Features: SpecificationsDescriptionThe DS1652 is a kind of TTL compatible quad high speed circuit intended primarily for line receiver applications. There are some features as follows. First is high speed. The second is TTL compatible. Then is input sensitivity which is ±25 mV. Next is TRI-STATE o...
DS1652: Features: SpecificationsDescriptionThe DS1652 is a kind of TTL compatible quad high speed circuit intended primarily for line receiver applications. There are some features as follows. First is high...
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The DS1652 is a kind of TTL compatible quad high speed circuit intended primarily for line receiver applications. There are some features as follows. First is high speed. The second is TTL compatible. Then is input sensitivity which is ±25 mV. Next is TRI-STATE outputs for high speed busses. The fifth is standard supply voltage which is ±5 V. The last one is pin and function compatible with MC3450 and MC3452.
What comes next is about the absolute maximum ratings of DS1652. The VCC (power supply voltage) is +7.0 VDC and the VEE (power supply voltage) is -7.0 VDC. The VIDR (differential-mode input signal voltage range) is ±6.0 VDC. The VICR (common-mode input signal voltage range) is ±5.0 VDC. The VI(S) (strobe input voltage) is 5.5 VDC. The storage temperature range is from -65 to +150. The lead temperature is 260 (soldering, 4 seconds). The maximum power dissipation at 25 is 1509 mW for cavity package, 1476 mW for molded DIP package and 1501 mW for SO package.
The following is about the operating conditions of DS1652. The minimum VCC (supply voltage) is 4.5 V and the maximum is 5.5 V. The minimum VEE (supply voltage) is -4.5 V and the maximum is -5.5 V. The storage temperature range is from -55 to +125. The maximum IOL (output load current) is 16 mA. The minimum VIDR (differential-mode input signal voltage) is -5.0 V and the maximum is +5.0 V. The minimum VICR (common-mode input signal voltage) is -3.0 V and the maximum is +3.0 V. The minimum VIR (input voltage range, input to GND) is -5.0 VDC and the maximum is +3.0 VDC.