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AD736JR-REEL Top sales STANDARD RATINGS | MAX. DF MAX. DCL @ + 250C CAPACITANCE CASE PART NUMBER* PART NUMBER* @ + 250C 120 Hz (yF) CODE CAP.TOL.+20% CAP.TOL.+10% (hiA) (%) 20 WVDC @ +850C, SURGE = 26 V...13 WVDC @ +1250C, SURGE = 16 V 1.0 U 173D105X0020U 173D105X9020U 0.5 4 1.2 U 173D125X9020U 0.5 4 1.5 U 173D155X0020U 173D155X9020U 0.5 4 1.8 V 173D185X9020V 0.5 4 2.2 V 173D225X0020V 173D225X9020V 0.5 4 2.7 V 173D275X9020V 0.5 4 3.3 V 173D335X0020V 173D335X9020V 0.5 4 3.9 V 173D395X9020V 0.6 4 4.7 V 173D475X0020V 173D475X9020V 0.8 4 5.6 W 173D565X9020W 0.9 4 6.8 W 173D685X0020W 173D685X9020W 1.1 6 8.2 W 173D825X9020W 1.3 6 10.0 W 173D106X0020W 173D106X9020W 1.6 6 12.0 X 173D126X9020X 1.9 6 15.0 X 173D156X0020X 173D156X9020X 2.4 6 18.0 X 173D186X9020X 2.9 6 22.0 X 173D226X0020X 173D226X9020X 3.5 6 27.0 Y 173D276X9020Y 4.3 6 33.0 Y 173D336X0020Y 173D336X9020Y 5.0 6 39.0 Y 173D396X9020Y 6.2 6 47.0 Y 173D476X0020Y 173D476X9020Y 7.5 6 56.0 Y 173D566X9020Y 8.9 6 68.0 Y 173D686X0020Y 173D686X9020Y 10.0 6 82.0 Y 173D826X9020Y 10.0 6 100.0 Y 173D107X0020Y 173D107X9020Y 10.0 6 25 WVDC @ + 850C, SURGE = 32 V ...17 WVDC @+1250C, SURGE = 21 V 0.47 U 173D474X0025U 173D474X9025U 0.5 3 0.56 U 173D564X9025U 0.5 3 0.68 U 173D684X0025U 173D684X9025U 0.5 3 0.82 U 173D824X9025U 0.5 3 1.0 U 173D105X0025U 173D105X9025U 0.5 3 1.2 V 173D125X9025V 0.5 3 1.5 V 173D155X0025V 173D155X9025V 0.5 3 1.8 V 173D185X9025V 0.5 3 2.2 V 173D225X0025V 173D225X9025V 0.5 3 2.7 V 173D275X9025V 0.5 3 3.3 V 173D335X0025V 173D335X9025V 0.7 3 3.9 W 173D395X9025W 0.8 3 4.7 W 173D475X0025W 173D475X9025W 0.9 4 5.6 W 173D565X9025W 1.1 4 6.8 W 173D685X0025W 173D685X9025W 1.4 4 8.2 W 173D825X9025W 1.5 4 10.0 W 173D106X0025W 173D106X9025W 1.5 4 12.0 X 173D126X9025X 2.4 4 15.0 X 173D156X0025X 173D156X9025X 3.0 4 18.0 Y 173D186X9025Y 3.6 6 22.0 Y 173D226X9025Y 173D226X9025Y 4.4 6 27.0 Y 173D276X9025Y 5.4 6 33.0 Y 173D336X0025Y 173D336X9025Y 6.6 6 39.0 Y 173D396X9025Y 7.8 6 47.0 Y 173D476X0025Y 173D476X9025Y 9.4 6 |
AD736JR-REEL seller CR | UR (V) | (cF) | 16 | 25 | 35 | 40 | 50 | 63 | 100(1) | | | | | | 10×12 | 220 | | | 10×12 | | 10×16 | 10×20 | 330 | | | 10×16 | 10×20 | | 12.5×20 | 470 | 10×12 | 10×16 | 10×20 | | 12.5×20 | 12.5×25 | 1 000 | 10×20 | 12.5×20 | 12.5×25 | | 16×25 | 16×31 | 2200 | 12.5×25 | 16×25 | 16×31 | 16×35 | 18×35 | 18×35 | 3300 | 16×25 | 16×31 | 18×35 | 18×35 | 18×35 | | 4700 | 16×31 | 18×35 | 18×35 | | | | 6800 | 16×35 | 18×35 | | | | | 10000 | 18×35 | | | | | | | | | | | | |
AD736JR-REEL datasheet | | | | | -_- | VCCISEL -- _ --. | --- - | ·-- | | | | | | | | | | | | | VHYS, | | | | | | | | | | | VHYS2 | | | | | | | | | | | | | | | | | |
AD736JR-REEL price SYMBOL | PARAMETER | MIN | Typ | MAX | UNIT | CONDITION | THrisc. THfal, | Host clock Rise and Fall Time | 0.4 | | 1.6 | ns | 20pfload/CPU and PCI outputs | THCP | Host Clock Period | 15/16.7 | | | ns | Measured at l.25V, 66/60MHz | THCH | Host Clock High Time | 5.2/6.0 | | | ns | Measured at 2.OV, 66/60MHz | THCL | Host Clock Low Time | 5.0/5.8 | | | ns | Measured at 0.4V, 66/60MHz | Duty Cycle | Duty cycle | 45 | 50 | 55 | % | Refer to Notes below | THSKW | Buffer out Skew All Host CLK | | | 250 | ps | Refer to Notes below | TJAB | Jitter absolute, Host clock | | | 250 | ps | Refer to Notes below | TSTB | Host/PCI clock stabilization from power-up | | | 3 | ms | Refer to Notes below, VDDL=3.3V | Toff | Host to PIC Offset | 1.0 | | 4.0 | ns | Refer to Notes below | THSSKW | Host to SDRAM skew | | | 250 | ps | Refer to Notes below | TPCP | PCI clock period | 30/33.3 | | | ns | Measured at l.5V, 66/60MHz | TPCH | PCI clock High Time | 12/13.3 | | | ns | Measured at 2.4, 66/60MHz | TPCL | PCI clock Low Time | 12/13.3 | | | ns | Measured at 0.4, 66/60MHz | TPSKW | Buffer out skew all PCICLK | | | 500 | ps | Refer to Notes below | Iol | Switching Current Low | TBD | 60 | TBD | mA | V01=1.5V | Ioh | Switching Current High | TBD | 60 | TBD | mA | Voh=1.5V | | | | | | | |
AD736JR-REEL pdf 2. A critical component in any component of a life support device or system whose failure to perform can be rea- sonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.
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