC = min EDO page mode current*1, * 3 I CC7 - 165 - 145 mA t HPC = min , CMOS interface Dout = High-Z CBR refresh: tRC = 125 µs t RAS 0.3 µs Self refresh mode current


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PDF HM5118165I 1048576-word 16-bit ADE-203-754A 576-word 16-bit. 42-pin ns/70 Hitachi DSA00164
1997 - Hitachi DSA00164

Abstract: Nippon capacitors
Text: conditions Notes Operating current I CC1 - 944 - 864 - 784 mA t RC = min 1, 2 , High-Z RAS-only refresh current I CC3 - 944 - 864 - 784 mA t RC = min 2 , CAS-before-RAS refresh current I CC6 - 944 - 864 - 784 mA t RC = min Fast page mode current I CC7 - 864 - 784 - 744 mA t PC = min Input leakage current I LI ­10 , Min Max Unit Random read or write cycle time t RC 90 - 110 - 130 -


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PDF HB56A264EJ-5/6/7 152-word 64-bit ADE-203-740A HB56A264EJ 16-Mbit HM5117800) 16-bit 74ABT16244) Hitachi DSA00164 Nippon capacitors
2002 - M/76952

Abstract: No abstract text available
Text: AREA 8.3 +0.2 -0 RECOMMENDED P.C. BOARD LAYOUT (COMPONENT SIDE) M 34 ELCO P T , 8071 Variation Code Side View Pin Loading 3.0 13.45 003 25 T T T T T T T T T T T T T T T T T T T T T T T T T Long Tail T T T T T T T T T T T T T T T T T T T T T T T T T L2, 3 15.4 3.0 13.45 004 25 T M M M M M T Long Tail T M M M M M T T M M M M M T T M M M M M T T M M M M M T T M M M M M T T M M M M M T


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PDF
1997 - 5165165

Abstract: Nippon capacitors
Text: time -6A/-6AL 0 0 1 1 1 1 0 0 3C t RAC = 60 ns RAS access time -7A/-7AL 0 1 0 0 0 1 1 0 46 t RAC = 70 ns CAS access time -6A/-6AL 0 0 0 0 1 1 1 1 0F t CAC = 15 ns CAS access time -7A/-7AL 0 0 0 1 0 0 1 0 12 t CAC = 18 ns 11 Module configuration type 0 0 0 0 , mA t RC = min Standby current I CC2 - 8 - 8 mA TTL interface RAS, CAS =


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PDF HB56HW465DB-A 4196304-word 64-bit ADE-203-829A 64-Mbit HM5165165A/AL) 24C02) HB56HW465DB-A 5165165 Nippon capacitors
1997 - HB56UW264DB-6L

Abstract: 24C02 Hitachi DSA00200 HM51W17805 HB56UW264DB-7L HB56UW264DB-7 HB56UW264DB-6 HB56UW264DB-5L HB56UW264DB-5 Nippon capacitors
Text: (+) 8 Module i t erfac e signal lev els 0 n 0 0 0 0 0 0 1 01 LVTTL 9 RAS access time -5/-5L 0 0 1 1 0 0 1 0 32 t RAC = 50 ns -6/-6L 0 0 1 1 1 1 0 0 3C t RAC = 60 ns -7/-7L 0 1 0 0 0 1 1 0 46 t RAC = 70 ns 0 0 0 0 1 1 0 1 0D t CAC = 13 ns -6/-6L 0 0 0 0 1 1 1 1 0F t CAC = 15 ns -7/-7L 0 0 0 1


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PDF HB56UW264DB 64-bit, ADE-203-735C 16-Mbit HM51W17805) 24C02) 144-pin HB56UW264DB-6L 24C02 Hitachi DSA00200 HM51W17805 HB56UW264DB-7L HB56UW264DB-7 HB56UW264DB-6 HB56UW264DB-5L HB56UW264DB-5 Nippon capacitors
1997 - Nippon capacitors

Abstract: No abstract text available
Text: 1990 - 1720 mA t RC = min Standby current I CC2 - 82 - 82 mA TTL , 0.2 V Dout = High-Z I CC3 - 1990 - 1720 mA t RC = min Standby current* I , current I CC6 - 2620 - 2260 mA t RC = min Fast page mode current*1, * 3 I CC7 - 1540 - 1360 mA t PC = min Input leakage current I LI ­10 10 ­10 , 70 ns Parameter Symbol Min Max Min Max Unit Random read or write cycle time t


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PDF HB56AW3272E-A 33554432-word 72-bit ADE-203-830A 64-Mbit HM5164400A) 16-bit 74LVT16244) Nippon capacitors
1997 - Hitachi DSA00164

Abstract: No abstract text available
Text: Read cycle (Output disabled) Notes: 1. H: High (inactive) L: Low (active) D: H or L 2. t WCS 0 ns Early write cycle t WCS < 0 ns Delayed write cycle 3. Mode is determined by the OR function of the , CC1 - 200 - 170 - 150 mA t RC = min I CC2 - 2 - 2 - 2 mA , t RC = min Standby current* I CC5 - 5 5 5 RAS = VIH, UCAS, LCAS = VIL Dout = enable CAS-before-RAS refresh current I CC6 - 190 - 170 - 150 mA t RC = min


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PDF HM5118165 16-bit) ADE-203-636D 576-word 16-bit. 42-pin 50-pin ns/60 Hitachi DSA00164
2003 - HM5118165

Abstract: HM5118165J-5 HM5118165J-6 HM5118165J-7 HM5118165LJ-5 HM5118165LJ-6 HM5118165LJ-7 HM5118165TT-5 HM5118165TT-6
Text: ) Notes: 1. H: High (inactive) L: Low (active) D: H or L 2. t WCS 0 ns Early write cycle t WCS < 0 ns , Test conditions I CC1 - 200 - 170 - 150 mA t RC = min I CC2 - 2 - , Min Max Min Max Min Max Unit Test conditions I CC3 - 200 - 170 - 150 mA t RC = , CAS-before-RAS refresh current I CC6 - 190 - 170 - 150 mA t RC = min EDO page mode current*1, * 3 I CC7 - 185 - 165 - 145 mA t HPC = min RAS-only refresh current* 2


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PDF HM5118165 16-bit) ADE-203-636D 576-word 16-bit. 42-pin 50-pin ns/60 HM5118165J-5 HM5118165J-6 HM5118165J-7 HM5118165LJ-5 HM5118165LJ-6 HM5118165LJ-7 HM5118165TT-5 HM5118165TT-6
1997 - HM51W17805BJ-6

Abstract: HM51W17805BJ-7 HM51W17805BJ-8 HM51W17805BLJ-6 HM51W17805BLJ-7 HM51W17805BLJ-8 HM51W17805BS-6 HM51W17805BS-7 Hitachi DSA0015
Text: Operating current I CC1 - 120 - 110 - 100 mA t RC = min Standby current I CC2 , High-Z RAS-only refresh current*2 I CC3 - 120 - 110 - 100 mA t RC = min I CC5 , t RC = min I CC7 - 120 - 110 - 100 mA t HPC = min Battery backup current , Dout = High-Z CBR refresh: tRC = 62.5 µs t RAS 0.3 µs Self refresh mode current (L-version) I , Max Unit Notes Random read or write cycle time t RC 104 - 124 - 144 -


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PDF HM51W17805B 152-word ADE-203-462B 28-pin ns/70 HM51W17805BJ-6 HM51W17805BJ-7 HM51W17805BJ-8 HM51W17805BLJ-6 HM51W17805BLJ-7 HM51W17805BLJ-8 HM51W17805BS-6 HM51W17805BS-7 Hitachi DSA0015
2001 - 17805

Abstract: ct rac 70 HM51W17805 HM51W17805J-5 HM51W17805J-6 HM51W17805LS-6
Text: Test conditions Operating current I CC1 - 110 - 100 - 90 mA t RC = min , - 90 mA t RC = min I CC5 - 5 5 5 mA RAS = VIH, CAS = VIL Dout = enable CAS-before-RAS refresh current I CC6 - 110 - 100 - 90 mA t RC = min EDO page mode current*1, *3 I CC7 - 100 - 90 85 mA t HPC = min Battery , CMOS interface Dout = High-Z CBR refresh: t RC = 62.5 µs t RAS 0.3 µs Self refresh mode current


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PDF E0155H10 ADE-203-631D HM51W17805 HM51W 152-w 28-pin ns/60 17805 ct rac 70 HM51W17805J-5 HM51W17805J-6 HM51W17805LS-6
2001 - Not Available

Abstract: No abstract text available
Text: conditions I CC1 — 110 — 100 — 90 mA t RC = min I CC2 — 2 — 2 , — 90 mA t RC = min I CC5 — 5 5 5 mA RAS = VIH CAS = VIL Dout = enable CAS-before-RAS refresh current I CC6 — 110 — 90 mA t RC = min EDO page mode current* 1, * 3 I CC7 — 85 mA t HPC = min Battery backup current* 4 , refresh: t RC = 62.5 µs t RAS ≤ 0.3 µs CMOS interface RAS, CAS ≤ 0.2V Dout = High-Z ct


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PDF E0156H10 ADE-203-630D HM5117805 152-w 28-pin ns/60
Not Available

Abstract: No abstract text available
Text: implementation as easy as it is cost-effective. esigners ar e turning to innovative architectures to e x t e n d t h e p e r f o r m a n c e o f c o m p u t e r system s. P ip e lin in g is o n e o f these i n n o v a t i o n s . In p ip elin e a r c h i t e c t u r e s , d a t a is b u f f e r e d t e m p o r a r i l y b e tw e e n a s y s t e m 's p r o c e s s i n g e l e m e n t s . T h is allo w s th ese p r o c e s s i n g e l e m e n t s to w o r k m o r e efficien tly . Since d a t a t r a n s f e r s


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PDF AR-154 1111A
Supplyframe Tracking Pixel