T73LVP23
Abstract: T73LVP23S1 T73LVP23S1X T73LVP23S2 T73LVP23S2X
Text: Advance Information T73LVP23 Dual LVPECL to TTL/CMOS Translator GENERAL DESCRIPTION FEATURES The TLSI T73LVP23 is a general purpose dual differential LVPECL Positive ECL to TTL/CMOS translator operating from a single 3.3V supply. An 8-pin SOIC package makes it
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T73LVP23
T73LVP23
T73LVP23S1
T73LVP23S1X
T73LVP23S2
T73LVP23S2X
T73LVP23/D
T73P23S1
T73LVP23S1
T73LVP23S1X
T73LVP23S2
T73LVP23S2X
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T73LVP22
Abstract: T73LVP22S1 T73LVP22S1X
Text: Advanced Information T73LVP22 Dual TTL to Differential LVPECL Translator Applications • Clock and Data Translation Ideal for use where space is a premium General Description The TLSI T73LVP22 is a general purpose Dual TTL CMOS to differential LVPECL translator operating
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T73LVP22
T73LVP22
350pS
750mV
MDST-0014-00
T73LVP22S1
T73LVP22S1X
T73P22S1
T73LVP22S1
T73LVP22S1X
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T73LVP20
Abstract: T73LVP20S1 T73LVP20S1X T73LVP20S2 T73LVP20S2X
Text: Preliminary Information T73LVP20 TTL to Differential LVPECL Translator Applications • • • • Clock and Data Level Translation Ideal for use where space is a premium Mass Storage Base Stations Central Office Clock Distribution General Description The TLSI T73LVP20 is a general purpose TTL CMOS to differential LVPECL translator operating from a
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T73LVP20
T73LVP20
350pS
750mV
MDST-0014-00
T73LVP20S1
T73LVP20S1X
T73LVP20S2
T73LVP20S2X
T73LVP20S1
T73LVP20S1X
T73LVP20S2
T73LVP20S2X
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T73LVP10S2X
Abstract: T73LVP10 T73LVP10S1X T73LVP10S2
Text: Preliminary Information T73LVP10 TTL to Differential LVPECL Translator Applications • PECL clock source General Description The TLSI T73LVP10 is a general purpose TTL CMOS to differential LVPECL translator operating from a single 3.3V supply. The device accepts LVTTL or LVCMOS input and provides differential LVPECL outputs
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T73LVP10
T73LVP10
350pS
Assignm50mV
MDST-0014-00
T737LVP10S1
T73LVP10S1X
T73LVP10S2
T73LVP10S2X
T73LVP10S2X
T73LVP10S1X
T73LVP10S2
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T73LVP21
Abstract: T73LVP21S1 T73LVP21S1X T73LVP21S2 T73LVP21S2X TLSI
Text: Advance Information T73LVP21 LVPECL to TTL/CMOS Translator GENERAL DESCRIPTION The TLSI T73LVP21 is a general purpose differential LVPECL Positive ECL to TTL/CMOS translator operating from a single 3.3V supply. Both small outline 6-pin SOT and 8-pin SOIC packages make it ideal for applications
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T73LVP21
T73LVP21
T73LVP21can
T73LVP21S1
T73LVP21S1X
T73LVP21S2
T73LVP21S2X
T73LVP21/D
T73P21S1
T73LVP21S1
T73LVP21S1X
T73LVP21S2
T73LVP21S2X
TLSI
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T310
Abstract: T310-T T310-DP T310-DW T310-TR
Text: T310 On Screen Display Mixer P R E L I M I N A R Y GENERAL DESCRIPTION FEATURES TLSI’s family of Video Circuits is ideally suited for • Transparent Mode a wide range of applications in which cost, size, • Programmable Gain and Offset power and the number of discrete components
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symbol of varactor diode and equivalent circuit
Abstract: ic number of varactor diode testing of varactor diode T231-DPW T231 T231-DIE T231-M10 T231-S14 varactor diode parameter Y704
Text: T231 VCXO Clock Generator IC 100 MHz to 200 MHz P R E L I M I N A R Y GENERAL DESCRIPTION FEATURES TLSI’s family of VCXO Clock Generators is ideally • Fundamental Crystal Frequency suited for a wide range of applications in which cost, • Supply Voltage 3.0V to 5.5V
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symbol of varactor diode and equivalent circuit
Abstract: crystal diode 043 T228-1S14-TR T228-2S8-T xtl1 T228-2 1s14 T228-1S8-TR T228-1 T228-1D-W
Text: T 228 -1, T2 28 -2 VCXO Clock Generator IC 0.5 MHz to 70 MHz P R E L I M I N A R Y GENERAL DESCRIPTION FEATURES TLSI’s family of CMOS VCXO Clock Generators is • Crystal Frequency Range 8 MHz to 70 MHz ideally suited for a wide range of applications in
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T228-1
T228-1S8-T
T228-1S8-TR
T228-1S14-T
14-Pin
T228-1S14-TR
symbol of varactor diode and equivalent circuit
crystal diode 043
T228-1S14-TR
T228-2S8-T
xtl1
T228-2
1s14
T228-1S8-TR
T228-1
T228-1D-W
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symbol of varactor diode and equivalent circuit
Abstract: control IC 9588 T277 T277-DIE T277-DPW T277-M10 T277-S08 T277-S14 testing of varactor diode ic number of varactor diode
Text: T277 VCXO Clock Generator IC 8 MHz to 100 MHz P R E L I M I N A R Y GENERAL DESCRIPTION FEATURES TLSI’s family of VCXO Clock Generators is ideally • Crystal Frequency Range 8 MHz to 100 MHz suited for a wide range of applications in which cost, • Supply Voltage 3 V to 5.5 V
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tunable crystal oscillator
Abstract: T83027 T83027-DIE T83027-S08 T83027-S08-TNR
Text: T83027 PLL Clock Generator IC with VCXO November 2002 1.0 Features 3.0 • Phase-Locked Loop PLL device synthesizes output clock frequency from crystal or external reference clock • One-chip tunable voltage controlled crystal oscillator (VCXO) allows precise system frequency tuning
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T83027
T83027
ISO9001
tunable crystal oscillator
T83027-DIE
T83027-S08
T83027-S08-TNR
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T98521
Abstract: T98521M T98521MX T98521S1 T98521S1X
Text: T98521 3.3V Clock Multiplier Applications • Low cost general-purpose clock source General Description The T98521 is a 3.3V CMOS, clock multiplier integrated circuit. The device provides an excellent quality high frequency output clock from a lower frequency crystal or clock input. Tri-level selection inputs S0 and
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T98521
T98521
T98521,
T98521S1
T98521S1X
T98521M
T98521MX
T98521/D
T98521/DW
T98521M
T98521MX
T98521S1
T98521S1X
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TLSI
Abstract: No abstract text available
Text: 3.5 Datum Id.-Nr. Anforderungsstufe class 2.9 0.65 x 0.3 2.54 31 x 2.54 = 4.5 ±0.2 -0.5 date 7.7 11.6 max 2.5 5.08 78.74 95 max a1 2.8 +0.1 8.5 -0.1 +0.2 3 6 +0.1 1 85 -0.2 c 32 90 Bestückungsplan c1 ±0.1 - contact layout 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10
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603ormation.
D-73099
TLSI
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063349
Abstract: 063.349
Text: 3.5 Datum Id.-Nr. Anforderungsstufe class 2.9 0.65 x 0.3 2.54 31 x 2.54 = 4.5 ±0.2 -0.5 date 7.7 11.6 max 2.5 2.54 78.74 2.54 95 max a1 2.8 +0.1 8.5 -0.1 +0.2 3 6 +0.1 1 85 -0.2 c 32 90 Bestückungsplan c1 ±0.1 - contact layout 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10
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D-73099
063349
063.349
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AUDIO DELAY CIRCUIT DIAGRAM
Abstract: analog audio delay delaytime 69mS NJU26901 NJU26901E2 audio delay AUDIO interface CIRCUIT DIAGRAM
Text: NJU26901 Digital Audio Delay ! Package ! General Description The NJU26901 is a digital audio delay. The NJU26901 provides delay-time adjustment function and digital audio interface. NJU26901E2 ! FEATURES • 2-Channel Audio Delay 24 bits data width . Delay Time 85msec at fs = 48kHz ( 128msec at fs = 32kHz , 43msec at fs = 96kHz)
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NJU26901
NJU26901
NJU26901E2
85msec
48kHz
128msec
32kHz
43msec
96kHz)
AUDIO DELAY CIRCUIT DIAGRAM
analog audio delay
delaytime
69mS
NJU26901E2
audio delay
AUDIO interface CIRCUIT DIAGRAM
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AUDIO DELAY CIRCUIT DIAGRAM
Abstract: NJU26903
Text: NJU26903 Digital Audio Delay Package General Description The NJU26903 is a digital audio delay. The NJU26903 provides delay-time adjustment function and digital audio interface. NJU26903 FEATURES • Tow delay systems, 2-Channel Audio Delay 24 bits data width per system.
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NJU26903
NJU26903
85msec
48kHz
128msec
32kHz
43msec
96kHz)
AUDIO DELAY CIRCUIT DIAGRAM
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Untitled
Abstract: No abstract text available
Text: NJU26902 Digital Audio Delay ̈ Package ̈ General Description The NJU26902 is a digital audio delay. The NJU26902 provides delay-time adjustment function and digital audio interface. NJU26902V ̈ FEATURES • 2-Channel Audio Delay 24 bits data width . Delay Time 85msec at fs = 48kHz ( 128msec at fs = 32kHz , 43msec at fs = 96kHz)
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NJU26902
NJU26902
NJU26902V
85msec
48kHz
128msec
32kHz
43msec
96kHz)
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NJU26902
Abstract: SSOP20
Text: NJU26902 Digital Audio Delay Package General Description The NJU26902 is a digital audio delay. The NJU26902 provides delay-time adjustment function and digital audio interface. NJU26902V FEATURES • 2-Channel Audio Delay 24 bits data width . Delay Time 85msec at fs = 48kHz ( 128msec at fs = 32kHz , 43msec at fs = 96kHz)
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NJU26902
NJU26902
NJU26902V
85msec
48kHz
128msec
32kHz
43msec
96kHz)
SSOP20
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Untitled
Abstract: No abstract text available
Text: To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid
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do5-900
Unit2607
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digital reverb processor diagram
Abstract: SM5953A SM5953AV
Text: SM5953A Surround Effects Processor LSI OVERVIEW The SM5953A is a dedicated surround effects processor LSI that has a function that adds surround effects to digital audio signals. The surround effects can be varied continuously from the microcontroller interface. It
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SM5953A
SM5953A
16-bit
384fs
9344MHz)
NC0321BE
digital reverb processor diagram
SM5953AV
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Untitled
Abstract: No abstract text available
Text: To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid
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do5-900
Unit2607
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NJU26901
Abstract: 24I2S
Text: NJU26901 デジタルオーディオディレイ •外形 概要 NJU26901 はデジタルオーディオ用のディレイ専用 IC です。 内部にメモリを持ち、2 チャンネル音声信号の出力時間に遅延 を与えることが出来ます。
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NJU26901
NJU26901M
48kHz85ms,
32kHz128ms,
96kHz43ms
24I2S
13MHz
Fs200kHz)
24bit
NJU26901
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063349
Abstract: No abstract text available
Text: evi O ' t ú 2.54 2.54 a 32 Q Bestückungsplan - contad layout EEEEEEîSEEEi 32 31 30 29 28 2 7 26 25 24 23 22 21 20 19 18 1 7 J 6 J S _ lin 1 14 13 12 11 10 9 8 7 6 5 4 3 2 1 .£ 3 . o bestückt - assemble • - Sicke angeprägt - - bead punched
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Untitled
Abstract: No abstract text available
Text: 15E D |fl3bb011 ODOEOBO S | SOLI» STATE DEVICES INC SDA 294 r” last recovery 3-phase bridge rectifiers * PIV 50 to 1000 Volts/Average Output Current 2 A * PIV 1500 to 3000 Volts/Ave. Output Current .5 A * Operating and Storage Temperature -55°C to +150°C
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fl3bb011
S3BR05
S3BR30
through1-96
SDA29AA
SDA294H
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cf rh transistor
Abstract: MM1192 hbsc MM1192XD
Text: MâïSUMÎ HBS-Compatible Driver and Receiver MM1192 Monolithic IC M M 1 1 9 2 This IC conforms to the HBS Home Bus specification (Electronic Industries Association of Japan), and has functions for the reception and transmission of data. AMI is adopted for the waveforms of signals handled by
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MM1192
cf rh transistor
MM1192
hbsc
MM1192XD
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