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DSP16A AT&T Bristol Electronics 20 - -
DSP16A-M12 AT&T Bristol Electronics 15 - -
DSP16AM13055 att ComS.I.T. 54 - -
DSP16AM14 att ComS.I.T. 9 - -
WE DSP16A AT&T Bristol Electronics 12 - -
WEDSP16A AT&T Bristol Electronics 20 - -
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DSP16A datasheet (1)

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DSP16A

Abstract: WE DSP16A dsp16a user guide at&t dsp we dsp32 dsp32c XWXX "saturation value" xlxxx G010343
Text: Architecture 2. DSP16A ARCHITECTURE The major element of the DSP16Aarchitecture is the memory, ROM and RAM , 16 2,048 x 16 12,256 DSP16A 24,576 x 16 2,048 x 16 24,576 2.1.1 ROM The DSP16Afeatures a 4K x 16 , 's complement signed numbers with a range of -32,768 to +32,767 in the DSP16A. The adder in the YAAU is used to , pdxl. A DSP16Ainstruction writes to either pdxO or pdxl to output data via the PIO port. A DSP16A , . INTRODUCTION The WE DSP16A Digital Signal Processor is a 16-bit, high-performance, CMOS integrated circuit


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PDF 005002b DSP16A 16-bit, 16-bit 36-bit WE DSP16A dsp16a user guide at&t dsp we dsp32 dsp32c XWXX "saturation value" xlxxx G010343
DSP16A

Abstract: dsp16a block diagram ADSP filter algorithm implementation ADSP-2101 AN-240
Text: the Analog Devices ADSP-2101 and the AT&T DSP16A. The second part discuses other factors that you , the ADSP-2101 while Figure 2 shows that of the DSP16A. Both of these devices utilize a modified , DSP16A. Like the ALU, the MAC has two X and two Y input registers, MXO, MX1 and MYO, MY1. Operations are , Figure 4 shows the data address generators of the DSP16A. ADSP-2101 Addressing There are two , allows efficient use of the DSP16A's Harvard architecture. Only the YAAU can implement circular buffers


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PDF AN-240 ADSP-2101 DSP16A DSP16A dsp16a block diagram ADSP filter algorithm implementation
2101S

Abstract: dsp16a block diagram ADSP-2101 AN-240 DSP16A 8 BIT ALU mathematical operations
Text: capabilities of the Analog Devices ADSP-2101 and the AT&T DSP16A. The second part discuses other factors that , arithmetic section of the ADSP-2101 while Figure 2 shows that of the DSP16A. Both of these devices utilize a , architecture of the DSP16A. Like the ALU. the MAC has two X and two Y input registers. MXO, MX1 and MYO, MY1 , the ADSP-2101 and the DSP16A. DSP Requirement ADSP-2101 Single cycle ALU operations v Single cycle , address generators of the ADSP-2101 while Figure 4 shows the data address generators of the DSP16A. ADSP


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PDF AN-240 ADSP-2101 DSP16A 2101S dsp16a block diagram DSP16A 8 BIT ALU mathematical operations
WEDSP16A

Abstract: WE-DSP16A
Text: – Supported by WE DSP16A-SL Support Software Library and WE DSP16A-DS Digital Signal Processor Development , . Buffered clock at half the frequency of CKI. Processor Interrupt. Interrupt to DSP16A. INT is acknowledged , signals when an interrupt is being serviced by the DSP16A. The IACK remains high until normal instruction , ROM Augmentation Boundary DSP16A0X 2,048 x 16 4,096 x 16 4,096 DSP16A1X 2,048 x 16 12,288 x 16 12,288 DSP16A2X 1,024 x 16 4,096 x 16 8,192 DSP16A3X 1,024


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PDF DSP16A DSP16 16-bit, 84-pin, DS91-052DMOS DS88-58DMOS DA89-006DMOS) WEDSP16A WE-DSP16A
Not Available

Abstract: No abstract text available
Text: – Maskable interrupts ■Single 5 V power supply ■Supported by WE DSP16A-SL Support Software Library and WE DSP16A-DS Digital Signal Processor Development System WE DSP16A Digital Signal Processor D , INT I Processor Interrupt. Interrupt to DSP16A. INT is acknowledged when the interrupt is , when an interrupt is being serviced by the DSP16A. The IACK remains high until normal instruction , Advance Data Sheet WE® DSP16A Digital Signal Processor Description The WE DSP16A Digital


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PDF DSP16A 16-bit 84pin DSP16A 36-bit 32-bit D-8000 RS42898
v32intfc

Abstract: No abstract text available
Text: Data Pump Chip Sat includes a DSP16A Digital Signal Procaaaor, a CSP1027 Unaar Codac, and a V32-INTFC , It 1 1 1 4 1 f 1 1 1 7 1 1 1 1 II > 1 WE DSP16A DIGITAL SIGNAL PROCESSOR  , uüüuoüiruuuüüüüuüuuüuü" Figure 3. DSP16A (PQFP) Signal Locations iig ik g iis S liils S h s a g lu f esce K , » 12 VD 9 S ta O V88 a z 83 P 1 CE •4 B1 PB OC »5 10 DSP16A PBM CE M DIGITAL SIGNAL , €œ Figure 4. DSP16A (SQFP) Signal Locations 4 AT&T 3.3V Data Pumps Pin Information (continued


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PDF 32bis 32bis) DA92-014DMOS v32intfc
schematic diagram of laptop inverter

Abstract: laptop inverter SCHEMATIC TRANSISTOR TGS 822 schematic diagram of hp 550 laptop display inverter T7525EC V32-INTFC DSP16A v32-intfc3 TGS 826 hp laptop schematic diagram
Text: communications software packages. The AT&T LapTop Complete Modem Chip Set consists of a DSP16A Digital Signal , Typ Max Typ Max Typ Max Unit DSP16A 270 355 0 0 0 0 270 355 0 0 0 0 mW V32-INTFC 120 185 0 0 0 0 120 , Active Idle Sleep Device Typ Max Typ Max Typ Max Typ Max Typ Max Typ Max Unit DSP16A 270 355 18 24 , 67.3 630 875 75 97 50.2 67.5 mW DSP16A Digital Signal Processor A ROM-coded DSP16A Digital Signal , tsyncn. Ì DSP16A DIGITAL SIGNAL PROCESSOR 84-pin pofp DSP OSC 40.5504 MHz Dl do tx da, dtra\ MRCA


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PDF V32X-V42L 32bis/V 32/FAX/V 42bis GD5G02b 32bis V32FB-V42L 22bis, modems70) schematic diagram of laptop inverter laptop inverter SCHEMATIC TRANSISTOR TGS 822 schematic diagram of hp 550 laptop display inverter T7525EC V32-INTFC DSP16A v32-intfc3 TGS 826 hp laptop schematic diagram
T7525EC

Abstract: b562* Transistor Transistor BFT 98 LL4148F transistor SMD PB01 smd transistor SA4 npo 121 j kck A1s smd TRANSISTOR DSP16A TGS 816
Text: device set consists of a ROM-coded DSP16A Digital Signal Processor, an interface device (V32-INTFC), an , Modem Chip Set Power Dissipation Device Typical Max Units DSP16A DSP 565 730 mW V32-INTF Interface , Total: 1130 1660 mW DSP16A Digital Signal Processor A ROM-coded DSP16A Digital Signal Processor is , ^7TT_RE5Fr SPKRH SPKRL CRYSTAL 20.2752 MHz CCS CDAN CRDN CWRN CAD[0-71 TCODEC TSYNCN DSP16A DIGITAL , ° AT&T DSP16A 66 65 zd ■zd RSTB VSS7 AB08 C= 22 DIGITAL SIGNAL PROCESSOR 64 zd DOEN AB07 C= 23 63 zd


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PDF GGS002b V32X-V42D 32bis/FAX/V 42bis 68-Pin 005002b 84-Pin T7525EC b562* Transistor Transistor BFT 98 LL4148F transistor SMD PB01 smd transistor SA4 npo 121 j kck A1s smd TRANSISTOR DSP16A TGS 816
DSP16A

Abstract: V32-INTFC modem wedsp16a marking ma4 EQUALIZER ERROR FILTER SCRAMBLE SAMPLE Rockwell V.17 Training T7525 HSM144PD HSM144LD HSM144DD
Text: .) The HSM144xD data pumps consist of a ROM-coded DSP16A Digital Signal Processor, an interface device , interface device (V32-INTFC), and an AT&T T7525 Linear Codec (see Figure MA-2). The DSP16A performs the , : ■The HSM144DD (DeskTop) version: — DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ ■The HSM144PD (PCMCIA) version: — DSP16A in 100


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PDF 005002b HSM144xD 32bis, 22bis, 100-Pin V32-INTFC2 28-Pin DSP16A V32-INTFC modem wedsp16a marking ma4 EQUALIZER ERROR FILTER SCRAMBLE SAMPLE Rockwell V.17 Training T7525 HSM144PD HSM144LD HSM144DD
MG-39

Abstract: MG-17 T7525 v32-intfc2 DSP16A MG-38 JV13 gsm door lock circuit diagram HSM144LD CSP1027
Text: consist of a ROM-coded DSP16A Digital Signal Processor, an interface device (V32-INTFC), and an AT&T T7525 , device (V32-INTFC2), and an AT&T T7525 Linear Codec (see Figure MG-2). The DSP16A performs the signal , €” DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ ■The HSM144PD (PCMCIA) version: — DSP16A in 100-pin TQFP — V32-INTFC in 100-pin TQFP — T7525


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PDF HSM144xD-P DDCH77Ã HSM144xD 32bis, 22bis, 100-Pin V32-INTFC2 28-Pin MG-39 MG-17 T7525 v32-intfc2 DSP16A MG-38 JV13 gsm door lock circuit diagram HSM144LD CSP1027
Not Available

Abstract: No abstract text available
Text: ROM-coded DSP16A Digital Signal Processor, an interface device (V32-INTFC), and an AT&T T7525 Linear Codec , . Architecture The AT&T HSM144xD Data Pump consists of a ROM-coded WE DSP16A Digital Signal Processor, an interface device (V32-INTFC), and an AT&T T7525 Linear Codec (see Figure MA-2). The DSP16A performs the , €” DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ â


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PDF HSM144xD 32bis, 22bis, 100-Pin V32-INTFC2 DSP16A T752S 84-Pin
V32-INTFC2

Abstract: MJ-17 6mj6 DSP16A MJ-54 T7525 MJ-39 TGS 822 marking AFC1 modem echo cancellation dsp16a
Text: internally. The HSM192xD data pumps consist of a ROM-coded DSP16A Digital Signal Processor, an interface , T7525 Linear Codec (see Figure MJ-2). The DSP16A performs the signal processing and control functions , €” DSP16A in 84-pin PLCC — V32-INTFC2 in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC2 in 84-pin PQFP — T7525 in 28-pin SOJ (CSP1027 in 44-pin PQFP for 3.3V version) ■The HSM144PD (PCMCIA) version: — DSP16A in 100-pin TQFP


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PDF HSM192xD 32terbo 32bis 100-Pin V32-INTFC2 28-Pin V32-INTFC2 MJ-17 6mj6 DSP16A MJ-54 T7525 MJ-39 TGS 822 marking AFC1 modem echo cancellation dsp16a
t7525 PCM

Abstract: No abstract text available
Text: machines and a caller ID reciever. The HSM144xD data pumps consist of a ROM-coded DSP16A Digital Signal , -2). The DSP16A performs the signal processing and control functions needed to implement the , €” DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ ■The HSM144PD (PCMCIA) version: — DSP16A in 100-pin TQFP — V32-INTFC in 100-pin TQFP — T7525


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PDF HSM144xD-V HSM144xD 32bis: V32-INTFC2 DSP16A T752S 84-Pin 28-Pin t7525 PCM
1995 - dsp16a block diagram

Abstract: DSP16A PDA30 DSP1616 T9682 t86a WE DSP16A DB10 AT&T DSP1610
Text: and address arithmetic units, and its instruction set has been enhanced over that of the DSP16A. The , ) that is upward object code compatible with the WE® DSP16A and DSP1610, except for specific I/O , . SIO2 is identical to SIO, with the exception that SIO2 interrupts are not DSP16A compatible. An 8 , -bit bus containing other AT&T DSPs (e.g., DSP16A or DSP1610), microprocessors, or peripheral I/O devices , DSP16A and is fully compatible with the DSP1610 instruction set. See Section 5.1 for more information


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PDF DSP1616-x11 DSP1616-x10; 16-bit 36-bit DS94-189WDSP DS93-110DSP) dsp16a block diagram DSP16A PDA30 DSP1616 T9682 t86a WE DSP16A DB10 AT&T DSP1610
Not Available

Abstract: No abstract text available
Text: and address arithmetic units, and its instruction set has been enhanced over that of the DSP16A. The , (DSP) that is upward object code compatible with the WE® DSP16A and DSP1610, except for specific I/O , . S I0 2 is identical to SIO, with the exception that S I02 interrupts are not DSP16A compatible. An , -bit parallel I/O unit which can interface to an 8-bit bus containing other AT&T DSPs (e.g., DSP16A or DSP1610 , of the DSP16A and is fully compatible with the DSP1610 instruction set. See Section 5.1 for more


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PDF DSP1616-X11 DSP1616-x10; 16-bit 36-bit 100-Pin 005002b
marking code motorola mc3

Abstract: relay lzl DSP16A 814400c T7525 HSM96PD HSM96LD HSM96DD mc42 motorola V21-V
Text: .) The HSM96xD data pumps consist of a ROM-coded DSP16A Digital Signal Processor, an interface device , device (V32-INTFC), and an AT&T T7525 Linear Codec (see Figure MC-2). The DSP16A performs the signal , €” DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM96LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ ■The HSM96PD (PCMCIA) version: — DSP16A in 100-pin TQFP — V32-INTFC in 100-pin TQFP — T7525 in


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PDF HSM96xD 22bis, 0x253a 0x1986 0x1227 0x36a3 0x34a3 0x322f marking code motorola mc3 relay lzl DSP16A 814400c T7525 HSM96PD HSM96LD HSM96DD mc42 motorola V21-V
Not Available

Abstract: No abstract text available
Text: performs all USART functions intemaly. The HSM144xD data pumps consist of a ROM-coded DSP16A Digital , Codec (see Figure MG-2). The DSP16A performs the signal processing and control functions needed to , (DeskTop) version: — DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC in 84-pin PQFP — T7525 in 28-pin SOJ ■The HSM144PD (PCMCIA) version: — DSP16A in 100-pin TQFP — V32-INTFC in


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PDF DDCH77Ã HSM144xD-P HSM144xD 32bis: 100-Pin V32-INTFC2 DSP16A T752S
motorola DSR 410 satellite receiver

Abstract: T7525 MT7525 DSP16A T752S ADD28R HSM144DD modem echo cancellation dsp16a HSM144PD t7525 PCM
Text: a ROM-coded DSP16A Digital Signal Processor, an interface device (V32-INTFC), and an AT&T T7525 , device (V32-INTFC), and an AT&T T7525 Linear Codec (see Figure ME-2). The DSP16A performs the signal , in the following package options: ■The HSM144DD (DeskTop) version: — DSP16A in 84-pin PLCC — V32-INTFC in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in , : — DSP16A in 100-pin TQFP — V32-INTFC in 100-pin TQFP — T7525 in 28-pin SOTG The TQFP


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PDF HSM144xD-V HSM144xD 32bis, 22bis, 100-Pin V32-INTFC2 28-Pin DSP16A motorola DSR 410 satellite receiver T7525 MT7525 T752S ADD28R HSM144DD modem echo cancellation dsp16a HSM144PD t7525 PCM
high accuracy riaa

Abstract: pci 16F84 PCI-16F84 DAC08 Applications Collection balanced riaa phono mc preamp SSM2131 16F84 frequency meter phono preamp ssm2013
Text: Board Design: CS4231 & AD1845 Considerations for Selecting DSP Processor, ADSP2101 vs DSP16A


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PDF AD7549 AD7243 DAC08 OP221 AD7537 AD7755 AD7751 AD7549 high accuracy riaa pci 16F84 PCI-16F84 DAC08 Applications Collection balanced riaa phono mc preamp SSM2131 16F84 frequency meter phono preamp ssm2013
v.32terbo 16800 19200 modem

Abstract: No abstract text available
Text: of a ROM-coded DSP16A Digital Signal Processor, an interface device (V32-INTFC), and an AT&T T7525 , interface device (V32-INTFC2), and an AT&T T7525 Linear Codec (see Figure MJ-2). The DSP16A performs the , HSM144DD (DeskTop) version: — DSP16A in 84-pin PLCC — V32-INTFC2 in 68-pin PLCC — T7525 Codec in 28-pin SOJ ■The HSM144LD (LapTop) version: — DSP16A in 84-pin PQFP — V32-INTFC2 in 84 , ) version: — DSP16A in 100-pin TQFP — V32-INTFC2 in 100-pin TQFP — T7525 in 28-pin SOTG (CSP1027


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PDF HSM192xD 32terbo 32bis appropriaSP16A T752S 84-Pin 28-Pin v.32terbo 16800 19200 modem
1998 - AN214 audio amplifier

Abstract: AN532 digital frequency synthesizer AN214 amplifier ad7730 pcb circuit example wein bridge oscillator Spice model AD9850 pcb ad7730 AD597 12v DC MOTOR SPEED CONtrol ic accelerometer AN231 silicon
Text: Selecting DSP Processor, ADSP2101 vs DSP16A AN233 Considerations for Selecting DSP Processor, ADSP2101


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PDF AN325 AD7549 8051Microcomputer 4-20mA AN529 AN531 AN209 AN407 ADMS-200-EVAL AN408 AN214 audio amplifier AN532 digital frequency synthesizer AN214 amplifier ad7730 pcb circuit example wein bridge oscillator Spice model AD9850 pcb ad7730 AD597 12v DC MOTOR SPEED CONtrol ic accelerometer AN231 silicon
Not Available

Abstract: No abstract text available
Text: over that of the DSP16A. The core provides support for external memory wait-states and on-chip , processor (DSP) that is upward object code com­ patible with the I/VE® DSP16A and DSP1610, except for , SI02 interrupts are not DSP16A compatible. An 8-bit serial protocol channel may be transmitted in , -bit bus containing other AT&T DSPs (e.g., DSP16A or DSP1610), microprocessors, or peripheral I/O devices , assigned to it. In addition, for compatibility with the DSP16A , four of the internal sources and one exÂ


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PDF DSP1616-x30 100-Pin 005002b
1998 - ad7730 pcb circuit example

Abstract: pcb ad7730 TMS32050 AD7730 program wireless speed control of single phase induction ad7730 example phono mc preamp high accuracy riaa AN277 SSM2110
Text: Processor, ADSP2101 vs DSP16A AN400 Considerations for Selecting DSP Processor, ADSP2181 vs TI &


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PDF AN402 AN219 AN313 AN404 CS4231 AD1845. AN387 AN207 ad7730 pcb circuit example pcb ad7730 TMS32050 AD7730 program wireless speed control of single phase induction ad7730 example phono mc preamp high accuracy riaa AN277 SSM2110
1995 - radar match filter design

Abstract: intel C196 80c196 80C196 instruction set 80C196KC DSP16A Park transformation circuit diagram for iir and fir filters implementing FIR and IIR digital filters how dsp is used in radar
Text: pipeline. Architectures optimized for DSP applications sport MAC times ranging down to AT&T's DSP16A at 25


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PDF 80C196 80C196KC MCS96 radar match filter design intel C196 80c196 80C196 instruction set DSP16A Park transformation circuit diagram for iir and fir filters implementing FIR and IIR digital filters how dsp is used in radar
1998 - finder timer type 15.21

Abstract: 54175 lucent DSP DSP1617 YL16 DSP1618 eccp dsp16a user guide
Text: . 3-40 3.4.7 Interrupts in DSP16A-Compatible Mode (DSP1617 Only) . 3-42 3.4.8 Timing Examples, DSP16A-Compatible Mode (DSP1617 Only


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PDF DSP1611/17/18/27/28/29 30L-15P-BA, finder timer type 15.21 54175 lucent DSP DSP1617 YL16 DSP1618 eccp dsp16a user guide
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