FSA2567
FSA2567 is Dual SIM Card Analog Switch manufactured by Fairchild Semiconductor.
Features
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Low On Capacitance for Data Path: 10p F Typical Low On Resistance for Data Path: 6Ω Typical Low On Resistance for Supply Path: 0.4Ω Typical Low Power Consumption: 1μA Maximum
Description
The FSA2567 is a bi-directional, low-power, dual double-pole, double-throw (4PDT) analog switch targeted at dual SIM card multiplexing. It is optimized for switching the WLAN-SIM data and control signals and dedicates one channel as a supply-source switch. The FSA2567 is patible with the requirements of SIM cards and features a low on capacitance (CON) of 10p F to ensure high-speed data transfer. The VSIM switch path has a low RON characteristic to ensure minimal voltage drop in the dual SIM card supply paths. The FSA2567 contains special circuitry that minimizes current consumption when the control voltage applied to the SEL pin is lower than the supply voltage (VCC). This feature is especially valuable in ultra-portable applications, such as cell phones; allowing direct interface with the general-purpose I/Os of the baseband processor. Other applications include switching and connector sharing in portable cell phones, PDAs, digital cameras, printers, and notebook puters.
- 15μA Maximum ICCT Over Expanded Voltage
Range (VIN=1.8V, VCC=4.3V) Wide -3db Bandwidth: > 160MHz Packaged in:
- Pb-free 16-Lead MLP
- Pb-free 16-Lead UMLP (1.8 x 2.6mm)
- 8k V ESD Rating, >16k V Power/GND ESD Rating
Applications
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Cell phone, PDA, Digital Camera, and Notebook LCD Monitor, TV, and Set-Top Box
IMPORTANT NOTE:
For additional performance information, please contact analogswitch@fairchildsemi..
Ordering Information
Part Number
FSA2567MPX FSA2567UMX (Preliminary)
Top Mark
FSA2567 GX
Pb-Free
Operating Temperature Range
-40 to +85°C -40 to +85°C
1VSIM 2VSIM 1RST 2RST 1CLK 2CLK 1DAT 2DAT
Package
16-Lead, Molded Leadless Package (MLP) Quad, JEDEC MO-220, 3mm Square 16-Lead, Quad, Ultrathin Molded Leadless Package (UMLP), 1.8 x 2.6mm
VSIM RST CLK DAT Sel
Figure 1. Analog...