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CF5034DA-1

CF5034DA-1

  • 厂商:

    NPC

  • 封装:

  • 描述:

    CF5034DA-1 - 350MHz PECL-output Oscillator ICs - Nippon Precision Circuits Inc

  • 详情介绍
  • 数据手册
  • 价格&库存
CF5034DA-1 数据手册
CF5034 series 350MHz PECL-output Oscillator ICs OVERVIEW The CF5034 series are differential LVPECL output oscillator ICs. They are made using a BiCMOS process which allows high-frequency oscillator circuits and differential LVPECL output circuits to be fabricated on a single chip. Two oscillator modes are supported—350MHz maximum fundamental oscillation mode, and 80MHz to 160MHz 3rd overtone oscillation mode. The CF5034 series devices require only the connection of a crystal to realize a differential LVPECL output oscillator circuit. FEATURES I I I I 3.3 ± 0.3V operating supply voltage Oscillator frequency range • 80MHz to 350MHz fundamental oscillation mode • 80MHz to 160MHz 3rd overtone oscillation mode 40MHz to 350MHz output frequency range Differential LVPECL output I I I I I fO (oscillator frequency) or fO/2 output frequency, determined by internal connection 50 ± 5% output duty (measured at output crossing point) Standby function: outputs are high impedance when OE is LOW. Power-saving pull-up resistor built-in (pin OE) Chip form (CF5034××) SERIES LINEUP Version CF5034AA 250 to 350 CF5034AB Fundamental CF5034BA 160 to 250 CF5034BB CF5034DA – CF5034DB CF5034LA 125 to 160 CF5034LB CF5034MA CF5034MB Fundamental or 3rd overtone 80 to 125 80 to 350 (external capacitors required) Oscillation mode Recommended oscillator frequency [MHz]1 Output frequency fO fO/2 fO fO/2 fO fO/2 fO fO/2 fO fO/2 1. The recommended oscillator frequency criteria is based on the negative resistance characteristics and cutoff frequency. Note that this may change depending on the crystal characteristics, thus sufficient allowance should be made. ORDERING INFORMATION Device CF5034××−1 Package Chip form NIPPON PRECISION CIRCUITS INC.—1 CF5034 series PAD LAYOUT (Unit: µm) OUTN 8 OUT 9 TEST VCC2 OE (1160,1310) DA5034 7 6 5 Y 1 2 3 4 (0,0) VCC XIN XOUT GND X Chip size: 1.16 × 1.31mm Chip thickness: 300 ± 30µm Chip base: GND potential PAD DESCRIPTION AND DIMENSIONS Pad dimensions [µm] Pad No. 1 2 3 4 5 6 7 8 9 Name VCC XIN XOUT GND OE TEST VCC2 OUTN OUT I/O – I O – I I – O O Supply pin Oscillator input pin Oscillator output pin Ground pin Output enable pin. Outputs are high impedance when LOW (oscillator stopped). Power-saving pull-up resistor built-in. IC test pin. Leave open circuit for normal operation. Output buffer supply pin Output pin (complementary) Output pin (true) Function X 146 536 809 1015 979 839 690 449 216 Y 145 145 145 145 1165 1165 1165 1165 1165 BLOCK DIAGRAM OE VCC2 VCC Rf 1/2 ECL OUT OUTN XIN CXIN CXOUT GND XOUT NIPPON PRECISION CIRCUITS INC.—2 CF5034 series ABSOLUTE MAXIMUM RATINGS Parameter Supply voltage range Input voltage range Output voltage range Storage temperature range Symbol VCC VIN VOUT TSTG Conditions Rating −0.5 to 7.0 GND − 0.5 to VCC + 0.5 GND − 0.5 to VCC + 0.5 −65 to 150 Unit V V V °C RECOMMENDED OPERATING CONDITIONS Rating Parameter Operating supply voltage Input voltage Operating temperature Output load Output frequency Symbol VCC VIN TOPR RL fOUT Terminated to VCC − 2V Conditions Min 3.0 GND −40 – 40 Typ 3.3 – 25 50 – Max 3.6 VCC 85 – 350 V V °C Ω MHz Unit ELECTRICAL CHARACTERISTICS DC Characteristics Recommended operating conditions unless otherwise noted. Rating Parameter Current consumption 1 Current consumption 2 OUT/OUTN HIGH-level output voltage Symbol IEE1 IEE2 VOH Conditions Min Measurement cct. 1, OE = open Measurement cct. 1, OE = LOW Ta = 0 to 85°C Measurement cct. 4, VCC = 3.3V, OE = open Ta = – 40°C Ta = 0 to 85°C Ta = – 40°C Measurement cct. 2, OE = LOW Measurement cct. 1 Measurement cct. 1 Measurement cct. 2, VIL = 0V Measurement cct. 2, VIL = 0.7VCC – – 2.275 2.215 1.490 1.470 – 0.7VCC – −2 −20 Typ 55 – 2.350 2.295 1.600 1.605 – – – – – Max 88 30 2.420 2.420 1.680 1.745 10 – 0.3VCC −20 −200 mA µA V V V V µA V V µA µA Unit OUT/OUTN LOW-level output voltage OUT/OUTN output leakage current OE HIGH-level input voltage OE LOW-level input voltage OE LOW-level input current 1 OE LOW-level input current 2 VOL IZ VIH VIL IIL1 IIL2 NIPPON PRECISION CIRCUITS INC.—3 CF5034 series AC Characteristics Recommended operating conditions unless otherwise noted. Rating Parameter Symbol Conditions Min Output duty cycle 1 Duty 1 Measurement cct. 3, measured at output crossing point, Ta = 25°C, VCC = 3.3V Measurement cct. 3, measured at 50% output swing, Ta = 25°C, VCC = 3.3V Measurement cct. 1, Ta = TOPR, f = 350MHz, Peak to peak of output waveform Measurement cct. 3, 20 to 80% output swing Measurement cct. 3, 80 to 20% output swing Measurement cct. 1, Ta = 25°C Measurement cct. 1, Ta = 25°C 45 Typ – Max 55 % Unit Output duty cycle 2 Duty 2 45 – 55 % Output swing1 Output rise time Output fall time Output enable time2 Output disable time2 VOpp tr tf tOE tOD 0.4 – – – – – 0.5 0.5 – – – 1 1 200 200 V ns ns ns ns 1. The said values are measured by using the NPC standard jig. 2. The built-in oscillator stop function does not operate with normal output immediately when OE goes HIGH. Instead, normal output occurs after the oscillator startup time has elapsed. tr OUTN OUT tf 80% 20% VOpp VDD VOH VOL VDD – 2V tW tPER DUTY = tW/tPER 100 tOD OE tOE VIH VSS VDD VIL VSS OE input waveform tr = tf 10ns Timing chart NIPPON PRECISION CIRCUITS INC.—4 CF5034 series FUNCTIONAL DESCRIPTION Standby Function When OE goes LOW, the oscillator stops and the output pins (OUT, OUTN) become high impedance. OE HIGH (or open) LOW OUT, OUTN Either fO or fO/2 High impedance Oscillator Normal operation Stopped Power-saving Pull-up Resistor The OE pin pull-up resistance changes in value in response to the input level (HIGH or LOW). When OE is LOW (standby state), the pull-up resistance increases, thereby decreasing the current consumption. MEASUREMENT CIRCUITS Measurement Circuit 1 Measurement Circuit 3 A IEE1, IEE2 VCC XIN R1 VT OE OUTN R1 GND VOE XOUT OUTN R1 GND VT VCC2 R1 OUT Signal Generator C1 VCC XIN VCC2 R1 OUT XIN input signal 500mVp-p, sine wave C1: 0.001µF R1: 50Ω VT: VCC − 2V VOE: VCC, VIH, VIL R1: 50Ω, VT: VCC − 2V Measurement Circuit 4 Measurement Circuit 2 VCC XIN VCC2 R1 OUT VT XOUT OUTN R1 TEST GND VCC VCC2 OUT A A 0.7VCC OE OUTN GND A R1: 50Ω, VT: VCC − 2V XOUT = HIGH: OUT pin is fixed HIGH (VOH). OUTN pin is fixed LOW (VOL). XOUT = LOW: OUT pin is fixed LOW (VOL). OUTN pin is fixed HIGH (VOH). NIPPON PRECISION CIRCUITS INC.—5 CF5034 series Please pay your attention to the following points at time of using the products shown in this document. The products shown in this document (hereinafter “Products”) are not intended to be used for the apparatus that exerts harmful influence on human lives due to the defects, failure or malfunction of the Products. Customers are requested to obtain prior written agreement for such use from NIPPON PRECISION CIRCUITS INC. (hereinafter “NPC”). Customers shall be solely responsible for, and indemnify and hold NPC free and harmless from, any and all claims, damages, losses, expenses or lawsuits, due to such use without such agreement. NPC reserves the right to change the specifications of the Products in order to improve the characteristic or reliability thereof. NPC makes no claim or warranty that the contents described in this document dose not infringe any intellectual property right or other similar right owned by third parties. Therefore, NPC shall not be responsible for such problems, even if the use is in accordance with the descriptions provided in this document. Any descriptions including applications, circuits, and the parameters of the Products in this document are for reference to use the Products, and shall not be guaranteed free from defect, inapplicability to the design for the mass-production products without further testing or modification. Customers are requested not to export or re-export, directly or indirectly, the Products to any country or any entity not in compliance with or in violation of the national export administration laws, treaties, orders and regulations. Customers are requested appropriately take steps to obtain required permissions or approvals from appropriate government agencies. NIPPON PRECISION CIRCUITS INC. 4-3, Fukuzumi 2-chome, Koto-ku, Tokyo 135-8430, Japan Telephone: +81-3-3642-6661 Facsimile: +81-3-3642-6698 http://www.npc.co.jp/ Email: sales@npc.co.jp NC0116CE 2003.04 NIPPON PRECISION CIRCUITS INC.—6
CF5034DA-1
物料型号: - 型号:CF5034系列 - 版本:CF5034AA, CF5034AB, CF5034BA, CF5034BB, CF5034DA, CF5034DB, CF5034LA, CF5034LB, CF5034MA, CF5034MB

器件简介: - CF5034系列是差分LVPECL输出振荡器IC,采用BiCMOS工艺制造,允许在单芯片上制造高频振荡电路和差分LVPECL输出电路。 - 支持两种振荡模式:最大350MHz的基本振荡模式和80MHz至160MHz的第三泛音振荡模式。 - 只需连接晶体即可实现差分LVPECL输出振荡器电路。

引脚分配: - VCC:电源引脚 - XIN:振荡器输入引脚 - XOUT:振荡器输出引脚 - GND:地引脚 - OE:输出使能引脚,低电平时输出高阻态(振荡器停止),内置省电上拉电阻 - TEST:IC测试引脚,正常操作时保持开路 - VCC2:输出缓冲电源引脚 - OUTN:输出引脚(互补) - OUT:输出引脚(真值)

参数特性: - 差分LVPECL输出 - 振荡频率范围:80MHz至350MHz基本振荡模式,80MHz至160MHz第三泛音振荡模式 - 3.3±0.3V工作供电电压 - 输出频率范围:40MHz至350MHz - 输出占空比:50±5%(在输出交叉点测量) - 待机功能:OE低电平时输出为高阻态

功能详解: - 待机功能:OE引脚低电平时,振荡器停止,输出引脚(OUT, OUTN)变为高阻态。 - 省电上拉电阻:OE引脚的上拉电阻值随输入电平(高或低)变化。OE引脚低电平时,上拉电阻增大,从而降低电流消耗。

应用信息: - 该系列产品不应用于因产品缺陷、故障或异常工作而对人类生命产生有害影响的设备。客户需获得NIPPON PRECISION CIRCUITS INC.的书面同意。

封装信息: - 封装:芯片形式(CF5034xx-1)
CF5034DA-1 价格&库存

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