TX4939XBG-400 Toshiba, TX4939XBG-400 Datasheet - Page 37

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TX4939XBG-400

Manufacturer Part Number
TX4939XBG-400
Description
Manufacturer
Toshiba
Datasheet

Specifications of TX4939XBG-400

Cpu Core
TX49/H4 90nm
Clock Mhz/max Mips
400/520
Inst./data Cache
32KB (4 Way)/32KB (4 Way)
Tlb
x
1cycle Mac
x
Volts (v)
1.25/2.5/3.3
Peripherals
DDR, NAND, ATA, ETHERNET, SECURITY, FPU, MMU, SPI, I2S, I2C, PCI, VIDEO, UART, TIMER, RTC
Companion Chip
TC86C001FG
Package
PGBA456

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3. General Safety Precautions and Usage Considerations
3.1
3.1.1
This section is designed to help you gain a better understanding of semiconductor devices, so as to ensure the
safety, quality and reliability of the devices which you incorporate into your designs.
When handling individual devices (which are not yet mounted on a printed circuit
board), be sure that the environment is protected against electrostatic electricity.
Operators should wear anti-static clothing, and containers and other objects which
come into direct contact with devices should be made of anti-static materials and should
be grounded to earth via an 0.5- to 1.0-MΩ protective resistor.
Please follow the precautions described below; this is particularly important for devices
which are marked “Be careful of static.”.
(1) Work environment
From Incoming to Shipping
When humidity in the working environment decreases, the human body and other insulators can easily
become charged with static electricity due to friction. Maintain the recommended humidity of 40% to 60% in
the work environment, while also taking into account the fact that moisture-proof-packed products may
absorb moisture after unpacking.
Be sure that all equipment, jigs and tools in the working area are grounded to earth.
Place a conductive mat over the floor of the work area, or take other appropriate measures, so that the floor
surface is protected against static electricity and is grounded to earth. The surface resistivity should be 10
10
Cover the workbench surface also with a conductive mat (with a surface resistivity of 10
10
disperse static electricity on the surface (through resistive components) and ground it to earth. Workbench
surfaces must not be constructed of low-resistance metallic materials that allow rapid static discharge when a
charged device touches them directly.
Pay attention to the following points when using automatic equipment in your workplace:
(a) When picking up ICs with a vacuum unit, use a conductive rubber fitting on the end of the pick-up wand
(b) Minimize friction on IC package surfaces. If some rubbing is unavoidable due to the device’s mechanical
(c) In sections which come into contact with device lead terminals, use a material which dissipates static
(d) Ensure that no statically charged bodies (such as work clothes or the human body) touch the devices.
Electrostatic discharge (ESD)
8
8
Ω/sq and the resistance between surface and ground, 7.5 × 10
Ω/sq, for a resistance between surface and ground of 7.5 × 10
to protect against electrostatic charge.
structure, minimize the friction plane or use material with a small friction coefficient and low electrical
resistance. Also, consider the use of an ionizer.
electricity.
3 General Safety Precautions and Usage Considerations
3-1
5
5
to 10
to 10
8
8
Ω) . The purpose of this is to
4
to
4
to

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