ARMY MIL-PRF-55310 11 G-2009 OSCILLATOR CRYSTAL CONTROLLED TYPE 1 (CRYSTAL OSCILLATOR (XO)) 0 05 MHz THROUGH 10 MHz HERMETIC SEAL SQUARE WAVE CMOS《晶体振荡器(XO) 方波为0 05兆赫-10兆赫的互补金属氧化物半.pdf
《ARMY MIL-PRF-55310 11 G-2009 OSCILLATOR CRYSTAL CONTROLLED TYPE 1 (CRYSTAL OSCILLATOR (XO)) 0 05 MHz THROUGH 10 MHz HERMETIC SEAL SQUARE WAVE CMOS《晶体振荡器(XO) 方波为0 05兆赫-10兆赫的互补金属氧化物半.pdf》由会员分享,可在线阅读,更多相关《ARMY MIL-PRF-55310 11 G-2009 OSCILLATOR CRYSTAL CONTROLLED TYPE 1 (CRYSTAL OSCILLATOR (XO)) 0 05 MHz THROUGH 10 MHz HERMETIC SEAL SQUARE WAVE CMOS《晶体振荡器(XO) 方波为0 05兆赫-10兆赫的互补金属氧化物半.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、AMSC N/A FSC 5955 INCH-POUND MIL-PRF-55310/11G 11 June 2009 SUPERSEDING MIL-PRF-55310/11F 24 February 2005 PERFORMANCE SPECIFICATION SHEET OSCILLATOR, CRYSTAL CONTROLLED, TYPE 1 (CRYSTAL OSCILLATOR (XO), 0.05 MHz THROUGH 10 MHz, HERMETIC SEAL, SQUARE WAVE, CMOS This specification is approved for use
2、 by all Departments and Agencies of the Department of Defense. The requirements for acquiring the product described herein shall consist of this specification sheet and MIL-PRF-55310. FIGURE 1. Dimensions and configuration. Pin number Function 1 OUTPUT 2 CASE 3 NC 4 NC 5 NC 6 NC 7 NC 8 B - (GND) 9 N
3、C 10 NC 11 NC 12 NC 13 NC 14 B+ Copyright Communications - Electronics Command Provided by IHS under license with CRAINot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-55310/11G 2 NOTES: 1. Dimensions are in inches. 2. Metric equivalents are given for general
4、 information only. 3. Unless otherwise specified, tolerances are .005 (0.13 mm) for three place decimals and .02 (0.5 mm) for two place decimals. 4. Case to be connected to base pin 2 to permit shielding of the oscillator. 5. All pins with NC function may be connected internally and are not to be us
5、ed as external tie points or connections. 6. Color dot or square corner shall be used to indicate pin number 1. 7. ESD indicator, open triangle, shall be marked anywhere on the top of the oscillator. FIGURE 1. Dimensions and configuration - Continued. Ltr Inches mm Min Max Min Max A - .887 - 22.53 B
6、 - .44 - 11.2 C - .27 - 6.8 D - .54 - 13.7 E .145 .155 3.68 3.94 F .295 .305 7.49 7.75 G .295 .305 7.49 7.75 H .595 .605 15.11 15.37 J - .20 - 5.1 K .20 - 5.1 - L .016 .020 0.41 0.51 M .095 .105 2.41 2.67 Copyright Communications - Electronics Command Provided by IHS under license with CRAINot for R
7、esaleNo reproduction or networking permitted without license from IHS-,-,-MIL-PRF-55310/11G 3 REQUIREMENTS: Interface and physical dimensions: See figure 1. Mounting: See figure 1. Terminals: See figure 1. Seal: Hermetic in accordance with MIL-PRF-55310, maximum leakage rate 5 x 10-8 atm cc/s. Weigh
8、t: 0.5 ounce, maximum. Oscillator: Class 2 or any class 1 or class 3 oscillator meeting all class 2 requirements and verification tests specified herein and in MIL-PRF-55310. Calibration: Manufacturer calibrated. Screening: In accordance with MIL-PRF-55310, product level B or S, as applicable. Tempe
9、rature: Operating: See table I. Storage: -62C to +125C. Oscillator load: 10 kilohms 5 percent shunted by a 15 pF 5 percent capacitor for a CMOS compatible square wave output. Output waveform: Symmetrical square wave. Supply voltage: See table I. Input current: At designated supply voltage (see table
10、 I). Output frequency: Frequency as designated at time of acquisition (see table I). Output voltage: At designated TTL load (see table I). Logic 1: See table I. Logic 0: See table I. Rise and fall times: See table I. Duty cycle: See table I. Initial accuracy at reference temperature: 15 ppm at +23C
11、1C up to 30 days after shipment. Initial frequency-temperature accuracy (one-half temperature cycle): Verification applicable. 1/ Frequency-temperature tolerance (one-half temperature cycle, referenced to frequency measured at +23C 1C, immediately prior to starting of the test): See table I. Measure
12、ments taken at ten equally spaced increments over the specified operating temperature range. 1/ 1/ For the purpose of transitioning this device to MIL-PRF-55310, Frequency stability versus temperature has been renamed Frequency-temperature tolerance. The verification requirements of initial frequenc
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