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Ultra Low ON-Resistance, Single Supply, Differential SPST Analog Switches

封装信息

CAD 模型:View CAD Model
Pkg. Type:TDFN
Pkg. Code:LPA
Lead Count (#):8
Pkg. Dimensions (mm):3.00 x 3.00 x 0.75
Pitch (mm):0.65

环境和出口类别

Pb (Lead) FreeNo
ECCN (US)EAR99
HTS (US)8542.39.0090
Moisture Sensitivity Level (MSL)

产品属性

Lead Count (#)8
Carrier TypeTube
Pkg. Dimensions (mm)3.0 x 3.0 x 0.75
Pb (Lead) FreeNo
Temp. Range (°C)-40 to +85°C
Channels (#)2
Charge Injection (pC)125
ConfigurationNO
Drain Capacitance290
IS (mA)3.0E-5
Leakage (nA)3
Length (mm)3
MOQ1000
Pitch (mm)0.7
Pkg. TypeTDFN
Qualification LevelStandard
RDS (ON) (Ohms)0.17
Source Cap (pf)182
Supply Voltage Vcc Range1.65 to 3.6
Switch or MUXSwitch
TOFF (ns)15
TON (ns)15
Thickness (mm)0.75
Type of SwitchSPST
VCC (Single) (V)1.65 - 3.6
Width (mm)3

描述

Support is limited to customers who have already adopted these products.

The Intersil ISL43L710, ISL43L711, ISL43L712 devices are low ON-resistance, low voltage, bidirectional, precision, differential single-pole/single-throw (SPST) analog switches designed to operate from a single +1. 65V to +3. 6V supply. Targeted applications include battery powered equipment that benefit from low RON (0. 16Ω), low power consumption (0. 12µW) and fast switching speeds (tON = 13ns, tOFF = 13ns). Cell phones, for example, often face ASIC functionality limitations. The number of analog input or GPIO pins may be limited and digital geometries are not well suited to analog switch performance. This family of parts may be used to switch in additional functionality while reducing ASIC design risk. The ISL43L71X are offered in small form factor packages, alleviating board space limitations. The ISL43L710, ISL43L711, ISL43L712 are differential single-pole/single-throw (SPST) devices. The ISL43L710 has two normally open (NO) switches; the ISL43L711 has two normally closed (NC) switches; the ISL43L712 has one normally open (NO) and one normally closed (NC) switch and can be used as an SPDT. The ISL43L712 is equipped with an inhibit pin to simultaneously open all signal paths.