TLCS-900/L

Features: The TMP93PF76F is a system evaluation LSI having a built in One-Time PROM (192 Kbytes) for TMP93CF76/77F.A programming and verification for the internal PROM is achieved by using a general EPROM programmer with an adapter socket.The function of this device is exactly same as the TMP93CF7...

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TLCS-900/L Picture
SeekIC No. : 004520760 Detail

TLCS-900/L: Features: The TMP93PF76F is a system evaluation LSI having a built in One-Time PROM (192 Kbytes) for TMP93CF76/77F.A programming and verification for the internal PROM is achieved by using a general...

floor Price/Ceiling Price

Part Number:
TLCS-900/L
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/1/11

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Product Details

Description



Features:

The TMP93PF76F is a system evaluation LSI having a built in One-Time PROM (192 Kbytes) for TMP93CF76/77F.

A programming and verification for the internal PROM is achieved by using a general EPROM programmer with an adapter socket.

The function of this device is exactly same as the TMP93CF76/77F by programming to the internal PROM and the TMP93PF76F is used as the evaluation chip of TMP93CF76/77F.




Pinout

  Connection Diagram


Specifications

Parameter
Symbol
Rating
Unit
Power Supply Voltage
Vcc
􀀐-0.5 to 6.5
V
Input Voltage
VIN
-0.5 to VCC+0.5
Output Voltage (except PC, PD, PE, PF)
VOUT1
-0.5 to VCC+0.5
Output Voltage (PC, PD, PE, PF)
VOUT2
VCC-40
Output Current (except PC, PD, PE, PF) (per 1 pin)
IOH1
-3.2
mA
Output Current (PC, PD) (per 1 pin)
IOH2
-25
Output Current (PE, PF) (per 1 pin)
IOH3
-15
Output Current (per 1 pin)
IOL
-3.2
Output Current (total except PC, PD, PE, PF)
􀀶IOH1
-40
Output Current (total of PC, PD, PE, PF)
􀀶IOH2
-120
Output Current (total)
IOL
120
Power Dissipation (Ta=70°C)
PD
600
mW
Soldering Temperature
Tsolder
260
°C
Storage Temperature
Tstg
-65 to 150
Operating Temperrature
Topr
-20 to 70


Note: The absolute maximum ratings are rated values which must not be exceeded during operation, even for an instant. Any one of the ratings must not be exceeded. If any absolute maximum rating is exceeded, a device may break down or its performance may be degraded, causing it to catch fire or explode resulting in injury to the user. Thus, when designing products which include this device, ensure that no absolute maximum rating value will ever be exceeded.




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