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Part Name(s) : GW8 ETC
Unspecified
Description : 12.8 x 12.8 x 5.5 mm Dip type CMOS output Phase Jitter < 4.3 ps [ 200.1 ~ 800.0 MHz ] View

[Mercury United Electronics Inc]

12.8 x 12.8 x 5.5 mm Dip type CMOS output Phase Jitter < 4.3 ps [ 200.1 ~ 800.0 MHz ]

Applications :
● high-Q fundamental crystals and multiplier circuits with moderate Jitter.

Part Name(s) : HF8 ETC1
Unspecified
Description : Oscillators Series Dip type CMOS output 12.8 x 12.8 x 5.5 mm View

 [Mercury United Electronics Inc]

Features
● Tri-state function available.

Applications
● CPU , Graphics , Multimedia A / V clocks
● Fast Ethernet and Gigabit Ethernet clocks
● MPEG / DVD / HDTV clocks
● NTSC / PAL encoder / decoder clocks
● Laser engine pixel / set - top clocks
● PLL / synthesizer clocks
● OC-3 , OC-12 , OC-48 and OC-192 clocks
● Fibre channel and ADSL clocks
● SONET / SDH / ATM clocks

Part Name(s) : PS9661 PS9661L PS9661L-E3 PS9661L-E4 NEC
NEC => Renesas Technology
Description : NECs HIGH NOISE REDUCTION 25 Mbps CMOS output type 8-PIN Dip OPTOCOUPLER View

DESCRIPTION

NEC’s ps9661 and ps9661L are optically coupled isolators containing a GaAlAs LED on the input side and a CMOS output IC on the output side. These photocouplers are high common mode transient immunity (CMR), high-speed CMOS output type devices, making them ideal for high-speed logic interface circuits. The ps9661 is in a plastic Dip (Dual In-line Package) and the ps9661L is lead bending type (Gull-wing) for surface mounting.



FEATURES

• High-speed response (25 Mbps)

• High common mode transient immunity (CMH, CML = ±20 kV/µs TYP.)

• High isolation voltage (BV = 3 750 Vr.m.s.)

• Pulse width distortion ( |tPHL − tPLH| = 3 ns TYP.)

• Ordering number of tape product: ps9661L-E3, E4: 1 000 pcs/reel



APPLICATIONS

• Factory Automation Network

• Measurement equipment

• PDP



 


Part Name(s) : KBD43W13 SMSC
SMSC -> Microchip
Description : Keyboard and ps/2 Mouse Controller View

GENERAL DESCRIPTION
The KBD43W13 is a keyboard controller designed to provide the functions needed to interface a CPU to a keyboard or to a ps/2 mouse. The KBD43W13 can be used with IBM®-compatible personal computers or ps/2-based systems. The controller receives serial data from the keyboard or ps/2 mouse, checks the parity of the data, and presents the data to the system as a byte of data in its output buffer. The controller will interrupt the system when data is placed in its output buffer. The keyboard and ps/2 mouse are required to acknowledge all data transmissions. No transmission should be sent to the keyboard or ps/2 mouse until acknowledgment is received for the previous byte sent.

FEATURES
• Supports IBM PC and Compatible System Designs
• Full Hardwire Design Based on Advanced VLSI CMOS Technology
• Supports ps/2 Mouse
• 6 MHz to 12 MHz Operating Frequency
• Supports AT Mode and ps/2 Mode for Different Hardware Configurations
• Automatically Detects ps/2 Mode or AT Mode
• Much Faster Than Traditional Keyboard Controllers
• 40 Pin Dip or 44 Pin PLCC Package


Part Name(s) : CDCM61004 CDCM61004RHBR CDCM61004RHBR/2801 CDCM61004RHBT TI
Texas Instruments
Description : Four output, Integrated VCO, Low-Jitter Clock Generator View

Description
The CDCM61004 is a highly versatile, low-Jitter frequency synthesizer capable of generating four low- Jitter clock outputs, selectable between low-voltage positive emitter coupled logic (LVPECL), low-voltage differential signaling (LVDS), or low-voltage complementary metal oxide semiconductor (LVCMOS) outputs, from a low-frequency crystal of LVCMOS input for a variety of wireline and data communication applications. The CDCM61004 features an onboard PLL that can be easily configured solely through control pins. The overall output random Jitter performance is less than 1 ps, RMS (from 10 kHz to 20 MHz), making this device a perfect choice for use in demanding applications such as SONET, Ethernet, Fibre Channel, and SAN. The CDCM61004 is available in a small, 32-pin, 5-mm × 5-mm VQFN package.

Features
• One Crystal/LVCMOS Reference Input Including
   24.8832 MHz, 25 MHz, and 26.5625 MHz
• Input Frequency Range: 21.875 MHz to
   28.47 MHz
• On-Chip VCO Operates in Frequency Range of
   1.75 GHz to 2.05 GHz
• 4x output Available:
   – Pin-Selectable Between LVPECL, LVDS, or
      2-LVCMOS; Operates at 3.3 V
• LVCMOS Bypass output Available
output Frequency Selectable by /1, /2, /3, /4, /6,
   /8 from a Single output Divider
• Supports Common LVPECL/LVDS output
   Frequencies:
   – 62.5 MHz, 74.25 MHz, 75 MHz, 77.76 MHz,
      100 MHz, 106.25 MHz, 125 MHz, 150 MHz,
      155.52 MHz, 156.25 MHz, 159.375 MHz,
      187.5 MHz, 200 MHz, 212.5 MHz, 250 MHz,
      311.04 MHz, 312.5 MHz, 622.08 MHz,
      625 MHz
• Supports Common LVCMOS output Frequencies:
   – 62.5 MHz, 74.25 MHz, 75 MHz, 77.76 MHz,
      100 MHz, 106.25 MHz, 125 MHz, 150 MHz,
      155.52 MHz, 156.25 MHz, 159.375 MHz,
      187.5 MHz, 200 MHz, 212.5 MHz, 250 MHz
output Frequency Range: 43.75 MHz to
   683.264 MHz (See Table 4)
• Internal PLL Loop Bandwidth: 400 kHz
• High-Performance PLL Core:
   – Phase Noise typically at –146 dBc/Hz at
      5-MHz Offset for 625-MHz LVPECL output
   – Random Jitter typically at 0.509 ps, RMS
      ( 10 kHz to 20 MHz) for 625-MHz LVPECL
      output
output Duty Cycle Corrected to 50% (± 5%)
• Low output Skew of 30 ps on LVPECL outputs
• Divider Programming Using Control Pins:
   – Two Pins for Prescaler/Feedback Divider
   – Three Pins for output Divider
   – Two Pins for output Select
• Chip Enable Control Pin Available
• 3.3-V Core and I/O Power Supply
• Industrial Temperature Range: –40°C to 85°C
• 5-mm × 5-mm, 32-pin, VQFN (RHB) Package
• ESD Protection Exceeds 2 kV (HBM)

Applications
• Low-Jitter Clock Driver for High-End Datacom
   Applications Including SONET, Ethernet, Fibre
   Channel, Serial ATA, and HDTV
• Cost-Effective High-Frequency Crystal Oscillator
   Replacement

Part Name(s) : TDA9350 TDA9350/PS/N2 TDA9350PS TDA9350PS/N2 TDA9351 TDA9351/PS/N2 TDA9351PS TDA9351PS/N2 TDA9352 TDA9352/PS/N2 Philips
Philips Electronics
Description : TV signal processor-Teletext decoder with embedded micro-Controller View

The various versions of theTDA935X/6X/8X PS/N2 series combine the functions of a TV signal processor together with aµ-Controller and US Closed Caption decoder. Most versions have a Teletext decoder on board. The Teletext decoder has an internal RAM memory for 1or 10 page text.



The ICs are intended to be used in economy television receivers with 90°and 110°picture tubes.



The ICs have supply voltages of 8 V and 3.3 V and they are mounted in S-Dip envelope with 64 pins.




Part Name(s) : AD9520-4 AD9520-4/PCBZ AD9520-4BCPZ AD9520-4BCPZ-REEL7 ADI
Analog Devices
Description : 12 LVPECL/24 CMOS output Clock Generator with Integrated 1.6 GHz VCO View

GENERAL DESCRIPTION

The AD9520-41 provides a multioutput clock distribution function with subpicosecond Jitter performance, along with an on-chip PLL and VCO. The on-chip VCO tunes from 1.4 GHz to 1.8 GHz. An external 3.3 V/5 V VCO/VCXO of up to 2.4 GHz can also be used.

The AD9520 serial interface supports both SPI and I2C® ports. An in-package EEPROM can be programmed through the serial interface and store user-defined register setting for power-up and chip reset.

The AD9520 features 12 LVPECL outputs in four groups. Any of the 1.6 GHz LVPECL outputs can be reconfigured as two 250 MHz CMOS outputs.



FEATURES

  Low Phase noise, Phase-locked loop (PLL)

     On-chip VCO tunes from 1.4 GHz to 1.8 GHz

     Supports external 0 V to 5 V VCO/VCXO to 2.4 GHz

     1 differential or 2 single-ended reference inputs

     Accepts CMOS, LVDS, or LVPECL references to 250 MHz

     Accepts 16.67 MHz to 33.3 MHz crystal for reference input

     Optional reference clock doubler

     Reference monitoring capability

     Auto and manual reference switchover/holdover modes,

     with selectable revertive/nonrevertive switching

     Glitch-free switchover between references

     Automatic recover from holdover

     Digital or analog lock detect, selectable

     Optional zero delay operation

  Twelve 1.6 GHz LVPECL outputs divided into 4 groups

     Each group of 4 has a 1-to-32 divider with Phase delay

     Additive output Jitter as low as 225 fS rms

     Channel-to-channel skew grouped outputs <16 ps

     Each LVPECL output can be configured as two CMOS outputs (for fOUT ≤ 250 MHz)

  Automatic synchronization of all outputs on power-up

  Manual synchronization of outputs as needed

  SPI- and I²C-compatible serial control port

  64-lead LFCSP

  Nonvolatile EEPROM stores configuration settings



  APPLICATIONS

  Low Jitter, low Phase noise clock distribution

  Clock generation and translation for SONET, 10Ge, 10G FC, and other 10 Gbps protocols

  Forward error correction (G.710)

  Clocking high speed ADCs, DACs, DDSs, DDCs, DUCs, MxFEs

  High performance wireless transceivers

  ATE and high performance instrumentation

  Broadband infrastructures


Part Name(s) : AQW414EH AQW414EHA AQW414EHAX AQW414EHAZ Panasonic
Panasonic Corporation
Description : General use and economy type. Dip (2 Form B) 8-pin type. Reinforced insulation 5,000V type. View

FEATURES
1. Reinforced insulation 5,000 V type
    More than 0.4 mm internal insulation distance between inputs and outputs. Con-forms to EN41003, EN60950 (reinforced insulation).
2. Compact 8-pin Dip size
    The device comes in a compact (W)6.4×(L)9.86×(H)3.2 mm (W).252×(L).388×(H).126 inch, 8-pin Dip size (through hole terminal type).
3. Applicable for 2 Form B use as well as two independent 1 Form B use
4. Controls low-level analog signals
    PhotoMOS relays feature extremely low closed-circuit offset voltage to enable control of low-level analog signals without distortion.
5. High sensitivity, high speed response.
    Can control a maximum 0.13 A load current with a 5 mA input current. Fast operation speed of 0.8 ms (typical).
6. Low-level off state leakage current

TYPICAL APPLICATIONS
• Modem
• Telephone equipment
• Security equipment
• Sensors

Part Name(s) : AD9520-1 AD9520-1/PCBZ AD9520-1BCPZ AD9520-1BCPZ-REEL7 ADI
Analog Devices
Description : 12 LVPECL/24 CMOS output Clock Generator with Integrated 2.5 GHz VCO View

GENERAL DESCRIPTION

The AD9520-11 provides a multioutput clock distribution function with subpicosecond Jitter performance, along with an on-chip PLL and VCO. The on-chip VCO tunes from 2.27 GHz to 2.65 GHz. An external 3.3 V/5 V VCO/VCXO of up to 2.4 GHz can also be used.

The AD9520 serial interface supports both SPI and I2C® ports. An in-package EEPROM can be programmed through the serial interface and store user-defined register settings for power-up and chip reset.

The AD9520 features 12 LVPECL outputs in four groups. Any of the 1.6 GHz LVPECL outputs can be reconfigured as two 250 MHz CMOS outputs.



FEATURES

  Low Phase noise, Phase-locked loop (PLL)

     On-chip VCO tunes from 2.27 GHz to 2.65 GHz

     Supports external 3.3 V/5 V VCO/VCXO to 2.4 GHz

     1 differential or 2 single-ended reference inputs

     Accepts CMOS, LVDS, or LVPECL references to 250 MHz

     Accepts 16.67 MHz to 33.3 MHz crystal for reference input

     Optional reference clock doubler

     Reference monitoring capability

     Auto and manual reference switchover/holdover modes, with selectable revertive/nonrevertive switching

     Glitch-free switchover between references

     Automatic recovery from holdover

     Digital or analog lock detect, selectable

     Optional zero delay operation

  Twelve 1.6 GHz LVPECL outputs divided into 4 groups

     Each group of 3 has a 1-to-32 divider with Phase delay

     Additive output Jitter as low as 225 fs rms

     Channel-to-channel skew grouped outputs <16 ps

     Each LVPECL output can be configured as 2 CMOS outputs (for fOUT ≤ 250 MHz)

  Automatic synchronization of all outputs on power-up

  Manual synchronization of outputs as needed

  SPI- and I²C-compatible serial control port

  64-lead LFCSP

  Nonvolatile EEPROM stores configuration settings



APPLICATIONS

  Low Jitter, low Phase noise clock distribution

  Clock generation and translation for SONET, 10Ge, 10G FC, and other 10 Gbps protocols

  Forward error correction (G.710)

  Clocking high speed ADCs, DACs, DDSs, DDCs, DUCs, MxFEs

  High performance wireless transceivers

  ATE and high performance instrumentation

  Broadband infrastructures



 


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