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HVD12 Datasheet

Part Manufacturer Description PDF Type
HVD12 International Semiconductor DIODE STANDARD RECOVERY RECTIFIER 12000V 0.025A 2HV Scan
HVD12 International Semiconductor HIGH VOLTAGE RECTIFIER ASSEMBLIES, Standard Recovery Scan
HVD12 International Semiconductor High Voltage Rectifier Assemblies Scan

HVD12

Catalog Datasheet MFG & Type PDF Document Tags

65HVD10

Abstract: vp10q Receiver (2) (1) (2) mA 8 54 â"¦ 60 50 pF 32 HVD11 10 HVD12 Signaling , 8.5 16 HVD11 18 25 40 HVD12 135 200 300 HVD10 5 8.5 16 , , high-to-low-level output TEST CONDITIONS HVD11 18 25 40 HVD12 135 200 4.5 10 HVD10 , 10 20 30 HVD12 100 170 2.5 7 HVD10 tPZH Part-to-part skew Propagation delay time, high-impedance-to-highlevel output 100 31 HVD11 55 HVD12 HVD10 tPHZ
Texas Instruments
Original
65HVD10 vp10q SN65HVD10 SN65HVD10Q SN75HVD10 SN65HVD11 SN65HVD11Q SN75HVD11

V12IEP

Abstract: V10QEP , CL HVD10 Signaling rate Junction temperature, TJ (2) (1) (2) HVD11 HVD12 Driver Receiver Driver , HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11 HVD12 HVD10 tPHZ
Texas Instruments
Original
V12IEP V10QEP SN65HVD11QDREP SN65HVD10-EP SN65HVD11-EP SN65HVD12-EP SGLS278C RS-485 TIA/EIA-485-A
Abstract: Signaling rate HVD11 HVD12 Junction temperature, TJ(2) (1) The algebraic convention, in which the least , , low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high-impedance-to-high-level output HVD11 HVD12 HVD10 tPHZ Texas Instruments
Original
SN65HVD12 SN75HVD12 SLLS505G RS485
Abstract: for information regarding this specification. 3 HVD11 HVD12 Receiver Driver Receiver 54 60 50 25 10 , Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11 Texas Instruments
Original
SN65HVD10EP SN65HVD11EP SN65HVD12EP SGLS278A SN75176
Abstract: load capacitance, CL HVD10 Signaling rate HVD11 HVD12 (1) Driver Receiver Driver Receiver 54 60 50 25 , tPLH Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level Texas Instruments
Original
SGLS278E

Sn75176

Abstract: for information regarding this specification. 3 HVD11 HVD12 Receiver Driver Receiver 54 60 50 25 10 , Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11
Texas Instruments
Original

VP10Q

Abstract: vn12 ti HVD10 HVD11 Signaling rate 25 10 Mbps HVD12 1 Junction temperature, TJ(2) (1) The , , See Figure 4 Differential output signal fall time HVD11 10 20 30 HVD12 tf 100 170 2.5 7 HVD10 tsk(pp)(2) HVD11 6 11 31 HVD11 55 HVD12 tPZH , HVD10 Propagation delay time, high-impedance-to-low-level output 26 HVD11 55 HVD12 , , See Figure 6 ns 26 HVD11 75 HVD12 tPLZ ns 25 HVD11 HVD12 tPZL ns
Texas Instruments
Original
vn12 ti SLLS505F

VP10Q

Abstract: vn12 ti time, low low-to-high-level to high level out output ut HVD11 HVD12 HVD10 tPHL Propagation Pro agation delay time, high high-to-low-level to low level out output ut HVD11 HVD12 HVD10 tr Differential out output ut signal rise time HVD11 HVD12 HVD10 tf Differential out output ut signal fall time HVD11 HVD12 HVD10 tsk( sk(p) ) Pulse skew (|tPHL ­ tPLH|) HVD11 HVD12 HVD10 ) (2) tsk( sk(pp) )( Part-to-part Part to art skew HVD11 HVD12 HVD10 tPZH Propagation P ti d delay l ti time, high-impedance-to-high-level
Texas Instruments
Original
SLLS505D

VP10Q

Abstract: JSD51-7 54 pF 32 HVD11 10 HVD12 Signaling rate (1) (2) V mA -8 HVD10 TJ (2 , 40 HVD12 135 200 300 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 300 HVD10 3 4.5 10 10 20 30 HVD12 100 170 300 HVD10 3 4.5 10 HVD11 10 20 30 HVD12 100 170 300 PARAMETER tPLH TEST , fall time RL = 54 , CL = 50 pF, See Figure 4 HVD10 Pulse skew (|tPHL - tPLH|) 2.5 HVD12
Texas Instruments
Original
JSD51-7 SN65HVD10DR SLLS505I

V10QEP

Abstract: for information regarding this specification. 3 HVD11 HVD12 Receiver Driver Receiver 54 60 50 25 10 , Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11
Texas Instruments
Original
Abstract: Signaling rate HVD11 HVD12 Junction temperature, TJ(2) (1) The algebraic convention, in which the least , , low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high-impedance-to-high-level output HVD11 HVD12 HVD10 tPHZ Texas Instruments
Original

SN65HVD10

Abstract: SN65HVD10-EP resistance, RL 54 Differential load capacitance, CL 50 pF 10 HVD12 4 25 HVD11 , HVD11 18 25 40 HVD12 135 200 330 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 330 HVD10 3 4.5 11.5 10 20 30 HVD12 100 , , CL = 50 pF, See Figure 5 HVD11 10 20 30 HVD12 100 170 2.5 33 HVD11 55 HVD12 tPHZ RL = 110 , RE at 0 V, See Figure 6 HVD11 55 320 HVD10 tPZL 26
Texas Instruments
Original
Abstract: Differential load capacitance, CL 50 pF 10 HVD12 4 25 HVD11 Signaling rate mA â , ) MIN TYP (1) MAX HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 330 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 330 HVD10 3 4.5 11.5 10 20 30 HVD12 100 170 330 HVD10 3 4.5 11.5 PARAMETER , TEST CONDITIONS HVD11 RL = 54 â"¦, CL = 50 pF, See Figure 5 HVD11 10 20 30 HVD12 Texas Instruments
Original
ISO/TS16949
Abstract: Differential load capacitance HVD10 Signaling rate TJ (2) (1) (2) Junction temperature HVD11 HVD12 D, DE, RE D , unless otherwise noted PARAMETER HVD10 tPLH Propagation delay time, low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation Texas Instruments
Original

SN65HVD10

Abstract: SN65HVD10-EP resistance, RL 54 Differential load capacitance, CL 50 pF 10 HVD12 4 25 HVD11 , HVD11 18 25 40 HVD12 135 200 330 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 330 HVD10 3 4.5 11.5 10 20 30 HVD12 100 , , CL = 50 pF, See Figure 5 HVD11 10 20 30 HVD12 100 170 2.5 33 HVD11 55 HVD12 tPHZ RL = 110 , RE at 0 V, See Figure 6 HVD11 55 320 HVD10 tPZL 26
Texas Instruments
Original
Abstract: Differential load capacitance HVD10 Signaling rate TJ (2) (1) (2) Junction temperature HVD11 HVD12 D, DE, RE D , unless otherwise noted PARAMETER HVD10 tPLH Propagation delay time, low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation Texas Instruments
Original
Abstract: Differential load capacitance HVD10 Signaling rate TJ (2) (1) (2) Junction temperature HVD11 HVD12 D, DE, RE D , unless otherwise noted PARAMETER HVD10 tPLH Propagation delay time, low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation Texas Instruments
Original
Abstract: "¦ 50 54 pF 32 HVD11 10 HVD12 Signaling rate (1) (2) V mA -8 HVD10 , HVD11 18 25 40 HVD12 135 200 300 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 300 HVD10 3 4.5 10 10 20 30 HVD12 100 170 300 HVD10 3 4.5 10 HVD11 10 20 30 HVD12 100 170 300 PARAMETER , tPLH|) 2.5 HVD12 HVD10 tPHZ 55 RL = 110 â"¦, RE at 0 V, See Figure 5 55 300 HVD10 Texas Instruments
Original

65HVD10

Abstract: level out output ut HVD11 HVD12 HVD10 tPHL Propagation Pro agation delay time, high high-to-low-level to low level out output ut HVD11 HVD12 HVD10 tr Differential out output ut signal rise time HVD11 HVD12 HVD10 tf output Differential out ut signal fall time HVD11 HVD12 HVD10 tsk( sk(p) ) Pulse skew (|tPHL ­ tPLH|) HVD11 HVD12 HVD10 tsk( sk(pp) ) Part-to-part Part to art skew HVD11 HVD12 HVD10 tPZH(1 , HVD11 HVD12 HVD10 tPHZ Propagation Pro agation delay time, high high-level-to-high-impedance level to
Texas Instruments
Original
SLLS505A

Vn10-Vn11

Abstract: vn12 ti agation delay time, low low-to-high-level to high level out output ut HVD11 HVD12 HVD10 tPHL Propagation Pro agation delay time, high high-to-low-level to low level out output ut HVD11 HVD12 HVD10 tr Differential out output ut signal rise time HVD11 HVD12 HVD10 tf Differential out output ut signal fall time HVD11 HVD12 HVD10 tsk( sk(p) ) Pulse skew (|tPHL ­ tPLH|) HVD11 HVD12 HVD10 ) (2) tsk( sk(pp) )( Part-to-part Part to art skew HVD11 HVD12 HVD10 tPZH Propagation P ti d delay l ti time
Texas Instruments
Original
Vn10-Vn11 Vn11-Vn12 TI VP11 SLLS505C

VP12* texas

Abstract: SN75HVD12DRG4 Driver Receiver 54 60 50 V mA 60 8 mA pF 32 10 1 145 °C Mbps HVD11 HVD12 Junction , time, low-to-high-level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low-level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL ­ tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2 , = 50 pF, See Figure 4 10 100 3 10 100 ns ns ns Part-to-part skew HVD11 HVD12 HVD10
Texas Instruments
Original
VP12* texas SN75HVD12DRG4 SLLS505K

SN65HVD10

Abstract: SN65HVD10Q 10 HVD12 Signaling rate (1) (2) V mA ­8 HVD10 TJ (2) UNIT 3.6 1 , otherwise noted MIN TYP (1) MAX HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 300 HVD10 5 8.5 16 HVD11 18 25 40 HVD12 135 200 300 HVD10 3 4.5 10 10 20 30 HVD12 100 170 300 HVD10 3 4.5 10 HVD11 10 20 30 HVD12 100 170 300 PARAMETER tPLH Propagation delay time
Texas Instruments
Original
SLLS505J

vn12 ti

Abstract: SN65HVD10 HVD10 HVD11 Signaling rate 25 10 Mbps HVD12 1 Junction temperature, TJ(2) (1) The , , See Figure 4 Differential output signal fall time HVD11 10 20 30 HVD12 tf 100 170 2.5 7 HVD10 tsk(pp)(2) HVD11 6 11 31 HVD11 55 HVD12 tPZH , HVD10 Propagation delay time, high-impedance-to-low-level output 26 HVD11 55 HVD12 , , See Figure 6 ns 26 HVD11 75 HVD12 tPLZ ns 25 HVD11 HVD12 tPZL ns
Texas Instruments
Original

SN65HVD10

Abstract: SN65HVD10QDREP 25 HVD11 10 Mbps HVD12 Junction temperature, TJ(2) 1 145 °C (1) The algebraic , 25 40 135 200 330 5 8.5 16 HVD11 18 25 40 HVD12 tPHL HVD11 , , See Figure 5 Differential output signal fall time HVD11 10 20 30 HVD12 tf 100 170 2.5 9 HVD10 tsk(pp)(2) HVD11 6 11 33 HVD11 55 HVD12 tPZH , HVD10 Propagation delay time, high impedance-to-low-level output 26 HVD11 55 HVD12
Texas Instruments
Original
SN65HVD10QDREP
Abstract: for information regarding this specification. 3 HVD11 HVD12 Receiver Driver Receiver 54 60 50 25 10 , Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11 Texas Instruments
Original
Abstract: for information regarding this specification. 3 HVD11 HVD12 Receiver Driver Receiver 54 60 50 25 10 , Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp)(2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level output HVD11 Texas Instruments
Original
Abstract: load capacitance, CL HVD10 Signaling rate HVD11 HVD12 (1) Driver Receiver Driver Receiver 54 60 50 25 , tPLH Propagation delay time, low-to-high level output HVD11 HVD12 HVD10 tPHL Propagation delay time, high-to-low level output HVD11 HVD12 HVD10 tr Differential output signal rise time HVD11 HVD12 HVD10 tf Differential output signal fall time HVD11 HVD12 HVD10 tsk(p) Pulse skew (|tPHL - tPLH|) HVD11 HVD12 HVD10 tsk(pp) (2) Part-to-part skew HVD11 HVD12 HVD10 tPZH Propagation delay time, high impedance-to-high level Texas Instruments
Original
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